Control_XRayTable.cs 31 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379380381382383384385386387388389390391392393394395396397398399400401402403404405406407408409410411412413414415416417418419420421422423424425426427428429430431432433434435436437438439440441442443444445446447448449450451452453454455456457458459460461462463464465466467468469470471472473474475476477478479480481482483484485486487488489490491492493494495496497498499500501502503504505506507508509510511512513514515516517518519520521522523524525526527528529530531532533534535536537538539540541542543544545546547548549550551552553554555556557558559560561562563564565566567568569570571572573574575576577578579580581582583584585586587588589590591592593594595596597598599600601602603604605606607608609610611612613614615616617618619620621622623624625626627628629630631632633634635636637638639640641642643644645646647648649650651652653654655656657658659660661662663664665666667668669670671672673674675676677678679680681682683684685686687688689690691692693694695696697698699700701702703704705706707708709710711712713714715716717718719720721722723724725726727728729730731732733734735736737738739740741742743744745746747748749750751752753754755756757758
  1. using System;
  2. using System.Collections.Generic;
  3. using System.ComponentModel;
  4. using System.Drawing;
  5. using System.Data;
  6. using System.Linq;
  7. using System.Text;
  8. using System.Threading.Tasks;
  9. using System.Windows.Forms;
  10. //using OTSIncAReportGraph.Class;
  11. using System.Collections;
  12. using HOZProject.Helpers;
  13. namespace HOZProject
  14. {
  15. /// <summary>
  16. /// 能谱图类
  17. /// </summary>
  18. public partial class Control_XRayTable : UserControl
  19. {
  20. #region 变量定义
  21. //定义两个能量值线,用来显示使用
  22. float[] m_f_show1 = new float[2000];
  23. float[] m_f_show2 = new float[2000];
  24. //用来保存实际传入的xray值数,用该数据转换成显示的值
  25. uint[] m_search_xray = new uint[2000];
  26. uint[] m_analysis_xray = new uint[2000];
  27. List<TwoPoint> m_list_twopoint1 = new List<TwoPoint>();
  28. List<TwoPoint> m_list_twopoint2 = new List<TwoPoint>();
  29. //记录鼠标所在位置
  30. Point m_mouse_point = new Point();
  31. //字体
  32. Font m_thisfont = new Font("微软雅黑", 8, FontStyle.Regular);
  33. Font m_thisfont_bold = new Font("微软雅黑", 8, FontStyle.Bold);
  34. //下标尺分界位置
  35. float m_f_rulerX_location = 170;
  36. //下坐标尺设定参数
  37. float m_i_smalkd = 5;//5像素一个小刻度
  38. float m_i_bigkd = 25;//25像素一个大刻度
  39. float m_i_smallkd_number = 200;//小刻度的个数
  40. float m_i_bigkd_number = 40;//大刻度的个数
  41. float m_i_draw_start = 0;//整个界面绘制的起始点
  42. float m_i_draw_end = 1004;//整个界面绘制的边界
  43. //float m_Y_draw_start = 0;//Y轴的起始点
  44. //float m_Y_draw_Lenght = 10;//Y轴的刻度长度
  45. float m_Y_draw_TopDiff = 15;//Y轴距离顶部距离
  46. float m_Y_MaxValue = 0;//Y轴显示的最大刻度长度
  47. float m_i_rightdrawlabellocation_x = 850;//右上角要显示文字的位置
  48. float m_i_rightdrawlabellocation_y = 5;//右上角要显示文字的位置
  49. SolidBrush m_this_sb = new SolidBrush(Color.Black);//画刷
  50. SolidBrush m_this_sb_blue = new SolidBrush(Color.Blue);//
  51. Pen m_this_p = new Pen(Color.Black, 0.5f); //画笔的颜色
  52. Pen m_this_p_blue = new Pen(Color.DimGray, 0.5f); //画笔的颜色 , 分析xray的颜色
