ImageExporter.cs 27 KB

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  1. using OpenCvSharp;
  2. using OpenCvSharp.Extensions;
  3. using OTSCommon.DBOperate.Model;
  4. using OTSIncAReportApp._1_UI.Control_Graph.Controls;
  5. using OTSIncAReportApp.OTSRstMgrFunction;
  6. using OTSIncAReportGraph;
  7. using OTSIncAReportGraph.Class;
  8. using OTSIncAReportGraph.Controls;
  9. using OTSMeasureApp.ServiceCenter;
  10. using OTSModelSharp.ServiceCenter;
  11. using System;
  12. using System.Collections.Generic;
  13. using System.Data;
  14. using System.Drawing;
  15. using System.Linq;
  16. using System.Text;
  17. using System.Threading.Tasks;
  18. using System.Windows.Forms;
  19. namespace OTSIncAReportApp._3_ServiceCenter
  20. {
  21. class ImageExporter
  22. {
  23. public OTSIncAReportApp.frmReportApp m_ReportApp;
  24. //包含particle的field的列表对象
  25. public List<DisplayRectangle> m_list_allDfield = null;
  26. public ResultFile resultFile = null;
  27. public SaveFileDialog sfd = null;
  28. public DataTable ParticleData = new DataTable();
  29. public DataTable ParticleClassData = new DataTable();
  30. /// <summary>
  31. /// 国标一框框
  32. /// </summary>
  33. public DataTable GBDatatableOne { get; set; }
  34. /// <summary>
  35. ///国标格子大小(像素)
  36. /// </summary>
  37. public int GridLength { get; set; }
  38. public int type = 0;
  39. //像素大小
  40. public double pixelSize = 0;
  41. private double picGBYmin = 0;
  42. private double OverlapParamPX = 0;
  43. public void opencv_outpic()
  44. {
  45. ImageSplicer imageSplicer = new ImageSplicer();
  46. Dictionary<string, object> sampleMembers = ((Dictionary<string, object>)((Dictionary<string, object>)resultFile.ResultInfo["Sample"])["Members"]);
  47. Dictionary<string, object> imageProcessParam = (Dictionary<string, object>)((Dictionary<string, object>)((Dictionary<string, object>)sampleMembers["MsrParams"])["Members"])["ImageProcessParam"];
  48. object strOverlapParam = "";
  49. imageProcessParam.TryGetValue("OverlapParam", out strOverlapParam);
  50. if (strOverlapParam == null)
  51. {
  52. strOverlapParam = "0";
  53. //NLog.LogManager.GetCurrentClassLogger().Info("There are no overlapping dimensions");
  54. //return;
  55. }
  56. //获取图像重叠参数(微米需要转换成像素)
  57. int OverlapParam = int.Parse(strOverlapParam.ToString());
  58. if (OverlapParam==0)
  59. {
  60. OverlapParamPX = 0;
  61. }else
  62. {
  63. OverlapParamPX = OverlapParam / pixelSize;
  64. }
  65. List<DataTable> list_dt_picdata = new List<DataTable>();
  66. OpenCvSharp.Mat[] list_mats;
  67. //导出拼接图片外加颗粒渲染
  68. if (type ==(int)Outpic_enum.ColoredParticles)
  69. {
  70. list_dt_picdata = imageSplicer.ImageStitchingParticleRendering(resultFile, m_list_allDfield);
  71. list_mats = new OpenCvSharp.Mat[list_dt_picdata.Count];
  72. }
  73. //导出国标外加颗粒渲染
  74. else if (type == (int)Outpic_enum.GBOne)
  75. {
  76. list_dt_picdata = imageSplicer.ImageStitchingParticleRendering(resultFile, m_list_allDfield);
  77. list_mats = new OpenCvSharp.Mat[list_dt_picdata.Count];
  78. }
  79. //导出拼接图片
