EfemSimulator.cs 11 KB

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  1. using System;
  2. using System.Text.RegularExpressions;
  3. using System.Threading;
  4. using System.Threading.Tasks;
  5. using Aitex.Core.UI.Control;
  6. using MECF.Framework.Simulator.Core.Driver;
  7. using Aitex.Core.Util;
  8. using Venus_Core;
  9. namespace Venus_Simulator.Devices
  10. {
  11. class EfemSimulatorServer : SocketDeviceSimulator
  12. {
  13. private const string CMD_PATTERN = "^MOV|^SET|^GET";
  14. private const string SCMD = @"(?<=\:)(.*?)(?=\/)";
  15. private const string SFOUP = @"(?<=P)(\d{1})(?=[\;\/])";
  16. private const string ACK = "ACK";
  17. private string[] _slotMap = new string[25];
  18. private PeriodicJob _HwThread;
  19. private bool _bCommReady;
  20. private bool _isDoorOpen;
  21. private bool _isPlaced;
  22. public int WaferSize = 3;
  23. public string SlotMap
  24. {
  25. get { return string.Join("", _slotMap); }
  26. }
  27. public bool _isVacuumError { get; set; }
  28. public bool _isAirError { get; set; }
  29. public bool _isFlowError { get; set; }
  30. public bool _isLeak { get; set; }
  31. public bool _isMaintain { get; set; }
  32. public bool _isWaferPresent { get; set; }
  33. public bool _isMaintainDoorOpen { get; private set; }
  34. public bool _isProtrude1 { get; set; }
  35. public bool _isProtrude2 { get; set; }
  36. public EfemSimulatorServer() : base(13001, -1, "\r", ' ')
  37. {
  38. for (int i = 0; i < _slotMap.Length; i++)
  39. _slotMap[i] = "0";
  40. _HwThread = new PeriodicJob(5000, OnSendEvent, "EfemHardware", true);
  41. }
  42. private bool OnSendEvent()
  43. {
  44. if (!_bCommReady)
  45. {
  46. OnWriteMessage("INF:READY/COMM;");
  47. }
  48. return true;
  49. }
  50. protected override void ProcessUnsplitMessage(string str)
  51. {
  52. if (!_bCommReady && str.Contains("ACK:READY/COMM"))
  53. {
  54. _bCommReady = true;
  55. }
  56. if (!Regex.IsMatch(str, CMD_PATTERN))
  57. return;
  58. // 发送ACK 表示收到
  59. string ack = Regex.Replace(str, CMD_PATTERN, ACK);
  60. OnWriteMessage(ack);
  61. // 处理INF
  62. var a = OnWork(ack);
  63. }
  64. internal void SetCassetteDoor(bool doorOpen)
  65. {
  66. if (doorOpen != _isDoorOpen)
  67. {
  68. _isDoorOpen = doorOpen;
  69. SendSystemData();
  70. }
  71. }
  72. internal void SetMaintain(bool maintain)
  73. {
  74. if (maintain != _isMaintain)
  75. {
  76. _isMaintain = maintain;
  77. SendSystemData();
  78. }
  79. }
  80. internal void SetProtrude1(bool protrude)
  81. {
  82. if (protrude != _isProtrude1)
  83. {
  84. _isProtrude1 = protrude;
  85. SendLP1Data();
  86. }
  87. }
  88. internal void SetProtrude2(bool protrude)
  89. {
  90. if (protrude != _isProtrude2)
  91. {
  92. _isProtrude2 = protrude;
  93. SendLP2Data();
  94. }
  95. }
  96. private async Task OnWork(string strACK)
  97. {
  98. // match basic
  99. Match m1 = Regex.Match(strACK, SCMD);
  100. // get mock delay time
  101. string sBasic = m1.Groups[1].Value;
  102. if (string.IsNullOrEmpty(sBasic))
  103. return;
  104. EfemOperation op = EfemConstant.ToOperation(sBasic);
