penDataHandle.js 95 KB

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  1. /**
  2. * utils/penDataHandle.js
  3. * create: kimswang
  4. * date: 2018-10-18
  5. */
  6. import PatchOffset from './PatchOffset'
  7. var utils = require('./utils.js');
  8. var bleConstants = require('./bleConstants.js');
  9. var dotDataCorrector = require('./dotDataCorrector.js');
  10. // var receivedPenData = require('../utils/receivePenData.js');
  11. var event = require('./event.js');
  12. //var edit = require('../page/edit/edit.js');
  13. // global common variable
  14. //2022-06-09 chende
  15. //是否偏移
  16. let isOffset = true
  17. let patchOffset = null
  18. event.on('isOffset', null, (data) => {
  19. isOffset = data.offset
  20. patchOffset = new PatchOffset(130, data.codeType)
  21. console.log('sdk是否修偏移', isOffset)
  22. console.log('12*12 | 16*16', data.codeType)
  23. })
  24. // 存储最有一个move点
  25. var gLastMoveDot = {
  26. counter: 0, // 点计数
  27. sectionID: 0, // 区域ID
  28. ownerID: 0, // 客户ID
  29. bookID: 0, // 书号
  30. pageID: 0, // 页号
  31. timeLong: '2010-01-01 00:00:00,000', // 当前点的RTC 时间,返回时间戳 ms(起止时间是2018-01-01 00:00:00,000)
  32. x: 0, // 点横坐标,整数部分
  33. y: 0, // 点纵坐标,整数部分
  34. fx: 0.0, // 点横坐标,小数部分
  35. fy: 0.0, // 点纵坐标,小数部分
  36. ab_x: 0.0, // 点横坐标,整数+小数部分
  37. ab_y: 0.0, // 点纵坐标,整数+小数部分
  38. dotType: "",
  39. force: 0, // 点的压力值
  40. angle: 0, // 点的角度值
  41. color: 0, // 笔的颜色值
  42. };
  43. // 存储最有一个倒数第二个move点
  44. var gpreMoveDot = {
  45. counter: 0, // 点计数
  46. sectionID: 0, // 区域ID
  47. ownerID: 0, // 客户ID
  48. bookID: 0, // 书号
  49. pageID: 0, // 页号
  50. timeLong: '2010-01-01 00:00:00,000', // 当前点的RTC 时间,返回时间戳 ms(起止时间是2018-01-01 00:00:00,000)
  51. x: 0, // 点横坐标,整数部分
  52. y: 0, // 点纵坐标,整数部分
  53. fx: 0.0, // 点横坐标,小数部分
  54. fy: 0.0, // 点纵坐标,小数部分
  55. ab_x: 0.0, // 点横坐标,整数+小数部分
  56. ab_y: 0.0, // 点纵坐标,整数+小数部分
  57. dotType: "",
  58. force: 0, // 点的压力值
  59. angle: 0, // 点的角度值
  60. color: 0, // 笔的颜色值
  61. };
  62. // split data
  63. var gAbsX, gAbsY, gAbsfx, gAbsfy;
  64. var gPreCX, gPreCY, gPreCfx, gPreCfy;
  65. var gx1, gx2, gx3;
  66. var gy1, gy2, gy3;
  67. var gAbsXM, gAbsYM;
  68. var gbPenUpGot = false;
  69. var gPenUpPtNo = 0;
  70. var g_CompressData = new Array(62);
  71. var gxSID, gxOID, gxBID, gxPID;
  72. var gySID, gyOID, gyBID, gyPID;
  73. var gAbsXT, gAbsYT;
  74. var gSID, gOID, gBID, gPID;
  75. var gbFirstMove = false;
  76. var gbLastMove = false;
  77. var gbAddUpPt = false;
  78. var gLastMoveX;
  79. var gLastMoveY;
  80. var gLastMoveDist;
  81. var gMUpX, gMUpY;
  82. var gUpCnt = 0;
  83. var gbPrePtExist = false;
  84. var gbPreAngleExist = false;
  85. var gColorIndex;
  86. var gMPrevCounter, gMCurCounter;
  87. var bOID4 = false; // true-OID4;false-OID3;
  88. var gXYDataFormat = 1; // 0-free format;1-for A4
  89. var systemTime = 0;
  90. var lastUpTime = 0;
  91. var gbFirst3DotsChecked = false;
  92. var gbUpInvalid = false;
  93. var offlineDataTimeOffset = 0; //离线数据偏移校正变量
  94. /*************** 过滤飞笔 ******************/
  95. // 2018-10-19 kimswang
  96. var gSPtCnt;
  97. var gSPtX = new Array(4);
  98. var gSPtY = new Array(4);
  99. var gAngleDiff = new Array(2);
  100. var gbPt3Remain = false;
  101. var gPt3X, gPt3Y, gPt3fx, gPt3fy, gPt3Force, gPt3Angle;
  102. var gPt3Counter;
  103. var gPt3TimeLong;
  104. var gThresholdAngle = 30;
  105. var mPenType = bleConstants.BleConstants.PEN_T111;
  106. //var gbPt1Fly = false;
  107. //var gbPt2Fly = false;
  108. var gThresholdTimes = 6;
  109. var gThresholdDist = 10;
  110. var gPtPos = 0;
  111. var gPreStatus;
  112. var gbReceiveThreadStart = false;
  113. var gCount = 0;
  114. var pointZ;
  115. var gAngleOffsetX;
  116. var gAngleOffsetY;
  117. var gPreForce, gCurForce, gPreOfflineForce;
  118. var gbUpGot = false;
  119. var gbDownGot = false;
