ellipse.dart 11 KB

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  1. import 'dart:ui';
  2. import 'dart:math' as math;
  3. import 'package:fis_measure/interfaces/date_types/point.dart';
  4. import 'package:fis_measure/interfaces/enums/items.dart';
  5. import 'package:fis_measure/interfaces/process/items/item.dart';
  6. import 'package:fis_measure/interfaces/process/items/item_metas.dart';
  7. import 'package:fis_measure/interfaces/process/workspace/point_info.dart';
  8. import 'package:fis_measure/process/calcuators/calculator.dart';
  9. import 'package:fis_measure/process/calcuators/curve.dart';
  10. import 'package:fis_measure/process/calcuators/formulas/general.dart';
  11. import 'package:fis_measure/utils/canvas.dart';
  12. import 'package:path_drawing/path_drawing.dart';
  13. import 'package:vid/us/vid_us_unit.dart';
  14. import 'area_abstract.dart';
  15. class Ellipse extends AreaItemAbstract {
  16. Ellipse(ItemMeta meta, IMeasureItem? parent) : super(meta, parent);
  17. @override
  18. bool onExecuteMouse(PointInfo args) {
  19. if (state == ItemStates.finished) {
  20. if (args.pointType == PointInfoType.mouseDown) {
  21. state = ItemStates.waiting;
  22. }
  23. }
  24. if (state == ItemStates.waiting) {
  25. if (args.pointType == PointInfoType.mouseDown) {
  26. handleMouseDownWhileWaiting(args);
  27. }
  28. } else if (state == ItemStates.running) {
  29. if (feature == null) return false;
  30. final f = feature! as EllipseFeature;
  31. final activeIndex = f.activeIndex;
  32. switch (args.pointType) {
  33. case PointInfoType.mouseMove:
  34. f.innerPoints[activeIndex] = args;
  35. f.adjustPoints(args);
  36. break;
  37. case PointInfoType.mouseDown:
  38. if (activeIndex == 1) {
  39. if (f.xAxisEnd == f.xAxisStart) {
  40. break;
  41. }
  42. f.adjustPoints(args);
  43. f.activeIndex = 2;
  44. } else if (activeIndex == 2) {
  45. doFeatureFinish();
  46. }
  47. break;
  48. default:
  49. return false;
  50. }
  51. doCalculate();
  52. return true;
  53. }
  54. return false;
  55. }
  56. bool isFirstPointMove = true;
  57. DPoint touchStartPosition = DPoint(0, 0); // 相对位移起始触摸点
  58. DPoint currPointLastPosition = DPoint(0, 0); // 当前操作的点之前所在位置
  59. @override
  60. bool onExecuteTouch(PointInfo args) {
  61. if (state == ItemStates.finished) {
  62. if (args.pointType == PointInfoType.touchDown) {
  63. state = ItemStates.waiting;
  64. }
  65. }
  66. if (state == ItemStates.waiting) {
  67. if (args.pointType == PointInfoType.touchDown) {
  68. isFirstPointMove = true;
  69. handleTouchDownWhileWaiting(args);
  70. }
  71. } else if (state == ItemStates.running) {
  72. if (feature == null) return false;
  73. final f = feature! as EllipseFeature;
  74. if (args.pointType == PointInfoType.touchDown) {
  75. touchStartPosition = args;
  76. currPointLastPosition = f.innerPoints[f.activeIndex];
  77. }
  78. if (args.pointType == PointInfoType.touchMove) {
  79. if (isFirstPointMove) {
  80. DPoint newStartPoint = args;
  81. newStartPoint.addOffset(0, -0.2);
  82. for (var element in f.innerPoints) {
  83. element.update(newStartPoint);
  84. }
  85. } else {
  86. DPoint newPoint = currPointLastPosition
  87. .clone()
  88. .addVector(args - touchStartPosition);
  89. f.innerPoints[f.activeIndex] = newPoint;
  90. f.adjustPoints(newPoint);
  91. }
  92. }
  93. if (args.pointType == PointInfoType.touchUp) {
  94. if (isFirstPointMove) {
  95. isFirstPointMove = false;
  96. f.activeIndex = 1;
  97. }
  98. if (f.activeIndex == 1) {
  99. if (f.xAxisEnd != f.xAxisStart) {
  100. f.adjustPoints(args);
  101. f.activeIndex = 2;
  102. }
  103. } else if (f.activeIndex == 2) {
  104. doFeatureFinish();
  105. }
  106. }
  107. doCalculate();
  108. return true;
  109. }
  110. return false;
  111. }
  112. void handleMouseDownWhileWaiting(PointInfo args) {
