SimulatorSystem.cs 39 KB

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  1. using Aitex.Core.RT.DataCenter;
  2. using Aitex.Core.RT.IOCore;
  3. using Aitex.Core.RT.Log;
  4. using Aitex.Core.Util;
  5. using MECF.Framework.Common.Equipment;
  6. using MECF.Framework.Simulator.Core.Driver;
  7. using System;
  8. using System.Collections.Generic;
  9. using Venus_Simulator.Devices;
  10. using System.Threading;
  11. namespace Venus_Simulator.Instances
  12. {
  13. public class SimulatorSystem : Singleton<SimulatorSystem>
  14. {
  15. private PeriodicJob _thread;
  16. private Random _rd = new Random();
  17. private RD_TRIG _trigATM = new RD_TRIG();
  18. private RD_TRIG _trigVAC = new RD_TRIG();
  19. private R_TRIG _trigLLExtend = new R_TRIG();
  20. private R_TRIG _trigLLRetract = new R_TRIG();
  21. private static int count = 0;
  22. private readonly float ATM_THRESHOLD = 750000;
  23. private readonly float ATM_PRESSURE = 760000;
  24. private readonly float ATM_LoadLock_PRESSURE = 760000;
  25. private readonly uint VAC_SW_PRESSURE = 9500;
  26. private readonly uint PROCESS_GAUGE = 10000;
  27. private Dictionary<ModuleName, DeviceSimulator> _MockDevices = new Dictionary<ModuleName, DeviceSimulator>();
  28. public SimulatorSystem()
  29. {
  30. //_MockDevices.Add(ModuleName.PMB, new SkyPumpMock());
  31. //_MockDevices.Add(ModuleName.PMB, new AdTecGeneratorMock());
  32. //_MockDevices.Add(ModuleName.PMB, new AdTecMatchMock());
  33. // TODO
  34. }
  35. ~SimulatorSystem()
  36. {
  37. _thread?.Stop();
  38. }
  39. public void Initialize()
  40. {
  41. SetDefaultValue(ModuleName.PMA);
  42. SetDefaultValue(ModuleName.PMB);
  43. SetTMDefaultValue();
  44. Singleton<DataManager>.Instance.Initialize(false);
  45. _thread = new PeriodicJob(500, OnMonitor, nameof(SimulatorSystem), true);
  46. }
  47. private void SetDefaultValue(ModuleName mod)
  48. {
  49. // chamber
  50. IO.DI[$"{mod}.DI_PM_Lid_Closed"].Value = true;
  51. IO.DI[$"{mod}.DI_PM_ATM_SW"].Value = false;
  52. IO.DI[$"{mod}.DI_PM_VAC_SW"].Value = true;
  53. IO.DI[$"{mod}.DI_PCW_Flow_SW"].Value = true;
  54. IO.DI[$"{mod}.DI_Water_Leak_Sensor"].Value = true;
  55. IO.DI[$"{mod}.DI_Lift_Pin_Up_POS"].Value = false;
  56. IO.DI[$"{mod}.DI_Lift_Pin_Down_POS"].Value = true;
  57. IO.DI[$"{mod}.DI_RF_Generator_Interlock"].Value = true;
  58. IO.DI[$"{mod}.DI_Source_RF_Fan"].Value = true;
  59. IO.DI[$"{mod}.DI_Turbo_Pump_Interlock"].Value = true;
  60. IO.DI[$"{mod}.DI_Slit_Door_Open_POS"].Value = false;
  61. IO.DI[$"{mod}.DI_Slit_Door_Close_POS"].Value = true;
  62. IO.DI[$"{mod}.DI_CDA_Pressure"].Value = true;
  63. IO.DI[$"{mod}.DI_Coolant_Inlet_TC_Broken_Alarm"].Value = false;
  64. IO.DI[$"{mod}.DI_Coolant_Outlet_TC_Broken_Alarm"].Value = true;
  65. IO.DI[$"{mod}.DI_Process_VAC_Gauge_High_Alarm"].Value = false;
  66. IO.DI[$"{mod}.DI_Process_VAC_Gauge_Low_Alarm"].Value = false;
  67. IO.DI[$"{mod}.DI_Chamber_VAC_Gauge_Alarm"].Value = false;
  68. IO.DI[$"{mod}.DI_Foreline_Vacuum_Gauge_Alarm"].Value = false;
  69. IO.DI[$"{mod}.DI_Loadlock_Vacuum_Gauge_Alarm"].Value = false;
  70. IO.DI[$"{mod}.DI_ESC_He_VAC_Gauge_Alarm"].Value = false;
  71. IO.DI[$"{mod}.DI_Valve_TC_Deviation_out_of_range"].Value = false;
  72. IO.DI[$"{mod}.DI_Valve_Control_TC_Broken_Alarm"].Value = false;
  73. IO.DI[$"{mod}.DI_Valve_Monitor_TC_Broken_Alarm"].Value = false;
  74. IO.DI[$"{mod}.DI_Valve_Heater_On_FB"].Value = false;
  75. IO.DI[$"{mod}.DI_Foreline_TC_Deviation_out_of_range"].Value = false;
  76. IO.DI[$"{mod}.DI_Foreline_Control_TC_Broken_Alarm"].Value = false;
  77. IO.DI[$"{mod}.DI_Foreline_Monitor_TC_Broken_Alarm"].Value = false;
  78. IO.DI[$"{mod}.DI_Foreline_Heater_On_FB"].Value = false;
  79. IO.DI[$"{mod}.DI_CHB_Wall_TC_Deviation_out_of_range"].Value = false;
  80. IO.DI[$"{mod}.DI_CHB_Wall_Control_TC_Broken_Alarm"].Value = false;
  81. IO.DI[$"{mod}.DI_CHB_Wall_Monitor_TC_Broken_Alarm"].Value = false;
  82. IO.DI[$"{mod}.DI_CHB_Wall_Heater_On_FB"].Value = false;
  83. IO.DI[$"{mod}.DI_CHB_Wall_OT_SW_Alarm"].Value = false;
  84. IO.DI[$"{mod}.DI_PN2_Pressure_SW"].Value = true;
  85. IO.DI[$"{mod}.DI_MFC1_Pressure_SW"].Value = true;
  86. IO.DI[$"{mod}.DI_MFC2_Pressure_SW"].Value = true;
  87. IO.DI[$"{mod}.DI_MFC3_Pressure_SW"].Value = true;
  88. IO.DI[$"{mod}.DI_MFC4_Pressure_SW"].Value = true;
  89. IO.DI[$"{mod}.DI_MFC5_Pressure_SW"].Value = true;