  120. //var lastDistence = 1; // 上一个距离
  121. //var distence = 1; // 当前距离
  122. // 2018-10-19 kimswang
  123. // common variable
  124. const DOT_LEN = 40960;
  125. var gDotBuffer = new Array(DOT_LEN); // dot buffer save point
  126. for (let d = 0; d < gDotBuffer.length; d++) {
  127. gDotBuffer[d] = new Array();
  128. }
  129. var gSplitBuffer = new Array(2048); // 解压缩点的buffer
  130. for (let s = 0; s < gSplitBuffer.length; s++) {
  131. gSplitBuffer[s] = new Array();
  132. }
  133. var mendUpArray = new Array(); // 如果没有产生up点,自行补一个up点上去
  134. var goxa, goxb, goya, goyb;
  135. var gCurAngle = 0; // 当前笔的角度值
  136. var gPAngle = 0;
  137. var gInitAngle;
  138. //var gbNormal = false;
  139. // 创建一个存储三个点的二维数组
  140. var gMCounter, gUCounter;
  141. var gMCounterDiff;
  142. var gFirstPtTotalCount = 0;
  143. var gSplitIndex = 0;
  144. var gSProcessIndex = -1;
  145. var gReceiveIndex = 0;
  146. //var gFirstPtIndex = 0;
  147. var gFirstPtCount = 0;
  148. var gProcessIndex = -1;
  149. var gbSplitThreadStart = false;
  150. // 角度修正
  151. var g2ndAngle;
  152. var firstDot = false;
  153. var gCurPageID = -1;
  154. var gCurBookID = -1;
  155. var dotAngleList = [
  156. []
  157. ];
  158. var gLongFlyState = 0;
  159. //20181004
  160. var gCounter;
  161. var gForce;
  162. var gAngle;
  163. var gFirstDots = new Array();
  164. function Mydot() {
  165. this.counter = 0; // 点计数
  166. this.sectionID = 0; // 区域ID
  167. this.ownerID = 0; // 客户ID
  168. this.bookID = 0; // 书号
  169. this.pageID = 0; // 页号
  170. this.timeLong = 0; // 当前点的RTC 时间,返回时间戳 ms(起止时间是2018-01-01 00:00:00,000)
  171. this.x = 0; // 点横坐标,整数部分
  172. this.y = 0; // 点纵坐标,整数部分
  173. this.fx = 0.0; // 点横坐标,小数部分
  174. this.fy = 0.0; // 点纵坐标,小数部分
  175. this.ab_x = 0.0; // 点横坐标,整数+小数部分
  176. this.ab_y = 0.0; // 点纵坐标,整数+小数部分
  177. this.dotType = 0;
  178. this.force = 0; // 点的压力值
  179. this.angle = 0; // 点的角度值
  180. this.color = 0; // 笔的颜色值
  181. };
  182. for (var i = 0; i < 4; i++) {
  183. gFirstDots[i] = new Mydot();
  184. gFirstDots[i].counter = i;
  185. gFirstDots[i].sectionID = i;
  186. }
  187. var pointX123 = new Array(5);
  188. var pointY123 = new Array(5);
  189. var gbFirstDotsFly = new Array(5);
  190. var gFirstDotsCnt = 0;
  191. var gFirstDotsCheckState = 0;
  192. var gbFirstDotsUp = false;
  193. //20181025
  194. var gbTurnBackPt = false;
  195. var gTurnBackX, gTurnBackY;
  196. //20181012
  197. var gbStartSecondDataFilter = false;
  198. var g2x1, g2x2, g2x3;
  199. var g2y1, g2y2, g2y3;
  200. var g2SPtCnt;
  201. var g2SPtX = new Array(5);
  202. var g2SPtY = new Array(5);
  203. var g2AngleDiff = new Array(5);
  204. var gb2Pt3Remain = false;
  205. var g2Pt3X, g2Pt3Y, g2Pt3fx, g2Pt3fy, g2Pt3Force, g2Pt3Angle;
  206. var g2Pt3Counter;
  207. var g2Pt3TimeLong;
  208. var g2ThresholdAngle = 30;
  209. var g2ThresholdTimes = 6;
  210. var g2ThresholdDist = 10;
  211. var g2PtPos = 0;
  212. var g2bUpGot = false;
  213. var gb2DownGot = false;
  214. var g2LongFlyState = 0;
  215. var g2LongFlyState1 = 0;
  216. var g2MCounter, g2UCounter;
  217. var g2MPrevCounter, g2MCurCounter;
  218. var g2MCounterDiff;
  219. var gb2Debug = false;
  220. var gb2Debug1 = false;
  221. var gbLastMove = false;
  222. var isNeedFiveCheck = false;
  223. // controller lang line no break
  224. var lastDownX = 0;
  225. var lastDownY = 0;
  226. var firstLine = true;
  227. //20181101
  228. var gThresholdUpAngle = 65;
  229. var gFlyDist = 8.0;
  230. //20190717
  231. var gPreAbsX, gPreAbsY;
  232. var gbAbsXYSet = false;
  233. // function hexConvertDecimal(hexArray) {
  234. // let decimalVal = parseInt(hexArray, 16);
  235. // return decimalVal;
  236. // }
  237. function changeOffset(offineset) {
  238. offlineDataTimeOffset = offineset;
  239. }
  240. /**
  241. * Auther: kims wang
