ParticleData.cs 34 KB

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  1. using OTSCommon.Model;
  2. using System;
  3. using System.Collections.Generic;
  4. using System.Data;
  5. using System.Data.SQLite;
  6. using System.Drawing;
  7. using System.Drawing.Imaging;
  8. using System.IO;
  9. using System.Linq;
  10. namespace OTSIncAReportApp.DataOperation.DataAccess
  11. {
  12. public class ParticleData
  13. {
  14. private SqlHelper dbHelper;
  15. public ParticleData(string path)
  16. {
  17. dbHelper = new SqlHelper("data source='" + path + "\\FIELD_FILES\\Inclusion.db'");
  18. }
  19. /// <summary>
  20. /// 获取SegmentList
  21. /// </summary>
  22. /// <param name="model">Feature</param>
  23. /// <returns></returns>
  24. public List<Particle> GetParticleList(Particle model)
  25. {
  26. //存放查询数据的数据表
  27. SQLiteParameter[] Parameter = new SQLiteParameter[1]
  28. {
  29. new SQLiteParameter("@FieldId", model.FieldId)
  30. };
  31. string sql = "select * from IncAData where Fieldid=@FieldId";
  32. DataTable DT = dbHelper.ExecuteDataTable(sql, Parameter);
  33. var result = new List<Particle>();
  34. foreach (DataRow dr in DT.Rows)
  35. {
  36. Particle item = new Particle() { };
  37. result.Add(item);
  38. }
  39. return result;
  40. }
  41. /// <summary>
  42. /// 获取ParticleListBy
  43. /// </summary>
  44. /// <param name="model">Feature</param>
  45. /// <returns></returns>
  46. public List<Particle> GetParticleListByCon(string con, string max, string min, int display)
  47. {
  48. //string sqlp = "select a.*,b.XrayData from IncAData a left join XRayData b on a.FieldId =b.FieldId and a.XrayId= b.XrayIndex";
  49. //string where = " where 1=1 ";
  50. string sqlp = "select a.* from IncAData a ";
  51. string where = " where 1=1 ";
  52. if (display == 1)
  53. {
  54. where = where + " and a.XrayId >-1 ";
  55. }
  56. if (con != "")
  57. {
  58. where = where + " and a." + con + ">" + min + " and a." + con + "<" + max;
  59. }
  60. sqlp = sqlp + where;
  61. DataTable DT = dbHelper.ExecuteDataTable(sqlp, null);
  62. List<Particle> listp = dbHelper.TableToList<Particle>(DT);
  63. return listp;
  64. }
  65. /// <summary>
  66. /// 获取ParticleList
  67. /// </summary>
  68. /// <param name="model">Feature</param>
  69. /// <returns></returns>
  70. public DataTable GetParticleListAndEm()
  71. {
  72. string sqlp = @"select *,
  73. (select group_concat(name||'-'||Percentage,';')
  74. from ElementChemistry where XRayId =INcAData.XRayId and fieldid=INcAData.fieldid ) as Element
  75. from INcAData where xrayid>-1";
  76. DataTable DT = dbHelper.ExecuteDataTable(sqlp, null);
  77. return DT;
  78. }
  79. /// <summary>
  80. /// 获取ParticleList
  81. /// </summary>
  82. /// <param name="model">Feature</param>
  83. /// <returns></returns>
  84. public DataTable GetMergedParticleInfo()
  85. {
  86. string sqlp = @"select *,
  87. (select group_concat(name||'-'||Percentage,';')
  88. from ElementChemistry where XRayId =MergedParticleInfo.XRayId and fieldid=MergedParticleInfo.fieldid ) as Element
  89. from MergedParticleInfo ";
  90. DataTable DT = dbHelper.ExecuteDataTable(sqlp, null);
  91. return DT;
  92. }
  93. /// <summary>
  94. /// 获取ParticleList
  95. /// </summary>
  96. /// <param name="model">Feature</param>
  97. /// <returns></returns>
  98. public DataTable GetParticleListByIncA(string con)
  99. {
  100. string sqlp = @"select TypeId,TypeName,TypeColor,count(1) as con,sum(Area) as Area,avg(" + con
  101. + ") as av,max(" + con
  102. + ") as max ";
  103. sqlp = sqlp + " from IncAData group by TypeId";
  104. DataTable DT = dbHelper.ExecuteDataTable(sqlp, null);
  105. return DT;
  106. }
  107. /// <summary>
  108. /// 获取ParticleList
  109. /// </summary>
