| 1 | /********************************************************************\
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| 2 |
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| 3 | HVFeedback.cc
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| 4 |
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| 5 | Class handling the feedback of GAPD high voltage
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| 6 |
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| 7 | Oliver Grimm
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| 8 |
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| 9 | \********************************************************************/
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| 10 |
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| 11 | #include "HVFeedback.h"
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| 12 | #include "PixelMap.h"
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| 13 |
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| 14 | #define PIXMAP_LOCATION "../config/PixelMap.txt"
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| 15 |
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| 16 | static const char* FBState_Description[] = {
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| 17 | "Feedback off",
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| 18 | "Feedback active",
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| 19 | "Feedback acquiring new targets",
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| 20 | "Feedback measuring response with first voltage",
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| 21 | "Feedback measuring response with second voltage"
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| 22 | };
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| 23 |
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| 24 | //
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| 25 | // Constructor: Initialise feedback
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| 26 | //
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| 27 | HVFeedback::HVFeedback(DAQReadout* DAQClass){//:
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| 28 | //EvidenceServer(SERVER_NAME){
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| 29 |
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| 30 | m = DAQClass;
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| 31 |
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| 32 | fNumberOfChannels = m->GetBoard(0)->GetNumberOfChannels();
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| 33 | fNumberOfChips = m->GetBoard(0)->GetNumberOfChips();
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| 34 |
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| 35 | PixMap = new PixelMap(PIXMAP_LOCATION, false);
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| 36 |
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| 37 | // Initialise with zero content
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| 38 | Average = new float [m->NumBoards][kNumberOfChipsMax][kNumberOfChannelsMax]();
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| 39 | Sigma = new float [m->NumBoards][kNumberOfChipsMax][kNumberOfChannelsMax]();
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| 40 | Response = new float [m->NumBoards][kNumberOfChipsMax][kNumberOfChannelsMax]();
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| 41 | Target = new float [m->NumBoards][kNumberOfChipsMax][kNumberOfChannelsMax]();
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| 42 | Buffer = new float [m->NumBoards][kNumberOfChipsMax][kNumberOfChannelsMax]();
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| 43 |
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| 44 | DIMAverage = new float [m->NumBoards][kNumberOfChipsMax][kNumberOfChannelsMax]();
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| 45 | DIMSigma = new float [m->NumBoards][kNumberOfChipsMax][kNumberOfChannelsMax]();
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| 46 |
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| 47 | // Get configuration data
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| 48 | fLedTrigBoard = atoi(m->GetConfig("TrigBoard"));
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| 49 | fLedTrigChannel = atoi(m->GetConfig("TrigChannel"));
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| 50 | fLedTrigChip = atoi(m->GetConfig("TrigChip"));
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| 51 | fLedTrigSample = atoi(m->GetConfig("TrigSample"));
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| 52 | fLedTrigThreshold = atoi(m->GetConfig("TrigThreshold"));
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| 53 | fLedSignalSample = atoi(m->GetConfig("SignalSample"));
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| 54 | fLedBaselineSample = atoi(m->GetConfig("BaselineSample"));
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| 55 | fIntHalfWidth = atoi(m->GetConfig("IntHalfWidth"));
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| 56 | fDefaultNumAverage = atoi(m->GetConfig("DefaultNumAverage"));
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| 57 |
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| 58 | char *Token = strtok(m->GetConfig("DefaultResponse"), " \t");
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| 59 | for (int i=0; i<m->NumBoards*fNumberOfChips*fNumberOfChannels; i++) {
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| 60 | if (Token == NULL) break;
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| 61 | *(&Response[0][0][0]+i) = (float) atof(Token);
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| 62 | Token = strtok(NULL, " \t");
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| 63 | }
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| 64 | Token = strtok(m->GetConfig("DefaultTarget"), " \t");
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| 65 | for (int i=0; i<m->NumBoards*fNumberOfChips*fNumberOfChannels; i++) {
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| 66 | if (Token == NULL) break;
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| 67 | *(&Target[0][0][0]+i) = (float) atof(Token);
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| 68 | Token = strtok(NULL, " \t");
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| 69 | }
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| 70 |
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| 71 | PrintConfig(MsgToLog);
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| 72 |