  242. * Describe: 解压缩蓝牙发送过来的数据
  243. * Date: 2018-10-20
  244. */
  245. function splitData(lpData, bIsOnline = true) {
  246. if (lpData.length != 10) {
  247. return;
  248. }
  249. var bValidate = false;
  250. var angle = 0;
  251. var force = 0;
  252. var counter = 0;
  253. var angleDiff = 0;
  254. var status = "";
  255. var dist1, dist2, dist3;
  256. var dtimes = 0,
  257. time = 0;
  258. // switch (utils.hexConvertDecimal(lpData[0]) & utils.hexConvertDecimal('ff'))
  259. switch (lpData[0] & 0xff) {
  260. case 254: {
  261. switch (lpData[1] & 0x0f) {
  262. case 1: //down第一点
  263. bValidate = true;
  264. //color = utils.hexConvertDecimal(lpData[1]) >> 4;
  265. //Log.i(TAG, "lpData[1]=" + lpData[1] + ",color=" + color);
  266. gSPtX = new Array(4);
  267. gSPtY = new Array(4);
  268. for (let i = 0; i < 4; i++) {
  269. gSPtX[i] = 0;
  270. gSPtY[i] = 0;
  271. }
  272. gAngleDiff = new Array(2);
  273. for (let i = 0; i < 2; i++) {
  274. gAngleDiff[i] = 0;
  275. }
  276. gbPt3Remain = false;
  277. if ((lpData[2] & 0xF0) == 0x60) //OID3 valid position code
  278. {
  279. bOID4 = false;
  280. gAbsX = (int)(((lpData[4] & 0x3F) << 8) + (lpData[5] & 0xFF));
  281. gAbsfx = (int)(((lpData[6] & 0xFE) >> 1));
  282. gAbsY = (int)(((lpData[8] & 0xFF) << 6) + ((lpData[9] & 0xFC) >> 2)); //Edit
  283. gAbsfy = (int)((lpData[9] & 0x03) << 5);
  284. gAbsXM = gAbsX;
  285. gAbsYM = gAbsY;
  286. bValidate = false;
  287. } else if ((lpData[2] & 0xF0) == 0x40) //OID3 valid element code
  288. {
  289. bOID4 = false;
  290. } else if ((lpData[2] & 0xf0) == 0x80) //OID4 valid element code
  291. {
  292. bOID4 = true;
  293. } else if ((lpData[2] & 0xf0) == 0xa0) //OID4 valid position code
  294. {
  295. bOID4 = true;
  296. gAbsXT = (((lpData[3] & 0x7f) << 16) + ((lpData[4] & 0xff) << 8) + (lpData[5] & 0xff));
  297. gAbsYT = (((lpData[6] & 0x01) << 22) + ((lpData[7] & 0xFF) << 14) + ((lpData[8] & 0xFF) << 6) + ((lpData[9] & 0xFC) >> 2)); // Edit
  298. gxSID = (lpData[3] & 0x40) >> 6;
  299. gySID = (lpData[6] & 0x01);
  300. gxOID = ((lpData[3] & 0x3C) >> 2);
  301. gyOID = ((lpData[7] & 0xF0) >> 4);
  302. gOID = gyOID * 16 + gxOID;
  303. gSID = gySID * 2 + gxSID;
  304. switch (gSID) {
  305. case 0:
  306. case 1:
  307. //20180906
  308. case 2:
  309. if (gSID == 1 && gOID >= 200) // for WhiteBoard
  310. {
  311. gxBID = (((lpData[3] & 0x03) << 1) + ((lpData[4] & 0x80) >> 7));
  312. gyBID = ((lpData[7] & 0x0E) >> 1);
  313. gxPID = ((lpData[4] & 0x78) >> 3);
  314. gyPID = (((lpData[7] & 0x01) << 3) + ((lpData[8] & 0xE0) >> 5));
  315. gBID = gyBID * 8 + gxBID;
  316. gPID = gyPID * 16 + gxPID;
  317. gAbsX = (((lpData[4] & 0x07) << 8) + (lpData[5] & 0xFF));
  318. gAbsY = (((lpData[8] & 0x1F) << 6) + ((lpData[9] & 0xFC) >> 2)); //Edit
  319. } else {
  320. gxBID = (((lpData[3] & 0x03) << 3) + ((lpData[4] & 0xE0) >> 5));
  321. gyBID = (((lpData[7] & 0x0F) << 1) + ((lpData[8] & 0x80) >> 7));
  322. gxPID = ((lpData[4] & 0x1E) >> 1);
  323. gyPID = ((lpData[8] & 0x78) >> 3);
  324. gBID = gyBID * 32 + gxBID;
  325. gPID = gyPID * 16 + gxPID;
  326. gAbsX = (((lpData[4] & 0x01) << 8) + (lpData[5] & 0xFF));
  327. gAbsY = (((lpData[8] & 0x07) << 6) + ((lpData[9] & 0xFC) >> 2)); //Edit
  328. }
  329. break;
  330. // case 2:
  331. // gxBID =((lpData[3] & 0x03) << 3) + ((lpData[4] & 0xE0) >> 5);
  332. // gyBID = ((lpData[7] & 0x0F) << 1) + ((lpData[8] & 0x80) >> 7);
  333. // gxPID = ((lpData[4] & 0x1E) >> 1);
  334. // gyPID = ((lpData[8] & 0x78) >> 3);
  335. // gBID = gyBID * 32 + gxBID;
  336. // gPID = gyPID * 16 + gxPID;
  337. // gAbsX = ((lpData[4] & 0x01) << 8) + (lpData[5] & 0xFF);
  338. // gAbsY = ((lpData[8] & 0x07) << 6) + ((lpData[9] & 0xFC) >> 2); //Edit
  339. // break;
  340. /* case 2: 20170906 修改section 2 和section 1 一样的形式进行分割数据