  110. /// <param name="model">Feature</param>
  111. /// <returns></returns>
  112. public DataTable GetParticleListForParticlSize(string con, string fieldAndPartic)
  113. {
  114. string sqlp = @"select TypeId,TypeName,TypeColor,count(1) as con,avg(" + con
  115. + ") as av,max(" + con
  116. + ") as max ,GroupName";
  117. sqlp = sqlp + " from IncAData ";
  118. if (fieldAndPartic != "")
  119. {
  120. sqlp = sqlp + " where '" + fieldAndPartic + "' like ('%,'||fieldid||'-'||particleid||',%')";
  121. }
  122. sqlp = sqlp + " group by TypeId ";
  123. DataTable DT = dbHelper.ExecuteDataTable(sqlp, null);
  124. if (con == "area")
  125. {
  126. for (int i = 0; i < DT.Rows.Count; i++)
  127. {
  128. DT.Rows[i]["max"] = Math.Sqrt((double)DT.Rows[i]["max"] / Math.PI) * 2;
  129. }
  130. }
  131. return DT;
  132. }
  133. /// <summary>
  134. /// 获取element含量
  135. /// </summary>
  136. /// <returns></returns>
  137. public DataTable GetElementForArea(string fieldAndPartic)
  138. {
  139. string sqlp = @"select e.name,sum(e.percentage*p.area) as earea from ElementChemistry e
  140. inner join INcAData p on e.xrayid=p.xrayid and e.fieldid = p.fieldid";
  141. if (fieldAndPartic != "")
  142. {
  143. sqlp = sqlp + " where '" + fieldAndPartic + "' like ('%,'||p.fieldid||'-'||p.particleid||',%')";
  144. }
  145. sqlp = sqlp + " group by e.name order by sum(e.percentage*p.area) desc";
  146. DataTable DT = dbHelper.ExecuteDataTable(sqlp, null);
  147. return DT;
  148. }
  149. /// <summary>
  150. /// 获取element含量
  151. /// </summary>
  152. /// <returns></returns>
  153. public DataTable GetSmallElementForArea()
  154. {
  155. string sqlp = @"select e.name, sum(e.percentage*i.area) as earea from elementchemistry e inner join incadata i on e.xrayid = i.xrayid and e.fieldid = i.fieldid
  156. group by e.name order by sum(e.percentage*i.area) desc";
  157. DataTable DT = dbHelper.ExecuteDataTable(sqlp, null);
  158. return DT;
  159. }
  160. /// <summary>
  161. /// 获取所有Particle
  162. /// </summary>
  163. /// <returns></returns>
  164. public DataTable GetParticleAll(string fieldAndPartic)
  165. {
  166. string sqlp = @"select * from INcAData";
  167. if (fieldAndPartic != "")
  168. {
  169. sqlp = sqlp + " where '" + fieldAndPartic + "' like ('%,'||fieldid||'-'||particleid||',%')";
  170. }
  171. DataTable DT = dbHelper.ExecuteDataTable(sqlp, null);
  172. for (int i = 0; i < DT.Rows.Count; i++)
  173. {
  174. DT.Rows[i]["Area"] = Math.Sqrt((double)DT.Rows[i]["Area"] / Math.PI) * 2;
  175. }
  176. return DT;
  177. }
  178. /// <summary>
  179. /// 查找所有颗粒的颜色、面积、种类名称信息
  180. /// </summary>
  181. /// <returns></returns>
  182. public DataTable GetParticleTypeInformation()
  183. {
  184. string sqlp = @"select Area,TypeName,TypeColor from IncAData";
  185. DataTable dt = dbHelper.ExecuteDataTable(sqlp, null);
  186. return dt;
  187. }
  188. /// <summary>
  189. /// 查找IncaData表中所有种类
  190. /// </summary>
  191. /// <returns></returns>
  192. public DataTable GetParticleClassAll()
  193. {
  194. string sqlp = @"SELECT DISTINCT TypeName FROM IncaData";
  195. DataTable dt = dbHelper.ExecuteDataTable(sqlp, null);
  196. return dt;
  197. }
  198. /// <summary>
  199. /// 获取所有Particle
  200. /// </summary>
  201. /// <returns></returns>
  202. public DataTable GetParticleAllHaveXray(string fieldAndPartic)
  203. {
  204. string incaSql = @"select * from IncAData";
  205. if (fieldAndPartic != "")
  206. {
  207. incaSql = incaSql + " where '" + fieldAndPartic + "' like ('%,'||fieldid||'-'||particleid||',%')";
  208. }
  209. DataTable incaDT = dbHelper.ExecuteDataTable(incaSql, null);
  210. incaDT.Columns.Add("Element");
  211. DataTable dt_element = GetElementChemistry();