  90. IO.DI[$"{mod}.DI_MFC6_Pressure_SW"].Value = true;
  91. IO.DI[$"{mod}.DI_MFC7_Pressure_SW"].Value = true;
  92. IO.DI[$"{mod}.DI_MFC8_Pressure_SW"].Value = true;
  93. IO.DI[$"{mod}.DI_He_Pressure_SW"].Value = true;
  94. IO.DI[$"{mod}.DI_ESC_He_VAC_Gauge_Alarm"].Value = false;
  95. IO.DI[$"{mod}.DI_Loadlock_Lid_Closed"].Value = true;
  96. IO.DI[$"{mod}.DI_Loadlock_Arm_Extend_POS"].Value = false;
  97. IO.DI[$"{mod}.DI_Loadlock_Arm_Retract_POS"].Value = true;
  98. IO.DI[$"{mod}.DI_Small_Wafer_In_POS"].Value = false;
  99. IO.DI[$"{mod}.DI_Big_Wafer_In_POS"].Value = false;
  100. IO.DI[$"{mod}.DI_Loadlock_ATM_SW"].Value = false;
  101. IO.DI[$"{mod}.DI_Gas_Box_Door_SW"].Value = true;
  102. IO.DI[$"{mod}.DI_Gas_Box_Pressure_SW"].Value = true;
  103. //// pressure
  104. SetAiValue($"{mod}.AI_Foreline_Pressure", 5000);
  105. //SetAiValue($"{mod}.AI_Process_Pressure_High", 5000);
  106. //SetAiValue($"{mod}.AI_Process_Pressure_Low", 5000);
  107. //SetAiValue($"{mod}.AI_Chamber_Pressure", ATM_PRESSURE);
  108. SetAiValue($"{mod}.AI_Process_Pressure", PROCESS_GAUGE);
  109. SetAiValue($"{mod}.AI_Chamber_Pressure", 5000);
  110. SetAiValue($"{mod}.AI_Loadlock_Pressure", ATM_LoadLock_PRESSURE);
  111. //// Temperature
  112. SetAiValue($"{mod}.AI_Valve_Control_TC_Temp", 28);
  113. SetAiValue($"{mod}.AI_Valve_Monitor_TC_Temp", 27);
  114. SetAiValue($"{mod}.AI_Fline_Control_TC_Temp", 28);
  115. SetAiValue($"{mod}.AI_Fline_Monitor_TC_Temp", 27);
  116. SetAiValue($"{mod}.AI_CHB_Wall_Control_TC_Temp", 28);
  117. SetAiValue($"{mod}.AI_CHB_Wall_Monitor_TC_Temp", 27);
  118. SetAiValue($"{mod}.AI_Coolant_Inlet_Temp", 28);
  119. if (mod == ModuleName.PMA)
  120. {
  121. SetAiValue($"{mod}.AI_Coolant_Outlet_Temp", 29);
  122. }
  123. else if (mod == ModuleName.PMB)
  124. {
  125. SetAiValue($"{mod}.AI_Coolant_Outlet_Temp", 30);
  126. }
  127. // Datetime
  128. SetAiValue($"{mod}.AI_Year", DateTime.Today.Year);
  129. SetAiValue($"{mod}.AI_Month", DateTime.Today.Month);
  130. SetAiValue($"{mod}.AI_Day", DateTime.Today.Day);
  131. SetAiValue($"{mod}.AI_Time", DateTime.Now.Hour);
  132. SetAiValue($"{mod}.AI_Minute", DateTime.Now.Minute);
  133. SetAiValue($"{mod}.AI_Second", DateTime.Now.Second);
  134. }
  135. private void SetTMDefaultValue()
  136. {
  137. ModuleName mod = ModuleName.TM;
  138. IO.DI[$"{mod}.DI_TM_Power_On"].Value = true;
  139. IO.DI[$"{mod}.DI_TM_In_Safety"].Value = true;
  140. IO.DI[$"{mod}.DI_Water_Leak_Sensor"].Value = true;
  141. IO.DI[$"{mod}.DI_TM_RB_Not_Extend_PMA"].Value = true;
  142. IO.DI[$"{mod}.DI_TM_RB_Not_Extend_PMB"].Value = true;
  143. IO.DI[$"{mod}.DI_TM_RB_Not_Extend_PMC"].Value = true;
  144. IO.DI[$"{mod}.DI_TM_RB_Not_Extend_PMD"].Value = true;
  145. IO.DI[$"{mod}.DI_TM_RB_Not_Extend_LLA"].Value = true;
  146. IO.DI[$"{mod}.DI_TM_RB_Not_Extend_LLB"].Value = true;
  147. IO.DI[$"{mod}.DI_EFEM_RB_Not_Extend_LLA"].Value = true;
  148. IO.DI[$"{mod}.DI_EFEM_RB_Not_Extend_LLB"].Value = true;
  149. IO.DI[$"{mod}.DI_EFEM_Side_Door_Closed"].Value = true;
  150. IO.DI[$"{mod}.DI_TM_CHB_PCW_Flow_Switch"].Value = true;
  151. IO.DI[$"{mod}.DI_LLA_PCW_Flow_Switch"].Value = true;
  152. IO.DI[$"{mod}.DI_LLB_PCW_Flow_Switch"].Value = true;
  153. IO.DI[$"{mod}.DI_TM_CHB_Door_Closed"].Value = true;
  154. IO.DI[$"{mod}.DI_LLA_Lid_Door_Closed"].Value = true;
  155. IO.DI[$"{mod}.DI_LLB_Lid_Door_Closed"].Value = true;
  156. IO.DI[$"{mod}.DI_LLA_E_Slit_Door_open_Position"].Value = false;
  157. IO.DI[$"{mod}.DI_LLA_E_Slit_Door_close_Position"].Value = true;
  158. IO.DI[$"{mod}.DI_LLA_T_Slit_Door_open_Position"].Value = false;
  159. IO.DI[$"{mod}.DI_LLA_T_Slit_Door_close_Position"].Value = true;
  160. IO.DI[$"{mod}.DI_LLB_E_Slit_Door_open_Position"].Value = false;
  161. IO.DI[$"{mod}.DI_LLB_E_Slit_Door_close_Position"].Value = true;
  162. IO.DI[$"{mod}.DI_LLB_T_Slit_Door_open_Position"].Value = false;
  163. IO.DI[$"{mod}.DI_LLB_T_Slit_Door_close_Position"].Value = true;
  164. IO.DI[$"{mod}.DI_CDA_Pressure_Switch"].Value = true;
  165. IO.DI[$"{mod}.DI_Vaccum_Pressure_Switch"].Value = true;
  166. IO.DI[$"{mod}.DI_N2_Pressure_Switch"].Value = true;
  167. IO.DI[$"{mod}.DI_TM_Chamber_VAC_Gauge_Alarm"].Value = true;
  168. IO.DI[$"{mod}.DI_TM_Foreline_VAC_Gauge_Alarm"].Value = true;
  169. IO.DI[$"{mod}.DI_LLA_Chamber_VAC_Gauge_Alarm"].Value = true;
