FM2014TestApp: - adapted to refactored FM2014
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@ -128,7 +128,7 @@ namespace Sensus.Common.Hardware.WaterMeter.MechanicalMeter.FM2014.FM2014Core.Co
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/// Set the pulses for a time measurement for the REF, if the DUT is going to be started, the first
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/// rising edge of the DUT pulse will synchronize the REF and start the REF counter from the beginning
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/// </summary>
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CmdRefSetPulsesRequired,
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CmdSetRefPulsesRequired,
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/// <summary>
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/// Set the pulses for a time measurement for the DUT, if the DUT is going to be started, the first
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@ -139,12 +139,12 @@ namespace Sensus.Common.Hardware.WaterMeter.MechanicalMeter.FM2014.FM2014Core.Co
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/// <summary>
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/// Read the remaining pulses set up with the 'CmdSetRefPulsesRequired' time measurement command
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/// </summary>
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CmdRefPulsesRemaining,
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CmdGetRefPulsesRemaining,
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/// <summary>
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/// Read the remaining pulses set up with the 'CmdSetDutPulsesRequired' time measurement command
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/// </summary>
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CmdDutGetPulsesRemaining,
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CmdGetDutPulsesRemaining,
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/// <summary>
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/// Start the REF pulses counter
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@ -1386,7 +1386,7 @@ namespace Sensus.Common.Hardware.WaterMeter.MechanicalMeter.FM2014.FM2014Core
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if (firstActiveFm2014.RefPulsesRequired != 0)
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{
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cmdName = CmdName.CmdRefSetPulsesRequired;
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cmdName = CmdName.CmdSetRefPulsesRequired;
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if (!Write(cmdName, firstActiveFm2014, firstActiveFm2014.RefPulsesRequired))
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{
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return false;
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@ -1447,7 +1447,7 @@ namespace Sensus.Common.Hardware.WaterMeter.MechanicalMeter.FM2014.FM2014Core
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// Read the remaining REF pulses if required
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if (fm2014.RefPulsesRequired != 0)
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{
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cmdName = CmdName.CmdRefPulsesRemaining;
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cmdName = CmdName.CmdGetRefPulsesRemaining;
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info = GetCmdInfo(cmdName);
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if (SharedCyclicMeasSequ != CyclicMeasSequ.idle && Write(cmdName, fm2014))
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{
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@ -1482,7 +1482,7 @@ namespace Sensus.Common.Hardware.WaterMeter.MechanicalMeter.FM2014.FM2014Core
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// Read the remaining DUT pulses if required
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if (fm2014.DutPulsesRequired != 0)
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{
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cmdName = CmdName.CmdDutGetPulsesRemaining;
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cmdName = CmdName.CmdGetDutPulsesRemaining;
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info = GetCmdInfo(cmdName);
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if (SharedCyclicMeasSequ != CyclicMeasSequ.idle && Write(cmdName, fm2014))
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{
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@ -102,9 +102,9 @@ namespace Sensus.Common.Hardware.WaterMeter.MechanicalMeter.FM2014.FM2014Core
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new Cmd(CmdName.CmdSwitchDoublePulseDeadtimeOff, "G", CmdType.broadcast, ParaFormat.parameterless, Resources.StrCmdMsgSetDbplUnlock),
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// Main measurement pulse settings and readout
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new Cmd(CmdName.CmdSetDutPulsesRequired, "H", CmdType.broadcast, ParaFormat.uintHexValue, Resources.StrCmdMsgDutSetPls),
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new Cmd(CmdName.CmdRefSetPulsesRequired, "M", CmdType.broadcast, ParaFormat.uintHexValue, Resources.StrCmdMsgRefSetPls),
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new Cmd(CmdName.CmdDutGetPulsesRemaining, "I", CmdType.individual, ParaFormat.uintHexValue, Resources.StrCmdMsgDutGetPlsRmn),
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new Cmd(CmdName.CmdRefPulsesRemaining, "J", CmdType.individual, ParaFormat.uintHexValue, Resources.StrCmdMsgRefGetPlsRmn),
