Measure.cs 49 KB

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  1. //时间:20200610
  2. //作者:郝爽
  3. //功能:测量线程
  4. using System;
  5. using System.Collections.Generic;
  6. using System.Linq;
  7. using System.Text;
  8. using System.Threading.Tasks;
  9. using System.Windows.Forms;
  10. using System.Threading;
  11. using System.IO;
  12. using SmartSEMControl;
  13. using MeasureData;
  14. using FileManager;
  15. namespace MeasureThread
  16. {
  17. //图片模式
  18. public enum ImageMode
  19. {
  20. FIB,
  21. SEM
  22. }
  23. public delegate void ThreadStatusHandler(object sender, ThreadStatusEventArgs e); //声明委托
  24. public delegate void CutHolesStatusHandler(object sender, CutHolesStatusEventArgs e);
  25. public class ThreadStatusEventArgs
  26. {
  27. public string State
  28. {
  29. get { return m_state; }
  30. set { m_state = value; }
  31. }
  32. private string m_state;
  33. public DateTime Time
  34. {
  35. get { return m_time; }
  36. set { m_time = value; }
  37. }
  38. private DateTime m_time;
  39. public int Step_Code
  40. {
  41. get { return step_Code; }
  42. set { step_Code = value; }
  43. }
  44. private int step_Code;
  45. //图片信息
  46. public class PictureInformation
  47. {
  48. public Boolean Is_Picture
  49. {
  50. get { return is_Picture; }
  51. set { is_Picture = value; }
  52. }
  53. private Boolean is_Picture;
  54. public String Picture_FullPath
  55. {
  56. get { return picture_FullPath; }
  57. set { picture_FullPath = value; }
  58. }
  59. private String picture_FullPath;
  60. public double Work_Voltage
  61. {
  62. get { return work_Voltage; }
  63. set { work_Voltage = value; }
  64. }
  65. private double work_Voltage;
  66. public double Magnification
  67. {
  68. get { return magnification; }
  69. set { magnification = value; }
  70. }
  71. private double magnification;
  72. public double Work_Distance
  73. {
  74. get { return work_Distance; }
  75. set { work_Distance = value; }
  76. }
  77. private double work_Distance;
  78. public String Work_Status
  79. {
  80. get { return work_Status; }
  81. set { work_Status = value; }
  82. }
  83. private String work_Status;
  84. }
  85. //图片信息实例类
  86. public PictureInformation Picture_Information
  87. {
  88. get { return picture_Information; }
  89. set { picture_Information = value; }
  90. }
  91. private PictureInformation picture_Information;
  92. //图像信息
  93. public class ImageInformation
  94. {
  95. public int Method_Name
  96. {
  97. get { return method_Name; }
  98. set { method_Name = value; }
  99. }
  100. private int method_Name;
  101. public Source_Img_Degree_Direction SIDD;
  102. public Cut_Position CP;
  103. public Cut_Success CS;
  104. public Trapezoid_Top_Center_Position TTCP;
  105. public Auto_Foucs AF;
  106. public Auto_Stigmatic AS;
  107. public Center_Position_OffsetAngle_Direction CPOD;
  108. public Measure_Size MS;
  109. public ImageInformation()
  110. {
  111. SIDD = new Source_Img_Degree_Direction();
  112. CP = new Cut_Position();
  113. CS = new Cut_Success();
  114. TTCP = new Trapezoid_Top_Center_Position();
  115. AF = new Auto_Foucs();
  116. AS = new Auto_Stigmatic();
  117. CPOD = new Center_Position_OffsetAngle_Direction();
  118. MS = new Measure_Size();
  119. }
  120. //1-计算原始图像偏移角度及方向
  121. public class Source_Img_Degree_Direction
  122. {
  123. public Boolean Is_Image = false;
  124. public double Degree
  125. {
  126. get { return degree; }
  127. set { degree = value; }
  128. }
  129. private double degree;
  130. public int Direction
  131. {
  132. get { return direction; }
  133. set { direction = value; }
  134. }
  135. private int direction;
  136. public int State
  137. {
  138. get { return state; }
  139. set { state = value; }
  140. }
  141. private int state;
  142. }
  143. //2-计算切割点位置
  144. public class Cut_Position
  145. {
  146. public Boolean Is_Image = false;
  147. public double Offsetx
  148. {
  149. get { return offsetx; }
  150. set { offsetx = value; }
  151. }
  152. private double offsetx;
  153. public double Offsety
  154. {
  155. get { return offsety; }
  156. set { offsety = value; }
  157. }
  158. private double offsety;
  159. public int State
  160. {
  161. get { return state; }
  162. set { state = value; }
  163. }
  164. private int state;
  165. }
  166. //3-是否切割成功
  167. public class Cut_Success
  168. {
  169. public Boolean Is_Image = false;
  170. public int State
  171. {
  172. get { return state; }
  173. set { state = value; }
  174. }
  175. private int state;
  176. }
  177. //4-计算切割后图像梯形区域上边中心点坐标
