1 | #include "HeadersFTM.h"
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2 |
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3 | #include <string.h>
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4 |
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5 | #include <iomanip>
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6 |
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7 | #include "Converter.h"
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8 |
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9 | using namespace std;
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10 |
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11 | void FTM::Header::print(std::ostream &out) const
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12 | {
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13 | out << "State=" << std::dec << (fState&kFtmStates);
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14 | switch (fState&kFtmStates)
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15 | {
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16 | case kFtmIdle: out << " [idle]"; break;
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17 | case kFtmConfig: out << " [config]"; break;
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18 | case kFtmRunning: out << " [running]"; break;
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19 | case kFtmCalib: out << " [calib]"; break;
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20 | }
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21 |
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22 | out << " Type=" << fType;
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23 | switch (fType)
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24 | {
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25 | case kHeader: out << " [header]"; break;
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26 | case kStaticData: out << " [static]"; break;
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27 | case kDynamicData: out << " [dynamic]"; break;
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28 | case kFtuList: out << " [ftulist]"; break;
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29 | case kErrorList: out << " [errorlist]"; break;
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30 | case kRegister: out << " [register]"; break;
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31 | }
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32 |
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33 | out << " (len=" << fDataSize << ")";
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34 | out << " Id=0x" << std::hex << fBoardId;
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35 | out << " FW=" << fFirmwareId;
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36 | out << " TriggerCounter=" << std::dec << fTriggerCounter;
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37 | out << " TimeStamp=" << fTimeStamp;
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38 | if (fState&kFtmLocked)
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39 | out << " [locked]";
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40 | else
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41 | out << " [unlocked]";
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42 | out << std::endl;
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43 | }
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44 |
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45 | void FTM::FtuResponse::print(std::ostream &out) const
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46 | {
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47 | out << std::hex << "Pings=" << ((fPingAddr>>8)&0x3);
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48 | out << " Addr=" << std::setw(2) << (fPingAddr&0x1f);
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49 | out << " DNA=" << std::setw(16) << fDNA;
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50 | out << " ErrorCounter=" << std::dec << fErrorCounter << std::endl;
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51 | }
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52 |
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53 | void FTM::FtuList::print(std::ostream &out) const
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54 | {
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55 | out << "Number of boards responded: " << std::dec << fNumBoards << " (";
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56 | out << fNumBoardsCrate[0] << ", ";
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57 | out << fNumBoardsCrate[1] << ", ";
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58 | out << fNumBoardsCrate[2] << ", ";
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59 | out << fNumBoardsCrate[3] << ")" << std::endl;
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60 | out << "Active boards: " << std::hex;
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61 | out << std::setfill('0');
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62 | out << std::setw(4) << fActiveFTU[0];
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63 | out << std::setw(4) << fActiveFTU[1];
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64 | out << std::setw(4) << fActiveFTU[2];
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65 | out << std::setw(4) << fActiveFTU[3] << std::dec << std::endl;
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66 | for (int c=0; c<4; c++)
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67 | for (int b=0; b<10; b++)
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68 | {
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69 | out << ' ' << c << ':' << std::setfill('0') << std::setw(2) << b << ": ";
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70 | out << fFTU[c][b];
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71 | }
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72 | }
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73 |
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74 | void FTM::DynamicDataBoard::print(std::ostream &out) const
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75 | {
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76 | out << "Rate=" << std::setw(5) << fRateTotal << " (";
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77 | out << std::setw(5) << fRatePatch[0] << ", ";
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78 | out << std::setw(5) << fRatePatch[1] << ", ";
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79 | out << std::setw(5) << fRatePatch[2] << ", ";
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80 | out << std::setw(5) << fRatePatch[3] << ") ";
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81 | out << "Overflow=" << fOverflow << " ";
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82 | out << "CrcError=" << fCrcError << std::endl;
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83 | }
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84 |
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85 | void FTM::DynamicData::print(std::ostream &out) const
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86 | {
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87 | out << "OnTime=" << std::dec << fOnTimeCounter << " ";
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88 | out << "Temp=(";
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89 | out << fTempSensor[0] << ",";
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90 | out << fTempSensor[1] << ",";
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91 | out << fTempSensor[2] << ",";
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92 | out << fTempSensor[3] << ")" << std::endl;
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93 |
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94 | for (int c=0; c<4; c++)
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95 | for (int b=0; b<10; b++)
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96 | {
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97 | out << ' ' << c << ':' << std::setfill('0') << std::setw(2) << b << ": ";
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98 | out << fBoard[c][b];
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99 | }
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100 | }
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101 |
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102 | void FTM::StaticDataBoard::print(std::ostream &out) const
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103 | {
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104 | out << "Enable=( " << std::hex;
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105 | for (int i=0; i<4; i++)
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106 | out << std::setw(4) << fEnable[i] << " ";
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107 | out << ") " << std::dec;
