2026-03-20 21:16:58 +08:00
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#include "../main/SystemInclude.h"
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static s16 GasAnalysisCNT;
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u16 ATypeNode[CURVE_DATA_MAX], ATypeVal[CURVE_DATA_MAX], curveATypeNum;
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bool isCurrentGas;
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/******************************************************************************/
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void GasAnalysisParameterInit(void)
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{
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2026-03-20 21:19:53 +08:00
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airFactor = (u16)ReadShortParameterFromMemory(AIR_FACTOR, AIR_FACTOR_DEFAULT);
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factorVth = (u16)ReadShortParameterFromMemory(FACTOR_VTH, 1000);
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2026-03-20 21:16:58 +08:00
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//------------------------------------------------------------------------------
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#ifndef ENABLE_GAS_RECOGNITION_TABLE
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#pragma message("[undefined] ENABLE_GAS_RECOGNITION_TABLE")
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#elif(ENABLE_GAS_RECOGNITION_TABLE)
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ReadVHHCurveFromMemory();
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#endif
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//------------------------------------------------------------------------------
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#ifndef ENABLE_DENSITY_DETECT
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#pragma message("[undefined] ENABLE_DENSITY_DETECT")
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#elif(ENABLE_DENSITY_DETECT)
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2026-03-20 21:19:53 +08:00
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// densityFSParameter = (u16)ReadParameterFromMemory(DENSITY_FS_PARA, DENSITY_FS_PARA_WIDTH, DENSITY_FS_PARA_DEFAULT);
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2026-03-20 21:16:58 +08:00
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#endif
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}
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/******************************************************************************/
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2026-03-20 21:19:53 +08:00
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u16 ComputeZeroVHH(void)
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2026-03-20 21:16:58 +08:00
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{
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2026-03-20 21:19:53 +08:00
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tmpSLA = (u32)voltageDetected[RRRES];
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tmpSLA -= (u32)RRRoom;
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2026-03-20 21:16:58 +08:00
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2026-03-20 21:19:53 +08:00
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tmpSLB = (u32)VHHHigh;
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tmpSLB -= (u32)VHHLow;
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2026-03-20 21:16:58 +08:00
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tmpSLA *= tmpSLB;
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2026-03-20 21:19:53 +08:00
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tmpSLB = (u32)RRHigh;
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tmpSLB -= (u32)RRLow;
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2026-03-20 21:16:58 +08:00
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tmpSLA /= tmpSLB;
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2026-03-20 21:19:53 +08:00
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tmpSLA += (u32)VHHRoom;
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2026-03-20 21:16:58 +08:00
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2026-03-20 21:19:53 +08:00
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return (u16)tmpSLA;
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2026-03-20 21:16:58 +08:00
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}
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/******************************************************************************/
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bool GasAnasisOneTime(void)
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{
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2026-03-20 21:19:53 +08:00
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s16 valueTemp;
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2026-03-20 21:16:58 +08:00
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2026-03-20 21:19:53 +08:00
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valueTemp = (s16)(voltageDetected[VHPA] - airFactor);
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if(abs(valueTemp) < factorVth) return 1;
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else return 0;
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2026-03-20 21:16:58 +08:00
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}
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/******************************************************************************/
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void GasAnasisCompute(void)//
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{
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//===========================================================================
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voltageDetected[CVHHX] = ComputeZeroVHH();
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voltageDetected[DVHHX] = WordSubFunction(voltageDetected[IVHDX], voltageDetected[CVHHX]);
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//===========================================================================
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#ifndef ENABLE_GAS_RECOGNITION_TABLE
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#pragma message("[undefined] ENABLE_GAS_RECOGNITION_TABLE")
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#elif(ENABLE_GAS_RECOGNITION_TABLE)
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voltageDetected[VHPA] = FindVHHInCalibCurve(voltageDetected[RGIDX]);
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#else
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2026-03-20 21:19:53 +08:00
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voltageDetected[VHPA] = (u16)GetFlowRate(voltageDetected[REG_INDEX], ATYPE_VH);
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2026-03-20 21:16:58 +08:00
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#endif
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voltageDetected[VHPA] = WordSubFunction(voltageDetected[DVHHX], voltageDetected[VHPA]);
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voltageDetected[VHPA] = MovingAverage(voltageDetected[VHPA], 5, VHPA);
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VHHParameter = voltageDetected[VHPA];
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if((VHHParameter < 32780) & (VHHParameter > 32700)) //32700-32780
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{
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GasAnalysisCNT--;