  178. public class Trapezoid_Top_Center_Position
  179. {
  180. public Boolean Is_Image = false;
  181. public double TopCenterX
  182. {
  183. get { return topCenterX; }
  184. set { topCenterX = value; }
  185. }
  186. private double topCenterX;
  187. public double TopCenterY
  188. {
  189. get { return topCenterY; }
  190. set { topCenterY = value; }
  191. }
  192. private double topCenterY;
  193. public int State
  194. {
  195. get { return state; }
  196. set { state = value; }
  197. }
  198. private int state;
  199. }
  200. //5-自动对焦
  201. public class Auto_Foucs
  202. {
  203. public Boolean Is_Image = true;
  204. public String Img_Path
  205. {
  206. get { return img_Path; }
  207. set { img_Path = value; }
  208. }
  209. private String img_Path;
  210. }
  211. //6-自动像闪
  212. public class Auto_Stigmatic
  213. {
  214. public Boolean Is_Image = true;
  215. public String Img_Path
  216. {
  217. get { return img_Path; }
  218. set { img_Path = value; }
  219. }
  220. private String img_Path;
  221. }
  222. //7-计算切割面区域中心坐标,以及偏移角度及方向
  223. public class Center_Position_OffsetAngle_Direction
  224. {
  225. public Boolean Is_Image = false;
  226. public double CenterX
  227. {
  228. get { return centerX; }
  229. set { centerX = value; }
  230. }
  231. private double centerX;
  232. public double CenterY
  233. {
  234. get { return centerY; }
  235. set { centerY = value; }
  236. }
  237. private double centerY;
  238. public double Degree
  239. {
  240. get { return degree; }
  241. set { degree = value; }
  242. }
  243. private double degree;
  244. public int Direction
  245. {
  246. get { return direction; }
  247. set { direction = value; }
  248. }
  249. private int direction;
  250. public int State
  251. {
  252. get { return state; }
  253. set { state = value; }
  254. }
  255. private int state;
  256. }
  257. //8-测量尺寸
  258. public class Measure_Size
  259. {
  260. public Boolean Is_Image = false;
  261. public int State
  262. {
  263. get { return state; }
  264. set { state = value; }
  265. }
  266. private int state;
  267. }
  268. }
  269. public ThreadStatusEventArgs(string a_State)
  270. {
  271. this.m_state = a_State;
  272. picture_Information = new PictureInformation();
  273. }
  274. }
  275. public class CutHolesStatusEventArgs
  276. {
  277. public string State
  278. {
  279. get { return m_state; }
  280. set { m_state = value; }
  281. }
  282. private string m_state;
  283. public string HoleName
  284. {
  285. get { return m_holeName; }
  286. set { m_holeName = value; }
  287. }
  288. private string m_holeName;
  289. public CutHolesStatusEventArgs(string a_state, string a_holeName)
  290. {
  291. this.m_state = a_state;
  292. this.m_holeName = a_holeName;
  293. }
  294. }
  295. public class Measure
  296. {
  297. public event ThreadStatusHandler SendThreadStatus; // 声明事件
  298. public event CutHolesStatusHandler SendCutHolesStatus; // 声明事件
  299. //全局只有一个fatorySEM
  300. static FactoryHardware factorySEM = FactoryHardware.Instance;
  301. ISEMControl iSEM = factorySEM.ISEM;
  302. //@的作用是不用转义字符\\只打一个就行
  303. const String ImageName1 = @"ImageSEM600X.tif"; //传给客户,作水平校正
  304. const String ImageName2 = @"ImageFIB600X1.tif";//传给客户,找到切割点
  305. const String ImageName3 = @"ImageFIB600X2.tif";
  306. const String ImageName4 = @"ImageSEM300X.tif";//传给客户,找到已经切割点
  307. const String ImageName5 = @"ImageSEM6000X.tif";//传给客户,水平校正
  308. const String ImageName6 = @"ImageSEMMag.tif";//传给客户,测量层高
  309. const String MacoInsertPt = "GIS Insert.MLF"; //传入PT针
  310. const String MacoRetractPt = "GIS Retract.MLF"; //退出PT针
  311. const String MacoScanPic = "Scan picture.MLF";//一般质量抓图的宏
  312. const String MacoGoodPic = "Good picture.MLF";//高质量抓图的宏
  313. const String MacoExportTif = "Export TIFF.MLF";// 导出有标尺的图像,这个图像为使用工具SmartSEM工具的图像
  314. const String ElyDeposition = @"Deposition.ely"; //沉积
  315. const String ElyCrossSection = @"CrossSection.ely"; //切割
  316. const float fMin = (float)0.0000002; //单位是米
  317. int m_nWorkHoleNo = -1;
  318. //测量文件
  319. private MeasureFile m_measureFile;
  320. public MeasureFile MeasureFile
  321. {
  322. get { return this.m_measureFile; }
  323. set { this.m_measureFile = value; }
  324. }
  325. //测量的切割孔
  326. private List<MeasureData.CutHole> m_cutHoles;
  327. public List<MeasureData.CutHole> cutHoles
  328. {
  329. get { return this.m_cutHoles; }
  330. set { this.m_cutHoles = value; }
  331. }
  332. //工作文件夹
  333. private string m_WorkingFolder;
  334. public string WorkingFolder
  335. {