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| 73 | // Provide DIM services
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| 74 | FeedbackAverage = new DimService (SERVER_NAME"/Average", "F", DIMAverage, m->NumBoards*kNumberOfChipsMax*kNumberOfChannelsMax*sizeof(float));
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| 75 | FeedbackSigma = new DimService (SERVER_NAME"/Sigma", "F", DIMSigma, m->NumBoards*kNumberOfChipsMax*kNumberOfChannelsMax*sizeof(float));
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| 76 | FeedbackResponse = new DimService (SERVER_NAME"/Response", "F", Response, m->NumBoards*kNumberOfChipsMax*kNumberOfChannelsMax*sizeof(float));
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| 77 | FeedbackTarget = new DimService (SERVER_NAME"/Target", "F", Target, m->NumBoards*kNumberOfChipsMax*kNumberOfChannelsMax*sizeof(float));
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| 78 | CountService = new DimService (SERVER_NAME"/Count", Count);
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| 79 |
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| 80 | // Initial state
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| 81 | Gain = atof(m->GetConfig("DefaultGain"));printf("Gain %d\n", Gain);
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| 82 | SetFBMode(FB_Off);
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| 83 | SetNumAverages(fDefaultNumAverage);
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| 84 | LastServiceUpdate = 0;
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| 85 | }
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| 86 |
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| 87 | //
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| 88 | // Destructor
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| 89 | //
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| 90 | HVFeedback::~HVFeedback() {
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| 91 |
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| 92 | delete CountService;
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| 93 | delete FeedbackAverage;
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| 94 | delete FeedbackSigma;
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| 95 | delete FeedbackResponse;
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| 96 | delete FeedbackTarget;
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| 97 |
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| 98 | delete[] Average; delete[] Response;
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| 99 | delete[] DIMAverage; delete[] DIMSigma;
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| 100 | delete[] Sigma;
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| 101 | delete[] Target; delete[] Buffer;
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| 102 | delete PixMap;
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| 103 | }
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| 104 |
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| 105 | //
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| 106 | // Check if LED trigger present, if yes accumulate feedback data and
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| 107 | // calculate new high voltages if the required number of events is reached.
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| 108 | //
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| 109 | bool HVFeedback::ProcessEvent() {
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| 110 | int i,j,k,q;
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| 111 | float Correction, Integral;
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| 112 |
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| 113 | // Check for LED trigger channel on given channel and if feedback running
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| 114 | if (FBMode==FB_Off || m->WaveForm[fLedTrigBoard][fLedTrigChip][fLedTrigChannel][fLedTrigSample] < fLedTrigThreshold) {
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| 115 | return false;
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| 116 | }
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| 117 |
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| 118 | // Calculate average signal of LED pulse as integral of signal
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| 119 | for (i=m->FirstBoard; i<=m->LastBoard; i++) {
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| 120 | for (j=0; j<fNumberOfChips; j++) {
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| 121 | for (k=0; k<fNumberOfChannels; k++) {
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| 122 | for (Integral=0, q=-fIntHalfWidth; q<=(int) fIntHalfWidth; q++) {
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| 123 | Integral += (m->WaveForm[i][j][k][fLedSignalSample+q] - m->WaveForm[i][j][k][fLedBaselineSample+q])*m->GetBoard(i)->GetPrecision();
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| 124 | }
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| 125 | Integral /= 2*fIntHalfWidth+1;
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| 126 | Average[i][j][k] += Integral;
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| 127 | Sigma[i][j][k] += pow(Integral,2);
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| 128 | }
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| 129 | }
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| 130 | }
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| 131 |
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| 132 | // Update DIM service regularly
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| 133 | if (time(NULL)-LastServiceUpdate > 2) {
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| 134 | LastServiceUpdate = time(NULL);
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| 135 | CountService->updateService();
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| 136 | }
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| 137 | // Check if acquired number of event requires action
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| 138 | if (++Count<NumAverages) return false;
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| 139 |
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| 140 | // Feedback action
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| 141 | for (i=m->FirstBoard; i<=m->LastBoard; i++) {
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| 142 | for (j=0; j<fNumberOfChips; j++) {
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| 143 | for (k=0; k<fNumberOfChannels; k++) {