  212. DataTable elementchemistry = dt_element.Clone();
  213. for (int i = 0; i < dt_element.Rows.Count; i++)
  214. {
  215. if (dt_element.Rows[i]["Name"].ToString() != "Fe")
  216. {
  217. elementchemistry.Rows.Add(dt_element.Rows[i].ItemArray);
  218. }
  219. }
  220. for (int i = 0; i < incaDT.Rows.Count; i++)
  221. {
  222. string str = "XRayId = " + incaDT.Rows[i]["particleId"].ToString() + " and fieldid = " + incaDT.Rows[i]["fieldid"].ToString();
  223. DataRow[] drs = elementchemistry.Select(str);
  224. string ConcatenatedString = "";
  225. for (int j = 0; j < drs.Length; j++)
  226. {
  227. ConcatenatedString += drs[j]["name"] + "-" + ChangeDataToD(drs[j]["Percentage"].ToString()) + ';';
  228. }
  229. incaDT.Rows[i]["Element"] = ConcatenatedString;
  230. }
  231. return incaDT;
  232. }
  233. /// <summary>
  234. /// 获取所有Particle
  235. /// </summary>
  236. /// <returns></returns>
  237. public DataTable GetParticleHaveXray(string fieldAndPartic)
  238. {
  239. string sqlp = @"select *,
  240. (select group_concat(name||'-'||Percentage,';')
  241. from ElementChemistry where XRayId =INcAData.XRayId and fieldid=INcAData.fieldid ) as Element from INcAData where xrayid>-1 ";
  242. if (fieldAndPartic != "")
  243. {
  244. sqlp = sqlp + " and '" + fieldAndPartic + "' like ('%,'||fieldid||'-'||particleid||',%')";
  245. }
  246. DataTable DT = dbHelper.ExecuteDataTable(sqlp, null);
  247. for (int i = 0; i < DT.Rows.Count; i++)
  248. {
  249. DT.Rows[i]["Area"] = Math.Sqrt((double)DT.Rows[i]["Area"] / Math.PI) * 2;
  250. }
  251. return DT;
  252. }
  253. /// <summary>
  254. /// 获取所有Particle
  255. /// </summary>
  256. /// <returns></returns>
  257. public List<Particle> GetParticleAllList()
  258. {
  259. string sqlp = @"select * from INcAData";
  260. DataTable DT = dbHelper.ExecuteDataTable(sqlp, null);
  261. List<Particle> listp = dbHelper.TableToList<Particle>(DT);
  262. return listp;
  263. }
  264. /// <summary>
  265. /// 获取所有分类的面积
  266. /// </summary>
  267. /// <param name="fieldAndPartic">选择颗粒</param>
  268. /// <returns></returns>
  269. public DataTable GetAreaByAllIncA(string fieldAndPartic)
  270. {
  271. string sqlp = @"select TypeId,TypeName,sum(area) as ar,count(1) as con ,GroupName from INcAData";
  272. if (fieldAndPartic != "")
  273. {
  274. sqlp = sqlp + " where '" + fieldAndPartic + "' like ('%,'||fieldid||'-'||particleid||',%')";
  275. }
  276. sqlp = sqlp + " group by TypeId";
  277. DataTable DT = dbHelper.ExecuteDataTable(sqlp, null);
  278. return DT;
  279. }
  280. /// <summary>
  281. /// 获取所有大颗粒没有的小颗粒分类
  282. /// </summary>
  283. /// <param name="fieldAndPartic">选择颗粒</param>
  284. /// <returns></returns>
  285. public DataTable GetSmallParticleInfo()
  286. {
  287. string sqlp = @"select TypeId,TypeName,TypeColor,sum(area) as area,sum(ParticleQuant) as ParticleQuant from SmallParticleInfo where TypeId not in(select TypeId from INcAData) group by TypeId";
  288. DataTable DT = dbHelper.ExecuteDataTable(sqlp, null);
  289. return DT;
  290. }
  291. /// <summary>
  292. /// 获取不同分类的面积
  293. /// </summary>
  294. /// <param name="fieldAndPartic">选择颗粒</param>
  295. /// <returns></returns>
  296. public DataTable GetAreaByIncA(string TypeId, string fieldAndPartic)
  297. {
  298. string sqlp = @"select e.name,sum(e.percentage*p.area) as pc,p.TypeId from ElementChemistry e
  299. inner join INcAData p on e.xrayid=p.xrayid and e.fieldid = p.fieldid where p.TypeId=" + TypeId + " ";
  300. if (fieldAndPartic != "")
  301. {
  302. sqlp = sqlp + " and '" + fieldAndPartic + "' like ('%,'||p.fieldid||'-'||p.particleid||',%')";
  303. }
  304. sqlp = sqlp + " group by e.name";
  305. DataTable DT = dbHelper.ExecuteDataTable(sqlp, null);
  306. return DT;