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return;
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}
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//===========================================================================
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if(GasAnasisOneTime()) GasAnalysisCNT--;
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else GasAnalysisCNT++;
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if(GasAnalysisCNT > 3)
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{
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systemAlarm.Bit.GasChange = 1; //<2F><><EFBFBD>ʸı<CAB8>
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GasAnalysisCNT = 0;
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}
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else if(GasAnalysisCNT < -3)
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{
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systemAlarm.Bit.GasChange = 0;
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GasAnalysisCNT = 0;
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}
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}
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/******************************************************************************/
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void ReadVHHCurveFromMemory(void)
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{
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2026-03-20 21:19:53 +08:00
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u16 I;
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2026-03-20 21:16:58 +08:00
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2026-03-20 21:19:53 +08:00
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curveATypeNum = ReadShortParameterFromMemory(ATYPECURVE_NUM, ATYPECURVE_NUM_DEFAULT);
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2026-03-20 21:16:58 +08:00
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for(I=0; I<curveATypeNum; I++)
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{
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ReadMultiByteFromEEPROM(ATYPECURVE_DATA_BASE + I * ATYPECURVE_DATA_WIDTH, tempDev.Byte, ATYPECURVE_DATA_WIDTH, PARA_EEPROM);
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if(tempDev.Byte[ATYPECURVE_DATA_CRC] == CRC8(tempDev.Byte, ATYPECURVE_DATA_CRC))
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{
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tempDev.Byte[ATYPECURVE_DATA_CRC] = 0;
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ATypeNode[I] = tempDev.Word[1];
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ATypeVal[I] = tempDev.Word[0];
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}
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else
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{
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ATypeVal[I] = 0;
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ATypeVal[I] = 0;
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}
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}
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}
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/******************************************************************************/
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2026-03-20 21:19:53 +08:00
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u16 FindVHHInCalibCurve(u16 calibIndex)
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2026-03-20 21:16:58 +08:00
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{
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2026-03-20 21:19:53 +08:00
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u16 I;
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2026-03-20 21:16:58 +08:00
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if((curveATypeNum < 3) || (curveATypeNum > CURVE_DATA_MAX))
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{
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return 0;
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}
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//----------------------------------------------------------------------------
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if(calibIndex > 32767) calibIndex = 0;
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//----------------------------------------------------------------------------
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for(I = 0; I < curveATypeNum - 1; I++)
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{
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2026-03-20 21:19:53 +08:00
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if(ATypeNode[I] > 32767) continue;
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2026-03-20 21:16:58 +08:00
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if(ATypeNode[I] > calibIndex) break;
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}
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//----------------------------------------------------------------------------
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if(I == 0) return ATypeVal[0];
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//----------------------------------------------------------------------------
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Secondary.NodeX = calibIndex;
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2026-03-20 21:19:53 +08:00
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if(ATypeNode[I] > 32767) Secondary.NodeH = 0;
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else Secondary.NodeH = ATypeNode[I];
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2026-03-20 21:16:58 +08:00
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if(ATypeNode[I-1] > 32767) Secondary.NodeL = 0;
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else Secondary.NodeL = ATypeNode[I-1];
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Secondary.ValueH = ATypeVal[I];
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Secondary.ValueL = ATypeVal[I-1];
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return SecondaryCompute();
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}
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/******************************************************************************/
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#ifndef ENABLE_DENSITY_DETECT
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#pragma message("[undefined] ENABLE_DENSITY_DETECT")
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#elif(ENABLE_DENSITY_DETECT)
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void GasDensityCompute(void)
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{
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Secondary.NodeH = densityFSParameter;
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Secondary.NodeL = VHHParameterAir;
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Secondary.NodeX = voltageDetected[VHPA];
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Secondary.ValueH = DENSITY_FS;
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Secondary.ValueL = DENSITY_ZERO;
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density = SecondaryCompute();
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if(density > Secondary.ValueH) density = Secondary.ValueH;
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}
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#endif
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