MoS2/App/Modules/SicModules/LLs/Routines/LoadLockSlitValveRoutine.cs
2026-08-14 18:22:33 +08:00

146 lines
4.4 KiB
C#

using Aitex.Core.RT.Device;
using Aitex.Core.RT.Device.Unit;
using Aitex.Core.RT.Event;
using Aitex.Core.RT.Routine;
using Aitex.Core.RT.SCCore;
using MECF.Framework.Common.Equipment;
using MECF.Framework.RT.EquipmentLibrary.HardwareUnits.LoadLocks;
using SicModules.EFEMs.Routines;
using SicModules.TMs;
using System;
using System.Collections.Generic;
using System.Linq;
using System.Reflection;
using System.Text;
using System.Threading.Tasks;
using System.Xml.Linq;
namespace SicModules.LLs.Routines
{
public class LoadLockSlitValveRoutine : LoadLockBaseRoutine
{
enum RoutineStep
{
ServoRoutine,
LiftRoutine,
CheckPressureCondition,
CheckPressure,
SetSlitValve,
CheckPressureCondition2,
TimeDlay1
}
private int _motionTimeout = 30;
private bool _paramIsOpen; //是否开门
private SicTM _tm;
private IoSlitValve _slitvalveLoadLockLeft;
private LoadLockServoToRoutine _llServoToRoutine;
private LoadLockLiftRoutine _llLiftRoutine;
public void Init(bool isOpen)
{
_paramIsOpen = isOpen;
Name = isOpen ? "Open Slit Valve" : "Close Slit Valve";
}
public LoadLockSlitValveRoutine()
{
Module = ModuleName.LoadLock.ToString();
Name = "LoadLockSlitValue";
_tm = DEVICE.GetDevice<SicTM>($"{ModuleName.System.ToString()}.{ModuleName.TM.ToString()}");
_llServoToRoutine = new LoadLockServoToRoutine(ModuleName.LoadLock);
_llLiftRoutine = new LoadLockLiftRoutine();
_slitvalveLoadLockLeft = DEVICE.GetDevice<IoSlitValve>("LoadLock.LoadLockLSideDoor");
}
public override Result Start(params object[] objs)
{
Reset();
if (_paramIsOpen)
{
//判断TM到LoadLock或者UnLoad的门是否关上
if (!_tm.CheckSlitValveClose(ModuleName.LoadLock))
{
EV.PostWarningLog(Module, $"can not open left slit valve,TM slit valve not closed, can not open at same time");
return Result.FAIL;
}
_motionTimeout = SC.GetValue<int>("System.SlitValveMotionTimeout");
_llServoToRoutine.Init(SC.GetValue<double>("LoadLock.AtmPressureBase"));
_llLiftRoutine.Init(false);
}
Notify("Start");
return Result.RUN;
}
public override Result Monitor()
{
try
{
//开门之前需要对两边腔体进行气压调节,降Lift
if (_paramIsOpen)
{
ExecuteRoutine((int)RoutineStep.ServoRoutine, _llServoToRoutine);
ExecuteRoutine((int)RoutineStep.LiftRoutine, _llLiftRoutine);
}
SetSlitValve((int)RoutineStep.SetSlitValve, _paramIsOpen, _motionTimeout);
TimeDelay((int)RoutineStep.TimeDlay1, 1);
}
catch (RoutineBreakException)
{
return Result.RUN;
}
catch (RoutineFaildException)
{
return Result.FAIL;
}
Notify("Finished");
return Result.DONE;
}
public void SetSlitValve(int id, bool isOpen, int timeout)
{
Tuple<bool, Result> ret = ExecuteAndWait(id, () =>
{
Notify($"set left slit valve " + (isOpen ? "Open" : "Close"));
if (!_slitvalveLoadLockLeft.SetSlitValve(isOpen, out string reason))
{
Stop(reason);
return false;
}
return true;
}, () =>
{
return isOpen ? _slitvalveLoadLockLeft.IsOpen : _slitvalveLoadLockLeft.IsClose;
}, timeout * 1000);
if (ret.Item1)
{
if (ret.Item2 == Result.FAIL)
{
throw (new RoutineFaildException());
}
else if (ret.Item2 == Result.TIMEOUT) //timeout
{
Stop($"can not complete in {timeout} seconds");
throw (new RoutineFaildException());
}
else
throw (new RoutineBreakException());
}
}
}
}