  170. IO.DI[$"{mod}.DI_LLA_Foreline_VAC_Gauge_Alarm"].Value = true;
  171. IO.DI[$"{mod}.DI_LLB_Chamber_VAC_Gauge_Alarm"].Value = true;
  172. IO.DI[$"{mod}.DI_LLB_Foreline_VAC_Gauge_Alarm"].Value = true;
  173. }
  174. private bool OnMonitor()
  175. {
  176. try
  177. {
  178. // PMA
  179. MonitorSlitDoor(ModuleName.PMA);
  180. MonitorPin(ModuleName.PMA);
  181. MonitorPressure(ModuleName.PMA);
  182. MonitorExtendAndRetract(ModuleName.PMA);
  183. //MonitorTemperature(ModuleName.PMA);
  184. MonitorGas(ModuleName.PMA);
  185. //MonitorRF(ModuleName.PMA);
  186. ChangeTime(ModuleName.PMA);
  187. //MonitorIOPumpCtrl(ModuleName.PMA);
  188. //// PMB
  189. //MonitorSlitDoor(ModuleName.PMB);
  190. //MonitorPin(ModuleName.PMB);
  191. //MonitorPressure(ModuleName.PMB);
  192. //MonitorTemperature(ModuleName.PMB);
  193. //MonitorGas(ModuleName.PMB);
  194. //MonitorRF(ModuleName.PMB);
  195. //ChangeTime(ModuleName.PMB);
  196. //MonitorIOPumpCtrl(ModuleName.PMB);
  197. MonitorMFSlitDoor();
  198. }
  199. catch (Exception e)
  200. {
  201. LOG.WriteExeption(e);
  202. }
  203. return true;
  204. }
  205. private void ChangeTime(ModuleName mod)
  206. {
  207. // Heartbeat with PLC
  208. SetAiValue($"{mod}.AI_Heartbeat_FB", GetAoValue($"{mod}.AO_Heartbeat"));
  209. SetAiValue($"{mod}.AI_Year", DateTime.Now.Year);
  210. SetAiValue($"{mod}.AI_Month", DateTime.Now.Month);
  211. SetAiValue($"{mod}.AI_Day", DateTime.Now.Day);
  212. SetAiValue($"{mod}.AI_Time", DateTime.Now.Hour);
  213. SetAiValue($"{mod}.AI_Minute", DateTime.Now.Minute);
  214. SetAiValue($"{mod}.AI_Second", DateTime.Now.Second);
  215. }
  216. void MonitorSlitDoor(ModuleName mod)
  217. {
  218. // slit door open
  219. if (IO.DO[$"{mod}.DO_Slit_Door_Open"].Value)
  220. {
  221. IO.DI[$"{mod}.DI_Slit_Door_Open_POS"].Value = true;
  222. IO.DI[$"{mod}.DI_Slit_Door_Close_POS"].Value = false;
  223. }
  224. // slit door close
  225. if (IO.DO[$"{mod}.DO_Slit_Door_Close"].Value)
  226. {
  227. IO.DI[$"{mod}.DI_Slit_Door_Open_POS"].Value = false;
  228. IO.DI[$"{mod}.DI_Slit_Door_Close_POS"].Value = true;
  229. }
  230. }
  231. void MonitorMFSlitDoor()
  232. {
  233. ModuleName mod = ModuleName.TM;
  234. // LLA T door open
  235. if (IO.DO[$"{mod}.DO_LLA_Slit_Door_T_Open"].Value)
  236. {
  237. IO.DI[$"{mod}.DI_LLA_T_Slit_Door_open_Position"].Value = true;
  238. IO.DI[$"{mod}.DI_LLA_T_Slit_Door_close_Position"].Value = false;
  239. }
  240. // LLB T door open
  241. if (IO.DO[$"{mod}.DO_LLB_Slit_Door_T_Open"].Value)
  242. {
  243. IO.DI[$"{mod}.DI_LLB_T_Slit_Door_open_Position"].Value = true;
  244. IO.DI[$"{mod}.DI_LLB_T_Slit_Door_close_Position"].Value = false;
  245. }
  246. // LLA E door open
  247. if (IO.DO[$"{mod}.DO_LLA_Slit_Door_E_Open"].Value)
  248. {
  249. IO.DI[$"{mod}.DI_LLA_E_Slit_Door_open_Position"].Value = true;
  250. IO.DI[$"{mod}.DI_LLA_E_Slit_Door_close_Position"].Value = false;
  251. }
  252. // LLB E door open
  253. if (IO.DO[$"{mod}.DO_LLB_Slit_Door_E_Open"].Value)
  254. {
  255. IO.DI[$"{mod}.DI_LLB_E_Slit_Door_open_Position"].Value = true;
  256. IO.DI[$"{mod}.DI_LLB_E_Slit_Door_close_Position"].Value = false;
  257. }
  258. // LLA T door close
  259. if (IO.DO[$"{mod}.DO_LLA_Slit_Door_T_Close"].Value)
  260. {
  261. IO.DI[$"{mod}.DI_LLA_T_Slit_Door_open_Position"].Value = false;
  262. IO.DI[$"{mod}.DI_LLA_T_Slit_Door_close_Position"].Value = true;
  263. }
  264. // LLB T door close
  265. if (IO.DO[$"{mod}.DO_LLB_Slit_Door_T_Close"].Value)
  266. {
  267. IO.DI[$"{mod}.DI_LLB_T_Slit_Door_open_Position"].Value = false;
  268. IO.DI[$"{mod}.DI_LLB_T_Slit_Door_close_Position"].Value = true;
  269. }
  270. // LLA E door close
  271. if (IO.DO[$"{mod}.DO_LLA_Slit_Door_E_Close"].Value)
  272. {
  273. IO.DI[$"{mod}.DI_LLA_E_Slit_Door_open_Position"].Value = false;
  274. IO.DI[$"{mod}.DI_LLA_E_Slit_Door_close_Position"].Value = true;
  275. }
  276. // LLB E door close
  277. if (IO.DO[$"{mod}.DO_LLB_Slit_Door_E_Close"].Value)
  278. {
  279. IO.DI[$"{mod}.DI_LLB_E_Slit_Door_open_Position"].Value = false;
  280. IO.DI[$"{mod}.DI_LLB_E_Slit_Door_close_Position"].Value = true;
  281. }
  282. }
  283. void MonitorPin(ModuleName mod)
  284. {
  285. // lift pin up
  286. if (IO.DO[$"{mod}.DO_Lift_Pin_Up"].Value != IO.DO[$"{mod}.DO_Lift_Pin_Down"].Value)
  287. {
