[1323] | 1 | package test.powerCapping; |
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| 2 | |
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| 3 | import java.util.List; |
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| 4 | |
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| 5 | import schedframe.resources.computing.Node; |
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| 6 | import schedframe.resources.computing.Processor; |
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| 7 | import schedframe.resources.computing.coolemall.ComputeBox1; |
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| 8 | import schedframe.resources.computing.coolemall.NodeGroup; |
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[1420] | 9 | import schedframe.resources.computing.profiles.energy.ResourceEvent; |
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[1323] | 10 | import schedframe.resources.computing.profiles.energy.power.PState; |
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| 11 | import schedframe.resources.computing.profiles.energy.power.StandardPowerStateName; |
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| 12 | import schedframe.resources.devices.PhysicalResource; |
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| 13 | import schedframe.scheduling.manager.tasks.JobRegistry; |
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| 14 | import simulator.DataCenterWorkloadSimulator; |
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| 15 | import example.energy.BaseEnergyEstimationPlugin; |
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| 16 | import example.energy.coolemall.CoolEmAllTestbedMeasurements; |
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| 17 | import gridsim.dcworms.DCWormsTags; |
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| 18 | |
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| 19 | public class CB1PowerCappingEnergyEstimationPlugin extends BaseEnergyEstimationPlugin{ |
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| 20 | |
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| 21 | private int MAX_THRESHOLD = 1400; |
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| 22 | private int MIN_THRESHOLD = 1200; |
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| 23 | private double currentFrequencyLevel; |
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[1420] | 24 | public double estimatePowerConsumption(ResourceEvent event, JobRegistry jobRegistry, |
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[1323] | 25 | PhysicalResource resource) { |
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| 26 | |
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| 27 | double powerConsumption = 0; |
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| 28 | ComputeBox1 computeBox1 = (ComputeBox1)resource; |
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| 29 | for(NodeGroup ng:computeBox1.getNodesGroups()){ |
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| 30 | try{ |
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| 31 | powerConsumption = powerConsumption + ng.getPowerInterface().getRecentPowerUsage().getValue(); |
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| 32 | } catch (Exception e){ |
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| 33 | |
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| 34 | } |
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| 35 | } |
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| 36 | //System.out.println("rack"); |
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| 37 | int nrOfPoweredOffNodes = 0; |
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| 38 | for(Node node: computeBox1.getNodes()){ |
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| 39 | if(node.getPowerInterface().getPowerState().equals(StandardPowerStateName.OFF)){ |
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| 40 | nrOfPoweredOffNodes++; |
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| 41 | } |
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| 42 | } |
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| 43 | if(nrOfPoweredOffNodes != computeBox1.getNodes().size()){ |
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| 44 | powerConsumption = (powerConsumption + CoolEmAllTestbedMeasurements.OTHER_DEVICES_POWER_CONSUMPTION)/CoolEmAllTestbedMeasurements.POWER_SUPPLY_EFFICIENCY; |
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| 45 | } |
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| 46 | |
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| 47 | loadThresholds(resource); |
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| 48 | ///System.out.println(resource.getFullName() + " min: " + minValue); |
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| 49 | //System.out.println(resource.getFullName() + " max: " + maxValue); |
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| 50 | //System.out.println(resource.getFullName() + " current: " + powerConsumption); |
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| 51 | //System.out.println(event.getType().toString() + ";" + event.getTag() + ":" + event.getSource()); |
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| 52 | //System.out.println(CB2_FCFS_Random_SP.mode); |
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| 53 | if(powerConsumption > MAX_THRESHOLD && !CB2_FCFS_Random_SP.mode.equals(resource.getFullName())){ |
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| 54 | DataCenterWorkloadSimulator.getEventManager().sendToAllSchedulers(0, DCWormsTags.POWER_LIMIT_EXCEEDED, null); |
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| 55 | } |
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| 56 | else if(powerConsumption < MAX_THRESHOLD && !CB2_FCFS_Random_SP.mode.equals(resource.getFullName())){ |
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| 57 | DataCenterWorkloadSimulator.getEventManager().sendToAllSchedulers(0, DCWormsTags.POWER_LIMIT_EXCEEDED, null); |
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| 58 | } |
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| 59 | |
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| 60 | if(false){ |
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| 61 | |
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| 62 | List<Processor> processors = computeBox1.getProcessors(); |
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| 63 | currentFrequencyLevel = processors.get(0).getPowerInterface().getLowestPState().getFrequency(); |
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| 64 | |
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| 65 | boolean overThreshold = true; |
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| 66 | boolean canDoBetter = true; |
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| 67 | |
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| 68 | while(overThreshold && canDoBetter){ |
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| 69 | //System.out.println(compRes.getFullName() + " - downgrading"); |
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| 70 | int procNumberWithoutChange = 0; |
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| 71 | boolean improvement = false; |
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| 72 | //System.out.println(compRes.getFullName() + "; currentFrequencyLevel: " + currentFrequencyLevel); |
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| 73 | for (Processor proc: processors){ |
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| 74 | PState currPState = proc.getPowerInterface().getPState(); |
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| 75 | //System.out.println(proc.getFullName() + " - checking"); |
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| 76 | if(currPState.getFrequency() <= currentFrequencyLevel && proc.getFreeCores().size() != proc.getCores().size()){ |
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| 77 | //System.out.println("operating same level"); |
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| 78 | procNumberWithoutChange++; |
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| 79 | continue; |