  80. else
  81. {
  82. list_dt_picdata = imageSplicer.Mosaics(resultFile, m_list_allDfield);
  83. list_mats = new OpenCvSharp.Mat[list_dt_picdata.Count];
  84. }
  85. NLog.LogManager.GetCurrentClassLogger().Info("Organize and splice all pictures......");
  86. List<OpenCvSharp.Mat> list_pano = new List<OpenCvSharp.Mat>();
  87. List<Bitmap> list_panos = new List<Bitmap>();
  88. //循环保存每行拼接的图片
  89. for (int i = list_dt_picdata.Count-1; i >= 0; i--)
  90. {
  91. // 计算新Bitmap的总宽度和高度
  92. int totalWidth = 0;
  93. int maxHeight = 0;
  94. for ( int c=0;c< list_dt_picdata[i].Rows.Count;c++)
  95. {
  96. Bitmap bitmap = (Bitmap)list_dt_picdata[i].Rows[c]["mat"];
  97. totalWidth += bitmap.Width; // 减去重叠部分将在绘制时处理
  98. maxHeight = Math.Max(maxHeight, bitmap.Height);
  99. }
  100. // 因为有n张图片,它们之间会有n-1个重叠区域,所以需要从总宽度中减去这些重叠的像素
  101. // 注意:如果图片数量小于2,则不需要减去任何重叠部分
  102. if (list_dt_picdata[i].Rows.Count > 1)
  103. {
  104. totalWidth -= (list_dt_picdata[i].Rows.Count - 1) * (int)OverlapParamPX;
  105. }
  106. // 创建一个新的Bitmap对象来存储拼接后的图像
  107. Bitmap combinedImage = new Bitmap(totalWidth, maxHeight);
  108. // 使用Graphics对象来绘制拼接后的图像
  109. using (Graphics g = Graphics.FromImage(combinedImage))
  110. {
  111. int currentX = 0;
  112. for (int b=0;b< list_dt_picdata[i].Rows.Count; b++)
  113. {
  114. Bitmap bitmap = (Bitmap)list_dt_picdata[i].Rows[b]["mat"];
  115. // 绘制当前图片,注意调整X坐标以实现重叠
  116. g.DrawImage(bitmap, new Rectangle(currentX, 0, bitmap.Width, bitmap.Height));
  117. // 更新当前X坐标,为下一张图片留出空间(包括重叠部分)
  118. currentX += bitmap.Width - (list_dt_picdata[i].Rows.Count > 1 ? (int)OverlapParamPX : 0); // 如果不是最后一张图片,则减去重叠的20像素
  119. }
  120. }
  121. Mat mat = BitmapConverter.ToMat(combinedImage);
  122. list_pano.Add(mat);
  123. list_panos.Add(combinedImage);
  124. }
  125. //导出原图(渲染图)在下方增加每种颜色的标注和面积占比
  126. if (type == (int)Outpic_enum.ColoredParticles || type == (int)Outpic_enum.GBOne)
  127. {
  128. DataTable particleData = ParticleDataIntegration(ParticleData, ParticleClassData);
  129. int NumberOfRows = getPICstringLong(particleData, list_pano);
  130. Bitmap bitmap = new Bitmap(list_pano[0].Width, NumberOfRows*140);
  131. Graphics g = Graphics.FromImage(bitmap);
  132. g.Clear(Color.White);
  133. int rowData = 10;
  134. //矩形格子宽500
  135. SolidBrush mysbrush1 = new SolidBrush(ColorTranslator.FromHtml("#000000"));
  136. Pen mypen = new Pen(mysbrush1, 2);
  137. Font myFont = new Font("宋体", 13, FontStyle.Bold);
  138. SolidBrush sbrush = new SolidBrush(Color.Black);
  139. int Color_Y = 10; int TypeName_Y = 40; int Prozentsatz_Y = 100;int Area_Y = 70;
  140. int Gitter_X = 10;
  141. picKopfzeile(mypen, myFont, sbrush, g, 10, rowData);
  142. Gitter_X = Gitter_X + 350;
  143. for (int i = 0; i < particleData.Rows.Count; i++)
  144. {
  145. if (Gitter_X+350> list_pano[0].Width)
  146. {
  147. rowData = rowData + 130;
  148. picKopfzeile(mypen, myFont, sbrush, g, 10, rowData);
  149. Color_Y = Color_Y + 130;
  150. TypeName_Y = TypeName_Y + 130;
  151. Prozentsatz_Y = Prozentsatz_Y + 130;
  152. Area_Y = Area_Y + 130;