  307. }
  308. public DataTable GetAreaByIncA_All()
  309. {
  310. string sqlp = @"select e.name,sum(e.percentage*p.area) as pc,p.TypeId from ElementChemistry e
  311. inner join INcAData p on e.xrayid=p.xrayid and e.fieldid = p.fieldid group by e.name ";
  312. DataTable DT = dbHelper.ExecuteDataTable(sqlp, null);
  313. return DT;
  314. }
  315. /// <summary>
  316. /// 获取全部的物质大类
  317. /// </summary>
  318. /// <returns></returns>
  319. public DataTable GetAllClass()
  320. {
  321. string sqlp = @"select GroupName from IncAData group by GroupName order by count(1) desc";
  322. DataTable DT = dbHelper.ExecuteDataTable(sqlp, null);
  323. return DT;
  324. }
  325. /// <summary>
  326. /// 获取所有元素
  327. /// </summary>
  328. /// <param name="model">Feature</param>
  329. /// <returns></returns>
  330. public DataTable GetAllElement()
  331. {
  332. string sqlp = @"select name from ElementChemistry group by name order by count(1) desc";
  333. DataTable DT = dbHelper.ExecuteDataTable(sqlp, null);
  334. return DT;
  335. }
  336. /// <summary>
  337. /// 获取常用夹杂物分类信息
  338. /// </summary>
  339. /// <returns></returns>
  340. public DataTable GetCommonlyUsedClassifyData()
  341. {
  342. string sqlp = @"select
  343. (select count(typeid) from incadata where typeid BETWEEN 10100 and 10199 and typeid BETWEEN 12200 and 12299 and typeid BETWEEN 11300 and 11299 ) as SPINEL ,
  344. (select count(typeid) from incadata where typeid BETWEEN 10000 and 10999 ) as OXIDE ,
  345. (select count(typeid) from incadata where typeid BETWEEN 11200 and 11299 and typeid BETWEEN 11400 and 11499 and typeid BETWEEN 11200 and 11599 ) as SULFIDE_OXIDE ,
  346. (select count(typeid) from incadata where typeid BETWEEN 12000 and 12999 ) as NITRIDE ,
  347. (select count(typeid) from incadata where typeid BETWEEN 11000 and 11999 ) as SULFIDE ";
  348. DataTable DT = dbHelper.ExecuteDataTable(sqlp, null);
  349. return DT;
  350. }
  351. public bool DeleteFromData(string fieldid, string particleid)
  352. {
  353. string sqlp = @"delete from IncAData where FieldId=" + fieldid + " and ParticleId="
  354. + particleid;
  355. if (dbHelper.ExecuteQuery_bool(sqlp))
  356. {
  357. return true;
  358. }
  359. else
  360. {
  361. return false;
  362. }
  363. }
  364. /// <summary>
  365. /// 获取颗粒信息
  366. /// </summary>
  367. /// <param name="model">Feature</param>
  368. /// <returns></returns>
  369. public Particle GetParticleByFidAndPid(string fieldid, string particleid)
  370. {
  371. string sqlp = @"select *,(select xraydata from xraydata where xrayindex=INcAData.xrayid and fieldid="
  372. + fieldid + ") as XRayData,(select group_concat(name || '_' || Percentage, ';')from ElementChemistry where XRayId = INcAData.XRayId and fieldid ="
  373. + fieldid + ") as Element from INcAData where fieldid="
  374. + fieldid + " and particleid= " + particleid;
  375. DataTable DT = dbHelper.ExecuteDataTable(sqlp, null);
  376. List<Particle> listp = dbHelper.TableToList<Particle>(DT);
  377. Particle particle = new Particle();
  378. if (listp.Count > 0)
  379. {
  380. particle = listp[0];
  381. List<Element> ElementList = new List<Element>();
  382. string element = DT.Rows[0]["Element"].ToString();
  383. for (int i = 0; i < element.Split(';').Count(); i++)
  384. {
  385. if (element.Split(';')[i] != "")
  386. {
  387. Element ele = new Element() { Name = element.Split(';')[i].Split('_')[0], Percentage = Convert.ToDouble(element.Split(';')[i].Split('_')[1]) };
  388. ElementList.Add(ele);
  389. }
  390. }
  391. particle.ElementList = ElementList;
  392. }
  393. return particle;
  394. }
  395. public Particle GetParticleXrayDataByFidAndPid(string fieldid, string xrayid)
  396. {
