WagoSocketSimulator.cs 44 KB

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  1. using Aitex.Common.Util;
  2. using Aitex.Core.RT.Device;
  3. using Aitex.Core.RT.Log;
  4. using Aitex.Core.UI.Control;
  5. using Aitex.Core.Util;
  6. using MECF.Framework.Common.Device.Festo;
  7. using MECF.Framework.Common.Device.Wago;
  8. using MECF.Framework.Common.Net;
  9. using MECF.Framework.Common.Simulator;
  10. using MECF.Framework.Simulator.Core.Driver;
  11. using System;
  12. using System.Collections.Generic;
  13. using System.IO;
  14. using static MECF.Framework.Common.Simulator.MotorSimulator;
  15. namespace CyberX8_Simulator.Devices
  16. {
  17. public class WagoSocketSimulator : SocketDeviceSimulator
  18. {
  19. private const short WRITE_DO_STARTADDRESS = 0x0200;
  20. private const short WRITE_AO_STARTADDRESS = 0x0200;
  21. //键是名字,值是对应数据所在的位置 注意:要和WagoControlCfg里面的地址顺序对上
  22. public Dictionary<string, int> DONameIndexDic;
  23. public Dictionary<string, int> DINameIndexDic;
  24. public Dictionary<string, int> AINameIndexDic;
  25. public Dictionary<string, int> AONameIndexDic;
  26. private IByteTransform byteTransform = new BigEndianByteTransformBase();
  27. //存储模拟器数据的数组
  28. public byte[] DOBytes = new byte[200];
  29. public short[] AOShorts = new short[200];
  30. public byte[] DIBytes = new byte[200];
  31. public short[] AIShorts = new short[200];
  32. /// <summary>
  33. /// 写DO锁
  34. /// </summary>
  35. private object _writeDOLocker = new object();
  36. /// <summary>
  37. /// 写AO锁
  38. /// </summary>
  39. private object _writeAOLocker = new object();
  40. /// <summary>
  41. /// Festo Data Buffer
  42. /// </summary>
  43. private Dictionary<string, bool> _festoDataBuffer = new Dictionary<string, bool>();
  44. /// <summary>
  45. /// Name-WagoDO dictionary
  46. /// </summary>
  47. private Dictionary<string, WagoDO> _doNameWagoDODic = new Dictionary<string, WagoDO>();
  48. /// <summary>
  49. /// Name-WagoDI dictionary
  50. /// </summary>
  51. private Dictionary<string, WagoDI> _diNameWagoDIDic = new Dictionary<string, WagoDI>();
  52. /// <summary>
  53. /// 定时器
  54. /// </summary>
  55. private PeriodicJob _LoaderPeriodicJob;
  56. private PeriodicJob _Wago2PeriodicJob;
  57. private PeriodicJob _Wago4PeriodicJob;
  58. private bool _rinse1FillValve = false;
  59. private bool _rinse1DumpValve = false;
  60. private bool _rinse2FillValve = false;
  61. private bool _rinse2DumpValve = false;
  62. private bool _rinse3FillValve = false;
  63. private bool _rinse3DumpValve = false;
  64. private bool _rinse4FillValve = false;
  65. private bool _rinse4DumpValve = false;
  66. private bool _reservoir4PumpOn = false;
  67. private int _srd1currentVacuumValue;
  68. private int _srd2currentVacuumValue;
  69. private int _port;
  70. //delegate
  71. #region Delegate
  72. public delegate void VariableValueChanged(object obj);
  73. public delegate void UpdateVariableValueWagoDatasChanged(string sourceName, string targetName, bool value,bool invert);
  74. #endregion
  75. #region 事件
  76. /// <summary>
  77. /// 变量变更事件
  78. /// </summary>
  79. public event VariableValueChanged OnDIVariableValueChanged;
  80. public event VariableValueChanged OnAIVariableValueChanged;
  81. public event VariableValueChanged OnDOVariableValueChanged;
  82. public event VariableValueChanged OnAOVariableValueChanged;
  83. #endregion
  84. public WagoSocketSimulator(int port):base(port)
  85. {
  86. SimulatorCommManager.Instance.OnUpdateVariableValueChanged += UpdataDataCausedByOtherModule;
  87. MotorSimulator.Instance.OnUpdateWagoDatasChanged += UpdataDataCausedByOtherModule;
  88. InitializeData(port);
  89. _port = port;
  90. }
  91. private void UpdataDataCausedByOtherModule(string sourceName,string name, bool value, bool invert)
  92. {
  93. value = invert ? !value : value;
  94. //AI Data
  95. if (AINameIndexDic.ContainsKey(name))
  96. {
  97. switch (name)
  98. {
  99. case "r_LoaderA_LS_Vacuum_anlg":
  100. case "r_LoaderB_LS_Vacuum_anlg":
  101. AIShorts[AINameIndexDic[name]] = value ? (short)0x32C8 : (short)0x2AF8;
  102. break;
  103. case "r_DPUF_A_CHUCK_A_VAC":
  104. case "r_DPUF_A_CHUCK_B_VAC":
  105. AIShorts[AINameIndexDic[name]] = value ? (short)0x0C80 : (short)0x32C8;
  106. break;
  107. case "r_LOADERA_BERNOULLI_PRESSURE":
  108. case "r_LOADERB_BERNOULLI_PRESSURE":
  109. case "r_LOADERA_CHUCK_BLADDER":
  110. case "r_LOADERB_CHUCK_BLADDER":
  111. case "r_LOADERA_WS_BLADDER_PRESSURE":
  112. case "r_LOADERB_WS_BLADDER_PRESSURE":
  113. AIShorts[AINameIndexDic[name]] = value ? (short)0x2AF8 : (short)0x00;
  114. break;