  153. Gitter_X = 360;
  154. }
  155. g.DrawRectangle(mypen, Gitter_X, Color_Y, 350, 30);
  156. g.DrawRectangle(mypen, Gitter_X, TypeName_Y, 350, 30);
  157. g.DrawRectangle(mypen, Gitter_X, Area_Y, 350, 30);
  158. g.DrawRectangle(mypen, Gitter_X, Prozentsatz_Y, 350, 30);
  159. SolidBrush mysbrush = new SolidBrush(ColorTranslator.FromHtml(particleData.Rows[i]["Color"].ToString()));
  160. g.FillRectangle(mysbrush, Gitter_X + 1, Color_Y + 1, 348, 28);
  161. g.DrawString(particleData.Rows[i]["TypeName"].ToString(), myFont, sbrush, Gitter_X + 1, TypeName_Y + 2);
  162. g.DrawString(particleData.Rows[i]["Area"].ToString(), myFont, sbrush, Gitter_X + 1, Area_Y + 2);
  163. g.DrawString(particleData.Rows[i]["Percentage"].ToString()+"%", myFont, sbrush, Gitter_X + 1, Prozentsatz_Y + 2);
  164. Gitter_X = Gitter_X + 350;
  165. }
  166. list_panos.Add(bitmap);
  167. g.Dispose();
  168. }
  169. Bitmap combined = MergeImagesVertically(list_panos, (int)OverlapParamPX);
  170. NLog.LogManager.GetCurrentClassLogger().Info("Picture splicing completed.");
  171. NLog.LogManager.GetCurrentClassLogger().Info("Save to disk......");
  172. OpenCvSharp.Mat save_pano = BitmapConverter.ToMat(combined);
  173. if (type == (int)Outpic_enum.GBOne)
  174. {
  175. imageSplicer.DrawingOfNationalStandardBoxes(GBDatatableOne, GridLength, save_pano);
  176. }
  177. OpenCvSharp.Cv2.ImWrite(sfd.FileName, save_pano);
  178. NLog.LogManager.GetCurrentClassLogger().Info("Save complete.");
  179. Control_DrawDistrbutionImageAndBSE v = m_ReportApp.im_Control_DrawDistrbutionImageAndBSE;
  180. MyEvent += new MyEntrust(v.msgInform);
  181. v.Invoke(MyEvent);
  182. }
  183. private Bitmap MergeImagesVertically(List<Bitmap> images, int overlap)
  184. {
  185. if (images == null || images.Count == 0)
  186. {
  187. throw new ArgumentException("输入的图片数组不能为空或没有元素");
  188. }
  189. // 计算新Bitmap的宽度和高度
  190. int totalWidth = 0;
  191. int totalHeight = 0;
  192. // 找到最宽的宽度
  193. foreach (var img in images)
  194. {
  195. if (img.Width > totalWidth)
  196. {
  197. totalWidth = img.Width;
  198. }
  199. //totalHeight += img.Height - (img != images[images.Count - 1] ? overlap : 0); // 最后一张图片不减去重叠
  200. }
  201. int imgHeight = (int)OverlapParamPX * (images.Count - 1);
  202. totalHeight = images[0].Height * (images.Count-1) - imgHeight;
  203. // 为最后一张图片添加完整的高度
  204. if (images.Count > 1)
  205. {
  206. totalHeight += images[images.Count - 1].Height;
  207. }
  208. else
  209. {
  210. // 如果只有一张图片,则不需要调整高度
  211. totalHeight = images[0].Height;
  212. }
  213. Bitmap result = new Bitmap(totalWidth, totalHeight);
  214. using (Graphics g = Graphics.FromImage(result))
  215. {
  216. g.Clear(Color.Transparent); // 或者设置为其他背景色
  217. int offsetY = 0;
  218. foreach (var img in images)
  219. {
  220. // 绘制图片,考虑重叠部分
  221. g.DrawImage(img, new Rectangle(0, offsetY, img.Width, img.Height));
  222. // 更新偏移量
  223. offsetY += img.Height - (img != images[images.Count - 1] ? overlap : 0);
  224. }
  225. }
  226. return result;
  227. }