  53. Pen m_mousemove_p = new Pen(Color.PowderBlue, 0.1f);//鼠标移动画的竖线的画笔颜色
  54. float m_kml_fz_top = 0; //计算KML峰值记录最高点变量
  55. float m_xraytopixel_multiple = 40; //比如,从xray0-6000的值,转到显示像素中0-150的比例倍数
  56. float m_xraysum2 = 0; //xray计数总和2
  57. List<Periodic> m_list_periodic; //元素周期表,相关数据,窗体加载时初始化,然后用来计算使用
  58. List<KMLFPoint> m_list_kmlfpoint; //KML峰值,对应的位置和元素名
  59. //属性相关变量,用来显示使用
  60. private bool m_b_show_searchxray = false; //是否绘制搜索xray线,不再显示搜索xray,只显示分析xray
  61. private bool m_b_show_analysisxray = true; //设置是否绘制分析xray线
  62. private string m_goodname = ""; //夹杂物名称
  63. private string m_goodchinesename = ""; //夹杂物的中文名称
  64. private string m_stdname = ""; //标准名称
  65. private static List<ShowElementInfo> m_list_showelementinfo = null;//需要显示的元素信息列表
  66. private string m_GBinfostr = ""; //国标信息显示
  67. float m_f_zl = 0.5f; //2000个数据放到1000个像素中计算出的增量
  68. float m_f_kmlfzpd_max = 30;//KML峰值上界限,进行记数的值,峰值判断的界限,需要按峰值最高值,和
  69. float m_f_kmlfzpd_mix = 5;//KML峰值下界限
  70. #endregion
  71. #region 属性相关
  72. /// <summary>
  73. /// 显示国标分类相关信息
  74. /// </summary>
  75. public string GBInfoStr
  76. {
  77. get { return m_GBinfostr; }
  78. set { m_GBinfostr = value; }
  79. }
  80. /// <summary>
  81. /// 设置是否绘制搜索Xray,默认为显示
  82. /// </summary>
  83. public bool ShowSearchXray
  84. {
  85. get { return m_b_show_searchxray; }
  86. set { m_b_show_searchxray = value; }
  87. }
  88. /// <summary>
  89. /// 显示当前夹杂物的名称
  90. /// </summary>
  91. public string GoodName
  92. {
  93. get { return m_goodname; }
  94. set { m_goodname = value; }
  95. }
  96. /// <summary>
  97. /// 显示当前夹杂物的中文名称
  98. /// </summary>
  99. public string GoodChineseName
  100. {
  101. get { return m_goodchinesename; }
  102. set { m_goodchinesename = value; }
  103. }
  104. /// <summary>
  105. /// 显示当前能谱物品的测试标准名
  106. /// </summary>
  107. public string STDName
  108. {
  109. get { return m_stdname; }
  110. set { m_stdname = value; }
  111. }
  112. /// <summary>
  113. /// 显示元素列表相关信息
  114. /// </summary>
  115. public List<ShowElementInfo> List_ShowElementInfo
  116. {
  117. get { return m_list_showelementinfo; }
  118. set { m_list_showelementinfo = value; }
  119. }
  120. /// <summary>
  121. /// 设置是否绘制分析Xray,默认为显示
  122. /// </summary>
  123. public bool ShowAnalysisXray
  124. {
  125. get { return m_b_show_analysisxray; }
  126. set { m_b_show_analysisxray = value; }
  127. }
  128. #endregion
  129. #region 构造函数
  130. public Control_XRayTable()
  131. {
  132. InitializeComponent();
  133. }
  134. /// <summary>
  135. /// 需要确定下来倍数后,从xray最大值6000,转换成显示最大值150的比例转换
  136. /// </summary>
  137. /// <param name="in_value"></param>
  138. /// <returns></returns>
  139. private float GetValueByRatio(uint in_value)
  140. {
  141. return in_value / m_xraytopixel_multiple;
  142. }
  143. /// <summary>
  144. /// 设置搜索xray和分析xray值到,记录变量中,及转换成显示变量中,用来供XrayTable显示及计算使用
  145. /// </summary>
  146. /// <param name="analysis_xray">Xray数据</param>
  147. /// <param name="in_list_showelementinfo">元素信息列表</param>
  148. public void SetXRayShowLineValue(uint[] analysis_xray,List<ShowElementInfo> in_list_showelementinfo)
