Publication | Closed Access
Using complete machine simulation for software power estimation: the SoftWatt approach
196
Citations
31
References
2004
Year
Unknown Venue
EngineeringPower Optimization (Eda)Computer ArchitectureSimulationComplete Machine SimulationKernel Power ProfileHardware SecuritySystems EngineeringSoftware Power EstimationModeling And SimulationParallel ComputingPower-aware DesignPower-aware SoftwarePower ManagementPower-aware ComputingSoftwatt ApproachComputer EngineeringPower DissipationComputer SciencePower ConsumptionOperating SystemsSmart GridEnergy ManagementParallel ProgrammingComplete System SimulationPower-efficient ComputingSystem Software
Power dissipation has become one of the most critical factors for the continued development of both high-end and low-end computer systems. We present a complete system power simulator, called SoftWatt, that models the CPU, memory hierarchy, and a low-power disk subsystem and quantifies the power behavior of both the application and operating system. This tool, built on top of the SimOS infrastructure, uses validated analytical energy models to identify the power hotspots in the system components, capture relative contributions of the user and kernel code to the system power profile, identify the power-hungry operating system services and characterize the variance in kernel power profile with respect to workload. Our results using Spec JVM98 benchmark suite emphasize the importance of complete system simulation to understand the power impact of architecture and operating system on application execution.
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