  288. IO.DI[$"{mod}.DI_Lift_Pin_Up_POS"].Value = IO.DO[$"{mod}.DO_Lift_Pin_Up"].Value;
  289. IO.DI[$"{mod}.DI_Lift_Pin_Down_POS"].Value = IO.DO[$"{mod}.DO_Lift_Pin_Down"].Value;
  290. }
  291. }
  292. void MonitorExtendAndRetract(ModuleName mod)
  293. {
  294. // Extend
  295. _trigLLExtend.CLK = IO.DO[$"{mod}.DO_Loadlock_Arm_Extend"].Value;
  296. if (_trigLLExtend.Q)
  297. {
  298. _trigLLRetract.RST = true;
  299. Thread.Sleep(500);
  300. IO.DI[$"{mod}.DI_Loadlock_Arm_Extend_POS"].Value = true;
  301. IO.DI[$"{mod}.DI_Loadlock_Arm_Retract_POS"].Value = false;
  302. IO.DI[$"{mod}.DI_Small_Wafer_In_POS"].Value = false;
  303. IO.DI[$"{mod}.DI_Big_Wafer_In_POS"].Value = false;
  304. }
  305. // Retract
  306. _trigLLRetract.CLK = IO.DO[$"{mod}.DO_Loadlock_Arm_Retract"].Value;
  307. if (_trigLLRetract.Q)
  308. {
  309. count++;
  310. _trigLLExtend.RST = true;
  311. Thread.Sleep(500);
  312. IO.DI[$"{mod}.DI_Loadlock_Arm_Extend_POS"].Value = false;
  313. IO.DI[$"{mod}.DI_Loadlock_Arm_Retract_POS"].Value = true;
  314. if (count == 1)
  315. {
  316. IO.DI[$"{mod}.DI_Small_Wafer_In_POS"].Value = false;
  317. IO.DI[$"{mod}.DI_Big_Wafer_In_POS"].Value = false;
  318. }
  319. else if (count == 2)
  320. {
  321. count = 0;
  322. IO.DI[$"{mod}.DI_Small_Wafer_In_POS"].Value = true;
  323. IO.DI[$"{mod}.DI_Big_Wafer_In_POS"].Value = false;
  324. }
  325. }
  326. }
  327. void MonitorPressure(ModuleName mod)
  328. {
  329. // pressure
  330. string sAI_Foreline = "AI_Foreline_Pressure";
  331. // Loadlock pressure
  332. string sAI_LoadLockPressure = "AI_Loadlock_Pressure";
  333. // Foreline
  334. if (SkyPumpMockPMA._simPumpStatus == SkyPumpMockPMA.SimPumpStatus.Open || EdwardsPumpMockPMA._simPumpStatus == EdwardsPumpMockPMA.SimEdwardsPumpStatus.Open)
  335. {
  336. SetAiValue($"{mod}.{sAI_Foreline}", GetAiValue($"{mod}.{sAI_Foreline}") - _rd.Next(500, 600));
  337. }
  338. else
  339. {
  340. SetAiValue($"{mod}.{sAI_Foreline}", GetAiValue($"{mod}.{sAI_Foreline}") + _rd.Next(500, 600));
  341. }
  342. // PLC 模拟量范围[0,4000], 电压[0, 10V], 压力[0, 760Torr]
  343. string sAI_ChamberPressure = "AI_Chamber_Pressure";
  344. string sAI_ProcessPressure = "AI_Process_Pressure";
  345. //float chamber_pressure = GetMockChamberPressure(mod);
  346. //float process_pressure = GetAiValue($"{mod}.AI_Process_Pressure");
  347. // soft pump & fast pump
  348. DOAccessor fast_pump_vlv = IO.DO[$"{mod}.DO_Fast_Pumping_Valve"];
  349. DOAccessor soft_pump_vlv = IO.DO[$"{mod}.DO_Soft_Pumping_Valve"];
  350. DOAccessor turbo_pump_vlv = IO.DO[$"{mod}.DO_Turbo_Pump_Pumping_Valve"];
  351. if (fast_pump_vlv.Value || soft_pump_vlv.Value || turbo_pump_vlv.Value)
  352. {
  353. if (fast_pump_vlv.Value && soft_pump_vlv.Value)
  354. {
  355. float getAiValue_ChamberPressure = GetAiValue($"{mod}.{sAI_ChamberPressure}");
  356. float getAiValue_ProcessPressure = GetAiValue($"{mod}.{sAI_ProcessPressure}");
  357. if (getAiValue_ProcessPressure <= 10000 && getAiValue_ChamberPressure > 10000)
  358. {
  359. SetAiValue($"{mod}.{sAI_ChamberPressure}", GetAiValue($"{mod}.{sAI_ChamberPressure}") - 30000);
  360. //SetAiValue($"{mod}.{sAI_ProcessPressure}", GetAiValue($"{mod}.{sAI_ProcessPressure}") - 150);
  361. }
  362. else if (getAiValue_ProcessPressure <= 10000 && getAiValue_ChamberPressure <= 10000)
  363. {
  364. getAiValue_ProcessPressure = getAiValue_ChamberPressure;
  365. SetAiValue($"{mod}.{sAI_ChamberPressure}", GetAiValue($"{mod}.{sAI_ProcessPressure}") - 1500);
  366. SetAiValue($"{mod}.{sAI_ProcessPressure}", GetAiValue($"{mod}.{sAI_ProcessPressure}") - 1500);
  367. }
  368. //SetAiValue($"{mod}.{sAI_ChamberPressure}", GetAiValue($"{mod}.{sAI_ChamberPressure}") - _rd.Next(15000, 16000));
  369. //SetAiValue($"{mod}.{sAI_ProcessPressure}", GetAiValue($"{mod}.{sAI_ProcessPressure}") - _rd.Next(150, 160));
  370. }
  371. else if (fast_pump_vlv.Value)
  372. {
  373. float getAiValue_ChamberPressure = GetAiValue($"{mod}.{sAI_ChamberPressure}");
  374. float getAiValue_ProcessPressure = GetAiValue($"{mod}.{sAI_ProcessPressure}");
  375. if (getAiValue_ProcessPressure <= 10000 && getAiValue_ChamberPressure > 10000)
  376. {
  377. SetAiValue($"{mod}.{sAI_ChamberPressure}", GetAiValue($"{mod}.{sAI_ChamberPressure}") - 25000);
  378. //SetAiValue($"{mod}.{sAI_ProcessPressure}", GetAiValue($"{mod}.{sAI_ProcessPressure}") - 150);
  379. }