  228. private int getPICstringLong(DataTable particleData, List<OpenCvSharp.Mat> list_pano)
  229. {
  230. int Long = 1;
  231. int Gitter_X = 10;
  232. for (int i = 0; i < particleData.Rows.Count; i++)
  233. {
  234. if (Gitter_X + 350 > list_pano[0].Width)
  235. {
  236. Long = Long + 1;
  237. Gitter_X = 10;
  238. }
  239. Gitter_X = Gitter_X + 350;
  240. }
  241. return Long;
  242. }
  243. private void picKopfzeile(Pen mypen, Font myFont, SolidBrush sbrush, Graphics g ,int X,int Y)
  244. {
  245. int Color_Y = Y; int TypeName_Y = Y+30; int Prozentsatz_Y = Y + 90; int Area_Y = Y+ 60;
  246. int Gitter_X = X;
  247. g.DrawRectangle(mypen, Gitter_X, Color_Y, 350, 30);
  248. g.DrawRectangle(mypen, Gitter_X, TypeName_Y, 350, 30);
  249. g.DrawRectangle(mypen, Gitter_X, Area_Y, 350, 30);
  250. g.DrawRectangle(mypen, Gitter_X, Prozentsatz_Y, 350, 30);
  251. g.DrawString("Color", myFont, sbrush, Gitter_X + 1, Color_Y + 2);
  252. g.DrawString("TypeName", myFont, sbrush, Gitter_X + 1, TypeName_Y + 2);
  253. g.DrawString("Area", myFont, sbrush, Gitter_X + 1, Area_Y + 2);
  254. g.DrawString("Prozentsatz", myFont, sbrush, Gitter_X + 1, Prozentsatz_Y + 2);
  255. }
  256. private DataTable ParticleDataIntegration(DataTable ParticleAll,DataTable ParticleClass)
  257. {
  258. DataTable dt = ParticleClass.Copy();
  259. dt.Columns.Add("Area", typeof(float));
  260. dt.Columns.Add("Percentage");
  261. dt.Columns.Add("Color");
  262. double ParticleAreaTotal = 0;
  263. for (int i=0;i< ParticleAll.Rows.Count;i++)
  264. {
  265. ParticleAreaTotal = ParticleAreaTotal + Convert.ToDouble(ParticleAll.Rows[i]["Area"]);
  266. }
  267. for (int i=0;i< dt.Rows.Count;i++)
  268. {
  269. double ParticleArea = 0;
  270. string ParticleColer = "";
  271. for (int a=0;a< ParticleAll.Rows.Count;a++)
  272. {
  273. if (dt.Rows[i]["TypeName"].ToString()== ParticleAll.Rows[a]["TypeName"].ToString())
  274. {
  275. ParticleArea = ParticleArea + Convert.ToDouble(ParticleAll.Rows[a]["Area"]);
  276. ParticleColer = ParticleAll.Rows[a]["TypeColor"].ToString();
  277. }
  278. }
  279. dt.Rows[i]["Area"] = ParticleArea;
  280. dt.Rows[i]["Percentage"] = ParameterNormalization(ParticleAreaTotal, ParticleArea);
  281. dt.Rows[i]["Color"] = ParticleColer;
  282. }
  283. return dt;
  284. }
  285. /// <summary>
  286. /// 参数归一化
  287. /// </summary>
  288. /// <param name="a_mi">总数</param>
  289. /// <param name="m">传参</param>
  290. /// <returns></returns>
  291. private string ParameterNormalization(double a_mi, double m)
  292. {
  293. double ColVal = Convert.ToDouble(m / a_mi * 100);
  294. if (ColVal == 0)
  295. {
  296. return "";
  297. }
  298. else
  299. {
  300. return Math.Round(ColVal, 2).ToString();
  301. }
  302. }
  303. #region 合并天宇颗粒融合新增函数
  304. public void opencv_outpic2(/*int type*/)
  305. {
  306. List<DataTable> list_dt_picdata = new List<DataTable>();
  307. if (type == (int)Outpic_enum.pic || type == (int)Outpic_enum.Combin)
  308. {
  309. list_dt_picdata = opencv_piclist2();
  310. }
  311. else if (type == (int)Outpic_enum.Render_pic || type == (int)Outpic_enum.Render_Combin)