  397. string sqlp = @"select xraydata from xraydata where xrayindex=" + xrayid + " and fieldid="
  398. + fieldid;
  399. DataTable DT = dbHelper.ExecuteDataTable(sqlp, null);
  400. List<Particle> listp = dbHelper.TableToList<Particle>(DT);
  401. if (listp.Count > 0)
  402. {
  403. return listp[0];
  404. }
  405. else
  406. {
  407. return null;
  408. }
  409. }
  410. public enum PARTCLE_TYPE
  411. {
  412. SMALL = 0,//过小颗粒
  413. OVERSIZE = 1,//过大颗粒
  414. AVE_GRAY_NOT_INRANRE = 2,//亮度不在分析范围内的颗粒
  415. SEARCH_X_RAY = 3,
  416. LOW_COUNT = 4,//低计数率颗粒
  417. NO_INTEREST_ELEMENTS = 5,
  418. NO_ANALYSIS_X_RAY = 6,//不含分析元素
  419. NOT_IDENTIFIED_SIC = 7,//非夹杂物颗粒SiC
  420. NOT_IDENTIFIED_FEO = 8,//非夹杂物颗粒FeO
  421. NOT_IDENTIFIED = 9,//未识别颗粒
  422. IDENTIFIED = 10,//分析颗粒,当为可识别类型时,可以被进一步识别为用户类型(1000以上),系统预定义类型(10000以上),所以最终颗粒类型不会为8,但可能为7
  423. USER_DEFINED_MIN = 1000,
  424. SYS_DEFINED_MIN = 10000
  425. }
  426. #region 分页添加读取数据库函数
  427. /// <summary>
  428. /// 获取分页查询所需信息
  429. /// </summary>
  430. /// <param name=""></param>
  431. /// <param name=""></param>
  432. /// <returns></returns>
  433. public DataTable GetInfoForPartucleDevidePage(int currentPage, int pagesize, string OrderFunction, string condition)
  434. {
  435. int p = (currentPage - 1) * pagesize;
  436. string sqliteString = "select fieldid,particleid,AveGray,RectLeft,RectTop,RectWidth,RectHeight,Area,PosX,PosY,TypeId,SegmentNum,FieldPosX as 'SEMPosX',FieldPosY as 'SEMPosY',ParticleId,DMAX,DMIN,DPERP,PERIMETER,ORIENTATION,DINSCR,DMEAN,DELONG,DFERET,TypeName,TypeColor,SubParticles, (select group_concat(name || '-' || Percentage, ';') from ElementChemistry where XRayId = MergedParticleInfo.XRayId and fieldid = MergedParticleInfo.fieldid) as Element from MergedParticleInfo where 1=1 " + condition + " union select fieldid,particleid,AveGray,RectLeft,RectTop,RectWidth,RectHeight,Area,PosX,PosY,TypeId,SegmentNum,FieldPosX,FieldPosY,ParticleId,DMAX,DMIN,DPERP,PERIMETER,ORIENTATION,DINSCR,DMEAN,DELONG,DFERET,TypeName,TypeColor,'' as SubParticles,(select group_concat(name || '-' || Percentage, ';') from ElementChemistry where XRayId = INcAData.XRayId and fieldid = INcAData.fieldid ) as Element from INcAData where xrayid > -1 and instr(','||(select ifnull(group_concat(SubParticles, ','),'') from MergedParticleInfo)|| ',',',' || fieldid || ':' || particleid || ',')= 0 " + condition + " order by " + OrderFunction + " limit " + pagesize.ToString() + " offset " + p.ToString();
  437. DataTable DT = new DataTable();
  438. DT = dbHelper.ExecuteQuery(sqliteString);
  439. return DT;
  440. }
  441. public DataTable GetIncaSurfaceData(DataTable dt, int sel, List<string> lst_str)
  442. {
  443. DataTable particlesAll = new DataTable();
  444. if (sel == 0)
  445. {
  446. particlesAll = GetInfoForPartucleDevidePage2("");
  447. }
  448. else
  449. {
  450. particlesAll = dt.Copy();
  451. particlesAll.Columns.Add("Element");
  452. }
  453. DataTable dt_element = GetElementChemistry();
  454. DataTable elementchemistry = dt_element.Copy();
  455. List<int> list_int = new List<int>();
  456. for (int a = 0; a < lst_str.Count; a++)
  457. {
  458. for (int i = 0; i < dt_element.Rows.Count; i++)
  459. {
  460. if (elementchemistry.Rows[i]["Name"].ToString() == lst_str[a].ToString())
  461. {
  462. list_int.Add(i);
  463. }
  464. }
  465. }
  466. for (int i = 0; i < list_int.Count; i++)
  467. {
  468. elementchemistry.Rows[list_int[i]].Delete();
  469. }
  470. elementchemistry.AcceptChanges();
  471. for (int i = 0; i < particlesAll.Rows.Count; i++)
  472. {
  473. string str = "XRayId = " + particlesAll.Rows[i]["particleId"].ToString() + " and fieldid = " + particlesAll.Rows[i]["fieldid"].ToString();
  474. DataRow[] drs = elementchemistry.Select(str);
  475. string ConcatenatedString = "";