  149. {
  150. //重新加载时,对当前的宽度等重新加载并计算
  151. m_i_draw_end = this.Width;
  152. m_i_smalkd = (m_i_draw_end - 4) / m_i_smallkd_number;//按宽度重新计算小刻度的长度 -4是有4像素的边框差
  153. m_i_bigkd = (m_i_draw_end - 4) / m_i_bigkd_number; //按宽度重新计算大刻度的长度
  154. #region 重新初始化相关全局变量
  155. //m_list_periodic = CListPeriodic.GetListPeriodic();
  156. m_list_kmlfpoint = new List<KMLFPoint>();
  157. m_f_show1 = new float[2000];
  158. m_f_show2 = new float[2000];
  159. //用来保存实际传入的xray值数,用该数据转换成显示的值
  160. m_search_xray = new uint[2000];
  161. m_analysis_xray = new uint[2000];
  162. m_list_twopoint1 = new List<TwoPoint>();
  163. m_list_twopoint2 = new List<TwoPoint>();
  164. m_list_showelementinfo = in_list_showelementinfo;
  165. //初始化xray之和为0,之后开始进行求和计算
  166. m_xraysum2 = 0;
  167. //重新初始化高度比例尺
  168. m_xraytopixel_multiple = 0;
  169. //标准库名
  170. m_stdname = "无";
  171. #endregion
  172. //校验数据错误,防止空数据
  173. if (analysis_xray.Count() == 0)
  174. {
  175. return;
  176. }
  177. //再防止全数据为0
  178. uint ls_u_jcwl = 0;
  179. for (int i = 0; i < analysis_xray.Count(); i++)
  180. {
  181. if (analysis_xray[i] > ls_u_jcwl)
  182. ls_u_jcwl = analysis_xray[i];
  183. }
  184. if (ls_u_jcwl == 0)
  185. {
  186. return;
  187. }
  188. //比例尺,要根据传入的数据,自动进行计算的
  189. //逻辑那就应该是取最大的xray得到的值,加一点,然后除以我可以显示的像素分辨率,得到的倍数,后面都用这个倍数进行计算
  190. //取出最大的xray值,计算倍数---------------------------------------------------
  191. uint max_xra = 0;
  192. for (int i = 0; i < analysis_xray.Length; i++)
  193. {
  194. if (max_xra < analysis_xray[i])
  195. {
  196. max_xra = analysis_xray[i];
  197. }
  198. }
  199. //用最大的值除以可用来显示的像素,得到倍数
  200. m_xraytopixel_multiple = (float)(Convert.ToDouble(max_xra) / Convert.ToDouble(150));
  201. //如果长度不是2000的话,不操作
  202. if (analysis_xray.Length == 2000)
  203. {
  204. //保存实际传入的值
  205. m_analysis_xray = analysis_xray;
  206. for (int i = 0; i < analysis_xray.Length; i++)
  207. {
  208. //这里按比例进行转换
  209. m_f_show2[i] = GetValueByRatio( analysis_xray[i]);
  210. m_xraysum2 = m_xraysum2 + analysis_xray[i];
  211. }
  212. }
  213. //生成xray对应的绘制线段
  214. float old_value = m_f_rulerX_location - 2;//从基础线-2的位置上进行绘制
  215. //float f_zl = 0.5f;//坐标值的增量,以小数做为增量的值,,,,这个坐标的增量应该根据实际的显示长度进行修改
  216. //当1000个像素时显示2000个数据,需要2000/1000=0.5f
  217. //0.5f就是2000个数据需要放到1000个像素中的计算系数
  218. double ls_width = m_i_draw_end;//改成固定值,整个绘制浪线的总长
  219. double ls_cs = 2000;
  220. m_f_zl = (float)(ls_width / ls_cs);
  221. //计算KML峰值判定的上标值与下标值
  222. GetKMLFPD_MAXANDMIN(m_analysis_xray);
  223. old_value = m_f_rulerX_location - 2;
  224. for (int i = 0; i < m_f_show2.Length; i++)
  225. {
  226. TwoPoint tp = new TwoPoint();
  227. tp.pf1.X = i * m_f_zl;
  228. tp.pf1.Y = old_value;
  229. tp.pf2.X = i * m_f_zl + m_f_zl;
  230. tp.pf2.Y = m_f_rulerX_location - 2 - m_f_show2[i];
  231. tp.value = m_analysis_xray[i];
  232. tp.kmlf_value = (float)(Convert.ToDouble(i) / Convert.ToDouble(100));
  233. //重新实现计算峰值上显示元素的计算方法
  234. //CalcKMLFPoint(tp);
  235. old_value = m_f_rulerX_location - 2 - m_f_show2[i];
  236. m_list_twopoint2.Add(tp);
  237. }
  238. //重新实现的计算峰值上显示元素的计算方法
  239. CalcKMLFPoint(in_list_showelementinfo);