  336. get { return this.m_WorkingFolder; }
  337. set { this.m_WorkingFolder = value; }
  338. }
  339. //程序当前路径
  340. private string m_ProgramFolder = Directory.GetCurrentDirectory();
  341. //线程状态
  342. private ThreadStatus m_ThreadStatus;
  343. public ThreadStatus TStatus
  344. {
  345. get { return this.m_ThreadStatus; }
  346. set { this.m_ThreadStatus = value; }
  347. }
  348. //测量参数
  349. private MeasureParam m_MsParam;
  350. public MeasureParam MeasParam
  351. {
  352. get { return this.m_MsParam; }
  353. set { this.m_MsParam = value; }
  354. }
  355. //构造函数
  356. public Measure()
  357. {
  358. Init();
  359. }
  360. private void Init()
  361. {
  362. MeasParam = new MeasureParam();
  363. TStatus = new ThreadStatus();
  364. cutHoles = new List<MeasureData.CutHole>();
  365. }
  366. //初始化测量业务, 读测量文件,判断是否有可测试的切孔
  367. public bool InitMeas(MeasureFile a_measureFile)
  368. {
  369. m_measureFile = a_measureFile;
  370. List<CutHole> listHoles = m_measureFile.ListCutHole;
  371. foreach (CutHole h in listHoles)
  372. {
  373. if (h.SWITCH == true)
  374. {
  375. m_cutHoles.Add(h);
  376. }
  377. }
  378. if (m_cutHoles.Count == 0)
  379. return false;
  380. this.m_MsParam = m_measureFile.MParam;
  381. return true;
  382. }
  383. public void SendMsg(string a_StrMsg)
  384. {
  385. ThreadStatusEventArgs arg = new ThreadStatusEventArgs(a_StrMsg);
  386. arg.Time = DateTime.Now;
  387. SendThreadStatus(this, arg);
  388. }
  389. public void SendCutHoleMsg(string a_state, string a_holeName)
  390. {
  391. CutHolesStatusEventArgs arg = new CutHolesStatusEventArgs(a_state, a_holeName);
  392. arg.HoleName = a_holeName;
  393. arg.State = a_state;
  394. SendCutHolesStatus(this, arg);
  395. }
  396. //测量流程
  397. public void DoMeasure()
  398. {
  399. //创建线程的测量状态的更新
  400. this.TStatus.ComputeTime(THREAD_TIME_TYPE.START);
  401. if (SendThreadStatus != null)
  402. {
  403. SendMsg("开始测量。");
  404. }
  405. //检查硬件连接是否正常
  406. if (!ConnectHardware())
  407. {
  408. SendMsg("连接硬件失败。");
  409. this.TStatus.ComputeTime(THREAD_TIME_TYPE.STOPPED);
  410. return;
  411. }
  412. SendMsg("硬件连接成功。");
  413. //设置工作文件夹
  414. if (!SetWorkingFolderStr())
  415. {
  416. SendMsg("设置工作文件夹失败");
  417. this.TStatus.ComputeTime(THREAD_TIME_TYPE.STOPPED);
  418. return;
  419. }
  420. SendMsg("创建工作文件路径为" + WorkingFolder);
  421. float[] firstPosition;
  422. for (int i = 0; i < m_cutHoles.Count; i++)
  423. {
  424. m_nWorkHoleNo = i;
  425. if (i == 0)
  426. {
  427. SendMsg("第一个切孔开始测量");
  428. //切孔操作-开始
  429. SendCutHoleMsg(((int)ThreadState.InProcess).ToString(), m_cutHoles[i].HoleName);
  430. firstPosition = iSEM.GetStagePosition();
  431. //第一个孔的测试
  432. FirstHole();
  433. //切孔操作-完成
  434. SendCutHoleMsg(((int)ThreadState.Success).ToString(), m_cutHoles[i].HoleName);
  435. }
  436. else
  437. {
  438. //非第一个孔的测试
  439. SendMsg("第" + i.ToString() + "个切孔开始测量");
  440. //切孔操作-开始
  441. SendCutHoleMsg(((int)ThreadState.InProcess).ToString(), m_cutHoles[i].HoleName);
  442. OtherHole();
  443. //切孔操作-完成
  444. SendCutHoleMsg(((int)ThreadState.Success).ToString(), m_cutHoles[i].HoleName);
  445. }
  446. }
  447. }
  448. //检查硬件连接是否正常
  449. public bool ConnectHardware()
  450. {
  451. //返回硬件的连接状态
  452. return iSEM.ConnectStatus();
  453. }
  454. //设置工作文件夹
  455. public bool SetWorkingFolderStr()
  456. {
  457. WorkingFolder = m_measureFile.FilePath;
  458. return true;
  459. ////获取工作文件路径
  460. //string pathName = m_measureFile.FilePath;
  461. ////判断工作文件路径是否为空或无效
  462. //if (string.IsNullOrEmpty(pathName))
  463. //{
  464. // SendMsg("路径无效");
  465. // return false;
  466. //}
  467. ////文件未保存
  468. //else if (pathName.CompareTo(MeasureFile.UNTITLED_FILE_NAME) == 0)
  469. //{
  470. // SendMsg("工程文件未保存");
  471. // return false;
  472. //}
  473. ////获取工作文件所在文件夹
  474. //string folder = System.IO.Path.GetDirectoryName(pathName);
  475. //if (string.IsNullOrEmpty(folder))
  476. //{
  477. // SendMsg("工程文件无效");
  478. // return false;
  479. //}
  480. //WorkingFolder += @"\\";
  481. //LogManager.Init(WorkingFolder);
  482. //return false;
  483. }
  484. //插入PT针
  485. public bool InsertPT()
  486. {
  487. string fn = m_ProgramFolder + "\\Macro\\" + MacoInsertPt;
  488. SendMsg("调用宏插入PT针宏文件" + fn);
  489. iSEM.CMDMCFFilename(fn);
  490. //延时1s??
  491. Thread.Sleep(1000);
  492. return true;
  493. }
  494. //撤出PT针
  495. public bool RetractPT()
  496. {
  497. string fn = m_ProgramFolder + "\\Macro\\" + MacoRetractPt;
  498. SendMsg("调用宏撤出PT针宏文件" + fn);
  499. iSEM.CMDMCFFilename(fn);
  500. //延时1s??