  115. default:
  116. break;
  117. }
  118. }
  119. if (!string.IsNullOrEmpty(sourceName))
  120. {
  121. switch (sourceName)
  122. {
  123. case "c_QDRD1_DI_FILL":
  124. _rinse1FillValve = value;
  125. break;
  126. case "c_QDRD1_DUMP":
  127. _rinse1DumpValve = value;
  128. break;
  129. case "c_QDRD2_DI_FILL":
  130. _rinse2FillValve = value;
  131. break;
  132. case "c_QDRD2_DUMP":
  133. _rinse2DumpValve = value;
  134. break;
  135. case "c_QDRD3_DI_FILL":
  136. _rinse3FillValve = value;
  137. break;
  138. case "c_QDRD3_DUMP":
  139. _rinse3DumpValve = value;
  140. break;
  141. case "c_QDRD4_DI_FILL":
  142. _rinse4FillValve = value;
  143. break;
  144. case "c_QDRD4_DUMP":
  145. _rinse4DumpValve = value;
  146. break;
  147. case "c_METAL4_PUMP_ON":
  148. _reservoir4PumpOn = value;
  149. break;
  150. default:
  151. break;
  152. }
  153. }
  154. //DI Data
  155. UpdataDIBytes(name, value ? 1 : 0);
  156. //Festo Data
  157. if (name == "FlowTestClamp") _festoDataBuffer[name] = value;
  158. }
  159. /// <summary>
  160. /// 触发Wago对应数据更新
  161. /// </summary>
  162. /// <param name="position"></param>
  163. /// <param name="value"></param>
  164. private void UpdateDataCausedByWago(int position, bool value)
  165. {
  166. //Puf Simulator
  167. if (DONameIndexDic.ContainsKey("c_PUF_CHUCK") && position == DONameIndexDic["c_PUF_CHUCK"])
  168. {
  169. value = _doNameWagoDODic["c_PUF_CHUCK"].Invert? !value : value;
  170. UpdataDIBytes("r_PUF_A_CHUCK_OUT", value ? 1 : 0);
  171. UpdataDIBytes("r_PUF_B_CHUCK_OUT", value ? 1 : 0);
  172. UpdataDIBytes("r_PUF_A_CHUCK_IN", !value ? 1 : 0);
  173. UpdataDIBytes("r_PUF_B_CHUCK_IN", !value ? 1 : 0);
  174. }
  175. //HVD Simulator
  176. if (DONameIndexDic.ContainsKey("c_HVD_1_HIGH") && position == DONameIndexDic["c_HVD_1_HIGH"])
  177. {
  178. value = _doNameWagoDODic["c_HVD_1_HIGH"].Invert ? !value : value;
  179. UpdataAIShorts("r_HVD_1_ANALOG", value ? 4500 : 0);
  180. }
  181. if (DONameIndexDic.ContainsKey("c_HVD_2_HIGH") && position == DONameIndexDic["c_HVD_2_HIGH"])
  182. {
  183. value = _doNameWagoDODic["c_HVD_2_HIGH"].Invert ? !value : value;
  184. UpdataAIShorts("r_HVD_2_ANALOG", value ? 4500 : 0);
  185. }
  186. //SRD Simulator
  187. //Lift UP
  188. if (DONameIndexDic.ContainsKey("c_SRD1_LIFT_UP") && position == DONameIndexDic["c_SRD1_LIFT_UP"])
  189. {
  190. value = (_doNameWagoDODic["c_SRD1_LIFT_UP"].Invert ^ _diNameWagoDIDic["r_SRD1_LIFT_UP"].Invert) ? !value : value;
  191. UpdataDIBytes("r_SRD1_LIFT_UP", value ? 1 : 0);
  192. }
  193. if (DONameIndexDic.ContainsKey("c_SRD2_LIFT_UP") && position == DONameIndexDic["c_SRD2_LIFT_UP"])
  194. {
  195. value = (_doNameWagoDODic["c_SRD2_LIFT_UP"].Invert ^ _diNameWagoDIDic["r_SRD2_LIFT_UP"].Invert) ? !value : value;
  196. UpdataDIBytes("r_SRD2_LIFT_UP", value ? 1 : 0);
  197. }
  198. //Flippers
  199. if (DONameIndexDic.ContainsKey("c_SRD1_150_FLIPPERS_IN") && position == DONameIndexDic["c_SRD1_150_FLIPPERS_IN"])
  200. {
  201. value = (_doNameWagoDODic["c_SRD1_150_FLIPPERS_IN"].Invert ^ _diNameWagoDIDic["r_SRD1_150_FLIPPER1_OUT"].Invert) ? !value : value;
  202. UpdataDIBytes("r_SRD1_150_FLIPPER1_OUT", value ? 0 : 1);
  203. UpdataDIBytes("r_SRD1_150_FLIPPER2_OUT", value ? 0 : 1);
  204. UpdataDIBytes("r_SRD1_150_FLIPPER3_OUT", value ? 0 : 1);
  205. }
  206. if (DONameIndexDic.ContainsKey("c_SRD2_150_FLIPPERS_IN") && position == DONameIndexDic["c_SRD2_150_FLIPPERS_IN"])
  207. {
  208. value = (_doNameWagoDODic["c_SRD2_150_FLIPPERS_IN"].Invert ^ _diNameWagoDIDic["r_SRD2_150_FLIPPER1_OUT"].Invert) ? !value : value;
  209. UpdataDIBytes("r_SRD2_150_FLIPPER1_OUT", value ? 0 : 1);
  210. UpdataDIBytes("r_SRD2_150_FLIPPER2_OUT", value ? 0 : 1);
  211. UpdataDIBytes("r_SRD2_150_FLIPPER3_OUT", value ? 0 : 1);
  212. }
  213. if (DONameIndexDic.ContainsKey("c_SRD1_200_FLIPPERS_IN") && position == DONameIndexDic["c_SRD1_200_FLIPPERS_IN"])
  214. {
  215. value = (_doNameWagoDODic["c_SRD1_200_FLIPPERS_IN"].Invert ^ _diNameWagoDIDic["r_SRD1_200_FLIPPER1_OUT"].Invert) ? !value : value;
  216. UpdataDIBytes("r_SRD1_200_FLIPPER1_OUT", value ? 0 : 1);
  217. UpdataDIBytes("r_SRD1_200_FLIPPER2_OUT", value ? 0 : 1);
  218. UpdataDIBytes("r_SRD1_200_FLIPPER3_OUT", value ? 0 : 1);
  219. }
  220. if (DONameIndexDic.ContainsKey("c_SRD2_200_FLIPPERS_IN") && position == DONameIndexDic["c_SRD2_200_FLIPPERS_IN"])
  221. {
  222. value = (_doNameWagoDODic["c_SRD2_200_FLIPPERS_IN"].Invert ^ _diNameWagoDIDic["r_SRD2_200_FLIPPER1_OUT"].Invert) ? !value : value;
  223. UpdataDIBytes("r_SRD2_200_FLIPPER1_OUT", value ? 0 : 1);
  224. UpdataDIBytes("r_SRD2_200_FLIPPER2_OUT", value ? 0 : 1);