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| 144 | // Calculate average
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| 145 | Average[i][j][k] /= Count;
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| 146 | Sigma[i][j][k] = sqrt(Sigma[i][j][k]/Count-pow(Average[i][j][k],2))/sqrt(Count);
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| 147 | DIMAverage[i][j][k] = Average[i][j][k];
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| 148 | DIMSigma[i][j][k] = Sigma[i][j][k];
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| 149 |
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| 150 | switch (FBMode) {
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| 151 | case FB_Active: // Determine correction from response maxtrix and change voltages
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| 152 | Correction = -(Target[i][j][k] - Average[i][j][k])*Response[i][j][k]*Gain;
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| 153 | if (fabs(Correction) > 0.1) Correction = fabs(Correction)/Correction*0.1; // Limit changes to 100 mV
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| 154 | if(Correction==0 || Target[i][j][k]==0 || PixMap->DRS_to_Pixel(i,j,k).empty()) break;
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| 155 | printf("Average of board %d, chip %d, channel %d is %.2f +/- %.2f Correction %.3f\n",i,j,k,Average[i][j][k],Sigma[i][j][k],Correction);
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| 156 |
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| 157 | if(fabs(Average[i][j][k]) < 2*Sigma[i][j][k]) printf("Too noisy!\n");
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| 158 | else WriteHVCommand("hv %s %+f\n",PixMap->DRS_to_Pixel(i,j,k).c_str(), Correction);
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| 159 |
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| 160 | break;
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| 161 |
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| 162 | case FB_Targets: // Take average as new targets
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| 163 | Target[i][j][k] = Average[i][j][k];
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| 164 | break;
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| 165 |
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| 166 | case FB_ResponseFirst: // First point of response measurement done
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| 167 | Buffer[i][j][k] = Average[i][j][k];
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| 168 | if(!PixMap->DRS_to_Pixel(i,j,k).empty()) WriteHVCommand("hv %s %+f",PixMap->DRS_to_Pixel(i,j,k).c_str(), DiffVoltage);
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| 169 | break;
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| 170 |
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| 171 | case FB_ResponseSecond: // Determine response from signal variation
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| 172 | if(Buffer[i][j][k] == Average[i][j][k]) {
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| 173 | m->PrintMessage("HV Feedback: Warning, response singular for board %d, chip %d, channel %d.\n",i,j,k);
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| 174 | Response[i][j][k] = 0;
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| 175 | }
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| 176 | else Response[i][j][k] = DiffVoltage/(Buffer[i][j][k]-Average[i][j][k]);
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| 177 | if(!PixMap->DRS_to_Pixel(i,j,k).empty()) WriteHVCommand("hv %s %+f",PixMap->DRS_to_Pixel(i,j,k).c_str(), -DiffVoltage/2);
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| 178 | break;
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| 179 |
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| 180 | default: break; // to suppress warning abount not handled enumeration value
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| 181 | }
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| 182 | } // for() channels
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| 183 | } // for() chips
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| 184 | } // for() boards
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| 185 |
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| 186 | // Update DIM service
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| 187 | FeedbackAverage->updateService();
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| 188 | FeedbackSigma->updateService();
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| 189 |
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| 190 | switch (FBMode) {
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| 191 | case FB_Targets:
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| 192 | FeedbackTarget->updateService();
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| 193 | m->PrintMessage("HV Feedback: New targets set, switching off.\n");
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| 194 | SetFBMode(FB_Off, true);
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| 195 | break;
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| 196 | case FB_ResponseFirst:
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| 197 | SetFBMode(FB_ResponseSecond, true);
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| 198 | m->PrintMessage("HV Feedback: Increasing voltages by %f for response measurement, acquiring data.\n", DiffVoltage);
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| 199 | break;
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| 200 | case FB_ResponseSecond:
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| 201 | FeedbackResponse->updateService();
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| 202 | m->PrintMessage("HV Feedback: Response measurements finished, original voltages set, switching off.\n");
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| 203 | SetFBMode(FB_Off, true);
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| 204 | break;
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| 205 | default: break; // to suppress warning abount not handled enumeration value
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| 206 | }
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| 207 | ClearAverages();
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| 208 |
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| 209 | return true;
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| 210 | }
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| 211 |
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| 212 | //