  341. gxBID = ((utils.hexConvertDecimal(lpData[3]) << 1) + (utils.hexConvertDecimal(lpData[4]) >> 7));
  342. gyBID = (utils.hexConvertDecimal(lpData[7]) >> 1);
  343. gxPID = (utils.hexConvertDecimal(lpData[4]) >> 3);
  344. gyPID = ((utils.hexConvertDecimal(lpData[7]) << 3) + (utils.hexConvertDecimal(lpData[8]) >> 5));
  345. gBID = gyBID * 8 + gxBID;
  346. gPID = gyPID * 16 + gxPID;
  347. gAbsX = ((utils.hexConvertDecimal(lpData[4]) << 8) + utils.hexConvertDecimal(lpData[5]));
  348. gAbsY = ((utils.hexConvertDecimal(lpData[8]) << 6) + (utils.hexConvertDecimal(lpData[9]) >> 2)); //Edit
  349. break;*/
  350. case 3:
  351. gxBID = (lpData[3] & 0x03);
  352. gyBID = ((lpData[7] & 0x0C) >> 2);
  353. gxPID = ((lpData[4] & 0xF0) >> 4);
  354. gyPID = ((lpData[7] & 0x03) << 2) + ((lpData[8] & 0xC0) >> 6);
  355. gBID = gyBID * 4 + gxBID;
  356. gPID = gyPID * 16 + gxPID;
  357. gAbsX = ((lpData[4] & 0x0F) << 8) + (lpData[5] & 0xFF);
  358. gAbsY = ((lpData[8] & 0x3F) << 6) + ((lpData[9] & 0xFC) >> 2); //Edit
  359. break;
  360. default:
  361. break;
  362. }
  363. gAbsfx = ((lpData[6] & 0xFE) >> 1);
  364. gAbsfy = ((lpData[9] & 0x03) << 5);
  365. gAbsXM = gAbsX;
  366. gAbsYM = gAbsY;
  367. bValidate = false;
  368. //20190717
  369. gbAbsXYSet = false;
  370. }
  371. break;
  372. case 2: //down第二点
  373. bValidate = true;
  374. gAbsfy = (gAbsfy + ((lpData[2] & 0xF8) >> 3)); //Edit
  375. angle = ((lpData[2] & 0x07) << 6) + ((lpData[3] & 0xFC) >> 2); //Edit
  376. force = ((lpData[3] & 0x03) << 8) + (lpData[4] & 0xFF);
  377. counter = lpData[5];
  378. status = "Pen Down";
  379. // = "Pen Down";
  380. gbPenUpGot = false;
  381. gPenUpPtNo = 0;
  382. gbUpInvalid = false;
  383. /***********************数据时间修改***********************/
  384. if (bIsOnline) {
  385. // systemTime = utils.Dot.timeLong;
  386. // console.log(utils.Dot.timeLong)
  387. // let nowDate = (new Date()).valueOf();
  388. // let strFormat = '2010-01-01 00:00:00:000';
  389. // let startDate = new Date(strFormat).valueOf();
  390. // systemTime = nowDate - startDate;
  391. let nowDate = Date.now();
  392. // 起始时间 2010-01-01
  393. let startDate = 1262304000000;
  394. systemTime = nowDate - startDate;
  395. // systemTime = ((lpData[6] & 0xff) + ((lpData[7] << 8) & 0xff00) + ((lpData[8] << 16) & 0xff0000) + ((lpData[9] << 24) & 0xff000000));
  396. // systemTime = systemTime * 1000;
  397. // if (systemTime <= lastUpTime && (lastUpTime - systemTime < 1000)) {
  398. // systemTime = lastUpTime + 8;
  399. // }
  400. } else {
  401. systemTime = ((lpData[6] & 0xff) + ((lpData[7] << 8) & 0xff00) + ((lpData[8] << 16) & 0xff0000) + ((lpData[9] << 24) & 0xff000000));
  402. systemTime += offlineDataTimeOffset; //离线数据偏移校正变量 ;
  403. // console.log("离线数据偏移校正变量" + offlineDataTimeOffset);
  404. systemTime = systemTime * 1000;
  405. if (systemTime <= lastUpTime && (lastUpTime - systemTime < 1000)) {
  406. systemTime = lastUpTime + 8;
  407. }
  408. }
  409. break;
  410. default:
  411. break;
  412. }
  413. }
  414. break;
  415. case 252: { //move点
  416. bValidate = true;
  417. time = (lpData[1] & 0xff);
  418. systemTime += time;
  419. if (!bIsOnline) {
  420. lastUpTime = systemTime;
  421. }
  422. lastUpTime = systemTime;
  423. if ((lpData[2] & 0xF0) == 0x60) //OID3 valid position code
  424. {
  425. bOID4 = false;
  426. if ((lpData[2] & 0x04) == 4) {
  427. gAbsXM = (gAbsX + ((lpData[2] & 0x03) << 6) + ((lpData[3] & 0xFC) >> 2));
  428. } else if ((lpData[2] & 0x04) == 0) {
  429. gAbsXM = (gAbsX - (((lpData[2] & 0x03) << 6) + ((lpData[3] & 0xFC) >> 2)));
  430. }
  431. gAbsfx = ((lpData[3] & 0x03) << 5) + ((lpData[4] & 0xF8) >> 3);
  432. if ((lpData[4] & 0x04) == 4) {
  433. gAbsYM = (gAbsY + ((lpData[4] & 0x03) << 6) + ((lpData[5] & 0xFC) >> 2));
  434. } else if ((lpData[4] & 0x04) == 0) {