  105. ushort millionSec = this.SimuOperationTime(op);
  106. // Sleep
  107. await Task.Run(() => Thread.Sleep(millionSec));
  108. // build the INF string
  109. string strINF = string.Empty;
  110. switch (EfemConstant.ToOperation(sBasic))
  111. {
  112. case EfemOperation.GetWaferInfo:
  113. strINF = strACK.Replace(ACK, "INF");
  114. strINF = strINF.TrimEnd(';');
  115. strINF += "/1111111111111110001111111;";
  116. break;
  117. case EfemOperation.Home:
  118. string s1 = "EVT:SIGSTAT/P1/00000381/00000000;\rEVT:SIGSTAT/P2/00000381/00000000;\rEVT:SIGSTAT/System/0000FFF7/00000004;\r";
  119. strINF = s1 + strACK.Replace(ACK, "INF");
  120. SendSystemData();
  121. SendLP1Data();
  122. SendLP2Data();
  123. OnWriteMessage(strACK.Replace(ACK, "INF"));
  124. return;
  125. case EfemOperation.Map:
  126. Match m2 = Regex.Match(strACK, SFOUP);
  127. if (m2.Success)
  128. {
  129. string map = string.Join("", _slotMap);
  130. string s2 = $"EVT:MAPDT/P{m2.Groups[1].Value}/{map};\r";
  131. strINF = s2 + strACK.Replace(ACK, "INF");
  132. }
  133. break;
  134. case EfemOperation.StateTrack:
  135. strINF = "INF:STATE/TRACK/000000;";
  136. break;
  137. case EfemOperation.Align:
  138. case EfemOperation.Pick:
  139. case EfemOperation.Place:
  140. case EfemOperation.Orgsh:
  141. case EfemOperation.Light:
  142. case EfemOperation.SigStatus:
  143. default:
  144. strINF = strACK.Replace(ACK, "INF");
  145. break;
  146. }
  147. OnWriteMessage(strINF);
  148. }
  149. private void SendLP1Data()
  150. {
  151. uint data = GetLP1Data1();
  152. string msg = $"EVT:SIGSTAT/P1/{data:X8}/00000000;";
  153. OnWriteMessage(msg);
  154. }
  155. private void SendLP2Data()
  156. {
  157. uint data = GetLP2Data1();
  158. string msg = $"EVT:SIGSTAT/P2/{data:X8}/00000000;";
  159. OnWriteMessage(msg);
  160. }
  161. private void SendSystemData()
  162. {
  163. uint data = GetSystemData1();
  164. string msg = $"EVT:SIGSTAT/System/{data:X8}/00000000;";
  165. OnWriteMessage(msg);
  166. }
  167. private ushort SimuOperationTime(EfemOperation op)
  168. {
  169. ushort sec = 0;
  170. switch (op)
  171. {
  172. case EfemOperation.Map:
  173. case EfemOperation.GetWaferInfo:
  174. case EfemOperation.Align:
  175. sec = 300;
  176. break;
  177. case EfemOperation.Pick:
  178. case EfemOperation.Place:
  179. case EfemOperation.Orgsh:
  180. sec = 400;
  181. break;
  182. case EfemOperation.Light:
  183. case EfemOperation.SigStatus:
  184. sec = 200;
  185. break;
  186. default:
  187. sec = 100;
  188. break;
  189. }
  190. return sec;
  191. }
  192. public void PlaceCarrier1()
  193. {
  194. _isPlaced = true;
  195. SendLP1Data();
  196. }
  197. public void RemoveCarrier1()
  198. {
  199. _isPlaced = false;
  200. SendLP1Data();
  201. }
  202. public void PlaceCarrier2()
  203. {
  204. _isPlaced = true;
  205. SendLP2Data();
  206. }
  207. public void RemoveCarrier2()
  208. {
  209. _isPlaced = false;
  210. SendLP2Data();
  211. }
  212. public void ClearWafer()
  213. {
  214. for (int i = 0; i < _slotMap.Length; i++)
  215. {
  216. _slotMap[i] = "0";
  217. }
  218. }
  219. public void SetAllWafer()
  220. {