  225. UpdataDIBytes("r_SRD2_200_FLIPPER3_OUT", value ? 0 : 1);
  226. }
  227. //Shuttle
  228. if (DONameIndexDic.ContainsKey("c_SRD1_Shutter_Close") && position == DONameIndexDic["c_SRD1_Shutter_Close"])
  229. {
  230. value = (_doNameWagoDODic["c_SRD1_Shutter_Close"].Invert ^ _diNameWagoDIDic["r_SRD1_SHUTTER_OPEN"].Invert) ? !value : value;
  231. UpdataDIBytes("r_SRD1_SHUTTER_OPEN", value ? 0 : 1);
  232. UpdataDIBytes("r_SRD1_SHUTTER_CLOSED", value ? 1 : 0);
  233. }
  234. if (DONameIndexDic.ContainsKey("c_SRD2_Shutter_Close") && position == DONameIndexDic["c_SRD2_Shutter_Close"])
  235. {
  236. value = (_doNameWagoDODic["c_SRD2_Shutter_Close"].Invert ^ _diNameWagoDIDic["r_SRD2_SHUTTER_OPEN"].Invert) ? !value : value;
  237. UpdataDIBytes("r_SRD2_SHUTTER_OPEN", value ? 0 : 1);
  238. UpdataDIBytes("r_SRD2_SHUTTER_CLOSED", value ? 1 : 0);
  239. }
  240. //Vacuum
  241. if (DONameIndexDic.ContainsKey("c_SRD1_CHUCK_VACUUM") && position == DONameIndexDic["c_SRD1_CHUCK_VACUUM"])
  242. {
  243. value = (_doNameWagoDODic["c_SRD1_CHUCK_VACUUM"].Invert ) ? !value : value;
  244. _srd1currentVacuumValue = value ? 5000 : 15000;
  245. UpdataAIShorts("r_SRD1_CHUCK_VACUUM_anlg", _srd1currentVacuumValue);
  246. UpdataDIBytes("r_SRD1_CHUCK_VAC_OK", value ? 0 : 1);
  247. }
  248. if (DONameIndexDic.ContainsKey("c_SRD2_CHUCK_VACUUM") && position == DONameIndexDic["c_SRD2_CHUCK_VACUUM"])
  249. {
  250. value = _doNameWagoDODic["c_SRD2_CHUCK_VACUUM"].Invert ? !value : value;
  251. _srd2currentVacuumValue = value ? 5000 : 15000;
  252. UpdataAIShorts("r_SRD2_CHUCK_VACUUM_anlg", _srd2currentVacuumValue);
  253. UpdataDIBytes("r_SRD2_CHUCK_VAC_OK", value ? 0 : 1);
  254. }
  255. if (DONameIndexDic.ContainsKey("c_SRD1_CHUCK_ATM_ON") && position == DONameIndexDic["c_SRD1_CHUCK_ATM_ON"])
  256. {
  257. value = _doNameWagoDODic["c_SRD1_CHUCK_ATM_ON"].Invert ? !value : value;
  258. _srd1currentVacuumValue = value ? _srd1currentVacuumValue - 8000 : _srd1currentVacuumValue;
  259. UpdataAIShorts("r_SRD1_CHUCK_VACUUM_anlg", _srd1currentVacuumValue);
  260. }
  261. if (DONameIndexDic.ContainsKey("c_SRD2_CHUCK_ATM_ON") && position == DONameIndexDic["c_SRD2_CHUCK_ATM_ON"])
  262. {
  263. value = _doNameWagoDODic["c_SRD2_CHUCK_ATM_ON"].Invert ? !value : value;
  264. _srd2currentVacuumValue = value ? _srd2currentVacuumValue - 8000 : _srd2currentVacuumValue;
  265. UpdataAIShorts("r_SRD2_CHUCK_VACUUM_anlg", _srd2currentVacuumValue);
  266. }
  267. //Water
  268. if (DONameIndexDic.ContainsKey("c_SRD1_WATER_ON") && position == DONameIndexDic["c_SRD1_WATER_ON"])
  269. {
  270. value = _doNameWagoDODic["c_SRD1_WATER_ON"].Invert ? !value : value;
  271. UpdataAIShorts("r_SRD1_WATER_FLOW", value ? 30000 : 3277);
  272. }
  273. if (DONameIndexDic.ContainsKey("c_SRD2_WATER_ON") && position == DONameIndexDic["c_SRD2_WATER_ON"])
  274. {
  275. value = _doNameWagoDODic["c_SRD2_WATER_ON"].Invert ? !value : value;
  276. UpdataAIShorts("r_SRD2_WATER_FLOW", value ? 30000 : 3277);
  277. }
  278. }
  279. /// <summary>
  280. /// 初始化字典
  281. /// </summary>
  282. private void InitializeData(int port) //端口用于初始化不同Wago设备的字典
  283. {
  284. //加载对应配置文件 WagoControllerCfg-Simulator.xml
  285. try
  286. {
  287. string oldXmlPath = PathManager.GetCfgDir();
  288. string newXmlPath = oldXmlPath.Replace("CyberX8_Simulator", "CyberX8_RT") + "Devices\\WagoControllerCfg-Simulator.xml";
  289. WagoControllerCfg cfg = CustomXmlSerializer.Deserialize<WagoControllerCfg>(new FileInfo(newXmlPath));
  290. if (cfg != null)
  291. {
  292. foreach (WagoDeviceConfig config in cfg.WagoDeviceConfigs)
  293. {
  294. if (port == config.Port)
  295. {
  296. if(config.Module == "Loader" && _LoaderPeriodicJob == null)
  297. {
  298. _LoaderPeriodicJob = new PeriodicJob(100, OnTimer, $"Wago {config.Module} timer",true);
  299. }
  300. if (config.Module == "Wago2" && _Wago2PeriodicJob == null)
  301. {
  302. _Wago2PeriodicJob = new PeriodicJob(100, OnTimer1, $"Wago {config.Module} timer", true);
  303. }
  304. if (config.Module == "Wago4" && _Wago2PeriodicJob == null)
  305. {
  306. _Wago2PeriodicJob = new PeriodicJob(100, OnTimer3, $"Wago {config.Module} timer", true);
  307. }
  308. //加载DO
  309. int i = 0;
  310. DONameIndexDic = new Dictionary<string, int>();
  311. if(config.WagoDigOut != null && config.WagoDigOut.WagoDOGroups != null)
  312. {
  313. foreach (var group in config.WagoDigOut.WagoDOGroups)
  314. {
  315. foreach (var item in group.WagoDOs)
  316. {
  317. DONameIndexDic[item.Name] = i;
  318. i++;
  319. _doNameWagoDODic[item.Name] = item;
  320. }
  321. }
  322. }