  380. else if (getAiValue_ProcessPressure <= 10000 && getAiValue_ChamberPressure <= 10000)
  381. {
  382. getAiValue_ProcessPressure = getAiValue_ChamberPressure;
  383. SetAiValue($"{mod}.{sAI_ChamberPressure}", GetAiValue($"{mod}.{sAI_ProcessPressure}") - 1300);
  384. SetAiValue($"{mod}.{sAI_ProcessPressure}", GetAiValue($"{mod}.{sAI_ProcessPressure}") - 1300);
  385. }
  386. //SetAiValue($"{mod}.{sAI_ChamberPressure}", GetAiValue($"{mod}.{sAI_ChamberPressure}") - _rd.Next(12000, 13000));
  387. //SetAiValue($"{mod}.{sAI_ProcessPressure}", GetAiValue($"{mod}.{sAI_ProcessPressure}") - _rd.Next(120, 130));
  388. }
  389. else if (soft_pump_vlv.Value)
  390. {
  391. float getAiValue_ChamberPressure = GetAiValue($"{mod}.{sAI_ChamberPressure}");
  392. float getAiValue_ProcessPressure = GetAiValue($"{mod}.{sAI_ProcessPressure}");
  393. if (getAiValue_ProcessPressure <= 10000 && getAiValue_ChamberPressure > 10000)
  394. {
  395. SetAiValue($"{mod}.{sAI_ChamberPressure}", GetAiValue($"{mod}.{sAI_ChamberPressure}") - 22000);
  396. //SetAiValue($"{mod}.{sAI_ProcessPressure}", GetAiValue($"{mod}.{sAI_ProcessPressure}") - 150);
  397. }
  398. else if (getAiValue_ProcessPressure <= 10000 && getAiValue_ChamberPressure <= 10000)
  399. {
  400. getAiValue_ProcessPressure = getAiValue_ChamberPressure;
  401. SetAiValue($"{mod}.{sAI_ChamberPressure}", GetAiValue($"{mod}.{sAI_ProcessPressure}") - 1100);
  402. SetAiValue($"{mod}.{sAI_ProcessPressure}", GetAiValue($"{mod}.{sAI_ProcessPressure}") - 1100);
  403. }
  404. //SetAiValue($"{mod}.{sAI_ChamberPressure}", GetAiValue($"{mod}.{sAI_ChamberPressure}") - _rd.Next(13000, 14000));
  405. //SetAiValue($"{mod}.{sAI_ProcessPressure}", GetAiValue($"{mod}.{sAI_ProcessPressure}") - _rd.Next(100, 110));
  406. }
  407. else if (turbo_pump_vlv.Value)
  408. {
  409. float getAiValue_ChamberPressure = GetAiValue($"{mod}.{sAI_ChamberPressure}");
  410. float getAiValue_ProcessPressure = GetAiValue($"{mod}.{sAI_ProcessPressure}");
  411. getAiValue_ProcessPressure = getAiValue_ChamberPressure;
  412. SetAiValue($"{mod}.{sAI_ChamberPressure}", GetAiValue($"{mod}.{sAI_ProcessPressure}") - 500);
  413. SetAiValue($"{mod}.{sAI_ProcessPressure}", GetAiValue($"{mod}.{sAI_ProcessPressure}") - 500);
  414. }
  415. }
  416. // fast vent & purge
  417. DOAccessor vent_vlv = IO.DO[$"{mod}.DO_N2_Valve"];
  418. //DOAccessor purge_vlv = IO.DO[$"{mod}.DO_Chamber_purge_valve"];
  419. //if (vent_vlv.Value || purge_vlv.Value)
  420. //{
  421. // if (vent_vlv.Value && purge_vlv.Value)
  422. // {
  423. // float getAiValue_ChamberPressure = GetAiValue($"{mod}.{sAI_ChamberPressure}");
  424. // float getAiValue_ProcessPressure = GetAiValue($"{mod}.{sAI_ProcessPressure}");
  425. // if (getAiValue_ProcessPressure <= 10000 && getAiValue_ChamberPressure > 10000)
  426. // {
  427. // SetAiValue($"{mod}.{sAI_ChamberPressure}", GetAiValue($"{mod}.{sAI_ChamberPressure}") + 30000);
  428. // //SetAiValue($"{mod}.{sAI_ProcessPressure}", GetAiValue($"{mod}.{sAI_ProcessPressure}") - 150);
  429. // }
  430. // else if (getAiValue_ProcessPressure <= 10000 && getAiValue_ChamberPressure <= 10000)
  431. // {
  432. // getAiValue_ProcessPressure = getAiValue_ChamberPressure;
  433. // SetAiValue($"{mod}.{sAI_ChamberPressure}", GetAiValue($"{mod}.{sAI_ProcessPressure}") + 1500);
  434. // SetAiValue($"{mod}.{sAI_ProcessPressure}", GetAiValue($"{mod}.{sAI_ProcessPressure}") + 1500);
  435. // }
  436. // //SetAiValue($"{mod}.{sAI_ChamberPressure}", GetAiValue($"{mod}.{sAI_ChamberPressure}") + _rd.Next(45000, 50000));
  437. // //SetAiValue($"{mod}.{sAI_ProcessPressure}", GetAiValue($"{mod}.{sAI_ProcessPressure}") + _rd.Next(150, 160));
  438. // }
  439. // else
  440. //
  441. if (vent_vlv.Value)
  442. {
  443. float getAiValue_ChamberPressure = GetAiValue($"{mod}.{sAI_ChamberPressure}");
  444. float getAiValue_ProcessPressure = GetAiValue($"{mod}.{sAI_ProcessPressure}");
  445. if (getAiValue_ProcessPressure <= 10000 && getAiValue_ChamberPressure > 10000)
  446. {
  447. SetAiValue($"{mod}.{sAI_ChamberPressure}", GetAiValue($"{mod}.{sAI_ChamberPressure}") + 25000);
  448. //SetAiValue($"{mod}.{sAI_ProcessPressure}", GetAiValue($"{mod}.{sAI_ProcessPressure}") - 150);
  449. }
  450. else if (getAiValue_ProcessPressure <= 10000 && getAiValue_ChamberPressure <= 10000)
  451. {
  452. getAiValue_ProcessPressure = getAiValue_ChamberPressure;