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108 |
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109 | out << "DAC A=" << fDAC[0] << " ";
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110 | out << "B=" << fDAC[1] << " ";
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111 | out << "C=" << fDAC[2] << " ";
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112 | out << "D=" << fDAC[3] << " ";
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113 | out << "H=" << fDAC[4] << " ";
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114 |
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115 | out << "Prescaling=" << fPrescaling << endl;
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116 | }
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117 |
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118 | void FTM::StaticData::print(std::ostream &out) const
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119 | {
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120 | out << std::hex;
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121 | out << "General settings: ";
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122 | if (IsEnabled(kTrigger))
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123 | out << " Trigger";
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124 | if (IsEnabled(kPedestal))
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125 | out << " Pedestal";
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126 | if (IsEnabled(kLPint))
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127 | out << " LPint";
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128 | if (IsEnabled(kLPext))
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129 | out << " LPext";
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130 | if (IsEnabled(kExt1))
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131 | out << " Ext1";
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132 | if (IsEnabled(kExt2))
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133 | out << " Ext2";
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134 | if (IsEnabled(kVeto))
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135 | out << " Veto";
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136 | if (IsEnabled(kClockConditioner))
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137 | out << " ClockCond";
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138 | out << " (" << fGeneralSettings << ")" << endl;
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139 | out << "Status LEDs: " << fStatusLEDs << endl;
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140 | out << std::dec;
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141 | out << "TriggerInterval: " << fTriggerInterval << " ms" << endl;
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142 | out << "TriggerSequence: ";
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143 | out << (fTriggerSequence &0x1f) << ":";
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144 | out << ((fTriggerSequence>> 5)&0x1f) << ":";
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145 | out << ((fTriggerSequence>>10)&0x1f) << " (LPint:LPext:PED)" << endl;
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146 | out << "Coinc. physics: " << std::setw(2) << fMultiplicityPhysics << "/N ";
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147 | out << fWindowPhysics*4+8 << "ns" << endl;
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148 | out << "Coinc. calib: " << std::setw(2) << fMultiplicityCalib << "/N ";
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149 | out << fWindowCalib*4+8 << "ns" << endl;
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150 | out << "Trigger delay: " << fDelayTrigger*4+8 << "ns" << endl;
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151 | out << "Time marker delay: " << fDelayTimeMarker*4+8 << "ns" << endl;
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152 | out << "Dead time: " << fDeadTime*4+8 << "ns" << endl;
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153 | out << "Light pulser (int): " << dec << (int)fIntensityLPint;
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154 | if (fEnableLPint&kGroup1)
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155 | out << " + Group1";
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156 | if (fEnableLPint&kGroup2)
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157 | out << " + Group2";
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158 | out << endl;
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159 | out << "Light pulser (ext): " << dec << (int)fIntensityLPext;
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160 | if (fEnableLPext&kGroup1)
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161 | out << " + Group1";
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162 | if (fEnableLPext&kGroup2)
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163 | out << " + Group2";
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164 | out << endl;
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165 | out << "Clock conditioner:";
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166 | out << std::hex << setfill('0');
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167 | for (int i=0; i<8; i++)
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168 | out << " " << setw(8) << fClockConditioner[i];
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169 | out << endl;
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170 | out << "Active FTUs: ";
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171 | out << fActiveFTU[0] << " ";
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172 | out << fActiveFTU[1] << " ";
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173 | out << fActiveFTU[2] << " ";
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174 | out << fActiveFTU[3] << endl;
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175 | out << std::dec;
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176 |
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177 | for (int c=0; c<4; c++)
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178 | for (int b=0; b<10; b++)
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179 | {
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180 | out << ' ' << c << ':' << std::setfill('0') << std::setw(2) << b << ": ";
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181 | out << fBoard[c][b];
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182 | }
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183 | }
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184 |
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185 | void FTM::Error::print(std::ostream &out) const
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186 | {
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187 | out << dec;
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188 | out << "ERROR: Num Calls = " << fNumCalls;
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189 | if (fNumCalls==0)
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190 | out << " (too many)";
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191 | out << endl;
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192 | out << " Delimiter = " << (fDelimiter=='@'?"ok":"wrong") << endl;
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193 | out << " Path = ";
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194 | if (fSrcAddress==0xc0)
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195 | out << "FTM(192)";
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196 | else
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197 | out << "FTU(" << (fSrcAddress &0x3) << ":" << (fSrcAddress >>2) << ")";
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198 | out << " --> ";
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199 | if (fDestAddress==0xc0)
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200 | out << "FTM(192)";
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201 | else
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202 | out << "FTU(" << (fDestAddress&0x3) << ":" << (fDestAddress>>2) << ")";
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203 | out << endl;
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204 | out << " FirmwareId = " << hex << fFirmwareId << endl;
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205 | out << " Command = " << hex << fCommand << endl;
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206 | out << " CRC counter = " << dec << fCrcErrorCounter << endl;
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207 | out << " CRC = " << hex << fCrcCheckSum << endl;
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208 | out << " Data: " << Converter::GetHex<unsigned short>(fData, 0, false) << endl;
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209 | }
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