use ego correction in VE analyze live (#3256)
* use ego correction in VE analyze live * needs a variable
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@ -141,10 +141,10 @@ enable2ndByteCanID = false
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; tableName, lambdaTargetTableName, lambdaChannel, egoCorrectionChannel, activeCondition
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; tableName, lambdaTargetTableName, lambdaChannel, egoCorrectionChannel, activeCondition
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#if LAMBDA
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#if LAMBDA
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veAnalyzeMap = veTableTbl, lambdaTableTbl, lambdaValue, egoCorrection, { 1 }
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veAnalyzeMap = veTableTbl, lambdaTableTbl, lambdaValue, egoCorrectionForVeAnalyze, { 1 }
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lambdaTargetTables = lambdaTableTbl, afrTSCustom
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lambdaTargetTables = lambdaTableTbl, afrTSCustom
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#else
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#else
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veAnalyzeMap = veTableTbl, afrTableTbl, AFRValue, egoCorrection, { 1 }
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veAnalyzeMap = veTableTbl, afrTableTbl, AFRValue, egoCorrectionForVeAnalyze, { 1 }
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lambdaTargetTables = afrTableTbl, afrTSCustom
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lambdaTargetTables = afrTableTbl, afrTSCustom
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#endif
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#endif
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@ -415,9 +415,10 @@ enable2ndByteCanID = false
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LM_SPEED_DENSITY = {3},
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LM_SPEED_DENSITY = {3},
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LM_REAL_MAF = {4}
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LM_REAL_MAF = {4}
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egoCorrection = { 100 }
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time = { timeNow }
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time = { timeNow }
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egoCorrectionForVeAnalyze = { 100 + fuelPidCorrection }
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; These "synthetic" channels provide the Y-axis (load) value for gen purp PWM table's Y axes
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; These "synthetic" channels provide the Y-axis (load) value for gen purp PWM table's Y axes
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gppwm1_load = {(gppwm1_loadAxis == 0) ? TPSValue : ((gppwm1_loadAxis == 1) ? MAPValue : ((gppwm1_loadAxis == 2) ? coolant : ((gppwm1_loadAxis == 3) ? intake : ((gppwm1_loadAxis == 4) ? fuelingLoad : ignitionLoad))))}
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gppwm1_load = {(gppwm1_loadAxis == 0) ? TPSValue : ((gppwm1_loadAxis == 1) ? MAPValue : ((gppwm1_loadAxis == 2) ? coolant : ((gppwm1_loadAxis == 3) ? intake : ((gppwm1_loadAxis == 4) ? fuelingLoad : ignitionLoad))))}
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gppwm2_load = {(gppwm2_loadAxis == 0) ? TPSValue : ((gppwm2_loadAxis == 1) ? MAPValue : ((gppwm2_loadAxis == 2) ? coolant : ((gppwm2_loadAxis == 3) ? intake : ((gppwm2_loadAxis == 4) ? fuelingLoad : ignitionLoad))))}
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gppwm2_load = {(gppwm2_loadAxis == 0) ? TPSValue : ((gppwm2_loadAxis == 1) ? MAPValue : ((gppwm2_loadAxis == 2) ? coolant : ((gppwm2_loadAxis == 3) ? intake : ((gppwm2_loadAxis == 4) ? fuelingLoad : ignitionLoad))))}
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@ -1135,10 +1136,10 @@ gaugeCategory = DynoView
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; wueCurveName, afrTempCompensationCurve, lambdaTargetTableName, lambdaChannel, coolantTempChannel, egoCorrectionChannel, wueChannel, activeCondition
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; wueCurveName, afrTempCompensationCurve, lambdaTargetTableName, lambdaChannel, coolantTempChannel, egoCorrectionChannel, wueChannel, activeCondition
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#if LAMBDA
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#if LAMBDA
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wueAnalyzeMap = wueAnalyzer_warmup_curve, wueAfrTargetOffsetCurve, lambdaTableTbl, lambdaValue, coolant, cltCorrection, egoCorrection
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wueAnalyzeMap = wueAnalyzer_warmup_curve, wueAfrTargetOffsetCurve, lambdaTableTbl, lambdaValue, coolant, cltCorrection, egoCorrectionForVeAnalyze
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lambdaTargetTables = lambdaTableTbl, afrTSCustom
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lambdaTargetTables = lambdaTableTbl, afrTSCustom
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#else
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#else
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wueAnalyzeMap = wueAnalyzer_warmup_curve, wueAfrTargetOffsetCurve, afrTableTbl, AFRValue, coolant, cltCorrection, egoCorrection
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wueAnalyzeMap = wueAnalyzer_warmup_curve, wueAfrTargetOffsetCurve, afrTableTbl, AFRValue, coolant, cltCorrection, egoCorrectionForVeAnalyze
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lambdaTargetTables = afrTableTbl, afrTSCustom
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lambdaTargetTables = afrTableTbl, afrTSCustom
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#endif
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#endif
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