  453. SetAiValue($"{mod}.{sAI_ChamberPressure}", GetAiValue($"{mod}.{sAI_ProcessPressure}") + 1300);
  454. SetAiValue($"{mod}.{sAI_ProcessPressure}", GetAiValue($"{mod}.{sAI_ProcessPressure}") + 1300);
  455. }
  456. else
  457. {
  458. SetAiValue($"{mod}.{sAI_ChamberPressure}", GetAiValue($"{mod}.{sAI_ChamberPressure}") + 25000);
  459. }
  460. //SetAiValue($"{mod}.{sAI_ChamberPressure}", GetAiValue($"{mod}.{sAI_ChamberPressure}") + _rd.Next(25000, 30000));
  461. //SetAiValue($"{mod}.{sAI_ProcessPressure}", GetAiValue($"{mod}.{sAI_ProcessPressure}") + _rd.Next(130, 150));
  462. }
  463. // Loadlock Pumping Valve
  464. DOAccessor Loadlock_pump_vlv = IO.DO[$"{mod}.DO_Loadlock_Pumping_Valve"];
  465. if (Loadlock_pump_vlv.Value)
  466. {
  467. SetAiValue($"{mod}.{sAI_LoadLockPressure}", GetAiValue($"{mod}.{sAI_LoadLockPressure}") - 30000);
  468. }
  469. // Loadlock vent
  470. DOAccessor Loadlock_vent_vlv = IO.DO[$"{mod}.DO_Loadlock_Vent_Valve"];
  471. if (Loadlock_vent_vlv.Value)
  472. {
  473. SetAiValue($"{mod}.{sAI_LoadLockPressure}", GetAiValue($"{mod}.{sAI_LoadLockPressure}") + 30000);
  474. }
  475. // 压力值越界,复位
  476. float chamber_pressure1 = GetAiValue($"{mod}.{sAI_ChamberPressure}");
  477. if (chamber_pressure1 > ATM_PRESSURE)
  478. {
  479. SetAiValue($"{mod}.AI_Chamber_Pressure", ATM_PRESSURE);
  480. }
  481. else if (chamber_pressure1 < 20)
  482. {
  483. SetAiValue($"{mod}.AI_Chamber_Pressure", 20);
  484. }
  485. float process_pressure1 = GetAiValue($"{mod}.{sAI_ProcessPressure}");
  486. if (process_pressure1 > PROCESS_GAUGE)
  487. {
  488. SetAiValue($"{mod}.AI_Process_Pressure", PROCESS_GAUGE);
  489. }
  490. else if (process_pressure1 < 20)
  491. {
  492. SetAiValue($"{mod}.AI_Process_Pressure", 20);
  493. }
  494. float foreline_pressure = GetAiValue($"{mod}.{sAI_Foreline}");
  495. if (foreline_pressure > 10000)
  496. {
  497. SetAiValue($"{mod}.AI_Foreline_Pressure", 10000);
  498. }
  499. else if (foreline_pressure < 150)
  500. {
  501. SetAiValue($"{mod}.AI_Foreline_Pressure", 150);
  502. }
  503. // LoadLock压力值越界,复位
  504. float LoadLock_pressure1 = GetAiValue($"{mod}.{sAI_LoadLockPressure}");
  505. if (LoadLock_pressure1 > ATM_LoadLock_PRESSURE)
  506. {
  507. SetAiValue($"{mod}.AI_Loadlock_Pressure", ATM_LoadLock_PRESSURE);
  508. }
  509. else if (LoadLock_pressure1 < 20)
  510. {
  511. SetAiValue($"{mod}.AI_Loadlock_Pressure", 20);
  512. }
  513. // 模拟压力计漂移
  514. //int p1 = (int)GetMockChamberPressure(mod);
  515. //int new_p1 = _rd.Next(p1 - 2, p1 + 2);
  516. //SetAiValue($"{mod}.AI_Chamber_Pressure", new_p1);
  517. //int p2 = (int)GetAiValue($"{mod}.AI_Foreline_Pressure");
  518. //int new_p2 = _rd.Next(p2 - 1, p2 + 1);
  519. //SetAiValue($"{mod}.AI_Foreline_Pressure", new_p2);
  520. //int p3 = (int)GetAiValue($"{mod}.AI_Process_Pressure");
  521. //int new_p3 = _rd.Next(p3 - 1, p3 + 1);
  522. //SetAiValue($"{mod}.AI_Process_Pressure", new_p3);
  523. // 根据当前压力值设定信号
  524. //float chamber_pressure2 = GetMockChamberPressure(mod);
  525. // ATM switch
  526. IO.DI[$"{mod}.DI_PM_ATM_SW"].Value = GetAiValue($"{mod}.{sAI_ChamberPressure}") > ATM_THRESHOLD;
  527. // VAC switch
  528. IO.DI[$"{mod}.DI_PM_VAC_SW"].Value = GetAiValue($"{mod}.{sAI_ChamberPressure}") < VAC_SW_PRESSURE;
  529. // Throttle valve
  530. //var pos_sp = IO.AO[$"{mod}.AO_Throttle_Valve_Pressure_Setpoint"].Value;
  531. //var mock_pos_fb = _rd.Next(pos_sp - 2, pos_sp + 2);
  532. ////IO.AI[$"{mod}.AI_Throttle_Valve_Real_Pressure"].Value = (short)mock_pos_fb;
  533. //SetAiValue($"{mod}.AI_Throttle_Valve_Real_Pressure", mock_pos_fb);
  534. // 压力值
  535. //if (GetAiValue($"{mod}.AI_Throttle_Valve_Real_Pressure") < GetAoValue($"{mod}.AO_Throttle_Valve_Pressure_Setpoint"))
  536. //{
  537. // short increase = (short)_rd.Next(20, 30);
  538. // SetAiValue($"{mod}.AI_Throttle_Valve_Real_Pressure", GetAiValue($"{mod}.AI_Throttle_Valve_Real_Pressure") + increase);
  539. // if (GetAiValue($"{mod}.AI_Throttle_Valve_Real_Pressure") > GetAoValue($"{mod}.AO_Throttle_Valve_Pressure_Setpoint"))
  540. // {
  541. // SetAiValue($"{mod}.AI_Throttle_Valve_Real_Pressure", GetAoValue($"{mod}.AO_Throttle_Valve_Pressure_Setpoint"));
  542. // }
  543. //}
  544. //else
  545. //{
  546. // short increase = (short)_rd.Next(20, 30);