  113. // TODO: 判断是否当前area
  114. // 转换为Area逻辑位置
  115. final point = args.toAreaLogicPoint();
  116. feature = EllipseFeature(this, point);
  117. if (args.hostVisualArea != null) {
  118. feature!.hostVisualArea = args.hostVisualArea;
  119. }
  120. feature!.activeIndex = 1;
  121. state = ItemStates.running;
  122. }
  123. void handleTouchDownWhileWaiting(PointInfo args) {
  124. // TODO: 判断是否当前area
  125. // 转换为Area逻辑位置
  126. final point = args.toAreaLogicPoint();
  127. feature = EllipseFeature(this, point);
  128. if (args.hostVisualArea != null) {
  129. feature!.hostVisualArea = args.hostVisualArea;
  130. }
  131. feature!.activeIndex = 0;
  132. state = ItemStates.running;
  133. }
  134. static Ellipse createAreaPerimeter(ItemMeta meta, [IMeasureItem? parent]) {
  135. final ellipse = Ellipse(meta, parent);
  136. ellipse.calculator = AreaPerimeterEllipseCal(ellipse);
  137. return ellipse;
  138. }
  139. static Ellipse createVolume(ItemMeta meta, [IMeasureItem? parent]) {
  140. final ellipse = Ellipse(meta, parent);
  141. ellipse.calculator = _EllipseVolumeCal(ellipse);
  142. return ellipse;
  143. }
  144. }
  145. class EllipseFeature extends AreaItemFeatureAbstract {
  146. EllipseFeature(Ellipse refItem, DPoint point) : super(refItem) {
  147. innerPoints.add(point.clone());
  148. innerPoints.add(point.clone());
  149. innerPoints.add(point.clone());
  150. innerPoints.add(point.clone());
  151. }
  152. /// 质心
  153. DPoint get centroid {
  154. final x = (xAxisStart.x + xAxisEnd.x) * 0.5;
  155. final y = (xAxisStart.y + xAxisEnd.y) * 0.5;
  156. return DPoint(x, y);
  157. }
  158. DPoint get xAxisStart => innerPoints[0];
  159. DPoint get xAxisEnd => innerPoints[1];
  160. DPoint get yAxisStart => innerPoints[2];
  161. DPoint get yAxisEnd => innerPoints[3];
  162. @override
  163. void paint(Canvas canvas, Size size) {
  164. if (innerPoints.isEmpty) return;
  165. drawId(canvas, size, idText);
  166. final xStartOffset = convert2ViewPoint(size, xAxisStart).toOffset();
  167. if (activeIndex < 1) {
  168. drawVertex(canvas, xStartOffset, true);
  169. return;
  170. } else {
  171. drawVertex(canvas, xStartOffset);
  172. }
  173. final xEndOffset = convert2ViewPoint(size, xAxisEnd).toOffset();
  174. canvas.drawDashLine(xStartOffset, xEndOffset, 1, 10, paintLinePan);
  175. final yStartOffset = convert2ViewPoint(size, innerPoints[2]).toOffset();
  176. final yEndOffset = convert2ViewPoint(size, innerPoints[3]).toOffset();
  177. final centroidOffset = convert2ViewPoint(size, centroid).toOffset();
  178. canvas.drawDashLine(yStartOffset, yEndOffset, 1, 10, paintLinePan);
  179. // canvas.drawDashLine(yStartOffset, xEndOffset, 1, 10, paintLinePan);
  180. // canvas.drawDashLine(yEndOffset, xEndOffset, 1, 10, paintLinePan);
  181. final radiusX = getRadiusX(size);
  182. final radiusY = getRadiusY(size);
  183. canvas.save();
  184. final path = Path();
  185. path.moveTo(xStartOffset.dx, xStartOffset.dy);
  186. // 以质心为原点旋转到水平方向
  187. canvas.translate(centroidOffset.dx, centroidOffset.dy);
  188. final rotateRad = (xEndOffset - xStartOffset).direction;
  189. canvas.rotate(rotateRad);
  190. canvas.translate(-centroidOffset.dx, -centroidOffset.dy);
  191. path.addOval(
  192. Rect.fromCenter(
  193. center: centroidOffset,
  194. width: radiusX * 2,
  195. height: radiusY * 2,
  196. ),
  197. );
  198. canvas.drawPath(
  199. dashPath(
  200. path,
  201. dashArray: CircularIntervalList<double>(<double>[2.0, 10.0]),
  202. ),
  203. paintPan,
  204. );
  205. canvas.restore();
  206. if (activeIndex == 1) {
  207. drawVertex(canvas, xEndOffset, true);
  208. drawVertex(canvas, yStartOffset);
  209. drawVertex(canvas, yEndOffset);
  210. } else if (activeIndex == 2) {
  211. drawVertex(canvas, xEndOffset);
  212. drawVertex(canvas, yEndOffset);