  435. gAbsYM = (gAbsY - (((lpData[4] & 0x03) << 6) + ((lpData[5] & 0xFC) >> 2)));
  436. }
  437. gAbsfy = ((lpData[5] & 0x03) << 5) + ((lpData[6] & 0xF8) >> 3);
  438. angle = ((lpData[6] & 0x07) << 6) + ((lpData[7] & 0xFC) >> 2);
  439. force = ((lpData[7] & 0x03) << 8) + (lpData[8] & 0xFF);
  440. counter = lpData[9];
  441. if (force == 0) {
  442. if (gbPenUpGot == false) {
  443. gbPenUpGot = true;
  444. gPenUpPtNo = 3;
  445. } else {
  446. bValidate = false;
  447. break;
  448. }
  449. status = "Pen Up";
  450. } else {
  451. gPreCX = gAbsXM;
  452. gPreCY = gAbsYM;
  453. gPreCfx = gAbsfx;
  454. gPreCfy = gAbsfy;
  455. status = "Pen Move";
  456. }
  457. } else if ((lpData[2] & 0xF0) == 0x70) //OID3 invalid position code
  458. {
  459. bOID4 = false;
  460. counter = lpData[9];
  461. angle = ((lpData[6] & 0x07) << 6) + ((lpData[7] & 0xFC) >> 2);
  462. force = ((lpData[7] & 0x03) << 8) + (lpData[8] & 0xFF);
  463. if (force > 0) {
  464. bValidate = false;
  465. break;
  466. } else if (force == 0) {
  467. status = "Pen Up 000";
  468. if (!gbPenUpGot) {
  469. gbPenUpGot = true;
  470. gPenUpPtNo = 3;
  471. status = "Pen Up";
  472. bValidate = true;
  473. gMUpX = (2 * gx2) - gx1;
  474. gMUpY = (2 * gy2) - gy1;
  475. var XM = (gMUpX * 100);
  476. gAbsXM = XM / 100;
  477. gAbsfx = (XM % 100) * 128 / 100;
  478. var YM = (gMUpY * 100);
  479. gAbsYM = YM / 100;
  480. gAbsfy = (YM % 100) * 128 / 100;
  481. } else {
  482. bValidate = false;
  483. break;
  484. }
  485. }
  486. } else if ((lpData[2] & 0xF0) == 0x40) //OID3 valid element code
  487. {
  488. bOID4 = false;
  489. } else if ((lpData[2] & 0xF0) == 0xA0) //OID4 valid position code
  490. {
  491. bOID4 = true;
  492. if ((lpData[2] & 0x04) == 4) {
  493. gAbsXM = (gAbsX + ((lpData[2] & 0x03) << 6) + ((lpData[3] & 0xFC) >> 2));
  494. } else if ((lpData[2] & 0x04) == 0) {
  495. gAbsXM = (gAbsX - (((lpData[2] & 0x03) << 6) + ((lpData[3] & 0xFC) >> 2)));
  496. }
  497. gAbsfx = ((lpData[3] & 0x03) << 5) + ((lpData[4] & 0xF8) >> 3);
  498. if ((lpData[4] & 0x04) == 4) {
  499. gAbsYM = (gAbsY + ((lpData[4] & 0x03) << 6) + ((lpData[5] & 0xFC) >> 2));
  500. } else if ((lpData[4] & 0x04) == 0) {
  501. gAbsYM = (gAbsY - (((lpData[4] & 0x03) << 6) + ((lpData[5] & 0xFC) >> 2)));
  502. }
  503. if (gbAbsXYSet == false) {
  504. gPreAbsX = gAbsX;
  505. gPreAbsY = gAbsY;
  506. gbAbsXYSet = true;
  507. }
  508. gAbsfy = (((lpData[5] & 0x03) << 5) + ((lpData[6] & 0xF8) >> 3));
  509. angle = ((lpData[6] & 0x07) << 6) + ((lpData[7] & 0xFC) >> 2);
  510. force = (((lpData[7] & 0x03) << 8) + (lpData[8] & 0xFF));
  511. //console.log("pen is " + gAbsXM + ", " + ", " + gAbsYM + ',' + force)
  512. // if (gPreStatus == "Pen Up" && force > 0) {
  513. // bValidate = true;
  514. // gAbsfy = ((gAbsfy + ((lpData[2] & 0xF8) >> 3))); //Edit
  515. // angle = (((lpData[2] & 0x07) << 6) + ((lpData[3] & 0xFC) >> 2)); //Edit
  516. // force = (((lpData[3] & 0x03) << 8) + (lpData[4] & 0xFF));
  517. // counter = lpData[5];
  518. // status = "Pen Down";
  519. // gbPenUpGot = false;
  520. // gPenUpPtNo = 0;
  521. // gbPenUpGot = false;
  522. // console.log("No Pen Down !!!==" + status);
  523. // break;
  524. // }
  525. counter = lpData[9];
  526. if (gPreStatus == "Pen Up" && force > 0) {
  527. return;
  528. }
  529. if (force == 0) {
  530. if (gbPenUpGot == false) {
  531. gbPenUpGot = true;
  532. gPenUpPtNo = 3;
  533. } else {
  534. bValidate = false;
  535. break;
  536. }
  537. status = "Pen Up";
  538. } else {
  539. gPreCX = gAbsXM;
  540. gPreCY = gAbsYM;
  541. gPreCfx = gAbsfx;
  542. gPreCfy = gAbsfy;
  543. status = "Pen Move";
  544. }
  545. } else if ((lpData[2] & 0xF0) == 0xB0) { // OID4 invalid position code
  546. bOID4 = true;
  547. counter = lpData[9];
