VATPerformanceViewModel.cs 10 KB

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  1. using LiveCharts;
  2. using MECF.Framework.Common.DataCenter;
  3. using MECF.Framework.Common.OperationCenter;
  4. using Microsoft.Win32;
  5. using Prism.Commands;
  6. using Prism.Mvvm;
  7. using System;
  8. using System.IO;
  9. using System.Linq;
  10. using System.Windows.Threading;
  11. using Venus_Core;
  12. using Venus_MainPages.Unity;
  13. using Venus_Unity;
  14. namespace Venus_MainPages.ViewModels
  15. {
  16. internal class VATPerformanceViewModel : BindableBase
  17. {
  18. #region 私有字段
  19. private int m_GasFlow;
  20. private int m_GasTime;
  21. private int m_GasSelectedIndex;
  22. public string ModuleName;
  23. ChartValues<double> m_CurrentLineSeries = new ChartValues<double>();
  24. ChartValues<double> m_ReferenceLineSeries = new ChartValues<double>();
  25. DispatcherTimer timer = new DispatcherTimer();
  26. VATPerformanceResult m_VATPerformanceResult;
  27. private bool m_MFC7IsEnable;
  28. private bool m_MFC8IsEnable;
  29. private bool m_MFC9IsEnable;
  30. private bool m_MFC10IsEnable;
  31. private bool m_MFC11IsEnable;
  32. private bool m_MFC12IsEnable;
  33. private bool m_IsAutoMode;
  34. private string m_GasName;
  35. private PressureType m_PressureType;
  36. #endregion
  37. #region 属性
  38. public PressureType PressureType
  39. {
  40. get { return m_PressureType; }
  41. set { SetProperty(ref m_PressureType, value); }
  42. }
  43. public int GasFlow
  44. {
  45. get { return m_GasFlow; }
  46. set { SetProperty(ref m_GasFlow, value); }
  47. }
  48. public int GasTime
  49. {
  50. get { return m_GasTime; }
  51. set { SetProperty(ref m_GasTime, value); }
  52. }
  53. public int GasSelectedIndex
  54. {
  55. get { return m_GasSelectedIndex; }
  56. set { SetProperty(ref m_GasSelectedIndex, value); }
  57. }
  58. public ChartValues<double> CurrentLineSeries
  59. {
  60. get { return m_CurrentLineSeries; }
  61. set { SetProperty(ref m_CurrentLineSeries, value); }
  62. }
  63. public ChartValues<double> ReferenceLineSeries
  64. {
  65. get { return m_ReferenceLineSeries; }
  66. set { SetProperty(ref m_ReferenceLineSeries, value); }
  67. }
  68. public bool MFC7IsEnable
  69. {
  70. get { return m_MFC7IsEnable; }
  71. set { SetProperty(ref m_MFC7IsEnable, value); }
  72. }
  73. public bool MFC8IsEnable
  74. {
  75. get { return m_MFC8IsEnable; }
  76. set { SetProperty(ref m_MFC8IsEnable, value); }
  77. }
  78. public bool MFC9IsEnable
  79. {
  80. get { return m_MFC9IsEnable; }
  81. set { SetProperty(ref m_MFC9IsEnable, value); }
  82. }
  83. public bool MFC10IsEnable
  84. {
  85. get { return m_MFC10IsEnable; }
  86. set { SetProperty(ref m_MFC10IsEnable, value); }
  87. }
  88. public bool MFC11IsEnable
  89. {
  90. get { return m_MFC11IsEnable; }
  91. set { SetProperty(ref m_MFC10IsEnable, value); }
  92. }
  93. public bool MFC12IsEnable
  94. {
  95. get { return m_MFC12IsEnable; }
  96. set { SetProperty(ref m_MFC12IsEnable, value); }
  97. }
  98. public bool IsAutoMode
  99. {
  100. get { return m_IsAutoMode; }
  101. set { SetProperty(ref m_IsAutoMode, value); }