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| 80 | } |
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| 81 | if (proc.getFreeCores().size() == proc.getCores().size()){ |
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| 82 | //System.out.println("free"); |
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| 83 | procNumberWithoutChange++; |
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| 84 | continue; |
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| 85 | } |
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| 86 | |
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| 87 | double lowerFrequency = proc.getPowerInterface().getHighestPState().getFrequency(); |
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| 88 | for(String pStateName: proc.getPowerInterface().getSupportedPStates().keySet()){ |
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| 89 | PState pState = proc.getPowerInterface().getSupportedPStates().get(pStateName); |
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| 90 | if(pState.getFrequency() > lowerFrequency && pState.getFrequency() < currPState.getFrequency()){ |
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| 91 | lowerFrequency = pState.getFrequency(); |
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| 92 | } |
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| 93 | } |
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| 94 | //System.out.println(proc.getFullName() + "; lower frequency: " + lowerFrequency); |
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| 95 | if(lowerFrequency < currentFrequencyLevel){ |
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| 96 | //System.out.println(compRes.getFullName() + " - changing current frequency level"); |
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| 97 | |
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| 98 | currentFrequencyLevel = lowerFrequency; |
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| 99 | } |
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| 100 | |
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| 101 | if(lowerFrequency != currPState.getFrequency()) { |
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| 102 | //System.out.println(proc.getFullName() + " - lowering frequency"); |
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| 103 | proc.getPowerInterface().setFrequency(lowerFrequency); |
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| 104 | improvement = true; |
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| 105 | } |
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| 106 | if(lowerFrequency == proc.getPowerInterface().getHighestPState().getFrequency()){ |
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| 107 | canDoBetter = false; |
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| 108 | } else { |
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| 109 | canDoBetter = true; |
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| 110 | } |
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| 111 | if(computeBox1.getPowerInterface().getRecentPowerUsage().getValue() <= MAX_THRESHOLD){ |
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| 112 | overThreshold = false; |
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| 113 | break; |
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| 114 | } |
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| 115 | } |
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| 116 | if(procNumberWithoutChange == processors.size() || improvement == false){ |
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| 117 | //System.out.println(compRes.getFullName() + " - failed to improve"); |
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| 118 | double nextFrequencyLevel = processors.get(0).getPowerInterface().getHighestPState().getFrequency(); |
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| 119 | for (Processor proc: processors){ |
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| 120 | for(String pStateName: proc.getPowerInterface().getSupportedPStates().keySet()){ |
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| 121 | PState pState = proc.getPowerInterface().getSupportedPStates().get(pStateName); |
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| 122 | if(pState.getFrequency() > nextFrequencyLevel && pState.getFrequency() < currentFrequencyLevel){ |
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| 123 | nextFrequencyLevel = pState.getFrequency(); |
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| 124 | } |
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| 125 | } |
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| 126 | } |
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| 127 | //System.out.println(compRes.getFullName() + "; nextFrequencyLevel: " + nextFrequencyLevel); |
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| 128 | currentFrequencyLevel = nextFrequencyLevel; |
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| 129 | if(currentFrequencyLevel == processors.get(0).getPowerInterface().getHighestPState().getFrequency()){ |
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| 130 | canDoBetter = false; |
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| 131 | } |
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| 132 | procNumberWithoutChange = 0; |
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| 133 | } |
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| 134 | } |
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| 135 | |
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| 136 | } else if (powerConsumption < MIN_THRESHOLD) { |
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| 137 | } |
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| 138 | |
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| 139 | return powerConsumption; |
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| 140 | } |
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| 141 | |
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| 142 | private void loadThresholds(PhysicalResource resource){ |
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| 143 | String productName = resource.getResourceCharacteristic().getParameters().get("product").get(0).getContent(); |
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| 144 | if(productName.equals("HS20")){ |
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| 145 | MAX_THRESHOLD = PowerCapLevels.HS20_MAX; |
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| 146 | MIN_THRESHOLD = PowerCapLevels.HS20_MIN; |
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| 147 | } else if (productName.equals("IBM 305x COMPxxx")){ |
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| 148 | MAX_THRESHOLD = PowerCapLevels.IBM_305x_MAX; |
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| 149 | MIN_THRESHOLD = PowerCapLevels.IBM_305x_MIN; |
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| 150 | } else if (productName.equals("iDataPlex M2 NRN20xxx")){ |
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| 151 | MAX_THRESHOLD = PowerCapLevels.iDataPlex_M2_MAX; |
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| 152 | MIN_THRESHOLD = PowerCapLevels.iDataPlex_M2_MIN; |
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| 153 | } else if (productName.equals("RenderCloud SDR31xxx")){ |
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| 154 | MAX_THRESHOLD = PowerCapLevels.RenderCloud_MAX; |
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| 155 | MIN_THRESHOLD = PowerCapLevels.RenderCloud_MIN; |
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| 156 | } else if (productName.equals("iDataPlex M3 NRN17xxx")){ |
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| 157 | MAX_THRESHOLD = PowerCapLevels.iDataPlex_M3_MAX; |
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| 158 | MIN_THRESHOLD = PowerCapLevels.iDataPlex_M3_MIN; |
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| 159 | } |
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| 160 | } |
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| 161 | } |
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