  548. angle = ((lpData[6] & 0x07) << 6) + ((lpData[7] & 0xFC) >> 2);
  549. force = ((lpData[7] & 0x03) << 8) + (lpData[8] & 0xFF);
  550. if (force > 0) {
  551. bValidate = false;
  552. break;
  553. } else if (force == 0) {
  554. status = "Pen Up 000";
  555. if (!gbPenUpGot && gPenUpPtNo == 2) {
  556. gbPenUpGot = true;
  557. gPenUpPtNo = 3;
  558. gbUpInvalid = true;
  559. status = "Pen Up";
  560. bValidate = true;
  561. /* gMUpX = (2 * gx2) - gx1;
  562. gMUpY = (2 * gy2) - gy1;*/
  563. gMUpX = gx2;
  564. gMUpY = gy2;
  565. let XM = (gMUpX * 100);
  566. gAbsXM = XM / 100;
  567. gAbsfx = (XM % 100) * 128 / 100;
  568. let YM = (gMUpY * 100);
  569. gAbsYM = YM / 100;
  570. gAbsfy = (YM % 100) * 128 / 100;
  571. } else {
  572. gPenUpPtNo++;
  573. bValidate = false;
  574. break;
  575. }
  576. }
  577. }
  578. }
  579. break;
  580. default:
  581. break;
  582. }
  583. if (bValidate) {
  584. //console.log("xxxx = " + systemTime + "lydata"+lpData);
  585. switch (status) {
  586. case "Pen Down":
  587. gPtPos = 0;
  588. gMPrevCounter = -1;
  589. gMCurCounter = counter;
  590. gMCounter = counter;
  591. gx2 = gAbsXM + gAbsfx / 128.0;
  592. gy2 = gAbsYM + gAbsfy / 128.0;
  593. gx1 = gx2;
  594. gy1 = gy2;
  595. if (firstLine) {
  596. lastDownX = gx1;
  597. lastDownY = gy1;
  598. firstLine = false;
  599. }
  600. //if (gbDownGot && !gbUpGot && Math.abs(lastDownX - gx1) < 127 && Math.abs(lastDownY - gy1) < 127) {
  601. //20190717
  602. if (gbDownGot && !gbUpGot && (Math.abs(gAbsX - gPreAbsX) < 127 && Math.abs(gAbsY - gPreAbsY) < 127)) {
  603. // Receive 2nd Down Pt before Up pt arrived
  604. // force = 0
  605. g_CompressData[11] = 0;
  606. g_CompressData[12] = 0;
  607. // Counter ++
  608. g_CompressData[0]++;
  609. if (g_CompressData[0] > 246)
  610. g_CompressData[0] = 0;
  611. processDots(g_CompressData, bIsOnline, bOID4);
  612. }
  613. //20181004
  614. gFirstDotsCnt = 0;
  615. gFirstDotsCheckState = 0;
  616. gbFirstDotsUp = false;
  617. for (var i = 0; i < 5; i++) {
  618. gbFirstDotsFly[i] = false;
  619. }
  620. gFirstDots[0].counter = counter;
  621. gFirstDots[0].x = gAbsXM;
  622. gFirstDots[0].fx = gAbsfx;
  623. gFirstDots[0].y = gAbsYM;
  624. gFirstDots[0].fy = gAbsfy;
  625. gFirstDots[0].force = force;
  626. gFirstDots[0].angle = angle;
  627. // console.log('downangle = '+angle)
  628. gFirstDots[0].timelong = systemTime;
  629. gFirstDotsCnt++;
  630. gbDownGot = true;
  631. gbUpGot = false;
  632. // gx2 = gAbsXM + (gAbsfx / 128.0);
  633. // gy2 = gAbsYM + (gAbsfy / 128.0);
  634. // gx1 = gx2;
  635. // gy1 = gy2;
  636. lastDownX = gx1;
  637. lastDownY = gy1;
  638. gSPtCnt = 1;
  639. gbPt3Remain = false;
  640. gSPtX[gSPtCnt - 1] = gx2;
  641. gSPtY[gSPtCnt - 1] = gy2;
  642. gPreStatus = "Pen Down";
  643. //2018.12.13
  644. isNeedFiveCheck = false;
  645. break;
  646. case "Pen Move":
  647. if (gbUpGot) {
  648. return;
  649. }
  650. gPtPos++;
  651. gMCounter = counter;
  652. // 20180929
  653. gMPrevCounter = gMCurCounter;
  654. gMCurCounter = counter;
  655. if (gMCurCounter > gMPrevCounter)
  656. gMCounterDiff = gMCurCounter - gMPrevCounter;
  657. else
  658. gMCounterDiff = 247 + gMCurCounter - gMPrevCounter;
  659. gx1 = gx2;
  660. gy1 = gy2;
  661. gx2 = gAbsXM + (gAbsfx / 128.0);
  662. gy2 = gAbsYM + (gAbsfy / 128.0);
  663. dist3 = Math.sqrt(((gx2 - gx1) * (gx2 - gx1)) + ((gy2 - gy1) * (gy2 - gy1)));
  664. if (dist3 == 0.0) dist3 = 0.000001;
  665. if (dist3 > 3.2) {
  666. gThresholdAngle = 60;
  667. } else if (dist3 > 1.6) {
  668. gThresholdAngle = 45;
  669. } else {
  670. //201809
  671. gThresholdAngle = 30;
  672. }
  673. //2018.12.13
  674. if (isNeedFiveCheck) {
  675. isNeedFiveCheck = false;
  676. var secX = gSPtX[1];
  677. var secY = gSPtY[1];
  678. var dist25 = Math.sqrt(((gx2 - secX) * (gx2 - secX)) + ((gy2 - secY) * (gy2 - secY)));