  102. }
  103. #endregion
  104. #region 命令
  105. private DelegateCommand _SelectGasCommand;
  106. public DelegateCommand SelectGasCommand =>
  107. _SelectGasCommand ?? (_SelectGasCommand = new DelegateCommand(OnSelectGas));
  108. private DelegateCommand _StartCommand;
  109. public DelegateCommand StartCommand =>
  110. _StartCommand ?? (_StartCommand = new DelegateCommand(OnStart));
  111. private DelegateCommand _LoadReferenceCommand;
  112. public DelegateCommand LoadReferenceCommand =>
  113. _LoadReferenceCommand ?? (_LoadReferenceCommand = new DelegateCommand(OnLoadReference));
  114. private DelegateCommand _AbortCommand;
  115. public DelegateCommand AbortCommand =>
  116. _AbortCommand ?? (_AbortCommand = new DelegateCommand(OnAbort));
  117. private DelegateCommand _SaveCommand;
  118. public DelegateCommand SaveCommand =>
  119. _SaveCommand ?? (_SaveCommand = new DelegateCommand(OnSave));
  120. private DelegateCommand _LoadCommand;
  121. public DelegateCommand LoadCommand =>
  122. _LoadCommand ?? (_LoadCommand = new DelegateCommand(OnLoad));
  123. #endregion
  124. public string GasName
  125. {
  126. get { return m_GasName; }
  127. set { SetProperty(ref m_GasName, value); }
  128. }
  129. #region 构造函数
  130. public VATPerformanceViewModel()
  131. {
  132. //OnSelectGas();
  133. GasTime = 60;
  134. timer.Interval = TimeSpan.FromSeconds(2);
  135. timer.Tick += Timer_Tick;
  136. }
  137. #endregion
  138. #region 命令方法
  139. private void OnLoad()
  140. {
  141. //MFC7IsEnable = (bool)QueryDataClient.Instance.Service.GetConfig($"{ModuleName}.MfcGas7.Enable");
  142. //MFC8IsEnable = (bool)QueryDataClient.Instance.Service.GetConfig($"{ModuleName}.MfcGas8.Enable");
  143. var jetChamber = (JetChamber)Enum.Parse(typeof(JetChamber), QueryDataClient.Instance.Service.GetConfig($"{ModuleName}.ChamberType").ToString());
  144. if (jetChamber != JetChamber.Kepler2200A && jetChamber != JetChamber.Kepler2200B)
  145. {
  146. MFC7IsEnable = (bool)QueryDataClient.Instance.Service.GetConfig($"{ModuleName}.MfcGas7.Enable");
  147. MFC8IsEnable = (bool)QueryDataClient.Instance.Service.GetConfig($"{ModuleName}.MfcGas8.Enable");
  148. }
  149. if (jetChamber == JetChamber.Kepler2200A || jetChamber == JetChamber.Kepler2200B)
  150. {
  151. PressureType = PressureType.Pa;
  152. }
  153. else if(jetChamber == JetChamber.VenusSE || jetChamber == JetChamber.VenusDE)
  154. {
  155. MFC9IsEnable = (bool)QueryDataClient.Instance.Service.GetConfig($"{ModuleName}.MfcGas9.Enable");
  156. MFC10IsEnable = (bool)QueryDataClient.Instance.Service.GetConfig($"{ModuleName}.MfcGas10.Enable");
  157. MFC11IsEnable = (bool)QueryDataClient.Instance.Service.GetConfig($"{ModuleName}.MfcGas11.Enable");
  158. MFC12IsEnable = (bool)QueryDataClient.Instance.Service.GetConfig($"{ModuleName}.MfcGas12.Enable");
  159. }
  160. }
  161. private void OnSelectGas()
  162. {
  163. var value=Convert.ToInt32( QueryDataClient.Instance.Service.GetConfig($"{ModuleName}.MfcGas{(GasSelectedIndex+1).ToString()}.MfcN2Scale"));
  164. var xishu= Convert.ToDouble(QueryDataClient.Instance.Service.GetConfig($"{ModuleName}.MfcGas{(GasSelectedIndex + 1).ToString()}.MfcScaleFactor"));