  501. Thread.Sleep(1000);
  502. return true;
  503. }
  504. //PT沉积
  505. public bool PTWork()
  506. {
  507. //执行PT沉积的ELY文件
  508. string fn = m_ProgramFolder + "\\Macro\\" + ElyDeposition;
  509. SendMsg("执行PT沉积Ely文件:" + fn);
  510. if (!ExcuteEly(fn))
  511. {
  512. return false;
  513. }
  514. //等待沉积完成
  515. while (true)
  516. {
  517. Thread.Sleep(10000);
  518. if (iSEM.GetFIBMode() == 0)
  519. {
  520. break;
  521. }
  522. }
  523. return true;
  524. }
  525. //FIB切割
  526. public bool FIBWork()
  527. {
  528. //执行PT沉积的ELY文件
  529. string fn = m_ProgramFolder + "\\Macro\\" + ElyCrossSection;
  530. SendMsg("执行FIB切割Ely文件:" + fn);
  531. if (!ExcuteEly(fn))
  532. {
  533. return false;
  534. }
  535. //等待切割完成
  536. while (true)
  537. {
  538. Thread.Sleep(10000);
  539. if (iSEM.GetFIBMode() == 0)
  540. {
  541. break;
  542. }
  543. }
  544. return true;
  545. }
  546. public bool ExcuteEly(string a_filename)
  547. {
  548. //执行ELy文件有三个动作
  549. //1. 选择ELY文件
  550. SendMsg("选择ELY文件");
  551. if (!iSEM.CmdFIBLoadELY(a_filename))
  552. {
  553. SendMsg("选择ELY文件失败");
  554. return false;
  555. }
  556. Thread.Sleep(1000);
  557. //2. 确认ELY文件
  558. SendMsg("确认ELY文件");
  559. if (!iSEM.CmdFIBEXPOSUREELY())
  560. {
  561. SendMsg("确认ELY文件失败");
  562. return false;
  563. }
  564. Thread.Sleep(1000);
  565. //3. 执行ELY文件
  566. SendMsg("执行ELY文件");
  567. if (!iSEM.CmdFIBSTARTELY())
  568. {
  569. SendMsg("执行ELY文件失败");
  570. return false;
  571. }
  572. Thread.Sleep(1000);
  573. return true;
  574. }
  575. /// <summary>
  576. ///13. 自动 定位功能
  577. /// </summary>
  578. /// <returns></returns>
  579. public bool GetPoistion()
  580. {
  581. SendMsg("自动定位");
  582. //13.自动定位切割
  583. {
  584. SendMsg("放大600倍");
  585. //1.控制SEM放大600X
  586. if (!iSEM.SetMagnification(600))
  587. {
  588. return false;
  589. }
  590. //2.控制SEM自动对焦、亮度、对比度
  591. // if (!MeasParam.FocusMode)
  592. {
  593. if (DialogResult.Yes == MessageBox.Show("图像拍摄已完成?", "确认消息", MessageBoxButtons.YesNo))
  594. {
  595. SendMsg("拍摄照片完成");
  596. //return true;
  597. }
  598. else
  599. {
  600. SendMsg("拍摄照片失败");
  601. return false;
  602. }
  603. //弹出手动对焦的窗口
  604. }
  605. //else
  606. //{
  607. // //调用自动对焦模块
  608. //}
  609. //3.设置SEM进行角度补偿54度
  610. SendMsg("设置校正54度");
  611. if (!TiltCorrection(54))
  612. {
  613. SendMsg("设置SEM进行角度补偿54度");
  614. return false;
  615. }
  616. Thread.Sleep(5000);
  617. //4.控制SEM拍照
  618. SendMsg("SEM拍照");
  619. //5.保存照片
  620. {
  621. //1. 创建目录,已经完成
  622. //2. 设置图片名称
  623. //3. 保存图片1
  624. WorkingFolder = m_measureFile.FilePath;
  625. String fileName1 = WorkingFolder + "\\" + m_nWorkHoleNo.ToString() + "Hole" + ImageName1;
  626. SendMsg("SEM拍照存储到" + fileName1);
  627. if (!GetImage(ImageMode.SEM, fileName1))
  628. {
  629. SendMsg("SEM拍照失败");
  630. return false;
  631. }
  632. Thread.Sleep(3000);
  633. }
  634. //6.设置FIB拍照参数——扫描时间、束流等
  635. //7.控制FIB自动亮度、对比度
  636. SendMsg("切换FIB控制");
  637. if (!iSEM.CmdFIBModeFIB())
  638. {
  639. SendMsg("FIB模式切换失败");
  640. return false;
  641. }
  642. Thread.Sleep(10000);
  643. //8.控制FIB拍照
  644. //9.保存照片
  645. SendMsg("FIB拍照");
  646. {
  647. //1. 设置图片名称
  648. //2. 保存图片2
  649. String fileName2 = WorkingFolder + "\\" + m_nWorkHoleNo.ToString() + "Hole" + ImageName2;
  650. if (!GetImage(ImageMode.FIB, fileName2))
  651. {
  652. SendMsg("FIB拍照失败");
  653. return false;
  654. }
  655. Thread.Sleep(3000);
  656. }
  657. //10.将照片传给客户,返回梯形位置坐标,及样品类型参数(是否需要PT沉积,PT坐标位置,PT宽度、PT高度、梯形上、下边及深度、扫描时间、束流、样品放大倍数1、样品放大倍数2等切割参数)
  658. SendMsg("调用识别位置");
  659. if (DialogResult.Yes == MessageBox.Show("移动已完成?", "确认消息", MessageBoxButtons.YesNo))
  660. {
  661. SendMsg("移动已完成");
  662. //return true;
  663. }
  664. else
  665. {
  666. SendMsg("移动已失败");
  667. return false;
  668. }
  669. SendMsg("进行PT沉积");
  670. //11.自动工具样品类型参数确定是否需要PT沉积
  671. {
  672. //1. 根据客户PT沉积坐标控制FIB调整到中心位置
  673. //2. 验证移动准确性:获取当前FIB中心位置坐标,与客户返回坐标对比,验证是否一定正确
  674. //3. 根据坐标进行PT沉积
  675. if (!PTWork())
  676. {
  677. SendMsg("PT沉积失败");
  678. return false;
  679. }
  680. }
  681. return true;
  682. ////模拟为客户返回的坐标值
  683. //float x0 = 0, y0 = 0;
  684. //SendMsg("移动到新(" + x0.ToString() + "," + y0.ToString() + ")位置失败");
  685. ////12.根据梯形坐标控制FIB调整到中心位置
  686. //if (!iSEM.MoveStageXY(x0, y0))
  687. //{
  688. // SendMsg("移动到新(" + x0.ToString() + "," + y0.ToString() + ")位置失败");
  689. // return false;
  690. //}
  691. ////电镜移动是有一个延时的操作的?