  547. // SetAiValue($"{mod}.AI_Throttle_Valve_Real_Pressure", GetAiValue($"{mod}.AI_Throttle_Valve_Real_Pressure") - increase);
  548. // if (GetAiValue($"{mod}.AI_Throttle_Valve_Real_Pressure") < GetAoValue($"{mod}.AO_Throttle_Valve_Pressure_Setpoint"))
  549. // {
  550. // SetAiValue($"{mod}.AI_Throttle_Valve_Real_Pressure", GetAoValue($"{mod}.AO_Throttle_Valve_Pressure_Setpoint"));
  551. // }
  552. //}
  553. //// 位置值
  554. //if (GetAiValue($"{mod}.AI_Throttle_Valve_Real_Position") < GetAoValue($"{mod}.AO_Throttle_Valve_Position_Setpoint"))
  555. //{
  556. // short increase = (short)_rd.Next(20, 30);
  557. // SetAiValue($"{mod}.AI_Throttle_Valve_Real_Position", GetAiValue($"{mod}.AI_Throttle_Valve_Real_Position") + increase);
  558. // if (GetAiValue($"{mod}.AI_Throttle_Valve_Real_Position") > GetAoValue($"{mod}.AO_Throttle_Valve_Position_Setpoint"))
  559. // {
  560. // SetAiValue($"{mod}.AI_Throttle_Valve_Real_Position", GetAoValue($"{mod}.AO_Throttle_Valve_Position_Setpoint"));
  561. // }
  562. //}
  563. //else
  564. //{
  565. // short increase = (short)_rd.Next(20, 30);
  566. // SetAiValue($"{mod}.AI_Throttle_Valve_Real_Position", GetAiValue($"{mod}.AI_Throttle_Valve_Real_Position") - increase);
  567. // if (GetAiValue($"{mod}.AI_Throttle_Valve_Real_Position") < GetAoValue($"{mod}.AO_Throttle_Valve_Position_Setpoint"))
  568. // {
  569. // SetAiValue($"{mod}.AI_Throttle_Valve_Real_Position", GetAoValue($"{mod}.AO_Throttle_Valve_Position_Setpoint"));
  570. // }
  571. //}
  572. }
  573. //float GetMockChamberPressure(ModuleName mod)
  574. //{
  575. // return GetAiValue($"{mod}.AI_Chamber_Pressure");
  576. //}
  577. //void SetMockChamberPressure(ModuleName mod, float val)
  578. //{
  579. // SetAiValue($"{mod}.AI_Chamber_Pressure", val);
  580. //}
  581. void SetAiValue(string name, float value)
  582. {
  583. byte[] flow = BitConverter.GetBytes(value);
  584. short high1 = BitConverter.ToInt16(flow, 0);
  585. short low1 = BitConverter.ToInt16(flow, 2);
  586. IO.AI[name].Buffer[IO.AI[name].Index] = BitConverter.ToInt16(flow, 0);
  587. IO.AI[name].Buffer[IO.AI[name].Index + 1] = BitConverter.ToInt16(flow, 2);
  588. byte[] high = BitConverter.GetBytes(IO.AI[name].Buffer[IO.AI[name].Index]);
  589. byte[] low = BitConverter.GetBytes(IO.AI[name].Buffer[IO.AI[name].Index + 1]);
  590. float readback = BitConverter.ToSingle(new[] { high[0], high[1], low[0], low[1] }, 0);
  591. }
  592. float GetAiValue(string name)
  593. {
  594. byte[] high = BitConverter.GetBytes(IO.AI[name].Buffer[IO.AI[name].Index]);
  595. byte[] low = BitConverter.GetBytes(IO.AI[name].Buffer[IO.AI[name].Index + 1]);
  596. float flow = BitConverter.ToSingle(new[] { high[0], high[1], low[0], low[1] }, 0);
  597. return flow;
  598. }
  599. float GetAoValue(string name)
  600. {
  601. byte[] high = BitConverter.GetBytes(IO.AO[name].Buffer[IO.AO[name].Index]);
  602. byte[] low = BitConverter.GetBytes(IO.AO[name].Buffer[IO.AO[name].Index + 1]);
  603. float flow = BitConverter.ToSingle(new[] { high[0], high[1], low[0], low[1] }, 0);
  604. return flow;
  605. }
  606. void MonitorTemperature(ModuleName mod)
  607. {
  608. //IO.DI[$"{mod}.DI_Substrate_Heater_On_FB"].Value = IO.DO[$"{mod}.DO_Substrate_Heater_On"].Value;
  609. IO.DI[$"{mod}.DI_Foreline_Heater_On_FB"].Value = IO.DO[$"{mod}.DO_Forline_Heater_On"].Value;
  610. IO.DI[$"{mod}.DI_CHB_Wall_Heater_On_FB"].Value = IO.DO[$"{mod}.DO_CHB_Wall_Heater_On"].Value;
  611. IO.DI[$"{mod}.DI_Foreline_TC_Deviation_out_of_range"].Value = false;
  612. IO.DI[$"{mod}.DI_Substrate_TC_Deviation_out_of_range"].Value = false;
  613. // 底座
  614. //if (IO.DO[$"{mod}.DO_Substrate_Heater_On"].Value &&
  615. // GetAiValue($"{mod}.AI_Substrate_Control_TC_Temp") < GetAoValue($"{mod}.AO_Substrate_Temperature_Setpoint"))
  616. //{
  617. // SetAiValue($"{mod}.AI_Substrate_Control_TC_Temp", GetAiValue($"{mod}.AI_Substrate_Control_TC_Temp") + _rd.Next(1, 2));
  618. // SetAiValue($"{mod}.AI_Substrate_Monitor_TC_Temp", GetAiValue($"{mod}.AI_Substrate_Monitor_TC_Temp") + _rd.Next(1, 2));
  619. //}
  620. //else if (IO.DO[$"{mod}.DO_Substrate_Heater_On"].Value &&
  621. // GetAiValue($"{mod}.AI_Substrate_Control_TC_Temp") > GetAoValue($"{mod}.AO_Substrate_Temperature_Setpoint"))
  622. //{
  623. // SetAiValue($"{mod}.AI_Substrate_Control_TC_Temp", GetAiValue($"{mod}.AI_Substrate_Control_TC_Temp") - _rd.Next(1, 2));