  476. for (int j = 0; j < drs.Length; j++)
  477. {
  478. ConcatenatedString += drs[j]["name"] + "-" + ChangeDataToD(drs[j]["Percentage"].ToString()) + ';';
  479. }
  480. particlesAll.Rows[i]["Element"] = ConcatenatedString;
  481. }
  482. //string sqlliteString = "select * from INcAData";
  483. //DataTable dt = dbHelper.ExecuteQuery(sqlliteString);
  484. return particlesAll;
  485. }
  486. /// <summary>
  487. /// 保留两位小数
  488. /// </summary>
  489. /// <param name="strData"></param>
  490. /// <returns></returns>
  491. private string ChangeDataToD(string strData)
  492. {
  493. Decimal dData = 0.00M;
  494. if (strData.Contains("E"))
  495. {
  496. dData = Convert.ToDecimal(Decimal.Parse(strData.ToString(), System.Globalization.NumberStyles.Float));
  497. }
  498. else
  499. {
  500. return Convert.ToDouble(strData).ToString("0.00");
  501. }
  502. return Convert.ToDouble(dData).ToString("0.00");
  503. }
  504. public DataTable GetInfoForPartucleDevidePage2(string condition)
  505. {
  506. string sqliteString = "select fieldid,particleid,AveGray,RectLeft,RectTop,RectWidth,RectHeight,Area,PosX,PosY,TypeId,SegmentNum,FieldPosX " +
  507. "as 'SEMPosX',FieldPosY as 'SEMPosY',XrayId,DMAX,DMIN,DPERP,PERIMETER,ORIENTATION,DINSCR,DMEAN,DELONG,DFERET,TypeName,TypeColor,SubParticles," +
  508. " (select group_concat(name || '-' || Percentage, ';') from ElementChemistry where XRayId = MergedParticleInfo.XRayId and fieldid = MergedParticleInfo.fieldid) " +
  509. "as Element from MergedParticleInfo where 1=1 " + condition + " union select fieldid,particleid,AveGray,RectLeft,RectTop,RectWidth,RectHeight,Area,PosX,PosY,TypeId," +
  510. "SegmentNum,SEMPosX,SEMPosY,XrayId,DMAX,DMIN,DPERP,PERIMETER,ORIENTATION,DINSCR,DMEAN,DELONG,DFERET,TypeName,TypeColor,'' as SubParticles,'' " +
  511. "as Element from INcAData where xrayid > -1 and instr(','||(select ifnull(group_concat(SubParticles, ','),'') from MergedParticleInfo)|| ',',',' || fieldid || ':' || particleid || ',')= 0 " +
  512. condition;
  513. DataTable DT = new DataTable();
  514. DT = dbHelper.ExecuteQuery(sqliteString);
  515. return DT;
  516. }
  517. public DataTable GetInfoForPartucleDevidePage_analyticalParticle(string condition)
  518. {
  519. string sqliteString = "select fieldid,particleid,AveGray,RectLeft,RectTop,RectWidth,RectHeight,Area,PosX,PosY,TypeId,SegmentNum,SEMPosX,SEMPosY,XrayId,DMAX,DMIN,DPERP,PERIMETER,ORIENTATION,DINSCR,DMEAN,DELONG,DFERET,TypeName,TypeColor,'' as Element from INcAData where xrayid > -1 and typeid !=9 and typeid !=-1 " +
  520. condition;
  521. DataTable DT = new DataTable();
  522. DT = dbHelper.ExecuteQuery(sqliteString);
  523. return DT;
  524. }
  525. public DataTable GetInfoForPartucleDevidePage_otherParticle(string condition)
  526. {
  527. string sqliteString = "select fieldid,particleid,AveGray,RectLeft,RectTop,RectWidth,RectHeight,Area,PosX,PosY,TypeId,SegmentNum,SEMPosX,SEMPosY,XrayId,DMAX,DMIN,DPERP,PERIMETER,ORIENTATION,DINSCR,DMEAN,DELONG,DFERET,TypeName,TypeColor,'' as Element from INcAData where xrayid > -1 and (typeid =9 or typeid =-1) " +
  528. condition;
  529. DataTable DT = new DataTable();
  530. DT = dbHelper.ExecuteQuery(sqliteString);
  531. return DT;
  532. }
  533. public DataTable GetInfoForPartucleDevidePage_mergeParticles(string condition)
  534. {
  535. string sqliteString = "select fieldid,particleid,AveGray,RectLeft,RectTop,RectWidth,RectHeight,Area,PosX,PosY,TypeId,SegmentNum,FieldPosX " +
  536. "as 'SEMPosX',FieldPosY as 'SEMPosY',XrayId,DMAX,DMIN,DPERP,PERIMETER,ORIENTATION,DINSCR,DMEAN,DELONG,DFERET,TypeName,TypeColor,SubParticles,''as Element from MergedParticleInfo where 1=1 " + condition;
  537. DataTable DT = new DataTable();