  213. drawVertex(canvas, yStartOffset, isActive);
  214. }
  215. }
  216. /// X轴半径
  217. double getRadiusX([Size? fitSize]) {
  218. if (innerPoints.length < 2) {
  219. return 0;
  220. }
  221. var p1 = xAxisStart;
  222. var p2 = xAxisEnd;
  223. if (fitSize != null) {
  224. p1 = p1.scale2Size(fitSize);
  225. p2 = p2.scale2Size(fitSize);
  226. }
  227. return (p2 - p1).length / 2;
  228. }
  229. /// Y轴半径
  230. double getRadiusY([Size? fitSize]) {
  231. if (activeIndex > 1) {
  232. var p = yAxisStart;
  233. var p2 = yAxisEnd;
  234. var c = centroid;
  235. if (fitSize != null) {
  236. p = p.scale2Size(fitSize);
  237. p2 = p2.scale2Size(fitSize);
  238. c = c.scale2Size(fitSize);
  239. }
  240. return (p - p2).length / 2;
  241. } else {
  242. return getRadiusX(fitSize);
  243. }
  244. }
  245. /// 圆周长
  246. double getCircumference([Size? fitSize]) {
  247. double a = getRadiusX(fitSize), b = getRadiusY(fitSize);
  248. if (a < b) {
  249. a = b;
  250. b = a;
  251. }
  252. return 2 * math.pi * b + 4 * (a - b);
  253. }
  254. /// 面积
  255. double getArea([Size? fitSize]) {
  256. return math.pi * getRadiusX(fitSize) * getRadiusY(fitSize);
  257. }
  258. /// 计算Y轴坐标点
  259. void adjustPoints(DPoint point) {
  260. if (activeIndex < 1) return;
  261. final refSize = refItem.application.displaySize;
  262. // const refSize= Size(1000, 1000);
  263. // const restoreSize = Size(1 / 1000, 1 / 1000);
  264. final restoreSize = Size(1 / refSize.width, 1 / refSize.height);
  265. final p = point.scale2Size(refSize);
  266. final p1 = xAxisStart.scale2Size(refSize);
  267. final p2 = xAxisEnd.scale2Size(refSize);
  268. final double radius;
  269. if (activeIndex == 2) {
  270. radius = GeneralFormulas.distance2Line(p1, p2, p);
  271. } else {
  272. radius = getRadiusX(refSize);
  273. }
  274. final crossPoints = _findCrossPoints(p2, p1, radius);
  275. final p3Index = _findNearest(p, crossPoints);
  276. innerPoints[2] = crossPoints[p3Index].scale2Size(restoreSize);
  277. innerPoints[3] = crossPoints[1 - p3Index].scale2Size(restoreSize);
  278. }
  279. static List<DPoint> _findCrossPoints(DPoint a, DPoint b, distance) {
  280. final dx = b.x - a.x;
  281. final dy = b.y - a.y;
  282. final len = (b - a).length;
  283. /// 单位长度轴上距离增加量
  284. final udx = dx / len;
  285. final udy = dy / len;
  286. final px = -udy;
  287. final py = udx;
  288. final centroidX = (a.x + b.x) * 0.5;
  289. final centroidY = (a.y + b.y) * 0.5;
  290. final centroid = DPoint(centroidX, centroidY);
  291. final x1 = centroid.x + px * distance;
  292. final y1 = centroid.y + py * distance;
  293. final out1 = DPoint(x1, y1);
  294. final x2 = centroid.x - px * distance;
  295. final y2 = centroid.y - py * distance;
  296. final out2 = DPoint(x2, y2);
  297. return [out1, out2];
  298. }
  299. static int _findNearest(DPoint p, List<DPoint> source) {
  300. int rst = 0;
  301. double minLen = (source[0] - p).length;
  302. for (var i = 1; i < source.length; i++) {
  303. final len = (source[i] - p).length;
  304. if (len < minLen) {
  305. minLen = len;
  306. rst = i;
  307. }
  308. }
  309. return rst;
  310. }
  311. }
  312. class _EllipseVolumeCal extends Calculator<Ellipse, double> {
  313. _EllipseVolumeCal(Ellipse ref) : super(ref);
  314. @override
  315. void calculate() {
  316. if (ref.feature == null) return;
  317. final feature = ref.feature! as EllipseFeature;
  318. final viewport = feature.hostVisualArea!.viewport!;
  319. final size = viewport.convertBoundary;
  320. double xAxis = feature.getRadiusX(size);
  321. double yAxis = feature.getRadiusY(size);
  322. var a = math.max(xAxis, yAxis);
  323. var b = math.min(xAxis, yAxis);
  324. var value = math.pi / 6.0 * a * b * b;
  325. updateFloatValue(value, unit: VidUsUnit.cm3, useRound: true);
  326. }
  327. }