  624. // SetAiValue($"{mod}.AI_Substrate_Monitor_TC_Temp", GetAiValue($"{mod}.AI_Substrate_Monitor_TC_Temp") - _rd.Next(1, 2));
  625. //}
  626. // Foreline
  627. if (IO.DO[$"{mod}.DO_Forline_Heater_On"].Value &&
  628. GetAiValue($"{mod}.AI_Fline_Control_TC_Temp") < GetAoValue($"{mod}.AO_Foreline_Temperature_Setpoint"))
  629. {
  630. SetAiValue($"{mod}.AI_Fline_Control_TC_Temp", GetAiValue($"{mod}.AI_Fline_Control_TC_Temp") + _rd.Next(1, 2));
  631. SetAiValue($"{mod}.AI_Fline_Monitor_TC_Temp", GetAiValue($"{mod}.AI_Fline_Monitor_TC_Temp") + _rd.Next(1, 2));
  632. }
  633. else if (IO.DO[$"{mod}.DO_Forline_Heater_On"].Value &&
  634. GetAiValue($"{mod}.AI_Fline_Control_TC_Temp") > GetAoValue($"{mod}.AO_Foreline_Temperature_Setpoint"))
  635. {
  636. SetAiValue($"{mod}.AI_Fline_Control_TC_Temp", GetAiValue($"{mod}.AI_Fline_Control_TC_Temp") - _rd.Next(1, 2));
  637. SetAiValue($"{mod}.AI_Fline_Monitor_TC_Temp", GetAiValue($"{mod}.AI_Fline_Monitor_TC_Temp") - _rd.Next(1, 2));
  638. }
  639. // Wall
  640. if (IO.DO[$"{mod}.DO_CHB_Wall_Heater_On"].Value &&
  641. GetAiValue($"{mod}.AI_CHB_Wall_Control_TC_Temp") < GetAoValue($"{mod}.AO_CHB_Wall_Temperature_Setpoint"))
  642. {
  643. SetAiValue($"{mod}.AI_CHB_Wall_Control_TC_Temp", GetAiValue($"{mod}.AI_CHB_Wall_Control_TC_Temp") + _rd.Next(1, 2));
  644. SetAiValue($"{mod}.AI_CHB_Wall_Monitor_TC_Temp", GetAiValue($"{mod}.AI_CHB_Wall_Monitor_TC_Temp") + _rd.Next(1, 2));
  645. }
  646. else if (IO.DO[$"{mod}.DO_CHB_Wall_Heater_On"].Value &&
  647. GetAiValue($"{mod}.AI_Substrate_Control_TC_Temp") > GetAoValue($"{mod}.AO_CHB_Wall_Temperature_Setpoint"))
  648. {
  649. SetAiValue($"{mod}.AI_CHB_Wall_Control_TC_Temp", GetAiValue($"{mod}.AI_CHB_Wall_Control_TC_Temp") - _rd.Next(1, 2));
  650. SetAiValue($"{mod}.AI_CHB_Wall_Monitor_TC_Temp", GetAiValue($"{mod}.AI_CHB_Wall_Monitor_TC_Temp") - _rd.Next(1, 2));
  651. }
  652. }
  653. void MonitorGas(ModuleName mod)
  654. {
  655. // gas
  656. this.SimulateMFC(ModuleName.PMA, 1);
  657. this.SimulateMFC(ModuleName.PMA, 2);
  658. this.SimulateMFC(ModuleName.PMA, 3);
  659. this.SimulateMFC(ModuleName.PMA, 4);
  660. this.SimulateMFC(ModuleName.PMA, 5);
  661. this.SimulateMFC(ModuleName.PMA, 6);
  662. this.SimulateMFC(ModuleName.PMA, 7);
  663. this.SimulateMFC(ModuleName.PMA, 8);
  664. this.SimulateN2(ModuleName.PMA);
  665. this.SimulateHe(ModuleName.PMA);
  666. }
  667. private void SimulateMFC(ModuleName mod, byte gasNum)
  668. {
  669. var sp = GetAoValue($"{mod}.AO_MFC{gasNum}_Flow_Setpoint");
  670. if (gasNum == 3)
  671. {
  672. sp = Math.Max(0, sp - 150);
  673. }
  674. var mock_fb = _rd.Next((int)sp - 3, (int)sp + 3) + _rd.NextDouble();
  675. SetAiValue($"{mod}.AI_MFC{gasNum}_Flow", (float)mock_fb);
  676. }
  677. private void SimulateN2(ModuleName mod)
  678. {
  679. var sp = GetAoValue($"{mod}.AO_Turbo_Pump_N2_Flow_Setpoint");
  680. var mock_fb = _rd.Next((int)sp - 3, (int)sp + 3) + _rd.NextDouble();
  681. SetAiValue($"{mod}.AI_Turbo_Pump_N2_Flow", (float)mock_fb);
  682. }
  683. private void SimulateHe(ModuleName mod)
  684. {
  685. var sp = GetAoValue($"{mod}.AO_He_Flow_Setpoint");
  686. var mock_fb = _rd.Next((int)sp - 3, (int)sp + 3) + _rd.NextDouble();
  687. SetAiValue($"{mod}.AI_He_Flow", (float)mock_fb);
  688. }
  689. void MonitorRF(ModuleName mod)
  690. {
  691. // RF generator
  692. var sp = GetAoValue($"{mod}.AO_Generator_Power_Setpoint");
  693. var mock_fb = _rd.Next((int)sp - 3, (int)sp + 3) + _rd.NextDouble();
  694. //var mock_sp = _rd.Next(sp - 3, sp + 3);
  695. SetAiValue($"{mod}.AI_Generator_Forward_Power", (float)mock_fb);
  696. //IO.DI[$"{mod}.DI_Generator_Power_Status"].Value = IO.DO[$"{mod}.DO_Generator_Power_ON"].Value;
  697. }
  698. void MonitorIOPumpCtrl(ModuleName mod)
  699. {
  700. if (IO.DO[$"{mod}.DO_Pump_Run"].Value) IO.DI[$"{mod}.DI_Dry_Pump_Running"].Value = true;
  701. if (IO.DO[$"{mod}.DO_Pump_Stop"].Value) IO.DI[$"{mod}.DI_Dry_Pump_Running"].Value = false;
  702. }
  703. public void Terminate()
  704. {
  705. _thread.Stop();
  706. }
  707. ////////////////////////////////////////////////////////////////////////
  708. ////////////////////////////////////////////////////////////////////////
  709. public void SetCoolantOutletTemp(string module, int Temp)
  710. {
  711. SetAiValue($"{module}.AI_Coolant_Outlet_Temp", Temp);
  712. }
  713. }
  714. }