  165. string mfcname = $"MfcGas{(GasSelectedIndex + 1).ToString()}";
  166. GasName = QueryDataClient.Instance.Service.GetConfig($"{ModuleName}.{mfcname}.GasName").ToString();
  167. GasFlow = (int)(value * xishu) / 2;
  168. }
  169. //public enum CMPressure
  170. //{
  171. // CM1,
  172. // CM2,
  173. //}
  174. //private CMPressure currentCMPressure = CMPressure.CM1;
  175. private void OnStart()
  176. {
  177. //currentCMPressure = CMPressure.CM1;
  178. m_VATPerformanceResult = new VATPerformanceResult();
  179. m_VATPerformanceResult.StartTime = DateTime.Now.ToString();
  180. m_VATPerformanceResult.FlowTime = GasTime;
  181. m_VATPerformanceResult.GasName = $"Gas{GasSelectedIndex+1}";
  182. CurrentLineSeries = new ChartValues<double>();
  183. timer.Start();
  184. InvokeClient.Instance.Service.DoOperation($"{ModuleName}.VATPerformanceTest", GasSelectedIndex+1, 1000 * GasTime, GasFlow);
  185. }
  186. private void OnLoadReference()
  187. {
  188. //ReferenceLineSeries.Clear();
  189. //for (int i = 0; i < 21; i++)
  190. //{
  191. // double value = Math.Round((double)GasFlow / (double)((i + 2) * 50),3);
  192. // ReferenceLineSeries.Add(value);
  193. //}
  194. OpenFileDialog dialog = new OpenFileDialog();
  195. dialog.Filter = ".json|*.json";
  196. dialog.InitialDirectory = Path.Combine(QueryDataClient.Instance.Service.GetData("GetRTPath").ToString(), "VATPerformanceResult");
  197. if (dialog.ShowDialog() == true)
  198. {
  199. string SelectedPath = dialog.FileName;
  200. var value = SerializeHelper.Instance.ReadFromJsonFile<VATPerformanceResult>(SelectedPath);
  201. ReferenceLineSeries.Clear();
  202. value.ValuePairs.ForEach(x =>
  203. {
  204. ReferenceLineSeries.Add(x);
  205. });
  206. }
  207. else
  208. {
  209. ReferenceLineSeries.Clear();
  210. ReferenceLineSeries.Add(0);
  211. }
  212. }
  213. private void OnAbort()
  214. {
  215. timer.Stop();
  216. InvokeClient.Instance.Service.DoOperation($"{ModuleName}.Abort");
  217. CurrentLineSeries = new ChartValues<double>();
  218. }
  219. private void OnSave()
  220. {
  221. SerializeHelper.Instance.WriteToJsonFile<VATPerformanceResult>(m_VATPerformanceResult, $"VATPerformanceResult/{m_VATPerformanceResult.GasName}/{DateTime.Now.ToString("yyyyMMddHHmm")}.json");
  222. }
  223. #endregion
  224. #region 私有方法
  225. private void Timer_Tick(object sender, EventArgs e)
  226. {
  227. CurrentLineSeries.Clear();
  228. var values = QueryDataClient.Instance.Service.GetData($"{ModuleName}.VATPerformanceResult").ToString();
  229. values.Split(',').ToList().ForEach(x =>
  230. {
  231. if (x != "")
  232. {
  233. CurrentLineSeries.Add(Math.Round( Convert.ToDouble(x),3));
  234. }
  235. });
  236. if (CurrentLineSeries.Count == 20)
  237. {
  238. timer.Stop();
  239. }
  240. MFC7IsEnable = (bool)QueryDataClient.Instance.Service.GetConfig($"{ModuleName}.MfcGas7.Enable");
  241. MFC8IsEnable = (bool)QueryDataClient.Instance.Service.GetConfig($"{ModuleName}.MfcGas8.Enable");
  242. IsAutoMode = (bool)QueryDataClient.Instance.Service.GetData($"{ModuleName}.IsOnline");
  243. }
  244. #endregion
  245. }
  246. }