  221. for (int i = 0; i < _slotMap.Length; i++)
  222. {
  223. _slotMap[i] = "1";
  224. }
  225. }
  226. public void SetUpWafer()
  227. {
  228. for (int i = 0; i < _slotMap.Length; i++)
  229. {
  230. _slotMap[i] = i > 15 ? "1" : "0";
  231. }
  232. }
  233. public void SetLowWafer()
  234. {
  235. for (int i = 0; i < _slotMap.Length; i++)
  236. {
  237. _slotMap[i] = i < 10 ? "1" : "0";
  238. }
  239. }
  240. public void RandomWafer()
  241. {
  242. Random _rd = new Random();
  243. for (int i = 0; i < _slotMap.Length; i++)
  244. {
  245. _slotMap[i] = (i % 9).ToString();// _rd.Next(0, 10) < 6 ? "0" : "1";
  246. }
  247. }
  248. private uint GetLP1Data1()
  249. {
  250. uint data1 = 0x0u;
  251. data1 |= (_isPlaced ? 0x00000001u : 0x0);
  252. data1 |= (!_isPlaced ? 0x00000002u : 0x0);
  253. switch (WaferSize)
  254. {
  255. case 3:
  256. //data1 |= 0x00000040u;
  257. data1 |= 0x00000080u;
  258. data1 |= 0x00000100u;
  259. break;
  260. case 4:
  261. data1 |= 0x00000040u;
  262. //data1 |= 0x00000080u;
  263. data1 |= 0x00000100u;
  264. break;
  265. case 6:
  266. data1 |= 0x00000040u;
  267. data1 |= 0x00000080u;
  268. //data1 |= 0x00000100u;
  269. break;
  270. }
  271. data1 |= (!_isProtrude1) ? 0x00000200u : 0x0;
  272. return data1;
  273. }
  274. private uint GetLP2Data1()
  275. {
  276. uint data1 = 0x0u;
  277. data1 |= (_isPlaced ? 0x00000001u : 0x0);
  278. data1 |= (!_isPlaced ? 0x00000002u : 0x0);
  279. switch (WaferSize)
  280. {
  281. case 3:
  282. //data1 |= 0x00000040u;
  283. data1 |= 0x00000080u;
  284. data1 |= 0x00000100u;
  285. break;
  286. case 4:
  287. data1 |= 0x00000040u;
  288. //data1 |= 0x00000080u;
  289. data1 |= 0x00000100u;
  290. break;
  291. case 6:
  292. data1 |= 0x00000040u;
  293. data1 |= 0x00000080u;
  294. //data1 |= 0x00000100u;
  295. break;
  296. }
  297. data1 |= (!_isProtrude2) ? 0x00000200u : 0x0;
  298. return data1;
  299. }
  300. private uint GetSystemData1()
  301. {
  302. uint data1 = 0x0u;
  303. //0:
  304. data1 |= (!_isVacuumError ? 0x00000001u : 0x0);
  305. //3:
  306. data1 |= (!_isAirError ? 0x00000004u : 0x0);
  307. //4 Flow gauge Sensor Warning
  308. data1 |= (_isFlowError ? 0x00000010u : 0x0);
  309. //5 Leakage Sensor Warning
  310. data1 |= (_isLeak ? 0x00000020u : 0x0);
  311. //6:Door switch Door close
  312. data1 |= (!_isMaintainDoorOpen ? 0x00000040u : 0x0);
  313. //7 Drive power Normal
  314. data1 |= 0x00000080u;
  315. //8 Differential pressure sensor setting 1 Normal
  316. data1 |= 0x00000100u;
  317. //9 Differential pressure sensor setting 1 Normal
  318. data1 |= 0x00000200u;
  319. //10 Ionizer alarm Normal
  320. data1 |= 0x00000400u;
  321. //11 FFU alarm Normal
  322. data1 |= 0x00000800u;
  323. //12 Area sensor(Reserved) Not blocked
  324. data1 |= 0x00001000u;
  325. //13 Mode switch RUN
  326. data1 |= (!_isMaintain ? 0x00002000u : 0x0);
  327. //14 Robot Wafer Present No presence
  328. data1 |= (!_isWaferPresent ? 0x00004000u : 0x0);
  329. //15 Cassette Door Door Closed
  330. data1 |= (!_isDoorOpen ? 0x00008000u : 0x0);
  331. return 65535;
  332. }
  333. }
  334. }