  240. this.Invalidate();
  241. }
  242. /// <summary>
  243. /// 根据传入的2000个峰值点,计算出有效参与计算的峰值判定高点,和低点,两个点
  244. /// </summary>
  245. /// <param name="in_xray"></param>
  246. /// <returns></returns>
  247. private void GetKMLFPD_MAXANDMIN(uint[] in_xray)
  248. {
  249. float f_lsmax = 0;
  250. //方法是,按50%为高点,10%为低点
  251. for (int i = 0; i < in_xray.Count(); i++)
  252. {
  253. if (f_lsmax < in_xray[i])
  254. {
  255. f_lsmax = in_xray[i];
  256. }
  257. }
  258. m_f_kmlfzpd_max = (float)(f_lsmax * 0.3);//最顶点的峰
  259. m_f_kmlfzpd_mix = (float)(f_lsmax * 0.1);
  260. return ;
  261. }
  262. /// <summary>
  263. /// 根据传入的值,及获取的范围,来判断,该值大概为是什么元素的
  264. /// </summary>
  265. /// <param name="kml_value">传入的峰值</param>
  266. /// <param name="f_rect">范围</param>
  267. /// <returns></returns>
  268. private string GetElementNameByKMLRange(float kml_value, float f_rect)
  269. {
  270. string str_ret = "";
  271. float ls_f_sx1 = 0;
  272. float ls_f_sx2 = 0;
  273. float ls_f_sx3 = 0;
  274. for (int i = 0; i < m_list_periodic.Count(); i++)
  275. {
  276. //先对三个值进行转换,转出应有的值
  277. if (m_list_periodic[i].SX1 != "" && m_list_periodic[i].SX1 != "-")
  278. {
  279. ls_f_sx1 = (float)Convert.ToDouble(m_list_periodic[i].SX1);
  280. }
  281. if (m_list_periodic[i].SX2 != "" && m_list_periodic[i].SX2 != "-")
  282. {
  283. ls_f_sx2 = (float)Convert.ToDouble(m_list_periodic[i].SX2);
  284. }
  285. if (m_list_periodic[i].SX3 != "" && m_list_periodic[i].SX3 != "-")
  286. {
  287. ls_f_sx3 = (float)Convert.ToDouble(m_list_periodic[i].SX3);
  288. }
  289. //然后再对该值进行判断,如果在范围内,则判断为该元素
  290. if (kml_value >= (ls_f_sx1 - f_rect) && kml_value < (ls_f_sx1 + f_rect))
  291. {
  292. str_ret = m_list_periodic[i].FH;
  293. break;
  294. }
  295. if (kml_value >= (ls_f_sx2 - f_rect) && kml_value < (ls_f_sx2 + f_rect))
  296. {
  297. str_ret = m_list_periodic[i].FH;
  298. break;
  299. }
  300. if (kml_value >= (ls_f_sx3 - f_rect) && kml_value < (ls_f_sx3 + f_rect))
  301. {
  302. str_ret = m_list_periodic[i].FH;
  303. break;
  304. }
  305. }
  306. return str_ret;
  307. }
  308. /// <summary>
  309. /// 在循环遍历中,计算KML峰值中心点
  310. /// </summary>
  311. /// <param name="tp"></param>
  312. private void CalcKMLFPoint(TwoPoint tp)
  313. {
  314. //大于平均点值 max时,开始记录,2018-10-23重新实现
  315. if (tp.value > m_f_kmlfzpd_max)
  316. {
  317. m_kml_fz_top = tp.kmlf_value;
  318. }
  319. else if( tp.value < m_f_kmlfzpd_mix && m_kml_fz_top != 0)//平均小于平均峰值 min时,结束记录,并将峰值保存,记录峰值元素
  320. {
  321. //构造KML峰值list对象
  322. KMLFPoint ls_lkmfpoint = new KMLFPoint();
  323. ls_lkmfpoint.kml_x = m_kml_fz_top;
  324. //查找出该峰值是什么元素的, 待完成
  325. ls_lkmfpoint.ysm = GetElementNameByKMLRange(m_kml_fz_top, 0.2f);
  326. //将该峰值保存到峰值上
  327. m_list_kmlfpoint.Add(ls_lkmfpoint);
  328. m_Y_MaxValue = m_kml_fz_top;
  329. m_kml_fz_top = 0;
  330. }
  331. #region 该方法先保留,待重写观察效果
  332. ////当峰值大于了 某值,判定值,同时,记录峰起点值是0时,为记录峰值开始
  333. //if (tp.value >= f_kmlfzpd_mix && kml_fz_start == 0)
  334. //{
  335. // kml_fz_start = tp.kmlf_value;//记录峰值起点
  336. //}
  337. //else
  338. //{
  339. // //记录该阶段最高的峰值
  340. // if (kml_fz_top < tp.kmlf_value)
  341. // kml_fz_top = tp.kmlf_value;