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| 213 | // Clear average values and event counter
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| 214 | //
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| 215 | void HVFeedback::ClearAverages() {
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| 216 | for (int i=m->FirstBoard; i<=m->LastBoard; i++)
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| 217 | for (int j=0; j<fNumberOfChips; j++)
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| 218 | for (int k=0; k<fNumberOfChannels; k++) {
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| 219 | Average[i][j][k] = 0.0;
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| 220 | Sigma[i][j][k] = 0.0;
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| 221 | }
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| 222 | Count = 0;
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| 223 | CountService->updateService();
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| 224 | }
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| 225 |
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| 226 | //
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| 227 | // Number of events to accumulate before correction acts
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| 228 | //
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| 229 | void HVFeedback::SetNumAverages(unsigned int Averages) {
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| 230 | NumAverages = Averages;
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| 231 | }
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| 232 |
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| 233 | //
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| 234 | // Get requested number of events
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| 235 | //
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| 236 | unsigned int HVFeedback::GetNumAverages() {
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| 237 | return NumAverages;
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| 238 | }
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| 239 |
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| 240 | //
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| 241 | // Set feedback gain
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| 242 | //
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| 243 | void HVFeedback::SetGain(float FBGain) {
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| 244 | Gain = FBGain;
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| 245 | }
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| 246 |
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| 247 | //
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| 248 | // Get feedback gain
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| 249 | //
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| 250 | float HVFeedback::GetGain() {
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| 251 | return Gain;
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| 252 | }
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| 253 |
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| 254 | //
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| 255 | // Set feedback mode and clear averages
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| 256 | //
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| 257 | void HVFeedback::SetFBMode(FBState Mode, bool Internal) {
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| 258 | if((Mode==FB_ResponseFirst || Mode==FB_ResponseFirst) && !Internal)
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| 259 | m->PrintMessage("Start reponse measurement by calling MeasureResponse().\n");
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| 260 | else {
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| 261 | FBMode = Mode;
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| 262 | if (Mode != FB_ResponseFirst) m->State(m->INFO, "%s", FBState_Description[FBMode]);
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| 263 | else m->State(m->INFO, "%s (voltage difference %.3f)", FBState_Description[FBMode], DiffVoltage);
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| 264 | ClearAverages();
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| 265 | }
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| 266 | }
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| 267 |
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| 268 | //
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| 269 | // Get feedback mode
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| 270 | //
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| 271 | FBState HVFeedback::GetFBMode() {
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| 272 |
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| 273 | m->PrintMessage("%s.\n", FBState_Description[FBMode]);
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| 274 | return FBMode;
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| 275 | }
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| 276 |
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| 277 | //
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| 278 | // Return current number of events
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| 279 | //
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| 280 | unsigned int HVFeedback::GetCurrentCount() {
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| 281 | return Count;
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| 282 | }
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| 283 |
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| 284 | //
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| 285 | // Set target values
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| 286 | //
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| 287 | void HVFeedback::SetTarget(int Board, int Chip, int Channel, float TargetVal) {
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| 288 |
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| 289 | if(Board<m->NumBoards && Chip<fNumberOfChips && Channel<fNumberOfChannels) {
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| 290 | Target[Board][Chip][Channel] = TargetVal;
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| 291 | FeedbackTarget->updateService();
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| 292 | }
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| 293 | else printf("Invalid board, chip or channel number.\n");