  692. ////13.验证移动准确性:获取当前FIB中心位置坐标,与客户返回坐标对比,验证是否移动正确
  693. //float x1 = iSEM.GetStageAtX();
  694. //float y1 = iSEM.GetStageAtY();
  695. //if (Math.Abs(x0 - x1) > fMin && Math.Abs(y0 - y1) > fMin)
  696. //{
  697. // SendMsg("目标位置(" + x0.ToString() + "," + y0.ToString() + ")移动失败");
  698. // return false;
  699. //}
  700. ////14.保存样品1第1号孔中心位置6轴坐标1 XYZMRT到数据库,保存客户返回值信息到数据库
  701. //float[] firstPosition = iSEM.GetStagePosition();
  702. ////这里要调用文件保存功能
  703. //SendMsg("坐标1(" + firstPosition[0].ToString() + ","
  704. // + firstPosition[1].ToString() + ","
  705. // + firstPosition[2].ToString() + ","
  706. // + firstPosition[3].ToString() + ","
  707. // + firstPosition[4].ToString() + ","
  708. // + firstPosition[5].ToString() + ")");
  709. }
  710. //return false;
  711. }
  712. /// <summary>
  713. /// 14. FIB切割
  714. /// </summary>
  715. /// <returns></returns>
  716. public bool FIBCross()
  717. {
  718. //14.自动控制FIB切割
  719. {
  720. //1.根据参数设置FIB草率时间(使图清晰),设置梯形上下边及深度、设置束流
  721. //2.控制FIB进行切割
  722. SendMsg("FIB切割");
  723. if (!FIBWork())
  724. {
  725. SendMsg("FIB切割失败");
  726. return false;
  727. }
  728. Thread.Sleep(5000);
  729. //3.控制FIB拍照600X
  730. //4.保存图片
  731. {
  732. //1.设置图片名称
  733. //2.保存图片3
  734. WorkingFolder = m_measureFile.FilePath;
  735. String fileName3 = WorkingFolder + "\\" + m_nWorkHoleNo.ToString() + "Hole" + ImageName3;
  736. SendMsg("SEM拍照存储到" + fileName3);
  737. if (!GetImage(ImageMode.FIB, fileName3))
  738. {
  739. SendMsg("FIB拍照失败");
  740. return false;
  741. }
  742. Thread.Sleep(3000);
  743. }
  744. //5.验证切割准确性:与切割前对比,如果对比误差大,则停止自动执行,进行报警
  745. //6.设置FIB解冻:先读取状态,如果冻结状态则进行解冻
  746. }
  747. return true;
  748. }
  749. /// <summary>
  750. /// 16.自动调整SEM找到切割位置,这里不是简单的拉直旋转
  751. /// </summary>
  752. /// <returns></returns>
  753. public bool FindCross()
  754. {
  755. //16.自动调整SEM找到切割位置
  756. {
  757. //1.控制SEM放大到300倍
  758. if (!iSEM.SetMagnification(300))
  759. {
  760. return false;
  761. }
  762. //2.控制SEM自动对焦、亮度、对比度-接口
  763. if (!MeasParam.FocusMode)
  764. {
  765. //弹出手动对焦的窗口
  766. }
  767. else
  768. {
  769. //调用自动对焦模块
  770. }
  771. Thread.Sleep(5000);
  772. //3.控制SEM拍照
  773. String fileName4 = WorkingFolder + ImageName4;
  774. if (!GetImage(ImageMode.SEM, fileName4))
  775. {
  776. return false;
  777. }
  778. Thread.Sleep(3000);
  779. //4.将照片传给客户,获取偏移坐标,以及偏移角度
  780. float x4 = 0, y4 = 0;
  781. float angle = 0;
  782. //5.根据坐标控制SEM移动到切孔位置,居中
  783. if (!iSEM.MoveStageXY(x4, y4))
  784. {
  785. return false;
  786. }
  787. if (!iSEM.SetScanRotation(angle))
  788. {
  789. return false;
  790. }
  791. ////6.验证移动准确性:获取当前SEM中心位置坐标,与客户返回坐标对比,验证是否移动正确
  792. //float x5 = iSEM.GetStageAtX();
  793. //float y5 = iSEM.GetStageAtY();
  794. //if (Math.Abs(x5 - x4) > fMin && Math.Abs(y5 - y4) > fMin)
  795. //{
  796. // return false;
  797. //}
  798. }
  799. return true;
  800. }
  801. public bool CommonWork()
  802. {
  803. SendMsg("插入PT针");
  804. //12.根据样品类型参数确定是否需要PT沉积,控制PT针插入
  805. //if (firstHole.PT == true)
  806. {
  807. if (!InsertPT())
  808. {
  809. SendMsg("插入PT针失败");
  810. return false;
  811. }
  812. }
  813. //13. 自动 定位功能
  814. SendMsg("自动定位切割位置");
  815. if (!GetPoistion())
  816. {
  817. SendMsg("自动定位切割位置失败");
  818. return false;
  819. }
  820. //14.自动控制FIB切割
  821. SendMsg("FIB切割");
  822. if (!FIBCross())
  823. {
  824. SendMsg("FIB切割失败");
  825. return false;
  826. }
  827. //{
  828. // //1.根据参数设置FIB草率时间(使图清晰),设置梯形上下边及深度、设置束流
  829. // //2.控制FIB进行切割
  830. // //3.控制FIB拍照600X
  831. // //4.保存图片
  832. // {
  833. // //1.设置图片名称
  834. // //2.保存图片3
  835. // String fileName3 = WorkingFolder + ImageName3;
  836. // if (!GetImage(ImageMode.FIB, fileName3))
  837. // {
  838. // return false;
  839. // }
  840. // }
  841. // //5.验证切割准确性:与切割前对比,如果对比误差大,则停止自动执行,进行报警
  842. // //6.设置FIB解冻:先读取状态,如果冻结状态则进行解冻
  843. //}
  844. //15.根据样品类型决定是否撤出PT针
  845. SendMsg("撤出PT针");
  846. //if (firstHole.PT == false)
  847. //{
  848. if (!RetractPT())
  849. {
  850. SendMsg("撤出PT针失败");
  851. return false;
  852. }
  853. //}
  854. // 16.找到切割位置
  855. SendMsg("找到切割位置");
  856. //17.自动控制SEM拍截面照
  857. SendMsg("观测层高");
  858. SendMsg("切换SEM控制");
  859. if (!iSEM.CmdFIBModeSEM())
  860. {
  861. SendMsg("SEM模式切换失败");
  862. return false;
  863. }
  864. Thread.Sleep(10000);
  865. SendMsg("放大6000倍");
  866. if (!iSEM.SetMagnification(6000))
  867. {
  868. SendMsg("放大倍数调整失败");
  869. return false;
  870. }
  871. if (DialogResult.Yes == MessageBox.Show("图像拍摄已完成?", "确认消息", MessageBoxButtons.YesNo))
  872. {
  873. SendMsg("拍摄照片完成");
  874. //return true;
  875. }
  876. else
  877. {
  878. SendMsg("拍摄照片失败");
  879. return false;
  880. }
  881. SendMsg("图像校正36度");
  882. //3.设置SEM角度补偿cos36度
  883. if (!TiltCorrection(36))
  884. {
  885. return false;
  886. }
  887. Thread.Sleep(3000);
  888. string fn;
  889. //用宏抓一般图
  890. Thread.Sleep(5000);
  891. fn = m_ProgramFolder + "\\Macro\\" + MacoScanPic;
  892. SendMsg("用宏抓一般图" + fn);
  893. iSEM.CMDMCFFilename(fn);
  894. //延时1s??
