SmplMeasureInclution.cs 13 KB

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  1. using System;
  2. using System.Collections.Generic;
  3. using System.Drawing;
  4. using System.Linq;
  5. using System.Text;
  6. using System.Threading;
  7. using System.Threading.Tasks;
  8. using OTSCLRINTERFACE;
  9. using OTSDataType;
  10. using OTSMeasureApp._0_OTSModel.Measure.ParamData;
  11. using OTSModelSharp.Measure.OTSInclution;
  12. using OTSModelSharp.ServiceCenter;
  13. using OTSModelSharp.ServiceInterface;
  14. using static OTSDataType.otsdataconst;
  15. namespace OTSModelSharp
  16. {
  17. class CSmplMeasureInclution : CSmplMeasure
  18. {
  19. public CSmplMeasureInclution(string a_strWorkingFolder, COTSSample a_pSample) : base(a_strWorkingFolder, a_pSample)
  20. {
  21. SetWorkingFolder(a_strWorkingFolder);
  22. SetSample(a_pSample);
  23. m_classifyEngine = new CClassifyEngine();
  24. }
  25. // field image process
  26. public override bool FieldImageProcess(Point fldCenter, CBSEImgClr a_pBSEImg)
  27. {
  28. int nNewFieldId;
  29. nNewFieldId = m_pSampleRstFile.GetIdForANewField();
  30. // create a field
  31. curFldData = new CFieldDataIncA(a_pBSEImg, m_Sample.CalculatePixelSize());
  32. curFldData.SetId(nNewFieldId);
  33. curFldData.SetOTSPosition(fldCenter);
  34. CSEMStageData a_pCSEMStageData = m_pMsrThread.GetProjResultData().GetSEMStageData();
  35. Point semPos = new Point();
  36. a_pCSEMStageData.ConverOTSToSEMPoint(fldCenter,ref semPos);
  37. curFldData.SemPos = semPos;
  38. //first step:remove background of the bse image and compound all the finded particles.
  39. log.Info("Begin to process image and get all particles!");
  40. GetOriginalParticles();
  41. // second step :filter the finded particles.
  42. log.Info("Begin to filter particles!");
  43. InitFieldParticles();
  44. COTSXRayParam pXRayParam = m_Sample.GetMsrParams().GetXRayParam();
  45. if (pXRayParam.GetUsingXray() == true)
  46. {
  47. Thread.Sleep(100);
  48. CollectParticlesXrayData();
  49. Thread.Sleep(100);
  50. }
  51. log.Info("Begin to Calculate the image property of every particle!");
  52. var analysisparts = curFldData.GetListAnalysisParticles();
  53. curFldData.CalParticleImageProp(analysisparts);//calculate particle image property such as feret diameter, DMAX etc.
  54. log.Info("Begin to classify particles! particle num:"+ curFldData.GetListAnalysisParticles().Count);
  55. ClassifyFieldParticles();
  56. // save field files
  57. m_Sample.GetMsrStatus().SetStatus(OTS_MSR_SAMPLE_STATUS.SUCCESSED);
  58. StartSaveFileThread(curFldData);
  59. return true;
  60. }
  61. // save field data
  62. protected void SaveFieldMgrData()
  63. {
  64. while (bSaveThreadWorking)
  65. {
  66. while (fieldQueue.Count() > 0)
  67. {
  68. COTSFieldData f = fieldQueue.Dequeue();
  69. //save to disk first ,then pop . if the size is 0,then we know all the saving work is done.
  70. SaveFieldData(f,m_pSampleRstFile.GetFieldFileSubFolderStr());
  71. }
  72. if (fieldQueue.Count() == 0)
  73. {
  74. bSaveThreadWorking = false; //must set this flag,so the main thread can know this thread has exited.
  75. log.Warn("finished batch saving");
  76. return;
  77. }
  78. }
  79. return;
  80. }
  81. protected void StartSaveFileThread(COTSFieldData a_pFieldMgr)
  82. {
  83. fieldQueue.Enqueue(a_pFieldMgr);
  84. if (fieldQueue.Count() > 0) //if there's data in the queue and the previous thread has finished then start a new thread.