  323. //加载DI
  324. i = 0;
  325. DINameIndexDic = new Dictionary<string, int>();
  326. if(config.WagoDigIn != null && config.WagoDigIn.WagoDIGroups != null)
  327. {
  328. foreach (var group in config.WagoDigIn.WagoDIGroups)
  329. {
  330. foreach (var item in group.WagoDIs)
  331. {
  332. DINameIndexDic[item.Name] = i;
  333. i++;
  334. _diNameWagoDIDic[item.Name] = item;
  335. }
  336. }
  337. }
  338. //加载AO
  339. i = 0;
  340. AONameIndexDic = new Dictionary<string, int>();
  341. if (config.WagoAnoOut != null && config.WagoAnoOut.WagoAOGroups != null)
  342. {
  343. foreach (var group in config.WagoAnoOut.WagoAOGroups)
  344. {
  345. foreach (var item in group.WagoAOs)
  346. {
  347. AONameIndexDic[item.Name] = i;
  348. i++;
  349. }
  350. }
  351. }
  352. //加载AI
  353. i = 0;
  354. AINameIndexDic = new Dictionary<string, int>();
  355. if (config.WagoAnoIn != null && config.WagoAnoIn.WagoAIGroups != null)
  356. {
  357. foreach (var group in config.WagoAnoIn.WagoAIGroups)
  358. {
  359. foreach (var item in group.WagoAIs)
  360. {
  361. AINameIndexDic[item.Name] = i;
  362. i++;
  363. }
  364. }
  365. }
  366. }
  367. }
  368. }
  369. }
  370. catch
  371. {
  372. LOG.WriteLog(eEvent.ERR_WAGO, "Wago", "Load wago WagoControllerCfg-Simulator.xml failed");
  373. }
  374. //设置IO变量默认值
  375. if (AINameIndexDic.ContainsKey("r_LoaderA_LS_Vacuum_anlg")) AIShorts[AINameIndexDic["r_LoaderA_LS_Vacuum_anlg"]] = 0x32C8;
  376. if (AINameIndexDic.ContainsKey("r_LoaderB_LS_Vacuum_anlg")) AIShorts[AINameIndexDic["r_LoaderB_LS_Vacuum_anlg"]] = 0x32C8;
  377. if (AINameIndexDic.ContainsKey("r_DPUF_A_CHUCK_A_VAC")) AIShorts[AINameIndexDic["r_DPUF_A_CHUCK_A_VAC"]] = 0x32C8;
  378. if (AINameIndexDic.ContainsKey("r_DPUF_A_CHUCK_B_VAC")) AIShorts[AINameIndexDic["r_DPUF_A_CHUCK_B_VAC"]] = 0x32C8;
  379. if (AINameIndexDic.ContainsKey("r_SYSTEM_EXHAUST")) AIShorts[AINameIndexDic["r_SYSTEM_EXHAUST"]] = 0x3A98;
  380. if (DONameIndexDic.ContainsKey("c_HVD_1_ENABLE")) DOBytes[DONameIndexDic["c_HVD_1_ENABLE"]] = 1;
  381. if (DONameIndexDic.ContainsKey("c_HVD_2_ENABLE")) DOBytes[DONameIndexDic["c_HVD_2_ENABLE"]] = 1;
  382. //QDR
  383. if (AINameIndexDic.ContainsKey("r_QDRD1_WATER_LEVEL")) AIShorts[AINameIndexDic["r_QDRD1_WATER_LEVEL"]] = 0;
  384. if (AINameIndexDic.ContainsKey("r_QDRD2_WATER_LEVEL")) AIShorts[AINameIndexDic["r_QDRD2_WATER_LEVEL"]] = 0;
  385. if (AINameIndexDic.ContainsKey("r_QDRD3_WATER_LEVEL")) AIShorts[AINameIndexDic["r_QDRD3_WATER_LEVEL"]] = 0;
  386. if (AINameIndexDic.ContainsKey("r_QDRD4_WATER_LEVEL")) AIShorts[AINameIndexDic["r_QDRD4_WATER_LEVEL"]] = 0;
  387. //SRD
  388. if (AINameIndexDic.ContainsKey("r_SRD1_CHUCK_VACUUM_anlg")) AIShorts[AINameIndexDic["r_SRD1_CHUCK_VACUUM_anlg"]] = 15000;
  389. if (AINameIndexDic.ContainsKey("r_SRD2_CHUCK_VACUUM_anlg")) AIShorts[AINameIndexDic["r_SRD2_CHUCK_VACUUM_anlg"]] = 15000;
  390. if (DINameIndexDic.ContainsKey("r_SRD1_SHUTTER_OPEN")) DIBytes[DINameIndexDic["r_SRD1_SHUTTER_OPEN"]] = 1;
  391. if (DINameIndexDic.ContainsKey("r_SRD1_SHUTTER_CLOSED")) DIBytes[DINameIndexDic["r_SRD1_SHUTTER_CLOSED"]] = 0;
  392. if (DINameIndexDic.ContainsKey("r_SRD2_SHUTTER_OPEN")) DIBytes[DINameIndexDic["r_SRD2_SHUTTER_OPEN"]] = 1;
  393. if (DINameIndexDic.ContainsKey("r_SRD2_SHUTTER_CLOSED")) DIBytes[DINameIndexDic["r_SRD2_SHUTTER_CLOSED"]] = 0;
  394. if (DINameIndexDic.ContainsKey("r_SRD_FLUID_LEVEL")) DIBytes[DINameIndexDic["r_SRD_FLUID_LEVEL"]] = 1;
  395. if (DINameIndexDic.ContainsKey("r_SRD1_CHUCK_VAC_OK")) DIBytes[DINameIndexDic["r_SRD1_CHUCK_VAC_OK"]] = 1;
  396. if (DINameIndexDic.ContainsKey("r_SRD2_CHUCK_VAC_OK")) DIBytes[DINameIndexDic["r_SRD2_CHUCK_VAC_OK"]] = 1;
  397. if (DINameIndexDic.ContainsKey("r_SRD1_150_FLIPPER1_OUT")) DIBytes[DINameIndexDic["r_SRD1_150_FLIPPER1_OUT"]] = 1;
  398. if (DINameIndexDic.ContainsKey("r_SRD1_150_FLIPPER2_OUT")) DIBytes[DINameIndexDic["r_SRD1_150_FLIPPER2_OUT"]] = 1;
  399. if (DINameIndexDic.ContainsKey("r_SRD1_150_FLIPPER3_OUT")) DIBytes[DINameIndexDic["r_SRD1_150_FLIPPER3_OUT"]] = 1;
  400. if (DINameIndexDic.ContainsKey("r_SRD1_200_FLIPPER1_OUT")) DIBytes[DINameIndexDic["r_SRD1_200_FLIPPER1_OUT"]] = 1;
  401. if (DINameIndexDic.ContainsKey("r_SRD1_200_FLIPPER2_OUT")) DIBytes[DINameIndexDic["r_SRD1_200_FLIPPER2_OUT"]] = 1;
  402. if (DINameIndexDic.ContainsKey("r_SRD1_200_FLIPPER3_OUT")) DIBytes[DINameIndexDic["r_SRD1_200_FLIPPER3_OUT"]] = 1;
  403. if (DINameIndexDic.ContainsKey("r_SRD2_150_FLIPPER1_OUT")) DIBytes[DINameIndexDic["r_SRD2_150_FLIPPER1_OUT"]] = 1;
  404. if (DINameIndexDic.ContainsKey("r_SRD2_150_FLIPPER2_OUT")) DIBytes[DINameIndexDic["r_SRD2_150_FLIPPER2_OUT"]] = 1;