  312. {
  313. list_dt_picdata = opencv_piclist_Render2();
  314. }
  315. OpenCvSharp.Mat save_pano = new OpenCvSharp.Mat();
  316. OpenCvSharp.Mat[] list_mats = new OpenCvSharp.Mat[list_dt_picdata.Count];
  317. if (type == (int)Outpic_enum.Combin || type == (int)Outpic_enum.Render_Combin)
  318. {
  319. ImageStitchUsingOpenCvSharp cImageHandler = new ImageStitchUsingOpenCvSharp();
  320. Dictionary<string, object> sampleMembers = ((Dictionary<string, object>)((Dictionary<string, object>)resultFile.ResultInfo["Sample"])["Members"]);
  321. Dictionary<string, object> imageProcessParam = (Dictionary<string, object>)((Dictionary<string, object>)((Dictionary<string, object>)sampleMembers["MsrParams"])["Members"])["ImageProcessParam"];
  322. object strOverlapParam = "";
  323. imageProcessParam.TryGetValue("OverlapParam", out strOverlapParam);
  324. if (strOverlapParam == null)
  325. {
  326. NLog.LogManager.GetCurrentClassLogger().Info("There are no overlapping dimensions");
  327. return;
  328. }
  329. int OverlapParam = int.Parse(strOverlapParam.ToString());
  330. List<OpenCvSharp.Mat> maxXList = new List<OpenCvSharp.Mat>();
  331. for (int i = 0; i < list_dt_picdata.Count; i++)
  332. {
  333. OpenCvSharp.Mat[] mats = new OpenCvSharp.Mat[list_dt_picdata[i].Rows.Count];
  334. for (int a = 0; a < list_dt_picdata[i].Rows.Count; a++)
  335. {
  336. mats[a] = OpenCvSharp.Extensions.BitmapConverter.ToMat((Bitmap)list_dt_picdata[i].Rows[a]["mat"]);
  337. }
  338. //横向拼接
  339. maxXList.Add(cImageHandler.CombinImageX(mats, OverlapParam, type));
  340. }
  341. save_pano = cImageHandler.CombinImageY(maxXList.ToArray(), OverlapParam, type);
  342. OpenCvSharp.Cv2.ImWrite(sfd.FileName, save_pano);
  343. NLog.LogManager.GetCurrentClassLogger().Info("Save complete.");
  344. }
  345. else
  346. {
  347. NLog.LogManager.GetCurrentClassLogger().Info("Organize and splice all pictures......");
  348. for (int i = 0; i < list_dt_picdata.Count; i++)
  349. {
  350. OpenCvSharp.Mat[] mats = new OpenCvSharp.Mat[list_dt_picdata[i].Rows.Count];
  351. for (int a = 0; a < list_dt_picdata[i].Rows.Count; a++)
  352. {
  353. mats[a] = OpenCvSharp.Extensions.BitmapConverter.ToMat((Bitmap)list_dt_picdata[i].Rows[a]["mat"]);
  354. }
  355. OpenCvSharp.Mat pano = new OpenCvSharp.Mat();
  356. OpenCvSharp.Cv2.HConcat(mats, pano);
  357. list_mats[i] = pano;
  358. }
  359. NLog.LogManager.GetCurrentClassLogger().Info("Picture splicing completed.");
  360. NLog.LogManager.GetCurrentClassLogger().Info("Save to disk......");
  361. OpenCvSharp.Cv2.VConcat(list_mats, save_pano);
  362. OpenCvSharp.Cv2.ImWrite(sfd.FileName, save_pano);
  363. NLog.LogManager.GetCurrentClassLogger().Info("Save complete.");
  364. }
  365. }
  366. private List<DataTable> opencv_piclist_Render2()
  367. {
  368. List<DataTable> list_dt_picdata = new List<DataTable>();
  369. DataTable picDatat = new DataTable();
  370. List<Field> fieldlist = resultFile.List_OTSField;
  371. picDatat.Columns.Add("X", typeof(double));
  372. picDatat.Columns.Add("Y", typeof(double));