  85. {
  86. if (bSaveThreadWorking == false)
  87. {
  88. bSaveThreadWorking = true;
  89. m_thread_ptr = new System.Threading.Thread(this.SaveFieldMgrData);//m_thread_ptr = shared_ptr<thread>(new thread(&CSmplMeasureInc::SaveFieldMgrData, this));
  90. m_thread_ptr.IsBackground = true;
  91. m_thread_ptr.Start();
  92. }
  93. }
  94. }
  95. public void InitFieldParticles()
  96. {
  97. // remove over sized particles, too small particles and get a analysis particles list
  98. // get pixel size
  99. double dPixelSize = m_Sample.CalculatePixelSize();
  100. CSampleParam pMsrParam = m_Sample.GetMsrParams();
  101. COTSImageProcParam pImgProcessParam = pMsrParam.GetImageProcessParam();
  102. curFldData.InitParticles(pImgProcessParam,dPixelSize);
  103. // make sure the particles list is not empty
  104. if (curFldData.NoAnalysisParticle())
  105. {
  106. log.Info("There's no particles to be analysed!");
  107. //return false;
  108. }
  109. return ;
  110. }
  111. //calculate the real sem position of the particle
  112. public void CalculateParticlePos(List<COTSParticleClr> xrayParticles)
  113. {
  114. double dPixelSize = m_Sample.CalculatePixelSize();
  115. CSEMStageData pCSEMStageData = m_pMsrThread.GetProjResultData().GetSEMStageData();
  116. foreach (var p in xrayParticles)
  117. {
  118. Point fldOtsPos = new Point(curFldData.OTSPos.X, curFldData.OTSPos.Y);//take the field position as the particle's position instead
  119. Point semPos = new Point();
  120. pCSEMStageData.ConverOTSToSEMPoint(fldOtsPos, ref semPos);
  121. p.SetAbsolutPos(semPos);
  122. }
  123. }
  124. public void CollectParticlesXrayData()
  125. {
  126. // get x-ray parameters
  127. COTSXRayParam pXRayParam = m_Sample.GetMsrParams().GetXRayParam();
  128. var listXrayAnalysisparts = curFldData.GetListXrayParticles();
  129. var pStatus = m_Sample.GetMsrStatus();
  130. ////=============================================
  131. curFldData.CreateXrayList(listXrayAnalysisparts);
  132. CalculateParticlePos(listXrayAnalysisparts);
  133. var xraymode = m_Sample.GetMsrParams().GetXRayParam().GetScanMode();
  134. // get x-ray list (analysis) by particle features
  135. uint nXRayAQTime = (uint)pXRayParam.GetMidAnalyAQTime();
  136. if (xraymode == OTS_X_RAY_SCAN_MODE.FeatureMode)
  137. {
  138. log.Info("Begin feature mode xray collection!AQTime:"+nXRayAQTime+" xrayNum:"+ listXrayAnalysisparts.Count);
  139. m_EDSHardwareMgr.GetXRayByFeatures(listXrayAnalysisparts, nXRayAQTime, true);
  140. }
  141. else
  142. {
  143. log.Info("Begin point mode xray collection!AQTime:" + nXRayAQTime + " xrayNum:" + listXrayAnalysisparts.Count);
  144. // get x-ray list (analysis) by points
  145. m_EDSHardwareMgr.GetXRayByPoints(listXrayAnalysisparts, nXRayAQTime, true);
  146. }
  147. return ;
  148. }
  149. public override void ClassifyFieldParticles()
  150. {
  151. try
  152. {
  153. var curFld = (CFieldDataIncA)curFldData;
  154. var anylysisparts = curFld.GetListAnalysisParticles();
  155. int nSize = anylysisparts.Count();
  156. // go through all analysis particles
  157. for (int i = 0; i < nSize; ++i)
  158. {
  159. string libname = m_Sample.GetMsrParams().GetSTDName();
  160. ClassifyIncAParticle(anylysisparts[i], libname);
  161. }
  162. }
  163. catch (Exception e)
  164. {
  165. log.Info(" classify failed. " + e.Message);
  166. }
  167. }
  168. public override void ClassifyMergedParticles(List<COTSParticleClr> mergedParts)
  169. {
  170. try
  171. {
  172. var quantifyparts = mergedParts;
  173. int nSize = quantifyparts.Count();
  174. // go through all analysis particles
  175. for (int i = 0; i < nSize; ++i)
  176. {
  177. string libname = m_Sample.GetMsrParams().GetSTDName();
  178. ClassifyIncAParticle(quantifyparts[i], libname);
  179. }
  180. }
  181. catch (Exception e)
  182. {
  183. log.Info(" classify failed. " + e.Message);
  184. }
  185. }
  186. public bool ClassifyIncAParticle(COTSParticleClr particle, string libname)// classify particles
  187. {