  679. if (dist3 > dist25) {
  680. gbFirstDotsFly[2] = true;
  681. gbFirstDotsFly[3] = true;
  682. gSPtCnt = 3;
  683. gx1 = gSPtX[0];
  684. gy1 = gSPtY[0];
  685. gx2 = gSPtX[1];
  686. gy2 = gSPtY[1];
  687. } else {
  688. gbFirstDotsFly[0] = true;
  689. gbFirstDotsFly[1] = true;
  690. gSPtX[0] = gSPtX[2];
  691. gSPtY[0] = gSPtY[2];
  692. gSPtX[1] = gSPtX[3];
  693. gSPtY[1] = gSPtY[3];
  694. gSPtCnt = 3;
  695. gx1 = gSPtX[0];
  696. gy1 = gSPtY[0];
  697. gx2 = gSPtX[1];
  698. gy2 = gSPtY[1];
  699. }
  700. }
  701. gSPtCnt++;
  702. gSPtX[gSPtCnt - 1] = gx2;
  703. gSPtY[gSPtCnt - 1] = gy2;
  704. //20181025
  705. if (gPtPos <= 3) {
  706. //var dotData = gFirstDots[i];
  707. gFirstDots[gPtPos].counter = counter;
  708. gFirstDots[gPtPos].x = gAbsXM;
  709. gFirstDots[gPtPos].fx = gAbsfx;
  710. gFirstDots[gPtPos].y = gAbsYM;
  711. gFirstDots[gPtPos].fy = gAbsfy;
  712. gFirstDots[gPtPos].force = force;
  713. gFirstDots[gPtPos].angle = angle;
  714. gFirstDots[gPtPos].timelong = systemTime;
  715. gFirstDotsCnt++;
  716. //if (gFirstDotsCnt == 3)
  717. if (gFirstDotsCnt == 4) {
  718. gbFirstDotsUp = false;
  719. gFirstDotsCheckState = 1;
  720. checkFirstPtValidate_SplitData_4P();
  721. gbFirstDotsFly[3] = true; // keep 4th pt to check later
  722. } else {
  723. return;
  724. }
  725. //2018.12.13
  726. if (isNeedFiveCheck) {
  727. return;
  728. }
  729. }
  730. if (gSPtCnt > 2 && gPtPos >= 3 && dist3 > 1.5 || gSPtCnt == 4) {
  731. if (gSPtCnt == 3) // 三点判断
  732. {
  733. //1,2,3 Angle Diff
  734. gAngleDiff[0] = utils.angleDifferent(utils.pointsAngle(gSPtX[0], gSPtY[0], gSPtX[1], gSPtY[1]), utils.pointsAngle(gSPtX[1], gSPtY[1], gSPtX[2], gSPtY[2]));
  735. dist1 = Math.sqrt(((gSPtX[1] - gSPtX[0]) * (gSPtX[1] - gSPtX[0])) + ((gSPtY[1] - gSPtY[0]) * (gSPtY[1] - gSPtY[0])));
  736. if (dist1 == 0.0) dist1 = 0.000001;
  737. dist2 = Math.sqrt(((gSPtX[2] - gSPtX[1]) * (gSPtX[2] - gSPtX[1])) + ((gSPtY[2] - gSPtY[1]) * (gSPtY[2] - gSPtY[1])));
  738. dist2 = dist2 / gMCounterDiff;
  739. if (dist2 == 0.0) dist2 = 0.000001;
  740. dtimes = dist2 / dist1;
  741. // gAngleDiff[0] >= 30 还会有飞笔, gAngleDiff[0] >= 20 暂时未发现飞笔
  742. if ((dtimes > 60 && dist1 > 0.000001 && gAngleDiff[0] >= 20) || (dtimes > 2000000 && dist1 >= 0.000001)) {
  743. // 20181108
  744. gx1 = gSPtX[0];
  745. gy1 = gSPtY[0];
  746. gx2 = gSPtX[1];
  747. gy2 = gSPtY[1];
  748. // 20181010
  749. gSPtX[0] = gSPtX[1];
  750. gSPtY[0] = gSPtY[1];
  751. gSPtX[1] = gSPtX[2];
  752. gSPtY[1] = gSPtY[2];
  753. // 20181108
  754. gSPtCnt = 2;
  755. // console.log("split: remove 1");
  756. return;
  757. }
  758. //20181025
  759. if ((dtimes > 15 && dist1 > 0.1 && gAngleDiff[0] >= 150) || (dtimes > 30 && dist1 > 0.05 && gAngleDiff[0] >= 150)) {
  760. //20181108
  761. gx1 = gSPtX[0];
  762. gy1 = gSPtY[0];
  763. gx2 = gSPtX[1];
  764. gy2 = gSPtY[1];
  765. // 20181010
  766. gSPtX[0] = gSPtX[1];
  767. gSPtY[0] = gSPtY[1];
  768. gSPtX[1] = gSPtX[2];
  769. gSPtY[1] = gSPtY[2];
  770. //20181108
  771. //gx2 = gSPtX[1];
  772. //gy2 = gSPtY[1];
  773. gSPtCnt = 2;
  774. return;
  775. }
  776. //20181101
  777. if ((dtimes > 20 && dist1 > 0.1) || (dtimes > 40 && dist1 > 0.05)) {
  778. //20181108
  779. gx1 = gSPtX[0];
  780. gy1 = gSPtY[0];
  781. gx2 = gSPtX[1];
  782. gy2 = gSPtY[1];
  783. // 20181010
  784. gSPtX[0] = gSPtX[1];
  785. gSPtY[0] = gSPtY[1];
  786. gSPtX[1] = gSPtX[2];
  787. gSPtY[1] = gSPtY[2];
  788. //20181108
  789. //gx2 = gSPtX[1];
  790. //gy2 = gSPtY[1];
  791. gSPtCnt = 2;
  792. return;
  793. }
  794. if (gAngleDiff[0] < gThresholdAngle) // 第一,二,三点的角度差,在范围内,第三点角度合理
  795. {
  796. if (dtimes < gThresholdTimes || dist2 < gThresholdDist) // 第三点距离合理,第三点不飞
  797. {
  798. //201809
  799. if (dtimes > (gThresholdTimes * 2) && dist1 > 0.1) // 第三点距离不合理,第三点飞