  405. if (DINameIndexDic.ContainsKey("r_SRD2_150_FLIPPER3_OUT")) DIBytes[DINameIndexDic["r_SRD2_150_FLIPPER3_OUT"]] = 1;
  406. if (DINameIndexDic.ContainsKey("r_SRD2_200_FLIPPER1_OUT")) DIBytes[DINameIndexDic["r_SRD2_200_FLIPPER1_OUT"]] = 1;
  407. if (DINameIndexDic.ContainsKey("r_SRD2_200_FLIPPER2_OUT")) DIBytes[DINameIndexDic["r_SRD2_200_FLIPPER2_OUT"]] = 1;
  408. if (DINameIndexDic.ContainsKey("r_SRD2_200_FLIPPER3_OUT")) DIBytes[DINameIndexDic["r_SRD2_200_FLIPPER3_OUT"]] = 1;
  409. if (DONameIndexDic.ContainsKey("c_SRD1_150_FLIPPERS_IN")) DOBytes[DONameIndexDic["c_SRD1_150_FLIPPERS_IN"]] = 1;
  410. if (DONameIndexDic.ContainsKey("c_SRD2_150_FLIPPERS_IN")) DOBytes[DONameIndexDic["c_SRD2_150_FLIPPERS_IN"]] = 1;
  411. if (DONameIndexDic.ContainsKey("c_SRD1_200_FLIPPERS_IN")) DOBytes[DONameIndexDic["c_SRD1_200_FLIPPERS_IN"]] = 1;
  412. if (DONameIndexDic.ContainsKey("c_SRD2_200_FLIPPERS_IN")) DOBytes[DONameIndexDic["c_SRD2_200_FLIPPERS_IN"]] = 1;
  413. if (DONameIndexDic.ContainsKey("c_SRD1_LIFT_UP")) DOBytes[DONameIndexDic["c_SRD1_LIFT_UP"]] = 1;
  414. if (DONameIndexDic.ContainsKey("c_SRD2_LIFT_UP")) DOBytes[DONameIndexDic["c_SRD2_LIFT_UP"]] = 1;
  415. if (DINameIndexDic.ContainsKey("r_SRD1_WAFER_PRESENT")) DIBytes[DINameIndexDic["r_SRD1_WAFER_PRESENT"]] = 1;
  416. if (DINameIndexDic.ContainsKey("r_SRD2_WAFER_PRESENT")) DIBytes[DINameIndexDic["r_SRD2_WAFER_PRESENT"]] = 1;
  417. //Metal
  418. if (AINameIndexDic.ContainsKey("r_PUMP4_FLOW")) AIShorts[AINameIndexDic["r_PUMP4_FLOW"]] = 3277;
  419. if (AINameIndexDic.ContainsKey("r_PUMP3_FLOW")) AIShorts[AINameIndexDic["r_PUMP3_FLOW"]] = 3277;
  420. if (AINameIndexDic.ContainsKey("r_PUMP2_FLOW")) AIShorts[AINameIndexDic["r_PUMP2_FLOW"]] = 3277;
  421. if (AINameIndexDic.ContainsKey("r_PUMP1_FLOW")) AIShorts[AINameIndexDic["r_PUMP1_FLOW"]] = 3277;
  422. //Facility
  423. if (AINameIndexDic.ContainsKey("r_DI_WATER_PRESSURE")) AIShorts[AINameIndexDic["r_DI_WATER_PRESSURE"]] = 12000;
  424. if (AINameIndexDic.ContainsKey("r_HCW_FLOW")) AIShorts[AINameIndexDic["r_HCW_FLOW"]] = 16300;
  425. if (AINameIndexDic.ContainsKey("r_N2_1B_PRESSURE")) AIShorts[AINameIndexDic["r_N2_1B_PRESSURE"]] = 5400;
  426. if (AINameIndexDic.ContainsKey("r_N2_1A_PRESSURE")) AIShorts[AINameIndexDic["r_N2_1A_PRESSURE"]] = 8900;
  427. if (AINameIndexDic.ContainsKey("r_N2_2B_PRESSURE")) AIShorts[AINameIndexDic["r_N2_2B_PRESSURE"]] = 5400;
  428. if (AINameIndexDic.ContainsKey("r_N2_2A_PRESSURE")) AIShorts[AINameIndexDic["r_N2_2A_PRESSURE"]] = 8900;
  429. if (AINameIndexDic.ContainsKey("r_SYSTEM_VACUUM")) AIShorts[AINameIndexDic["r_SYSTEM_VACUUM"]] = 3276;
  430. if (AINameIndexDic.ContainsKey("r_CDA_HIGH_PRESSURE")) AIShorts[AINameIndexDic["r_CDA_HIGH_PRESSURE"]] = 10000;
  431. if (AINameIndexDic.ContainsKey("r_CDA_LOW_PRESSURE")) AIShorts[AINameIndexDic["r_CDA_LOW_PRESSURE"]] = 10000;
  432. if (AINameIndexDic.ContainsKey("r_CDA_EXTERNAL_PRESSURE")) AIShorts[AINameIndexDic["r_CDA_EXTERNAL_PRESSURE"]] = 10000;
  433. if (AINameIndexDic.ContainsKey("r_pH2")) AIShorts[AINameIndexDic["r_pH2"]] = 15000;
  434. if (AINameIndexDic.ContainsKey("r_MBS2_FLOW")) AIShorts[AINameIndexDic["r_MBS2_FLOW"]] = 16000;
  435. }
  436. #region 公共方法
  437. public void UpdataDOBytes(string name,int value)
  438. {
  439. if (OnDOVariableValueChanged != null)
  440. {
  441. OnDOVariableValueChanged(name);
  442. }
  443. if (DONameIndexDic.ContainsKey(name))
  444. {
  445. if (DONameIndexDic[name] < DOBytes.Length)
  446. {
  447. DOBytes[DONameIndexDic[name]] = value == 0 ? (byte)0 : (byte)1;
  448. }
  449. }
  450. }
  451. public void UpdataDIBytes(string name, int value)
  452. {
  453. if (OnDIVariableValueChanged != null)
  454. {
  455. OnDIVariableValueChanged(name);
  456. }
  457. if (DINameIndexDic.ContainsKey(name))
  458. {
  459. if (DINameIndexDic[name] < DIBytes.Length)
  460. {
  461. DIBytes[DINameIndexDic[name]] = value == 0 ? (byte)0 : (byte)1;
  462. }
  463. }
  464. }
  465. public void UpdataAOShorts(string name, int value)
  466. {
  467. if (OnAOVariableValueChanged != null)
  468. {
  469. OnAOVariableValueChanged(name);
  470. }
  471. if (AONameIndexDic.ContainsKey(name))
  472. {
  473. string hexValue = value.ToString("X2");
  474. try
  475. {
  476. short result = Convert.ToInt16(hexValue, 16);
  477. if (AONameIndexDic[name] < AOShorts.Length)
  478. {
  479. AOShorts[AONameIndexDic[name]] = result;
  480. }
  481. }
  482. catch (FormatException)
  483. {
  484. }
  485. }
  486. }
  487. public void UpdataAIShorts(string name, int value)
  488. {
  489. if (OnAIVariableValueChanged != null)
  490. {