  342. // //这里又记录的结束点,如果判断到了结束点,那么就用开始点和结束点,来计算峰值的中心位置在哪
  343. // if (tp.value < f_kmlfzpd_mix && kml_fz_start != 0)
  344. // {
  345. // //说明已经在峰值结束后,的区间了
  346. // //保存峰值end
  347. // kml_fz_end = tp.kmlf_value;//记录峰值结束点
  348. // //计算峰值中心点,起点+(结束点-起点=起止段长)/2,就是起点+半段长,为峰值中心
  349. // kml_fz_start = kml_fz_start + (kml_fz_end - kml_fz_start) / 2;
  350. // //构造KML峰值list对象
  351. // KMLFPoint ls_lkmfpoint = new KMLFPoint();
  352. // //ls_lkmfpoint.kml_x = kml_fz_start;//不再使用中间阶段
  353. // ls_lkmfpoint.kml_x = kml_fz_top;
  354. // //查找出该峰值是什么元素的, 待完成
  355. // ls_lkmfpoint.ysm = GetElementNameByKMLRange(kml_fz_start, 0.2f);
  356. // //ls_lkmfpoint.ysm = "元素名";
  357. // //将该峰值保存到峰值上
  358. // m_list_kmlfpoint.Add(ls_lkmfpoint);
  359. // //最后再将记录kml峰值的起和止,都新初始化一下
  360. // kml_fz_start = 0;
  361. // kml_fz_end = 0;
  362. // kml_fz_top = 0;
  363. // }
  364. //}
  365. #endregion
  366. }
  367. private void CalcKMLFPoint(List<ShowElementInfo> in_list_showelementinfo)
  368. {
  369. for (int i = 0; i < in_list_showelementinfo.Count; i++)
  370. {
  371. KMLFPoint ls_lkmfpoint = new KMLFPoint();
  372. ls_lkmfpoint.ysm = in_list_showelementinfo[i].ElementName;
  373. //ls_lkmfpoint.kml_x = (float)(in_list_showelementinfo[i].dKF * 1000 / 20);
  374. ls_lkmfpoint.kml_x = (float)in_list_showelementinfo[i].dKF ;
  375. //将该峰值保存到峰值上
  376. m_list_kmlfpoint.Add(ls_lkmfpoint);
  377. }
  378. }
  379. private void Control_XRayTable_Load(object sender, EventArgs e)
  380. {
  381. #region 设置背景透明及开启双缓冲
  382. //设置Style支持透明背景色
  383. this.SetStyle(ControlStyles.SupportsTransparentBackColor, true);
  384. SetStyle(ControlStyles.UserPaint, true);
  385. SetStyle(ControlStyles.AllPaintingInWmPaint, true); // 禁止擦除背景.
  386. this.SetStyle(ControlStyles.OptimizedDoubleBuffer, true); // 双缓冲
  387. this.BackColor = Color.FromArgb(180, 255, 255, 255);
  388. #endregion
  389. //初始化变量,如果不初始化会在设计模式下报错
  390. if (m_list_showelementinfo == null)
  391. {
  392. m_list_showelementinfo = new List<ShowElementInfo>();
  393. }
  394. }
  395. #endregion
  396. #region 绘制事件
  397. protected override void OnPaint(PaintEventArgs e)
  398. {
  399. Graphics g = e.Graphics;
  400. DrawXrayImage(g);
  401. }
  402. /// <summary>
  403. /// 封装绘制能谱数据方法
  404. /// </summary>
  405. /// <param name="g"></param>
  406. protected void DrawXrayImage(Graphics g)
  407. {
  408. #region //绘制标尺表盘部份----------------------------------------------------------------------------------------------
  409. //宽度比的缩放基数
  410. float f_js_width = 1;//经过考虑,先定为1,为固定的像素进行绘制
  411. #region 绘制下面的标尺
  412. //x轴标尺的线
  413. g.DrawLine(m_this_p, m_i_draw_start, m_f_rulerX_location, m_i_draw_end * f_js_width, m_f_rulerX_location);
  414. //200个小刻度
  415. for (int i = 0; i < m_i_smallkd_number; i++)
  416. {
  417. g.DrawLine(m_this_p, m_i_draw_start + (i * m_i_smalkd * f_js_width), m_f_rulerX_location, m_i_draw_start + (i * m_i_smalkd * f_js_width), m_f_rulerX_location + 5);
  418. }
  419. int i_count = 0;
  420. //40个大刻度
  421. for (int i = 0; i < m_i_bigkd_number; i++)
  422. {