  895. Thread.Sleep(5000);
  896. //用宏抓好图
  897. fn = m_ProgramFolder + "\\Macro\\" + MacoGoodPic;
  898. SendMsg("用宏抓好图" + fn);
  899. iSEM.CMDMCFFilename(fn);
  900. //延时1s??
  901. Thread.Sleep(30000);
  902. Thread.Sleep(10000);
  903. WorkingFolder = m_measureFile.FilePath;
  904. String fileName6 = WorkingFolder + "\\" + m_nWorkHoleNo.ToString() + "Hole" + ImageName6;
  905. SendMsg("SEM拍照存储到" + fileName6);
  906. if (!GetImage(ImageMode.SEM, fileName6))
  907. {
  908. SendMsg("SEM拍照失败");
  909. return false;
  910. }
  911. //用宏抓标志图
  912. fn = m_ProgramFolder + "\\Macro\\" + MacoExportTif;
  913. SendMsg("用宏抓标志图" + fn);
  914. iSEM.CMDMCFFilename(fn);
  915. //延时1s??
  916. Thread.Sleep(30000);
  917. //恢复简单抓图
  918. Thread.Sleep(5000);
  919. fn = m_ProgramFolder + "\\Macro\\" + MacoScanPic;
  920. SendMsg("用宏抓一般图" + fn);
  921. iSEM.CMDMCFFilename(fn);
  922. SendMsg("所有图结束");
  923. return true;
  924. }
  925. //第一个孔的测试过程
  926. public bool FirstHole()
  927. {
  928. MeasureData.CutHole firstHole = m_cutHoles[0];
  929. SendMsg("插入PT针");
  930. //12.根据样品类型参数确定是否需要PT沉积,控制PT针插入
  931. //if (firstHole.PT == true)
  932. {
  933. if (!InsertPT())
  934. {
  935. SendMsg("插入PT针失败");
  936. return false;
  937. }
  938. }
  939. //13. 自动 定位功能
  940. SendMsg("自动定位切割位置");
  941. if (!GetPoistion())
  942. {
  943. SendMsg("自动定位切割位置失败");
  944. return false;
  945. }
  946. //14.自动控制FIB切割
  947. SendMsg("FIB切割");
  948. if (!FIBCross())
  949. {
  950. SendMsg("FIB切割失败");
  951. return false;
  952. }
  953. //{
  954. // //1.根据参数设置FIB草率时间(使图清晰),设置梯形上下边及深度、设置束流
  955. // //2.控制FIB进行切割
  956. // //3.控制FIB拍照600X
  957. // //4.保存图片
  958. // {
  959. // //1.设置图片名称
  960. // //2.保存图片3
  961. // String fileName3 = WorkingFolder + ImageName3;
  962. // if (!GetImage(ImageMode.FIB, fileName3))
  963. // {
  964. // return false;
  965. // }
  966. // }
  967. // //5.验证切割准确性:与切割前对比,如果对比误差大,则停止自动执行,进行报警
  968. // //6.设置FIB解冻:先读取状态,如果冻结状态则进行解冻
  969. //}
  970. //15.根据样品类型决定是否撤出PT针
  971. SendMsg("撤出PT针");
  972. //if (firstHole.PT == false)
  973. //{
  974. if (!RetractPT())
  975. {
  976. SendMsg("撤出PT针失败");
  977. return false;
  978. }
  979. //}
  980. // 16.找到切割位置
  981. SendMsg("找到切割位置");
  982. //17.自动控制SEM拍截面照
  983. SendMsg("观测层高");
  984. SendMsg("切换SEM控制");
  985. if (!iSEM.CmdFIBModeSEM())
  986. {
  987. SendMsg("SEM模式切换失败");
  988. return false;
  989. }
  990. Thread.Sleep(10000);
  991. SendMsg("放大6000倍");
  992. if (!iSEM.SetMagnification(6000))
  993. {
  994. SendMsg("放大倍数调整失败");
  995. return false;
  996. }
  997. if (DialogResult.Yes == MessageBox.Show("图像拍摄已完成?", "确认消息", MessageBoxButtons.YesNo))
  998. {
  999. SendMsg("拍摄照片完成");
  1000. //return true;
  1001. }
  1002. else
  1003. {
  1004. SendMsg("拍摄照片失败");
  1005. return false;
  1006. }
  1007. SendMsg("图像校正36度");
  1008. //3.设置SEM角度补偿cos36度
  1009. if (!TiltCorrection(36))
  1010. {
  1011. return false;
  1012. }
  1013. Thread.Sleep(3000);
  1014. string fn;
  1015. //用宏抓一般图
  1016. Thread.Sleep(5000);
  1017. fn = m_ProgramFolder + "\\Macro\\" + MacoScanPic;
  1018. SendMsg("用宏抓一般图" + fn);
  1019. iSEM.CMDMCFFilename(fn);
  1020. //延时1s??
  1021. Thread.Sleep(5000);
  1022. //用宏抓好图
  1023. fn = m_ProgramFolder + "\\Macro\\" + MacoGoodPic;
  1024. SendMsg("用宏抓好图" + fn);
  1025. iSEM.CMDMCFFilename(fn);
  1026. //延时1s??