  491. OnAIVariableValueChanged(name);
  492. }
  493. if (AINameIndexDic.ContainsKey(name))
  494. {
  495. string hexValue = value.ToString("X2");
  496. try
  497. {
  498. short result = Convert.ToInt16(hexValue, 16);
  499. if(AINameIndexDic[name] < AIShorts.Length)
  500. {
  501. AIShorts[AINameIndexDic[name]] = result;
  502. }
  503. }
  504. catch (FormatException)
  505. {
  506. }
  507. }
  508. }
  509. #endregion
  510. #region 功能方法
  511. /// <summary>
  512. /// 将长度为8的二进制byte数组转成对应十六进制byte值(大端模式)
  513. /// </summary>
  514. /// <param name="byteArray"></param>
  515. /// <returns></returns>
  516. public byte ConvertByteArrayToHex(byte[] byteArray)
  517. {
  518. byte result = 0;
  519. // 先将 byte 数组转换为二进制数
  520. int binaryValue = 0;
  521. for (int i = 0; i < 8; i++)
  522. {
  523. binaryValue |= (byteArray[i] << (7 - i));
  524. }
  525. // 逆转二进制数
  526. int reversedValue = 0;
  527. for (int i = 0; i < 8; i++)
  528. {
  529. reversedValue |= ((binaryValue >> i) & 1) << (7 - i);
  530. }
  531. // 转换为十六进制byte
  532. if (byte.TryParse(reversedValue.ToString("X2"), System.Globalization.NumberStyles.HexNumber, null, out result))
  533. {
  534. return result;
  535. }
  536. return 0;
  537. }
  538. /// <summary>
  539. /// 将short数组转成长度两倍的byte数组
  540. /// </summary>
  541. /// <param name="shortArray"></param>
  542. /// <returns></returns>
  543. private byte[] ConvertShortArrayToByteArray(short[] shortArray)
  544. {
  545. byte[] byteArray = new byte[shortArray.Length * 2];
  546. for (int i = 0; i < shortArray.Length; i++)
  547. {
  548. byte[] tempBytes = BitConverter.GetBytes(shortArray[i]);
  549. Array.Reverse(tempBytes);
  550. Array.Copy(tempBytes, 0, byteArray, i * 2, 2);
  551. }
  552. return byteArray;
  553. }
  554. #endregion
  555. protected override void ProcessUnsplitMessage(byte[] data)
  556. {
  557. byte command = data[7];
  558. if (command == 0x01) //读DO
  559. {
  560. short flag = byteTransform.TransInt16(data, 0);
  561. byte channel = data[6];
  562. short startAddress = byteTransform.TransInt16(data, 8);
  563. short bitCount = byteTransform.TransInt16(data, 10);
  564. byte byteCount = (byte)(bitCount / 8 + 1);
  565. byte[] bytes = new byte[byteCount];
  566. for(int i = 0; i < byteCount;i++)
  567. {
  568. byte[] tempbytes = new byte[8];
  569. Array.Copy(DOBytes,8 * i, tempbytes, 0, 8);
  570. bytes[i] = ConvertByteArrayToHex(tempbytes);
  571. }
  572. OnWriteMessage(CreateReadDigitalResponse(flag, channel, command, byteCount, bytes));
  573. return;
  574. }
  575. else if(command == 0x03)//读AO
  576. {
  577. short flag = byteTransform.TransInt16(data, 0);
  578. byte channel = data[6];
  579. short startAddress = byteTransform.TransInt16(data, 8);
  580. short registerCount = byteTransform.TransInt16(data, 10);
  581. short[] shorts = new short[registerCount];//获取指定寄存器里的内容
  582. Array.Copy(AOShorts, 0, shorts, 0, registerCount);
  583. byte[] bytes = new byte[registerCount * 2];
  584. bytes = ConvertShortArrayToByteArray(shorts); //转入长度为shorts数组长度两倍的bytes数组中
  585. OnWriteMessage(CreateReadAnalogyResponse(flag, channel, command, (byte)registerCount, bytes));
  586. return;
  587. }
  588. else if (command == 0x02)//读DI
  589. {
  590. short flag = byteTransform.TransInt16(data, 0);
  591. byte channel = data[6];
  592. short startAddress = byteTransform.TransInt16(data, 8);
  593. short bitCount = byteTransform.TransInt16(data, 10);
  594. byte byteCount = (byte)(bitCount / 8 + 1);
  595. byte[] bytes = new byte[byteCount];
  596. for (int i = 0; i < byteCount; i++)
  597. {
  598. byte[] tempbytes = new byte[8];
  599. Array.Copy(DIBytes, 8 * i, tempbytes, 0, 8);
  600. bytes[i] = ConvertByteArrayToHex(tempbytes);
  601. }
  602. OnWriteMessage(CreateReadDigitalResponse(flag, channel, command, byteCount, bytes));
  603. return;
  604. }
  605. else if (command == 0x04)//读AI
  606. {
  607. short flag = byteTransform.TransInt16(data, 0);
  608. byte channel = data[6];
  609. short startAddress = byteTransform.TransInt16(data, 8);
  610. short registerCount = byteTransform.TransInt16(data, 10);
  611. short[] shorts = new short[registerCount];//获取指定寄存器里的内容
  612. Array.Copy(AIShorts, 0, shorts, 0, registerCount);
  613. byte[] bytes = new byte[registerCount * 2];
  614. bytes = ConvertShortArrayToByteArray(shorts); //转入长度为shorts数组两倍的bytes数组中
  615. OnWriteMessage(CreateReadAnalogyResponse(flag, channel, command, (byte)registerCount, bytes));
  616. return;
  617. }
  618. else if (command == 0x05)//写DO
  619. {
  620. short startAddress = byteTransform.TransInt16(data, 8);
  621. if (startAddress > 0x03FF || startAddress < WRITE_DO_STARTADDRESS)