  423. g.DrawLine(m_this_p, m_i_draw_start + (i * m_i_bigkd * f_js_width), m_f_rulerX_location, m_i_draw_start + (i * m_i_bigkd * f_js_width), m_f_rulerX_location + 10);
  424. //每隔两刻度增长写字
  425. if (i % 2 == 0)
  426. {
  427. i_count++;
  428. g.DrawString((i_count - 1).ToString(), m_thisfont_bold, m_this_sb, m_i_draw_start + (i * m_i_bigkd * f_js_width) + 1, m_f_rulerX_location + 10);
  429. }
  430. }
  431. //补充输入文字,为了美观
  432. //g.DrawString("kv", m_thisfont_bold, m_this_sb, 8, m_f_rulerX_location + 10);
  433. #endregion
  434. #region 绘制x-ray线的边框
  435. //x-ray画线的左边线
  436. g.DrawLine(m_this_p, m_i_draw_start, m_i_draw_start + m_Y_draw_TopDiff, m_i_draw_start * f_js_width, m_f_rulerX_location - 2);
  437. //x-ray画线的底盘
  438. //g.DrawLine(m_this_p, m_i_draw_start, m_f_rulerX_location - 2, m_i_draw_end* f_js_width, m_f_rulerX_location - 2);
  439. #endregion
  440. #region 图谱Y轴最高刻度
  441. //g.DrawLine(m_this_p, m_Y_draw_start, m_Y_draw_start + m_Y_draw_TopDiff, m_Y_draw_Lenght, m_Y_draw_start + m_Y_draw_TopDiff);
  442. //Font m_Yfont = new Font("微软雅黑", 7, FontStyle.Regular);
  443. //if(m_kml_fz_top!= 0)
  444. //{
  445. // m_Y_MaxValue = m_kml_fz_top;
  446. //}
  447. //double MaxValueTemp = Math.Round(Convert.ToDouble(m_Y_MaxValue));
  448. ////判断四舍五入后的数值 是否小于原最高值
  449. //if (MaxValueTemp < m_Y_MaxValue)
  450. //{
  451. // g.DrawString("Y轴最高值:" + MaxValueTemp+1, m_Yfont, m_this_sb, 0, 0);
  452. //}
  453. //else
  454. //{
  455. // g.DrawString("Y轴最高值:" + MaxValueTemp, m_Yfont, m_this_sb, 0, 0);
  456. //}
  457. #endregion
  458. #endregion //--------------------------------------------------------------------------------------------------------
  459. #region 绘制波浪线及线上文字--------------------------------------------------------------------------------------
  460. if (m_b_show_searchxray == true)
  461. {
  462. //画波浪线----第一条线
  463. for (int i = 0; i < m_list_twopoint1.Count(); i++)
  464. {
  465. PointF ls_pf1 = m_list_twopoint1[i].pf1;
  466. ls_pf1.X = ls_pf1.X * f_js_width;
  467. PointF ls_pf2 = m_list_twopoint1[i].pf2;
  468. ls_pf2.X = ls_pf2.X * f_js_width;
  469. g.DrawLine(m_this_p, ls_pf1, ls_pf2);
  470. //找到最高值再输出的方式
  471. //if (list_twopoint1[i].pf2.Y < 60)
  472. //{
  473. // g.DrawString(list_twopoint1[i].value.ToString() + "@ev", thisfont_bold, this_sb, ls_pf1.X + 3, ls_pf2.Y);
  474. //}
  475. //找到峰值,并将该峰值,标记出是什么元素
  476. }
  477. }
  478. if (m_b_show_analysisxray == true)
  479. {
  480. //画波浪线----第二条线
  481. for (int i = 0; i < m_list_twopoint2.Count(); i++)
  482. {
  483. PointF ls_pf1_2 = m_list_twopoint2[i].pf1;
  484. ls_pf1_2.X = ls_pf1_2.X * f_js_width;
  485. PointF ls_pf2_2 = m_list_twopoint2[i].pf2;
  486. ls_pf2_2.X = ls_pf2_2.X * f_js_width;
  487. g.DrawLine(m_this_p_blue, ls_pf1_2, ls_pf2_2);
  488. //找到最高值再输出的方式
  489. //if (list_twopoint2[i].pf2.Y < 60)
  490. //{
  491. // g.DrawString(list_twopoint2[i].value.ToString() + "@ev", thisfont_bold, this_sb_blue, list_twopoint2[i].pf2.X + 3, list_twopoint2[i].pf2.Y);
  492. //}
  493. }
  494. }
  495. #endregion //----------------------------------------------------------------------------------------------------------------
  496. #region //绘制峰值上的线-----------------------------------------------------------------------------------------------