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new Cmd(CmdName.CmdSetRefPulsesRequired, "M", CmdType.broadcast, ParaFormat.uintHexValue, Resources.StrCmdMsgRefSetPls),
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new Cmd(CmdName.CmdGetDutPulsesRemaining, "I", CmdType.individual, ParaFormat.uintHexValue, Resources.StrCmdMsgDutGetPlsRmn),
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new Cmd(CmdName.CmdGetRefPulsesRemaining, "J", CmdType.individual, ParaFormat.uintHexValue, Resources.StrCmdMsgRefGetPlsRmn),
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// Pulse counters start, readout and backup
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new Cmd(CmdName.CmdStartRefPulseCounter, "O", CmdType.broadcast, ParaFormat.parameterless, Resources.StrCmdMsgRefStrPlsCtr),
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new Cmd(CmdName.CmdStartDutPulseCounter, "Q", CmdType.broadcast, ParaFormat.parameterless, Resources.StrCmdMsgDutStrPlsCtr),
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@ -28,9 +28,9 @@ using System.Windows.Documents;
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using System.Windows.Input;
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using System.Windows.Media;
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using System.Windows.Threading;
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using Sensus.Common.Hardware.WaterMeter.MechanicalMeter.FM2014.FM2014Core.Consts;
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using Xylem.Common.CommonCore.Consts;
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using Xylem.Common.Utils.ProcessExec.EventArguments;
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using static Sensus.Common.Hardware.WaterMeter.MechanicalMeter.FM2014.FM2014Core.Consts.FM2014CmdDef;
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using CheckBox = System.Windows.Controls.CheckBox;
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using KeyEventArgs = System.Windows.Input.KeyEventArgs;
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using Label = System.Windows.Controls.Label;
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@ -120,13 +120,10 @@ namespace Sensus.Ui.FM2014TestBench
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// internal reminders of changed items to avoid write access on startup if items are preloaded
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private Int32 _comPortIdx;
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// Backups of results from 'Manual REF Calibration' being able to restore those if a manual change
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// of the REF pulses per cubic meter clears those fields. Bringing the last calibrated REF pulses
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// per cubic meters back will automatically restore these results being able to adjust the measured
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// volume in liters without a restart of the 'Manual REF Calibration'
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//private String _backupWeightScaleVolumeLitersStr;
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//private String _backupRefCalibrationResultPulsePerCmStr;
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//private String _backupMeasuredRefPulsesStr;
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// Reminder of settings in standalone measurement to avoid repeated storage af already stored values
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private UInt32 _initialRefPulsesPerCm;
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private UInt16 _initialDutPulsesPerCm;
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private Byte _initialCurrentOutputAttenuation;
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/// <summary>
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/// The regulation setup will be stored directly to the FM2014 being able to use it at startup
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@ -731,10 +728,10 @@ namespace Sensus.Ui.FM2014TestBench
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if (!slotShallBeUsed || !fm2014.Connect(comPort))
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{
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ucFm2014Device.SetConnectionStatus(ConnectionStatusName.OFFLINE);
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ucFm2014Device.SetConnectionStatus(ConnectionStatusName.offline);
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continue;
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}
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ucFm2014Device.SetConnectionStatus(ConnectionStatusName.ONLINE);
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ucFm2014Device.SetConnectionStatus(ConnectionStatusName.online);
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if (!fm2014.IsLoggedOn)
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{
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@ -852,6 +849,31 @@ namespace Sensus.Ui.FM2014TestBench
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}
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/// <summary>
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/// This method checks if any setting applied to the FM2014 memory has been changed.
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/// Initially, those values will be read and preset during the connection procedure.
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/// </summary>
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/// <remarks date="2026-Feb-17" author="Thomas Wiedebusch">
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/// - Initial.