  622. {
  623. short flag = byteTransform.TransInt16(data, 0);
  624. byte channel = data[6];
  625. OnWriteMessage(CreateError(flag, channel, command, 0x02)); //地址错误
  626. return;
  627. }
  628. int position = startAddress - WRITE_DO_STARTADDRESS;
  629. bool status = data[10] == 0xFF ? true : false;
  630. lock (_writeDOLocker)
  631. {
  632. DOBytes[position] = status ? (byte)1 : (byte)0;
  633. }
  634. OnWriteMessage(data); //原消息返回
  635. //触发Wago对应数据更新
  636. UpdateDataCausedByWago(position, status);
  637. return;
  638. }
  639. else if (command == 0x06)//写AO
  640. {
  641. short startAddress = byteTransform.TransInt16(data, 8);
  642. if(startAddress > 0x02FF || startAddress < WRITE_AO_STARTADDRESS)
  643. {
  644. short flag = byteTransform.TransInt16(data, 0);
  645. byte channel = data[6];
  646. OnWriteMessage(CreateError(flag, channel, command, 0x02)); //地址错误
  647. return;
  648. }
  649. int position = startAddress - WRITE_AO_STARTADDRESS;
  650. short value = byteTransform.TransInt16(data, 10);
  651. lock (_writeAOLocker)
  652. {
  653. AOShorts[position] = value;
  654. }
  655. OnWriteMessage(data); //原消息返回
  656. return;
  657. }
  658. else
  659. {
  660. short flag = byteTransform.TransInt16(data, 0);
  661. byte channel = data[6];
  662. OnWriteMessage(CreateError(flag, channel, command, 0x01)); //指令错误
  663. return;
  664. }
  665. }
  666. /// <summary>
  667. /// 回复读数字量
  668. /// </summary>
  669. /// <param name="flag"></param>
  670. /// <param name="channel"></param>
  671. /// <param name="command"></param>
  672. /// <param name="byteCount"></param>
  673. /// <param name="values"></param>
  674. /// <returns></returns>
  675. private byte[] CreateReadDigitalResponse(short flag, byte channel, byte command, byte byteCount, byte[] values)
  676. {
  677. byte[] bytes = new byte[7 + 2 + values.Length]; //回复字节长度,前面7个字节固定长度 + functionCode一个字节 + byteCount一个字节+values.length个字节
  678. Array.Copy(byteTransform.GetBytes(flag), 0, bytes, 0, 2);
  679. bytes[2] = 0x00;
  680. bytes[3] = 0x00;
  681. short dataLength = (short)(3 + values.Length);
  682. Array.Copy(byteTransform.GetBytes(dataLength), 0, bytes, 4, 2);
  683. bytes[6] = channel;
  684. bytes[7] = command;
  685. bytes[8] = byteCount;
  686. Array.Copy(values, 0, bytes, 9, values.Length);
  687. return bytes;
  688. }
  689. /// <summary>
  690. /// 回复读模拟量
  691. /// </summary>
  692. /// <param name="flag"></param>
  693. /// <param name="channel"></param>
  694. /// <param name="command"></param>
  695. /// <param name="registerCount"></param>
  696. /// <param name="values"></param>
  697. /// <returns></returns>
  698. private byte[] CreateReadAnalogyResponse(short flag, byte channel, byte command, byte registerCount, byte[] values)
  699. {
  700. byte[] bytes = new byte[7 + 2 + 2 * registerCount]; //回复字节长度,前面7个字节固定长度 + functionCode一个字节 + byteCount一个字节+registerCount*2个字节(一个寄存器占两个字节)
  701. Array.Copy(byteTransform.GetBytes(flag), 0, bytes, 0, 2);
  702. bytes[2] = 0x00;
  703. bytes[3] = 0x00;
  704. short dataLength = (short)(3 + 2 * registerCount);
  705. Array.Copy(byteTransform.GetBytes(dataLength), 0, bytes, 4, 2);
  706. bytes[6] = channel;
  707. bytes[7] = command;
  708. bytes[8] = (byte)(2 * registerCount);
  709. Array.Copy(values, 0, bytes, 9, values.Length);
  710. return bytes;
  711. }
  712. /// <summary>
  713. /// 错误回复
  714. /// </summary>
  715. /// <param name="flag"></param>
  716. /// <param name="channel"></param>
  717. /// <param name="command"></param>
  718. /// <param name="error"></param>
  719. /// <returns></returns>
  720. private byte[] CreateError(short flag, byte channel, byte command, byte error)
  721. {
  722. byte[] bytes = new byte[9];
  723. Array.Copy(byteTransform.GetBytes(flag), 0, bytes, 0, 2);
  724. bytes[2] = 0x00;
  725. bytes[3] = 0x00;
  726. bytes[4] = 0x00;
  727. bytes[5] = 0x03;
  728. bytes[6] = channel;
  729. bytes[7] = (byte)(command | 0x80);
  730. bytes[8] = error;
  731. return bytes;
  732. }
  733. /// <summary>
  734. /// loader 定时器
  735. /// </summary>
  736. /// <returns></returns>
  737. private bool OnTimer()
  738. {
  739. LeakTestSimulator();
  740. return true;
  741. }
  742. /// <summary>
  743. /// Wago2定时器
  744. /// </summary>
  745. /// <returns></returns>
  746. private bool OnTimer1()
  747. {
  748. RinseWaterLevelSimulator();
  749. PumpFlowSimulator();
  750. return true;
  751. }
  752. /// <summary>
  753. /// Wago4定时器
  754. /// </summary>
  755. /// <returns></returns>
  756. private bool OnTimer3()
  757. {
  758. Pump4FlowSimulator();
  759. return true;
  760. }