  497. if (m_list_kmlfpoint != null)
  498. {
  499. for (int i = 0; i < m_list_kmlfpoint.Count(); i++)
  500. {
  501. //为了让元素标签不在同一高度显示,为了美观,也是防止会重叠,所以这里计算一下
  502. int i_py = 0;//设置元素标签的偏移
  503. if (i % 2 == 1)
  504. i_py = 0;
  505. else
  506. i_py = 20;
  507. //先把峰值上的文字去掉,因为这里与底层分析出的结果不太一致,为了不产生疑问所以这里去掉
  508. //绘制竖线
  509. g.DrawLine(new Pen(Color.Wheat, 0.5f), f_js_width * (m_list_kmlfpoint[i].kml_x * (m_i_draw_end / 20) ), m_f_rulerX_location / 3 + i_py, f_js_width * (m_list_kmlfpoint[i].kml_x * (m_i_draw_end / 20) ), m_f_rulerX_location - 3);
  510. //输出文字,并将字输出到线的上面
  511. SizeF out_testsizef = g.MeasureString(m_list_kmlfpoint[i].ysm, m_thisfont);
  512. PointF ut_test_pointF = new PointF(m_mouse_point.X - (out_testsizef.Width / 2), 2);
  513. g.FillRectangle(Brushes.Goldenrod, new RectangleF(new PointF(f_js_width * (m_list_kmlfpoint[i].kml_x * (m_i_draw_end / 20) - out_testsizef.Width / 2), m_f_rulerX_location / 3 - 20 + i_py), out_testsizef));
  514. g.DrawString(m_list_kmlfpoint[i].ysm,
  515. m_thisfont_bold,
  516. m_this_sb,
  517. new PointF(f_js_width * (m_list_kmlfpoint[i].kml_x * (m_i_draw_end / 20) - out_testsizef.Width / 2), m_f_rulerX_location / 3 - 20 + i_py));
  518. }
  519. }
  520. #endregion
  521. #region 绘制鼠标移动显示的线及线上文字---------------------------------------------------------------------------------------
  522. ////再绘制鼠标所在位置的竖线---------------------第一条线
  523. //g.DrawLine(m_mousemove_p, m_mouse_point.X, m_i_draw_start, m_mouse_point.X, m_f_rulerX_location - 3);
  524. //string ls_label_str = "";
  525. //for (int i = 0; i < m_list_twopoint2.Count(); i++)
  526. //{
  527. // //判断要按条件进行显示,值大于200才进行显示,用循环i的位置进行判断,在不变动这些数组时,这种写法是正确的
  528. // if (m_analysis_xray[i] > m_f_kmlfzpd_mix)
  529. // {
  530. // //用绘线线段,的起始点与鼠标当前位置进行对应上的话,那么就进行取kmlf值,进行显示
  531. // if (Convert.ToInt32(m_list_twopoint2[i].pf1.X * f_js_width) == m_mouse_point.X)
  532. // {
  533. // ls_label_str = m_list_twopoint2[i].kmlf_value.ToString();
  534. // }
  535. // if (Convert.ToInt32(m_list_twopoint2[i].pf2.X * f_js_width) == m_mouse_point.X)
  536. // {
  537. // ls_label_str = m_list_twopoint2[i].kmlf_value.ToString();
  538. // }
  539. // }
  540. //}
  541. //if (ls_label_str != "")
  542. // ls_label_str = Convert.ToDouble(ls_label_str).ToString("0.000");//显示浮点数,为了美观
  543. ////绘制鼠标竖线上的定位文字
  544. //SizeF sizeF = g.MeasureString(ls_label_str, m_thisfont);
  545. //PointF pointF = new PointF(m_mouse_point.X - (sizeF.Width / 2), 2);
  546. //g.FillRectangle(Brushes.SkyBlue, new RectangleF(pointF, sizeF));
  547. //g.DrawString(ls_label_str, m_thisfont_bold, m_this_sb, pointF);
  548. #endregion
  549. #region //右上角输出文字设置-------------------------------------------------------------------------------------------------
  550. m_i_rightdrawlabellocation_x = m_i_draw_end * f_js_width;
  551. ////显示国标相关信息
  552. //g.DrawString(m_GBinfostr, m_thisfont_bold, m_this_sb, new PointF(m_i_rightdrawlabellocation_x, m_i_rightdrawlabellocation_y));
  553. ////计算值显示,计数率
  554. //g.DrawString(m_xraysum2.ToString(), m_thisfont_bold, m_this_sb, new PointF(m_i_rightdrawlabellocation_x + 50, m_i_rightdrawlabellocation_y + 20));