  188. int steelTech = (int)m_Sample.GetMsrParams().GetSteelTechnology();
  189. particle.SetType((int)OTS_PARTCLE_TYPE.NOT_IDENTIFIED);
  190. if (m_Sample.IfUsingSysSTD())
  191. {
  192. if (libname != "NoSTDDB")
  193. {
  194. //var m_classifyEngine = new CClassifyEngine();
  195. IClassifyEngine engine = m_classifyEngine.GetParticleEngine(libname);
  196. engine.Classify(particle);
  197. }
  198. if (particle.GetType() ==(int) OTS_PARTCLE_TYPE.NOT_IDENTIFIED)
  199. {
  200. IClassifyEngine engine;
  201. engine = m_classifyEngine.GetIncClassifyEngine();
  202. engine.ClassifyIncA(particle, steelTech);
  203. }
  204. }
  205. else
  206. {
  207. if (libname != "NoSTDDB")
  208. {
  209. //var m_classifyEngine = new CClassifyEngine();
  210. IClassifyEngine engine = m_classifyEngine.GetParticleEngine(libname);
  211. engine.Classify(particle);
  212. }
  213. }
  214. return true;
  215. }
  216. public void GetOriginalParticles()
  217. {
  218. // measure status
  219. CMsrSampleStatus pStatus = m_Sample.GetMsrStatus();
  220. // get image process parameter
  221. CSampleParam pMsrParam = m_Sample.GetMsrParams();
  222. COTSImageProcParam pImgProcessParam = pMsrParam.GetImageProcessParam();
  223. var specialPartsparam = pMsrParam.GetSpecialGrayRangeParam();
  224. var pixelsize = m_Sample.CalculatePixelSize();
  225. if (specialPartsparam.IsToRun)
  226. {
  227. List<CSpecialGrayRange> ranges = pMsrParam.GetSpecialGrayRangeParam().GetIntRanges();
  228. foreach (var grayRange in ranges)
  229. {
  230. CIntRangeClr range = new CIntRangeClr(grayRange.range.GetStart(), grayRange.range.GetEnd());
  231. CIntRangeClr diaRange = new CIntRangeClr(grayRange.diameterRange.GetStart(), grayRange.diameterRange.GetEnd());
  232. curFldData.GetPartsBySpecialGray(range, diaRange,pixelsize,grayRange.ifCollectXray);
  233. }
  234. }
  235. // remove BES image background
  236. curFldData.RemoveBSEImageBG(pImgProcessParam, pixelsize);
  237. // check if this is an empty image
  238. if (curFldData.NoParticle())
  239. { // empty fields
  240. log.Info("ImageProcess: empty field.");
  241. }
  242. return ;
  243. }
  244. public bool SaveFieldData(COTSFieldData fldData,string filedFileFoler)
  245. {
  246. //loger.Warn("begin bitmap saving...");
  247. string strFieldFileFolder = filedFileFoler;
  248. CBSEImageFileMgr pBSEImgFileMgr = new CBSEImageFileMgr();
  249. pBSEImgFileMgr.SetBSEImg(fldData.GetBSEImage());
  250. int nId = fldData.GetId();
  251. string sFieldId;
  252. sFieldId = nId.ToString();
  253. string strBSEFilePathname = strFieldFileFolder + "\\" + m_pSampleRstFile. SMPL_MSR_RESULT_FIELDS_BSE + sFieldId + pBSEImgFileMgr.BMP_IMG_FILE_EXT;
  254. if (!pBSEImgFileMgr.SaveIntoBitmap(strBSEFilePathname))
  255. {
  256. log.Error("SaveFieldFiles: save BSE file failed.");
  257. return false;
  258. }
  259. // IncA Data list
  260. CIncAFileMgr pDBFileMgr = m_pSampleRstFile.DBFileMgr;
  261. pDBFileMgr.SaveStatusDataToDB();
  262. var fldDB = pDBFileMgr.GetFieldDB();
  263. log.Warn("Start saving particle data.");
  264. var fldcmd = fldDB.GetSavingAFieldcmdObj(fldData.GetId(), fldData.GetOTSPosition(), fldData.SemPos);
  265. List<KeyValuePair<string, System.Data.SQLite.SQLiteParameter[]>> fldcmds = new List<KeyValuePair<string, System.Data.SQLite.SQLiteParameter[]>>();
  266. fldcmds.Add(fldcmd);
  267. pDBFileMgr.ExecuteNonQueryBatch(ref fldcmds);
  268. var cmds = pDBFileMgr.GetSavingIncADataToDBCmds(curFldData.GetListAnalysisParticles(), fldData.GetOTSPosition());
  269. pDBFileMgr.ExecuteNonQueryBatch(ref cmds);
  270. log.Warn("Start saving xray data.");
  271. CPosXrayDBMgr PosXrayDBMgr = pDBFileMgr.GetPosXrayDBMgr();
  272. var listAnalysisPosXray = new List<CPosXrayClr>();
  273. foreach (var p in curFldData.GetListXrayParticles())
  274. {
  275. listAnalysisPosXray.Add(p.GetXray());
  276. }
  277. var cmds1 = PosXrayDBMgr.GetSavingXrayCmds(listAnalysisPosXray, true);
  278. pDBFileMgr.ExecuteNonQueryBatch(ref cmds1);
  279. log.Warn("end saving xray data.");
  280. return true;
  281. }
  282. }
  283. }