  373. foreach (var f in m_list_allDfield)
  374. {
  375. DataRow dr = picDatat.NewRow();
  376. dr["X"] = f.GetShowRect().X;
  377. dr["Y"] = f.GetShowRect().Y;
  378. picDatat.Rows.Add(dr);
  379. }
  380. int y_max = Convert.ToInt32(picDatat.Compute("Max(Y)", "true"));
  381. int y_min = Convert.ToInt32(picDatat.Compute("Min(Y)", "true"));
  382. DataTable total_dt_X = picDatat.Copy();
  383. DataView dv_x = total_dt_X.DefaultView;
  384. DataView dv_x_2 = dv_x.ToTable(true, "X").DefaultView;
  385. dv_x_2.Sort = "X ASC";
  386. total_dt_X = dv_x_2.ToTable();
  387. DataTable total_dt_Y = picDatat.Copy();
  388. DataView dv_Y = total_dt_Y.DefaultView;
  389. DataView dv_Y_2 = dv_Y.ToTable(true, "Y").DefaultView;
  390. dv_Y_2.Sort = "Y ASC";
  391. total_dt_Y = dv_Y_2.ToTable();
  392. for (int i = 0; i < total_dt_Y.Rows.Count; i++)
  393. {
  394. NLog.LogManager.GetCurrentClassLogger().Info("Splice line" + i + 1.ToString() + "of" + total_dt_Y.Rows.Count.ToString() + ".....");
  395. DataTable data = new DataTable();
  396. data.Columns.Add("mat", typeof(Bitmap));
  397. data.Columns.Add("X", typeof(double));
  398. for (int a = 0; a < total_dt_X.Rows.Count; a++)
  399. {
  400. DataRow dr2 = data.NewRow();
  401. Bitmap bitmap = new Bitmap((int)m_list_allDfield[0].GetShowRect().Width, (int)m_list_allDfield[0].GetShowRect().Height);
  402. Graphics g = Graphics.FromImage(bitmap);
  403. g.Clear(Color.White);
  404. g.Dispose();
  405. dr2["mat"] = bitmap;
  406. dr2["X"] = total_dt_X.Rows[a]["X"];
  407. data.Rows.Add(dr2);
  408. }
  409. foreach (var f in m_list_allDfield)
  410. {
  411. if (total_dt_Y.Rows[i]["Y"].ToString() == f.GetShowRect().Y.ToString())
  412. {
  413. for (int c = 0; c < data.Rows.Count; c++)
  414. {
  415. if (data.Rows[c]["X"].ToString() == f.GetShowRect().X.ToString())
  416. {
  417. Bitmap image = new Bitmap(f.OriginalImage.Width, f.OriginalImage.Height);
  418. Graphics g2 = Graphics.FromImage(image);
  419. g2.DrawImage(f.OriginalImage, 0, 0, f.OriginalImage.Width, f.OriginalImage.Height);
  420. Graphics graph_2 = Graphics.FromImage(image);
  421. for (int a = 0; a < fieldlist.Count; a++)
  422. {
  423. if (fieldlist[a].FieldID.ToString() == f.FieldID.ToString())
  424. {
  425. //先获取该Field中的所有Particle
  426. List<Particle> list_particle;
  427. list_particle = fieldlist[a].ParticleList;
  428. //再循环计算所有的Particle对象
  429. foreach (Particle particle in list_particle)
  430. {
  431. //创建DParticle颗粒
  432. DisplayParticle dp = new DisplayParticle(particle);
  433. List<Segment> list_seg;
  434. list_seg = particle.SegmentList;
  435. //创建颗粒分布图对应的类对象
  436. List<DisplaySegment> list_dsegment = new List<DisplaySegment>();
  437. //再循环取出里面所有的segment
  438. foreach (Segment seg in list_seg)
  439. {
  440. #region 创建DSegment对象,并将STD分析出的化合物颜色保存到DSegment对象中
  441. System.Drawing.Point on_p = new System.Drawing.Point() { X = seg.Start, Y = seg.Height };
  442. System.Drawing.Point off_p = new System.Drawing.Point() { X = seg.Start + seg.Length, Y = seg.Height };
  443. Pen npen = new Pen(dp.Color);