  538. DT = dbHelper.ExecuteQuery(sqliteString);
  539. return DT;
  540. }
  541. public DataTable GetInfoForPartucleDevidePage_allParticles(string condition)
  542. {
  543. string sqliteString = "select fieldid,particleid,AveGray,RectLeft,RectTop,RectWidth,RectHeight,Area,PosX,PosY,TypeId,SegmentNum,SEMPosX,SEMPosY,XrayId,DMAX,DMIN,DPERP,PERIMETER,ORIENTATION,DINSCR,DMEAN,DELONG,DFERET,TypeName,TypeColor,'' as Element from INcAData where 1=1 " +
  544. condition;
  545. DataTable DT = new DataTable();
  546. DT = dbHelper.ExecuteQuery(sqliteString);
  547. return DT;
  548. }
  549. public DataTable GetElementChemistry()
  550. {
  551. string sqliteString = "select * from ElementChemistry";
  552. DataTable DT = new DataTable();
  553. DT = dbHelper.ExecuteQuery(sqliteString);
  554. return DT;
  555. }
  556. public Bitmap GetBitmapForBig(string sub, double xs, string path, int picHeight, int picWidth)
  557. {
  558. string vs = "," + sub.Replace(':', '-') + ",";
  559. DataTable dataTable = GetParticleAll(vs);
  560. if (dataTable.Rows.Count == 0)
  561. {
  562. return null;
  563. }
  564. //内接矩形
  565. double max_Y = Convert.ToInt64(dataTable.Rows[0]["FieldPosY"]) * xs - Convert.ToInt64(dataTable.Rows[0]["RectTop"]);
  566. double max_X = Convert.ToInt64(dataTable.Rows[0]["FieldPosX"]) * xs + Convert.ToInt64(dataTable.Rows[0]["RectLeft"]);
  567. double min_Y = max_Y;
  568. double min_X = max_X;
  569. //拼接field矩形
  570. double MAX_Y = Convert.ToInt64(dataTable.Rows[0]["FieldPosY"]) * xs;
  571. double MAX_X = Convert.ToInt64(dataTable.Rows[0]["FieldPosX"]) * xs;
  572. double MIN_Y = MAX_Y;
  573. double MIN_X = MAX_X;
  574. foreach (DataRow item in dataTable.Rows)
  575. {
  576. //颗粒外接矩形
  577. double lefttopX = Convert.ToInt64(item["FieldPosX"]) * xs + Convert.ToInt64(item["RectLeft"]);
  578. if (lefttopX < min_X)
  579. {
  580. min_X = lefttopX;
  581. }
  582. if (lefttopX + Convert.ToInt64(item["RectWidth"]) > max_X)
  583. {
  584. max_X = lefttopX + Convert.ToInt64(item["RectWidth"]);
  585. }
  586. double lrfttopY = Convert.ToInt64(item["FieldPosY"]) * xs - Convert.ToInt64(item["RectTop"]);
  587. if (max_Y < lrfttopY)
  588. {
  589. max_Y = lrfttopY;
  590. }
  591. if (min_Y > lrfttopY - Convert.ToInt64(item["RectHeight"]))
  592. {
  593. min_Y = lrfttopY - Convert.ToInt64(item["RectHeight"]);
  594. }
  595. //画布
  596. double lefttopXH = Convert.ToInt64(item["FieldPosX"]) * xs;
  597. if (lefttopXH > MAX_X)
  598. {
  599. MAX_X = lefttopXH;
  600. }
  601. if (lefttopXH < MIN_X)
  602. {
  603. MIN_X = lefttopXH;
  604. }
  605. double lrfttopYH = Convert.ToInt64(item["FieldPosY"]) * xs;
  606. if (MAX_Y < lrfttopYH)
  607. {
  608. MAX_Y = lrfttopYH;
  609. }
  610. if (MIN_Y > lrfttopYH)
  611. {
  612. MIN_Y = lrfttopYH;
  613. }
  614. }
  615. int WIDTH = Convert.ToInt32(MAX_X - MIN_X) + picWidth;
  616. int HEIGHT = Convert.ToInt32(MAX_Y - MIN_Y) + picHeight;
  617. //构造最终的图片白板
  618. Bitmap tableChartImage = new Bitmap(WIDTH, HEIGHT);
  619. Graphics graph = Graphics.FromImage(tableChartImage);
  620. //初始化这个大图
  621. graph.DrawImage(tableChartImage, 0, 0);
  622. int width = Convert.ToInt32(max_X - min_X);
  623. int height = Convert.ToInt32(max_Y - min_Y);
  624. int X = Convert.ToInt32(min_X - MIN_X);
  625. int Y = Convert.ToInt32(MAX_Y - max_Y);
  626. Rectangle rectangle = new Rectangle() { X = X, Y = Y, Width = width, Height = height };
  627. foreach (DataRow item in dataTable.Rows)
  628. {
  629. string filePath = path + "\\FIELD_FILES\\";
  630. string imagePath = filePath + "Field" + item["fieldid"].ToString() + ".bmp";
  631. //然后将取出的数据,转换成Bitmap对象
  632. Bitmap ls_bt = ReadImageFile(imagePath);
  633. int x = Convert.ToInt32(Convert.ToDouble(item["FieldPosX"]) * xs - MIN_X);