  761. #region 模拟方法
  762. /// <summary>
  763. /// Loader LeakTest模拟
  764. /// </summary>
  765. private void LeakTestSimulator()
  766. {
  767. if (DOBytes[DONameIndexDic["c_VACUUM_TEST"]] == 1 && _festoDataBuffer["FlowTestClamp"] && AIShorts[AINameIndexDic["r_LOADER_GasFlowSensor_FLOW"]] == 0)
  768. {
  769. AIShorts[AINameIndexDic["r_LOADER_GasFlowSensor_FLOW"]] = 15000;
  770. }
  771. else if (DOBytes[DONameIndexDic["c_VACUUM_TEST"]] == 0 && !_festoDataBuffer["FlowTestClamp"])
  772. {
  773. AIShorts[AINameIndexDic["r_LOADER_GasFlowSensor_FLOW"]] = 0;
  774. }
  775. if (DOBytes[DONameIndexDic["c_VACUUM_TEST"]] == 1 && _festoDataBuffer["FlowTestClamp"] && AIShorts[AINameIndexDic["r_LOADER_GasFlowSensor_FLOW"]] > 3500)
  776. {
  777. AIShorts[AINameIndexDic["r_LOADER_GasFlowSensor_FLOW"]] -= 40;
  778. if (AIShorts[AINameIndexDic["r_LOADER_GasFlowSensor_FLOW"]] < 14000)
  779. {
  780. AIShorts[AINameIndexDic["r_LOADER_GasFlowSensor_FLOW"]] -= 140;
  781. }
  782. }
  783. }
  784. /// <summary>
  785. /// QDR水位模拟
  786. /// </summary>
  787. private void RinseWaterLevelSimulator()
  788. {
  789. //QDR1
  790. if (_rinse1FillValve && AIShorts[AINameIndexDic["r_QDRD1_WATER_LEVEL"]] < 25000)
  791. {
  792. AIShorts[AINameIndexDic["r_QDRD1_WATER_LEVEL"]] += 250;
  793. }
  794. if (_rinse1DumpValve && AIShorts[AINameIndexDic["r_QDRD1_WATER_LEVEL"]] > 3500) //快排
  795. {
  796. AIShorts[AINameIndexDic["r_QDRD1_WATER_LEVEL"]] -= 350;
  797. }
  798. if (AIShorts[AINameIndexDic["r_QDRD1_WATER_LEVEL"]] > 3500)//慢排
  799. {
  800. AIShorts[AINameIndexDic["r_QDRD1_WATER_LEVEL"]] -= 2;
  801. }
  802. //QDR2
  803. if (_rinse2FillValve && AIShorts[AINameIndexDic["r_QDRD2_WATER_LEVEL"]] < 25000)
  804. {
  805. AIShorts[AINameIndexDic["r_QDRD2_WATER_LEVEL"]] += 250;
  806. }
  807. if (_rinse2DumpValve && AIShorts[AINameIndexDic["r_QDRD2_WATER_LEVEL"]] > 3500)
  808. {
  809. AIShorts[AINameIndexDic["r_QDRD2_WATER_LEVEL"]] -= 300;
  810. }
  811. if (AIShorts[AINameIndexDic["r_QDRD2_WATER_LEVEL"]] > 3500)//慢排
  812. {
  813. AIShorts[AINameIndexDic["r_QDRD2_WATER_LEVEL"]] -= 2;
  814. }
  815. //QDR3
  816. if (_rinse3FillValve && AIShorts[AINameIndexDic["r_QDRD3_WATER_LEVEL"]] < 25000)
  817. {
  818. AIShorts[AINameIndexDic["r_QDRD3_WATER_LEVEL"]] += 250;
  819. }
  820. if (_rinse3DumpValve && AIShorts[AINameIndexDic["r_QDRD3_WATER_LEVEL"]] > 3500)
  821. {
  822. AIShorts[AINameIndexDic["r_QDRD3_WATER_LEVEL"]] -= 300;
  823. }
  824. if (AIShorts[AINameIndexDic["r_QDRD3_WATER_LEVEL"]] > 3500)//慢排
  825. {
  826. AIShorts[AINameIndexDic["r_QDRD3_WATER_LEVEL"]] -= 2;
  827. }
  828. //QDR4
  829. if (_rinse4FillValve && AIShorts[AINameIndexDic["r_QDRD4_WATER_LEVEL"]] < 25000)
  830. {
  831. AIShorts[AINameIndexDic["r_QDRD4_WATER_LEVEL"]] += 250;
  832. }
  833. if (_rinse4DumpValve && AIShorts[AINameIndexDic["r_QDRD4_WATER_LEVEL"]] > 3500)
  834. {
  835. AIShorts[AINameIndexDic["r_QDRD4_WATER_LEVEL"]] -= 300;
  836. }
  837. if (AIShorts[AINameIndexDic["r_QDRD4_WATER_LEVEL"]] > 3500)//慢排
  838. {
  839. AIShorts[AINameIndexDic["r_QDRD4_WATER_LEVEL"]] -= 2;
  840. }
  841. //reservoir4 pump flow
  842. AIShorts[AINameIndexDic["r_PUMP4_FLOW"]] = _reservoir4PumpOn ? (short)6000 : (short)3277;
  843. }
  844. /// <summary>
  845. /// metal1/2/3 pump流量模拟
  846. /// </summary>
  847. private void PumpFlowSimulator()
  848. {
  849. if (DOBytes[DONameIndexDic["c_METAL3_PUMP_ON"]] == 1)
  850. {
  851. AIShorts[AINameIndexDic["r_PUMP3_FLOW"]] = 6000;
  852. }
  853. else
  854. {
  855. AIShorts[AINameIndexDic["r_PUMP2_FLOW"]] = 3277;
  856. }
  857. if (DOBytes[DONameIndexDic["c_METAL2_PUMP_ON"]] == 1)
  858. {
  859. AIShorts[AINameIndexDic["r_PUMP2_FLOW"]] = 6000;
  860. }
  861. else
  862. {
  863. AIShorts[AINameIndexDic["r_PUMP1_FLOW"]] = 3277;
  864. }
  865. if (DOBytes[DONameIndexDic["c_METAL1_PUMP_ON"]] == 1)
  866. {
  867. AIShorts[AINameIndexDic["r_PUMP1_FLOW"]] = 6000;
  868. }
  869. else
  870. {
  871. AIShorts[AINameIndexDic["r_PUMP1_FLOW"]] = 3277;
  872. }
  873. }
  874. /// <summary>
  875. /// metal4 pump流量模拟
  876. /// </summary>
  877. private void Pump4FlowSimulator()
  878. {
  879. if (DONameIndexDic.ContainsKey("c_METAL4_PUMP_ON") && DOBytes[DONameIndexDic["c_METAL4_PUMP_ON"]] == 1)
  880. {
  881. SimulatorCommManager.Instance.CheckDataChanged("c_METAL4_PUMP_ON",true,false);
  882. }
  883. else if (DONameIndexDic.ContainsKey("c_METAL4_PUMP_ON") && DOBytes[DONameIndexDic["c_METAL4_PUMP_ON"]] == 0)
  884. {
  885. SimulatorCommManager.Instance.CheckDataChanged("c_METAL4_PUMP_ON", false, false);
  886. }
  887. }
  888. #endregion
  889. }
  890. }