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/// </remarks>
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private void CheckForFM2014SetupChanged()
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{
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var firstFm2014 = FM2014.GetFirstConnectedAndLoggedInFm2014();
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if (null == firstFm2014)
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return;
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// Avoid stress to the FM2014 EEPROM as the identical values mustn't be stored again
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if (_initialCurrentOutputAttenuation == firstFm2014.CurrentOutputAttenuation &&
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_initialRefPulsesPerCm == firstFm2014.RefPulses_per_cm &&
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_initialDutPulsesPerCm == firstFm2014.DutPulses_per_cm)
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{
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_fm2014RegulationSetupHasChanged = false;
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UiElmEnable(btnSaveSetupToFm2014, false);
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return;
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}
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DutToRefRegulationSetupHasChanged();
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}
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/// <summary>
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/// Common routine for REF to DUT scale check and update
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/// </summary>
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@ -1153,38 +1175,41 @@ namespace Sensus.Ui.FM2014TestBench
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LogText($"{resp.AnswerStr}: {resp.IntValue:D} {resp.Unit}");
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switch (resp.CmdName)
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{
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case CmdName.CMD_REF_GET_PLS_RMN:
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case CmdName.CmdGetRefPulsesRemaining:
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ucFm2014.SetValue(CAL_LBL_IDX_REF_RMN_PLS, $"{resp.IntValue:D}", statusColor);
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break;
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case CmdName.CMD_DUT_GET_PLS_RMN:
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case CmdName.CmdGetDutPulsesRemaining:
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ucFm2014.SetValue(CAL_LBL_IDX_DUT_RMN_PLS, $"{resp.IntValue:D}", statusColor);
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break;
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case CmdName.CMD_REF_GET_PLS_CTR:
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case CmdName.CMD_REF_GET_PLS_CTR_BU:
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case CmdName.CmdGetRefPulsesCounted:
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case CmdName.CmdGetRefPulsesCountedBackup:
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if (firstFm2014 != null && firstFm2014.Address == fm2014.Address)
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UpdateTextBox(tbxRefPulsesMeasured, $"{resp.IntValue:D}", statusColor);
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ucFm2014.SetValue(CTR_LBL_IDX_REF_PLS, $"{resp.IntValue:D}", statusColor);
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break;
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case CmdName.CMD_DUT_GET_PLS_CTR:
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case CmdName.CMD_DUT_GET_PLS_CTR_BU:
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case CmdName.CmdGetDutPulsesCounted:
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case CmdName.CmdGetDutPulsesCountedBackup:
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if (firstFm2014 != null && firstFm2014.Address == fm2014.Address)
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UpdateTextBox(tbxDutPulsesMeasured, $"{resp.IntValue:D}", statusColor);
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ucFm2014.SetValue(CTR_LBL_IDX_DUT_PLS, $"{resp.IntValue:D}", statusColor);
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break;
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case CmdName.CMD_REF_LPP_SCALE:
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case CmdName.CmdSetRefPulsesPerCm:
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UpdateTextBox(tbxRefPulsesPerCm, $"{resp.IntValue:D}", statusColor);
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_initialRefPulsesPerCm = (UInt32)resp.IntValue;
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break;
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case CmdName.CMD_DUT_LPP_SCALE:
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case CmdName.CmdSetDutPulsesPerCm:
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UpdateTextBox(tbxDutPulsesPerCm, $"{resp.IntValue:D}", statusColor);
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_initialDutPulsesPerCm = (UInt16)resp.IntValue;
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break;
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case CmdName.CMD_MEAS_SET_ATTN:
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case CmdName.CmdSetCurrentOutputAttenuation:
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Dispatcher.Invoke(() => cbxToleranceDisplayAttenuation.SelectedItem = $"{resp.IntValue}");
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_initialCurrentOutputAttenuation = (Byte)resp.IntValue;
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break;
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case CmdName.CMD_GET_REF_FREQU:
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case CmdName.CmdGetRefFrequency:
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valueStr = $"{resp.IntValue:D}";
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ucFm2014.SetValue(REG_LBL_IDX_REF_FREQU, valueStr, statusColor);
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break;
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case CmdName.CMD_RST_MEAS:
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case CmdName.CmdResetMeasurement:
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// Immediately lock all buttons and input fields until reset is finished
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SetFM2014AccessLocked();
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UiElmEnable(lblActualProgressPercent, true);
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@ -1199,24 +1224,24 @@ namespace Sensus.Ui.FM2014TestBench
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LogText($"{resp.AnswerStr}: {resp.DoubleValue:F2} {resp.Unit}");
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switch (resp.CmdName)
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{
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case CmdName.CMD_REF_GET_TMR:
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case CmdName.CmdGetRefTimerTicks:
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valueStr = $"{resp.DoubleValue:F3}";
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ucFm2014.SetValue(CAL_LBL_IDX_REF_MEAS_TMR, valueStr, statusColor);
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break;
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case CmdName.CMD_DUT_GET_TMR:
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case CmdName.CmdGetDutTimerTicks:
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valueStr = $"{resp.DoubleValue:F3}";
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ucFm2014.SetValue(CAL_LBL_IDX_DUT_MEAS_TMR, valueStr, statusColor);
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break;
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case CmdName.CMD_CAL_DUT_TO_REF_TOL:
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case CmdName.CmdCalculatedDutToRefTolerance:
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valueStr = $"{resp.DoubleValue:F3}";
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ucFm2014.SetValue(CAL_LBL_IDX_DUT_TO_REF_TOL, valueStr, statusColor);
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break;
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case CmdName.CMD_GET_UDTLC:
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case CmdName.CMD_GET_DTLC:
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case CmdName.CmdGetDutToRefToleranceUndamped:
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case CmdName.CmdGetDutToRefToleranceDamped:
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valueStr = $"{resp.DoubleValue:F2}";
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ucFm2014.SetValue(REG_LBL_IDX_DUT_TO_REF_TOL, valueStr, statusColor);
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break;
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case CmdName.CMD_REF_SET_SCALE:
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case CmdName.CmdRefToDutScale:
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UpdateTextBox(tbxScaleRefToDut, $"{resp.DoubleValue:F4}", statusColor);
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break;
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// // DEBUG
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@ -1232,7 +1257,7 @@ namespace Sensus.Ui.FM2014TestBench
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// case FM2014CmdDef.CmdName.CMD_CAL_FREQU_DUT_PERIOD:
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// tbxDutFrequencyFromDutPeriodHz.Text = $"{resp.DoubleValue:F3}";
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// break;
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case CmdName.CMD_CAL_FLOW_REF_FREQU:
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case CmdName.CmdCalculatedFlowRefFrequ:
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valueStr = $"{resp.DoubleValue:F3}";
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ucFm2014.SetValue(REG_LBL_IDX_FLOW_RATE, valueStr, statusColor);
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//UpdateTextBox(tbxRefFlowRateFromRefFrequencyCmPerH, valueStr);
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@ -1278,7 +1303,7 @@ namespace Sensus.Ui.FM2014TestBench
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private void btnDutToRefCalibration_Click(Object sender, EventArgs e)
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{
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_startTime = DateTimeOffset.UtcNow;
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if (FM2014.SharedCyclicMeasSequ == CyclicMeasSequ.IDLE)
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if (FM2014.SharedCyclicMeasSequ == CyclicMeasSequ.idle)
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{
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// Disable and hide dynamic measurement labels
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foreach (var measLbl in MeasurementLabels)
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@ -1388,7 +1413,7 @@ namespace Sensus.Ui.FM2014TestBench
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private void btnDutToRefRegulation_Click(Object sender, EventArgs e)
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{
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_startTime = DateTimeOffset.UtcNow;
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if (FM2014.SharedCyclicMeasSequ == CyclicMeasSequ.IDLE)
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if (FM2014.SharedCyclicMeasSequ == CyclicMeasSequ.idle)
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{
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// Disable and hide dynamic measurement labels
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foreach (var measLbl in MeasurementLabels)
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@ -1488,7 +1513,7 @@ namespace Sensus.Ui.FM2014TestBench
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private void btnRefToVolumeCalibration_Click(Object sender, EventArgs e)
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{
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_startTime = DateTimeOffset.UtcNow;
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if (FM2014.SharedCyclicMeasSequ == CyclicMeasSequ.IDLE)
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if (FM2014.SharedCyclicMeasSequ == CyclicMeasSequ.idle)
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{
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// Disable and hide dynamic measurement labels
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foreach (var measLbl in MeasurementLabels)
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@ -1626,8 +1651,7 @@ namespace Sensus.Ui.FM2014TestBench
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{
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fm2014.CurrentOutputAttenuation = attenuation;
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}
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_fm2014RegulationSetupHasChanged = true;
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UiElmEnable(btnSaveSetupToFm2014, true);
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CheckForFM2014SetupChanged();
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}
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});
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}
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@ -2290,9 +2314,6 @@ namespace Sensus.Ui.FM2014TestBench
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return;
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}
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//Backup the actual setting to detect changes
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var backupPulses_per_cm = firstFm2014.RefPulses_per_cm;
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// Parse and check limits
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if (int.TryParse(tbxRefPulsesPerCm.Text, out var pulses_per_cm) &&
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FM2014.PULSES_PER_CM_REGULATION_SETUP_MIN <= pulses_per_cm &&
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@ -2310,11 +2331,8 @@ namespace Sensus.Ui.FM2014TestBench
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return;
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}
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// Check if values have changed and need to be updated in the standalone setup
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if (backupPulses_per_cm != pulses_per_cm || tbxRefPulsesPerCm.Background == ColorProcessFailed)
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{
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DutToRefRegulationSetupHasChanged();
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}