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| 294 | }
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| 295 |
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| 296 | //
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| 297 | // Print target values
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| 298 | //
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| 299 | void HVFeedback::GetTargets() {
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| 300 | for (int i=m->FirstBoard; i<=m->LastBoard; i++)
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| 301 | for (int j=0; j<fNumberOfChips; j++) {
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| 302 | m->PrintMessage("Board %d, chip %d:",i,j);
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| 303 | for (int k=0; k<fNumberOfChannels; k++) m->PrintMessage(" %.2f",Target[i][j][k]);
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| 304 | m->PrintMessage("\n\r");
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| 305 | }
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| 306 | }
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| 307 |
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| 308 | //
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| 309 | // Measure response matrix
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| 310 | //
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| 311 | void HVFeedback::MeasureResponse(float U) {
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| 312 |
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| 313 | if (U==0) {
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| 314 | m->PrintMessage("HV Feedback: Error, voltage difference must not non-zero.\n");
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| 315 | return;
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| 316 | }
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| 317 |
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| 318 | for (int i=m->FirstBoard; i<=m->LastBoard; i++)
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| 319 | for (int j=0; j<fNumberOfChips; j++)
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| 320 | for (int k=0; k<fNumberOfChannels; k++) {
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| 321 | if(!PixMap->DRS_to_Pixel(i,j,k).empty()) {
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| 322 | WriteHVCommand("hv %s %+f\n",PixMap->DRS_to_Pixel(i,j,k).c_str(), -U/2);
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| 323 | }
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| 324 | }
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| 325 | DiffVoltage = U;
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| 326 | SetFBMode(FB_ResponseFirst, true);
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| 327 | m->PrintMessage("HV Feedback: Decreasing voltages by %f for response measurement, acquiring data.\n",DiffVoltage/2);
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| 328 | }
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| 329 |
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| 330 | //
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| 331 | // Print response values
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| 332 | //
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| 333 | void HVFeedback::GetResponse() {
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| 334 | for (int i=m->FirstBoard; i<=m->LastBoard; i++) {
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| 335 | for (int j=0; j<fNumberOfChips; j++) {
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| 336 | m->PrintMessage("Board %d, chip %d:",i,j);
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| 337 | for (int k=0; k<fNumberOfChannels; k++) m->PrintMessage(" %.3f",Response[i][j][k]);
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| 338 | m->PrintMessage("\n\r");
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| 339 | }
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| 340 | }
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| 341 | }
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| 342 |
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| 343 | //
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| 344 | // Write bias voltage commmand
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| 345 | //
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| 346 | bool HVFeedback::WriteHVCommand(const char *Format, ...) {
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| 347 |
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| 348 | char Textbuffer[MAX_COM_SIZE];
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| 349 |
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| 350 | va_list ArgumentPointer; va_start(ArgumentPointer, Format);
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| 351 | vsnprintf(Textbuffer, sizeof(Textbuffer), Format, ArgumentPointer);
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| 352 |
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| 353 | DimClient::sendCommand("Bias/Command", Textbuffer);
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| 354 | return true;
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| 355 | }
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| 356 |
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| 357 | //
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| 358 | // Print feedback configuration
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| 359 | //
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| 360 | void HVFeedback::PrintConfig(int Target) {
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| 361 |
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| 362 | m->PrintMessage(Target, "LedTrigBoard: %d\t\tLedTrigChip: %d\t\tLedTrigChannel: %d\n"
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| 363 | "LedTrigSample: %d\tLedTrigThreshold: %.2f\n"
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| 364 | "LedSignalSample: %d\tLedBaselineSample: %d\tDefaultNumAverage: %d\n"
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| 365 | "IntHalfWidth:%u\n",
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| 366 | fLedTrigBoard, fLedTrigChip, fLedTrigChannel, fLedTrigSample,
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| 367 | fLedTrigThreshold, fLedSignalSample, fLedBaselineSample,
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| 368 | fDefaultNumAverage, fIntHalfWidth);
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| 369 | }
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