  444. graph_2.DrawLine(npen, on_p, off_p);
  445. #endregion
  446. }
  447. }
  448. }
  449. }
  450. data.Rows[c]["mat"] = image;
  451. data.Rows[c]["X"] = f.GetShowRect().X;
  452. }
  453. }
  454. }
  455. }
  456. DataView dataView1 = data.DefaultView;
  457. dataView1.Sort = "X ASC";
  458. data = dataView1.ToTable();
  459. list_dt_picdata.Add(data);
  460. }
  461. return list_dt_picdata;
  462. }
  463. /// <summary>
  464. /// 获取每行图片的位置配合opencv方法使用
  465. /// </summary>
  466. /// <returns></returns>
  467. private List<DataTable> opencv_piclist2()
  468. {
  469. List<DataTable> list_dt_picdata = new List<DataTable>();
  470. DataTable picDatat = new DataTable();
  471. picDatat.Columns.Add("X", typeof(double));
  472. picDatat.Columns.Add("Y", typeof(double));
  473. foreach (var f in m_list_allDfield)
  474. {
  475. DataRow dr = picDatat.NewRow();
  476. dr["X"] = f.GetShowRect().X;
  477. dr["Y"] = f.GetShowRect().Y;
  478. picDatat.Rows.Add(dr);
  479. }
  480. int y_max = Convert.ToInt32(picDatat.Compute("Max(Y)", "true"));
  481. int y_min = Convert.ToInt32(picDatat.Compute("Min(Y)", "true"));
  482. DataTable total_dt_X = picDatat.Copy();
  483. DataView dv_x = total_dt_X.DefaultView;
  484. DataView dv_x_2 = dv_x.ToTable(true, "X").DefaultView;
  485. dv_x_2.Sort = "X ASC";
  486. total_dt_X = dv_x_2.ToTable();
  487. DataTable total_dt_Y = picDatat.Copy();
  488. DataView dv_Y = total_dt_Y.DefaultView;
  489. DataView dv_Y_2 = dv_Y.ToTable(true, "Y").DefaultView;
  490. dv_Y_2.Sort = "Y ASC";
  491. total_dt_Y = dv_Y_2.ToTable();
  492. for (int i = 0; i < total_dt_Y.Rows.Count; i++)
  493. {
  494. NLog.LogManager.GetCurrentClassLogger().Info("Splice line" + i + 1.ToString() + "of" + total_dt_Y.Rows.Count.ToString() + ".....");
  495. DataTable data = new DataTable();
  496. data.Columns.Add("mat", typeof(Bitmap));
  497. data.Columns.Add("X", typeof(double));
  498. for (int a = 0; a < total_dt_X.Rows.Count; a++)
  499. {
  500. DataRow dr2 = data.NewRow();
  501. Bitmap bitmap = new Bitmap((int)m_list_allDfield[0].GetShowRect().Width, (int)m_list_allDfield[0].GetShowRect().Height);
  502. Graphics g = Graphics.FromImage(bitmap);
  503. g.Clear(Color.White);
  504. g.Dispose();
  505. dr2["mat"] = bitmap;
  506. dr2["X"] = total_dt_X.Rows[a]["X"];
  507. data.Rows.Add(dr2);
  508. }
  509. foreach (var f in m_list_allDfield)
  510. {
  511. if (total_dt_Y.Rows[i]["Y"].ToString() == f.GetShowRect().Y.ToString())
  512. {
  513. for (int c = 0; c < data.Rows.Count; c++)
  514. {
  515. if (data.Rows[c]["X"].ToString() == f.GetShowRect().X.ToString())
  516. {
  517. data.Rows[c]["mat"] = f.OriginalImage;
  518. data.Rows[c]["X"] = f.GetShowRect().X;
  519. }
  520. }
  521. }
  522. }
  523. DataView dataView1 = data.DefaultView;
  524. dataView1.Sort = "X ASC";
  525. data = dataView1.ToTable();
  526. list_dt_picdata.Add(data);
  527. }
  528. return list_dt_picdata;
  529. }
  530. #endregion
  531. public delegate void MyEntrust();
  532. public event MyEntrust MyEvent;
  533. }
  534. }