  1027. Thread.Sleep(30000);
  1028. Thread.Sleep(10000);
  1029. WorkingFolder = m_measureFile.FilePath;
  1030. String fileName6 = WorkingFolder + "\\" + m_nWorkHoleNo.ToString() + "Hole" + ImageName6;
  1031. SendMsg("SEM拍照存储到" + fileName6);
  1032. if (!GetImage(ImageMode.SEM, fileName6))
  1033. {
  1034. SendMsg("SEM拍照失败");
  1035. return false;
  1036. }
  1037. //用宏抓标志图
  1038. fn = m_ProgramFolder + "\\Macro\\" + MacoExportTif;
  1039. SendMsg("用宏抓标志图" + fn);
  1040. iSEM.CMDMCFFilename(fn);
  1041. //延时1s??
  1042. Thread.Sleep(30000);
  1043. Thread.Sleep(5000);
  1044. fn = m_ProgramFolder + "\\Macro\\" + MacoScanPic;
  1045. SendMsg("用宏抓一般图" + fn);
  1046. iSEM.CMDMCFFilename(fn);
  1047. //延时1s??
  1048. Thread.Sleep(5000);
  1049. SendMsg("所有图结束");
  1050. ////17.自动控制SEM拍截面照
  1051. //{
  1052. // //1.控制SEM放大到指定参数大小范围,6000x
  1053. // if (!iSEM.SetMagnification(6000))
  1054. // {
  1055. // return false;
  1056. // }
  1057. // //2.控制SEM自动对焦、消像散、亮度、对比度
  1058. // if (!MeasParam.FocusMode)
  1059. // {
  1060. // //弹出手动对焦的窗口
  1061. // }
  1062. // else
  1063. // {
  1064. // //调用自动对焦模块
  1065. // }
  1066. // //3.设置SEM角度补偿cos36度
  1067. // if (!TiltCorrection(36))
  1068. // {
  1069. // return false;
  1070. // }
  1071. // //4.控制SEM拍照
  1072. // //5.保存照片4
  1073. // String fileName5 = WorkingFolder + ImageName5;
  1074. // if (!GetImage(ImageMode.SEM, fileName5))
  1075. // {
  1076. // return false;
  1077. // }
  1078. // //6.将照片传给客户,获取偏移坐标
  1079. // float x6 = 0, y6 = 0;
  1080. // float angle1 = 0;
  1081. // float mage = 10000;
  1082. // //7.根据坐标控制SEM移动到分析位置
  1083. // if (!iSEM.MoveStageXY(x6, y6))
  1084. // {
  1085. // return false;
  1086. // }
  1087. // //8.验证移动准确性:获取当前SEM中心位置坐标,与客户返回坐标对比,验证是否移动正确
  1088. // float x7 = iSEM.GetStageAtX();
  1089. // float y7 = iSEM.GetStageAtY();
  1090. // if (Math.Abs(x6 - x7) > fMin && Math.Abs(y6 - y7) > fMin)
  1091. // {
  1092. // return false;
  1093. // }
  1094. // //9.控制SEM平行校正,并记录校正前初始值
  1095. // float foldAnagle = iSEM.GetScanRotation();
  1096. // if (foldAnagle == float.NaN)
  1097. // {
  1098. // return false;
  1099. // }
  1100. // if (!iSEM.SetScanRotation(angle1))
  1101. // {
  1102. // return false;
  1103. // }
  1104. // //10.控制SEM放大到指定参数大小范围
  1105. // if (!iSEM.SetMagnification(mage))
  1106. // {
  1107. // return false;
  1108. // }
  1109. // //11.控制SEM自动对焦、消像散、亮度、对比度
  1110. // if (!MeasParam.FocusMode)
  1111. // {
  1112. // //弹出手动对焦的窗口
  1113. // }
  1114. // else
  1115. // {
  1116. // //调用自动对焦模块
  1117. // }
  1118. // //12.控制SEM对分析位置拍照
  1119. // String fileName6 = WorkingFolder + ImageName6;
  1120. // if (!GetImage(ImageMode.SEM, fileName6))
  1121. // {
  1122. // return false;
  1123. // }
  1124. // //13.保存照片
  1125. // //14.控制SEM取消电子束校正,回到初始值
  1126. // if (!iSEM.SetScanRotation(foldAnagle))
  1127. // {
  1128. // return false;
  1129. // }
  1130. //}
  1131. ////18.自动层高分析
  1132. //{
  1133. // //1.获取SEM Pixel Size给客户传入参数
  1134. // if (iSEM.GetPixelSize() == float.NaN)
  1135. // {
  1136. // return false;
  1137. // }
  1138. // //2.将照片传给客户,客户进行层高分析(返回分析后的图像、相对坐标、分辨率、各层编号以及各层对应的层高数据),如果客户自行出分析报告则无需返回数据
  1139. //}
  1140. ////19.自动能谱分析
  1141. //{
  1142. // //1. 确定能谱位置
  1143. // //2. 控制牛津打能谱
  1144. // //3. 能谱分析——面扫+线扫描
  1145. //}
  1146. return true;
  1147. }
  1148. //非第一个孔的测试过程
  1149. public void OtherHole()
  1150. {
  1151. //for (int i = 1; i < m_cutHoles.Count; i++)
  1152. //{
  1153. SendMsg("当前切孔号为"+ m_nWorkHoleNo.ToString());
  1154. CutHole currentHole = m_cutHoles[m_nWorkHoleNo];
  1155. //1. 初始化
  1156. {
  1157. //1. 设置FIB解冻:先读取状态,如果冻结则进行解冻
  1158. //读取图像冻结状态
  1159. float ffrozen = iSEM.GetImageFrozen();
  1160. if (ffrozen == float.NaN)
  1161. {
  1162. return;
  1163. }
  1164. if (DialogResult.Yes == MessageBox.Show("样品台可以旋转恢复到水平吗?", "确认消息", MessageBoxButtons.YesNo))
  1165. {
  1166. SendMsg("样品台恢复到水平");
  1167. //return true;
  1168. }
  1169. else
  1170. {
  1171. SendMsg("禁止样品台恢复到水平");
  1172. return;
  1173. }
  1174. //2. 调节样品1号孔的样品台6轴坐标
  1175. //3. 将样品1号孔坐标2存入数据库
  1176. //4. 控制样品台T轴归0,R轴变为坐标1、Z/M轴作为坐标2保存不变