  555. ////高度比例尺值显示
  556. ////g.DrawString(m_xraytopixel_multiple.ToString("0.0"), m_thisfont_bold, m_this_sb, new PointF(m_i_rightdrawlabellocation_x + 50, m_i_rightdrawlabellocation_y + 20));
  557. ////物质名显示
  558. //g.DrawString(m_goodname, m_thisfont_bold, m_this_sb, new PointF(m_i_rightdrawlabellocation_x + 50, m_i_rightdrawlabellocation_y + 40));
  559. //show element list information,using the elementlist number to make sure width,number take width 25 growth
  560. if (m_list_showelementinfo != null)
  561. {
  562. PointF ls_pt = new PointF(m_i_rightdrawlabellocation_x - (m_list_showelementinfo.Count * 60), m_i_rightdrawlabellocation_y);
  563. for (int i = 0; i < m_list_showelementinfo.Count; i++)
  564. {
  565. string str_element = "" + m_list_showelementinfo[i].ElementName + "(" + m_list_showelementinfo[i].Percentage.ToString("0.00") + ")";
  566. SizeF out_testsizef = g.MeasureString(str_element, m_thisfont);
  567. g.DrawString(str_element, m_thisfont, new SolidBrush(Color.Blue), ls_pt);
  568. ls_pt.X = ls_pt.X + out_testsizef.Width + 2;
  569. }
  570. }
  571. #endregion //------------------------------------------------------------------------------------------------------------------
  572. }
  573. #endregion
  574. #region 导出绘制的XRay能谱方法
  575. /// <summary>
  576. /// 导出能谱的图像截图Bitmap对象
  577. /// </summary>
  578. /// <param name="in_str_path"></param>
  579. /// <returns></returns>
  580. public Bitmap ExportXRayImage()
  581. {
  582. Bitmap ret_bmp = new Bitmap(this.Width, this.Height);
  583. //Graphics g = this.CreateGraphics();
  584. //g.DrawImage(ret_bmp, new Point(0, 0));
  585. //DrawXrayImage(g);
  586. //Bitmap image = new Bitmap(this.Width, this.Height);
  587. this.DrawToBitmap(ret_bmp, new Rectangle(0, 0, this.Width, this.Height));
  588. return ret_bmp;
  589. }
  590. #endregion
  591. #region 鼠标移动事件
  592. protected override void OnMouseMove(MouseEventArgs e)
  593. {
  594. //记录鼠标移动到的点,用来绘制用
  595. m_mouse_point = new Point(e.X, e.Y);
  596. this.Invalidate();
  597. }
  598. #endregion
  599. private void InitializeComponent()
  600. {
  601. this.SuspendLayout();
  602. //
  603. // Control_XRayTable
  604. //
  605. this.Name = "Control_XRayTable";
  606. this.ResumeLayout(false);
  607. }
  608. }
  609. #region 用来显示连接线封装的类
  610. /// <summary>
  611. /// 封装两个点的一个类
  612. /// </summary>
  613. [Serializable]
  614. public class TwoPoint
  615. {
  616. public PointF pf1;
  617. public PointF pf2;
  618. public float value;
  619. public float kmlf_value;
  620. }
  621. /// <summary>
  622. /// 记录显示的KML峰值类,分别记录kml峰值的x坐标,和峰值对应的一左一右的元素名
  623. /// </summary>
  624. [Serializable]
  625. public class KMLFPoint
  626. {
  627. public float kml_x;
  628. public string ysm;
  629. }
  630. /// <summary>
  631. /// show x-ray info with element list,the element information class
  632. /// </summary>
  633. [Serializable]
  634. public class ShowElementInfo
  635. {
  636. public string ElementName;
  637. public double Percentage;//实际能谱返回的质量百分比
  638. public double dKF;//K峰,元素周期表中固定值
  639. }
  640. #endregion
  641. }