  634. int y = Convert.ToInt32(Convert.ToDouble(item["FieldPosY"]) * xs - MIN_Y);
  635. graph.DrawImage(ls_bt, x, y);
  636. }
  637. Bitmap bmap = tableChartImage.Clone(rectangle, PixelFormat.Format8bppIndexed);
  638. return bmap;
  639. }
  640. /// <summary>
  641. /// 通过FileStream 来打开文件,这样就可以实现不锁定Image文件,到时可以让多用户同时访问Image文件
  642. /// </summary>
  643. /// <param name="path"></param>
  644. /// <returns></returns>
  645. public Bitmap ReadImageFile(string path)
  646. {
  647. if (!File.Exists(path))
  648. {
  649. return null;//文件不存在
  650. }
  651. FileStream fs = File.OpenRead(path); //OpenRead
  652. int filelength = 0;
  653. filelength = (int)fs.Length; //获得文件长度
  654. Byte[] image = new Byte[filelength]; //建立一个字节数组
  655. fs.Read(image, 0, filelength); //按字节流读取
  656. System.Drawing.Image result = System.Drawing.Image.FromStream(fs);
  657. fs.Close();
  658. Bitmap bit = new Bitmap(result);
  659. return bit;
  660. }
  661. /// <summary>
  662. /// 传入单颗颗粒的particle类对象,返回从field中抠取出的bitmap对象,抠取单颗颗粒
  663. /// </summary>
  664. /// <param name="in_cotsparticleclr"></param>
  665. /// <returns></returns>
  666. public Bitmap GetBitmapByParticle(Bitmap ls_bt, Rectangle offset_rect)
  667. {
  668. //为了能把整个颗粒显示完整
  669. offset_rect.X = offset_rect.X - 5;
  670. offset_rect.Y = offset_rect.Y - 5;
  671. offset_rect.Width = offset_rect.Width + 10;
  672. offset_rect.Height = offset_rect.Height + 10;
  673. //防止计算偏差后,有坐标溢出现象
  674. if (offset_rect.X < 0)
  675. offset_rect.X = 0;
  676. if (offset_rect.Y < 0)
  677. offset_rect.Y = 0;
  678. if (offset_rect.X + offset_rect.Width > ls_bt.Width)
  679. {
  680. offset_rect.Width = ls_bt.Width - offset_rect.X;
  681. }
  682. if (offset_rect.Y + offset_rect.Height > ls_bt.Height)
  683. {
  684. offset_rect.Height = ls_bt.Height - offset_rect.Y;
  685. }
  686. Bitmap new_ret_bp;
  687. //防止为0后面计算出错
  688. if (offset_rect.Width > 0 && offset_rect.Height > 0)
  689. {
  690. //最后通过list_showsegment组建成新的图片,进行返回
  691. new_ret_bp = ls_bt.Clone(offset_rect, PixelFormat.Format8bppIndexed);
  692. }
  693. else
  694. {
  695. new_ret_bp = new Bitmap(offset_rect.Width, offset_rect.Height);
  696. }
  697. return new_ret_bp;
  698. }
  699. #endregion
  700. }
  701. public class UserLibraryData
  702. {
  703. private SqlHelper dbHelper;
  704. public UserLibraryData(string libraryName,string resultpath)
  705. {
  706. NLog.Logger log = NLog.LogManager.GetCurrentClassLogger();
  707. if (!libraryName.Contains(".db"))
  708. {
  709. libraryName += ".db";
  710. }
  711. if(libraryName.ToLower()== "nostddb.db")
  712. {
  713. dbHelper = null;
  714. log.Error("Failed to load user-defined library" + "!");
  715. }
  716. string fullPath = resultpath + libraryName;
  717. string fullPath2 = System.IO.Directory.GetCurrentDirectory() + "\\Config\\SysData\\" + libraryName;
  718. if (System.IO.File.Exists(fullPath))
  719. {
  720. dbHelper = new SqlHelper("data source='" + fullPath + "'");
  721. log.Warn("Loading the user standard library:" + fullPath + "!");
  722. }
  723. else if(System.IO.File.Exists(fullPath2))
  724. {
  725. dbHelper = new SqlHelper("data source='" + fullPath2 + "'");
  726. log.Warn("Loading the user standard library:" + fullPath2 + "!");
  727. }
  728. else
  729. {
  730. dbHelper = null;
  731. log.Error("Failed to load user-defined library"+ "!");
  732. }
  733. }
  734. public DataTable GetSubAttributeFromDatabase()
  735. {
  736. string sqliteString = "select STDId,Hardness,Density,Electrical_conductivity from ClassifySTD";
  737. DataTable DT = new DataTable();
  738. DT = dbHelper.ExecuteQuery(sqliteString);
  739. return DT;
  740. }
  741. public SqlHelper GetSqlHelper() { return dbHelper; }
  742. }
  743. }