  1177. if (!iSEM.SetStageGotoT(0))
  1178. {
  1179. return;
  1180. }
  1181. while (true)
  1182. {
  1183. Thread.Sleep(10000);
  1184. if (iSEM.GetStageIs() == 0)
  1185. {
  1186. break;
  1187. }
  1188. }
  1189. //5. 获取光镜2号孔XY坐标
  1190. SendMsg("移动到"+m_nWorkHoleNo+"号孔位置:(" + currentHole.Position.X.ToString()+","+currentHole.Position.Y.ToString()+")");
  1191. //6. 根据光镜坐标控制样品台移动
  1192. if (!iSEM.MoveStageXY(currentHole.Position.X, currentHole.Position.Y))
  1193. {
  1194. SendMsg("移动失败");
  1195. }
  1196. while (true)
  1197. {
  1198. Thread.Sleep(10000);
  1199. if (iSEM.GetStageIs() == 0)
  1200. {
  1201. break;
  1202. }
  1203. }
  1204. //7. 控制样品台,调整T轴54度、M/Z/R轴不变
  1205. if (DialogResult.Yes == MessageBox.Show("样品台可以旋转吗?", "确认消息", MessageBoxButtons.YesNo))
  1206. {
  1207. SendMsg("样品台旋转");
  1208. //return true;
  1209. }
  1210. else
  1211. {
  1212. SendMsg("禁止样品台旋转");
  1213. return;
  1214. }
  1215. if (!iSEM.SetStageGotoT(54))
  1216. {
  1217. return;
  1218. }
  1219. while (true)
  1220. {
  1221. Thread.Sleep(10000);
  1222. if (iSEM.GetStageIs() == 0)
  1223. {
  1224. break;
  1225. }
  1226. }
  1227. }
  1228. SendMsg("拉直操作");
  1229. SendMsg("其他操作与1号孔操作一致");
  1230. if (!CommonWork())
  1231. {
  1232. return;
  1233. }
  1234. //2. 定位切割
  1235. {
  1236. //1. 拉直操作
  1237. {
  1238. //1.1 控制SEM进行拍照
  1239. //1.2 图片传给客户,返回偏移角度
  1240. //1.3 根据返回角度,控制样品台转动
  1241. }
  1242. //2. 与1号孔13步相同
  1243. }
  1244. //3. 以后步骤与1号孔以后步骤一致
  1245. //}
  1246. }
  1247. //角度补偿
  1248. public bool TiltCorrection(float a_fAngle)
  1249. {
  1250. //记录原来电镜的状态
  1251. // bool bTilt = false;
  1252. //float fOldTilt = iSEM.GetTiltCorrection();
  1253. //if (fOldTilt == float.NaN)
  1254. //{
  1255. // return false;
  1256. //}
  1257. //else if (fOldTilt == 1)
  1258. //{
  1259. // bTilt = true;
  1260. //}
  1261. //else if (fOldTilt == 0)
  1262. //{
  1263. // bTilt = false;
  1264. //}
  1265. //float fOldAngle = iSEM.GetTiltAngle();
  1266. //if (fOldAngle == float.NaN)
  1267. //{
  1268. // return false;
  1269. //}
  1270. //开启校正
  1271. SendMsg("开启校正");
  1272. if (!iSEM.SetTiltAngleOn())
  1273. {
  1274. return false;
  1275. }
  1276. //设置校正角度
  1277. //if (!iSEM.SetTiltAngle(fOldAngle))
  1278. //{
  1279. // return false;
  1280. //}
  1281. //恢复原始状态
  1282. SendMsg("校正角度"+ a_fAngle.ToString());
  1283. if (!iSEM.SetTiltAngle(a_fAngle))
  1284. {
  1285. return false;
  1286. }
  1287. //if (bTilt)
  1288. //{
  1289. // if (!iSEM.SetTiltCorrectionOn())
  1290. // {
  1291. // return false;
  1292. // }
  1293. //}
  1294. //else
  1295. //{
  1296. // if (!iSEM.SetTiltCorrectionOff())
  1297. // {
  1298. // return false;
  1299. // }
  1300. //}
  1301. return true;
  1302. }
  1303. //拍图
  1304. public bool GetImage(ImageMode a_mode, String a_fileName)
  1305. {
  1306. //1. 图像解冻
  1307. float foldFrozen = iSEM.GetImageFrozen();
  1308. if (foldFrozen == float.NaN)
  1309. {
  1310. return false;
  1311. }
  1312. if (!iSEM.ImageLive())
  1313. {
  1314. return false;
  1315. }
  1316. //2. 确认图像模式
  1317. if (ImageMode.SEM == a_mode)
  1318. {
  1319. if (!iSEM.CmdFIBModeSEM())
  1320. {
  1321. return false;
  1322. }
  1323. }
  1324. else if (ImageMode.FIB == a_mode)
  1325. {
  1326. if (!iSEM.CmdFIBModeFIB())
  1327. {
  1328. return false;
  1329. }
  1330. }
  1331. else
  1332. {
  1333. return false;
  1334. }
  1335. //3. 获取分辨率
  1336. int[] ImageSize = iSEM.GetImageStore();
  1337. if (ImageSize[0] == 0 || ImageSize[1] == 0)
  1338. {
  1339. return false;
  1340. }
  1341. short width = (short)ImageSize[0];
  1342. short height = (short)ImageSize[1];
  1343. //4. 抓图
  1344. if (!iSEM.GrabImage(a_fileName, 0, 0, width, height, 0))
  1345. {
  1346. return false;
  1347. }
  1348. //5. 恢复初始状态
  1349. if (foldFrozen == 0)
  1350. {
  1351. if (!iSEM.ImageLive())
  1352. {
  1353. return false;
  1354. }
  1355. }
  1356. else if (foldFrozen == 1)
  1357. {
  1358. if (!iSEM.ImageFrozen())
  1359. {
  1360. return false;
  1361. }
  1362. }
  1363. return true;
  1364. }
  1365. }
  1366. }