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tbxRefPulsesPerCm.Background = ColorStandardInputField;
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CheckForFM2014SetupChanged();
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}
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else
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{
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@ -2390,9 +2408,6 @@ namespace Sensus.Ui.FM2014TestBench
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return;
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}
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//Backup the actual setting to detect changes
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var backupPulses_per_cm = firstFm2014.DutPulses_per_cm;
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// Parse and check limits
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if (int.TryParse(tbxDutPulsesPerCm.Text, out var pulses_per_cm) &&
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FM2014.PULSES_PER_CM_REGULATION_SETUP_MIN <= pulses_per_cm &&
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@ -2410,11 +2425,8 @@ namespace Sensus.Ui.FM2014TestBench
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return;
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}
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// Check if values have changed and need to be updated in the standalone setup
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if (backupPulses_per_cm != pulses_per_cm || tbxDutPulsesPerCm.Background == ColorProcessFailed)
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{
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DutToRefRegulationSetupHasChanged();
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}
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tbxDutPulsesPerCm.Background = ColorStandardInputField;
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CheckForFM2014SetupChanged();
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}
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else
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{
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@ -2494,9 +2506,6 @@ namespace Sensus.Ui.FM2014TestBench
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return;
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}
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// Backup the old value
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var backup_pulses_per_cm = firstFm2014.DutPulses_per_cm;
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// Calculate REF pulses per cubic meter
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if (int.TryParse(tbxRefPulsesMeasured.Text, out var pulses) && pulses > 0 &&
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int.TryParse(tbxVolumeMeasuredLiters.Text, out var liters) && liters > 0)
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@ -2522,12 +2531,9 @@ namespace Sensus.Ui.FM2014TestBench
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tbxRefPulsesPerCmCalib.Background = ColorProcessFailed;
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return;
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}
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// Check if values have changed and need to be updated in the standalone setup
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if (backup_pulses_per_cm != firstFm2014.RefPulses_per_cm)
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{
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DutToRefRegulationSetupHasChanged();
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}
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tbxVolumeMeasuredLiters.Background = ColorStandardInputField;
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tbxVolumeMeasuredLiters.Background = ColorStandardInputField;
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CheckForFM2014SetupChanged();
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}
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else
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{
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@ -16,7 +16,8 @@ using System.Windows;
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using System.Windows.Controls;
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using System.Windows.Media;
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using System.Windows.Threading;
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using static Sensus.Common.Hardware.WaterMeter.MechanicalMeter.FM2014.FM2014Core.Consts.FM2014CmdDef;
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using Sensus.Common.Hardware.WaterMeter.MechanicalMeter.FM2014.FM2014Core.Consts;
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using static Sensus.Common.Hardware.WaterMeter.MechanicalMeter.FM2014.FM2014Core.FM2014CmdDef;
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namespace Sensus.Ui.Fm2014TestBench.UserControls
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{
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@ -80,7 +81,7 @@ namespace Sensus.Ui.Fm2014TestBench.UserControls
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///<inheritdoc/>
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public void Clear()
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{
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SetConnectionStatus(ConnectionStatusName.OFFLINE);
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SetConnectionStatus(ConnectionStatusName.offline);
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HideMeasurements();
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}
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@ -124,7 +125,7 @@ namespace Sensus.Ui.Fm2014TestBench.UserControls
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private void HideMeasurements()
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{
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UiElmEnable(brdFM2014Pic, true);
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UiElmEnable(picFM2014, lblStatus.Content.Equals(ConnectionStatusName.ONLINE));
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UiElmEnable(picFM2014, lblStatus.Content.Equals(ConnectionStatusName.online));
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// Hide all measurement borders
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foreach (var borders in MeasurementBorders)
|
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@ -155,7 +156,7 @@ namespace Sensus.Ui.Fm2014TestBench.UserControls
|
||||
}
|
||||
|
||||
// Check if device is connected and logged in
|
||||
if (!lblStatus.Content.Equals(GetConnectionStatusInfo(ConnectionStatusName.ONLINE)))
|
||||
if (!lblStatus.Content.Equals(GetConnectionStatusInfo(ConnectionStatusName.online)))
|
||||
return false;
|
||||
|
||||
if (numberOfMeasurementFields == 0)
|
||||
@ -193,9 +194,9 @@ namespace Sensus.Ui.Fm2014TestBench.UserControls
|
||||
new Action(() =>
|
||||
{
|
||||
lblStatus.Content = connectionStatusStr;
|
||||
var isEnabled = statusName.Equals(ConnectionStatusName.ONLINE);
|
||||
var isEnabled = statusName.Equals(ConnectionStatusName.online);
|
||||
UiElmEnable(picFM2014, isEnabled);
|
||||
if (!statusName.Equals(ConnectionStatusName.ONLINE))
|
||||
if (!statusName.Equals(ConnectionStatusName.online))
|
||||
{
|
||||
HideMeasurements();
|
||||
lblStatus.Background = ColorStandardDisplayField;
|
||||
|
||||
Loading…
Reference in New Issue
Block a user