  800. {
  801. gSPtCnt = 2;
  802. // 20180929
  803. gSPtX[2] = 2 * gSPtX[1] - gSPtX[0];
  804. gSPtY[2] = 2 * gSPtY[1] - gSPtY[0];
  805. gSPtX[0] = gSPtX[1];
  806. gSPtY[0] = gSPtY[1];
  807. gSPtX[1] = gSPtX[2];
  808. gSPtY[1] = gSPtY[2];
  809. gx2 = gSPtX[1];
  810. gy2 = gSPtY[1];
  811. //console.log("split: remove 2");
  812. return;
  813. }
  814. //20181011
  815. //if ((dtimes <= gThresholdTimes && dist1 > 0.3 && dtimes > 1)||(dtimes > gThresholdTimes)) {
  816. //20181211
  817. //if (dtimes > gThresholdTimes) {
  818. //if((dtimes > gThresholdTimes && dist1 > 0.3)||(dtimes > 4 && dist1 > 0.5) || (dtimes > gThresholdTimes * 2)){
  819. if ((dtimes <= gThresholdTimes && dtimes >= 1 && dist1 > 0.3) || (dtimes > gThresholdTimes)) {
  820. gPt3Counter = counter;
  821. gPt3X = gAbsXM;
  822. gPt3fx = gAbsfx;
  823. gPt3Y = gAbsYM;
  824. gPt3fy = gAbsfy;
  825. gPt3Force = force;
  826. gPt3Angle = angle;
  827. gPt3TimeLong = systemTime;
  828. return;
  829. } else {
  830. //201809
  831. gSPtX[0] = gSPtX[1];
  832. gSPtY[0] = gSPtY[1];
  833. gSPtX[1] = gSPtX[2];
  834. gSPtY[1] = gSPtY[2];
  835. gSPtCnt = 2;
  836. }
  837. } else // 第三点飞
  838. {
  839. gSPtCnt = 2;
  840. // 20180929
  841. gSPtX[2] = 2 * gSPtX[1] - gSPtX[0];
  842. gSPtY[2] = 2 * gSPtY[1] - gSPtY[0];
  843. gSPtX[0] = gSPtX[1];
  844. gSPtY[0] = gSPtY[1];
  845. gSPtX[1] = gSPtX[2];
  846. gSPtY[1] = gSPtY[2];
  847. gx2 = gSPtX[1];
  848. gy2 = gSPtY[1];
  849. //console.log("split: remove 3");
  850. return;
  851. }
  852. } else // 第三点的角度不合理
  853. {
  854. //20181011
  855. dtimes *= gMCounterDiff;
  856. if (dtimes < gThresholdTimes || dist2 < gThresholdDist) // 第三点距离合理,暂存第三点
  857. {
  858. // Pt3 seems a fly point
  859. gPt3Counter = counter;
  860. gPt3X = gAbsXM;
  861. gPt3fx = gAbsfx;
  862. gPt3Y = gAbsYM;
  863. gPt3fy = gAbsfy;
  864. gPt3Force = force;
  865. gPt3Angle = angle;
  866. gPt3TimeLong = systemTime;
  867. //console.log("split: remove 4");
  868. return;
  869. } else // 第三点距离不合理,第三点飞
  870. {
  871. gSPtCnt = 2;
  872. // 20180929
  873. gSPtX[2] = 2 * gSPtX[1] - gSPtX[0];
  874. gSPtY[2] = 2 * gSPtY[1] - gSPtY[0];
  875. gSPtX[0] = gSPtX[1];
  876. gSPtY[0] = gSPtY[1];
  877. gSPtX[1] = gSPtX[2];
  878. gSPtY[1] = gSPtY[2];
  879. gx2 = gSPtX[1];
  880. gy2 = gSPtY[1];
  881. //console.log("split: remove 5");
  882. return;
  883. }
  884. }
  885. } else if (gSPtCnt == 4) // 四点判断
  886. {
  887. // 1,2,4 Angle Diff
  888. gAngleDiff[1] = utils.angleDifferent(utils.pointsAngle(gSPtX[1], gSPtY[1], gSPtX[2], gSPtY[2]), utils.pointsAngle(gSPtX[2], gSPtY[2], gSPtX[3], gSPtY[3]));
  889. // 第三点与第二点的距离
  890. dist1 = Math.sqrt(((gSPtX[2] - gSPtX[1]) * (gSPtX[2] - gSPtX[1])) + ((gSPtY[2] - gSPtY[1]) * (gSPtY[2] - gSPtY[1])));
  891. if (dist1 == 0.0) dist1 = 0.000001;
  892. // 第四点与第三点的距离
  893. dist2 = Math.sqrt(((gSPtX[3] - gSPtX[2]) * (gSPtX[3] - gSPtX[2])) + ((gSPtY[3] - gSPtY[2]) * (gSPtY[3] - gSPtY[2])));
  894. dist2 = dist2 / gMCounterDiff;
  895. if (dist2 == 0.0) dist2 = 0.000001;
  896. dtimes = dist2 / dist1;
  897. // 第三点保留,第四点都飞
  898. if ((dtimes > 60 && dist1 > 0.000001 && gAngleDiff[1] >= 20) || (dtimes > 2000000 && dist1 >= 0.000001) || (dtimes > 12 && dist1 >= 0.1 && gAngleDiff[1] >= 60)) {
  899. gSPtCnt = 3;
  900. gLongFlyState = 1;
  901. //console.log("split: remove 66");
  902. return;
  903. }
  904. gLongFlyState = 0;
  905. // 20181025
  906. if ((dtimes > 15 && dist1 > 0.1 && gAngleDiff[1] >= 150) || (dtimes > 30 && dist1 > 0.05 && gAngleDiff[1] >= 150)) {
  907. gSPtCnt = 3;
  908. return;
  909. }
  910. //20181101
  911. if ((dtimes > 20 && dist1 > 0.1) || (dtimes > 40 && dist1 > 0.05)) {
  912. gSPtCnt = 3;
  913. return;
  914. }
  915. if (gAngleDiff[1] >= gThresholdAngle) {
  916. //20181011
  917. dtimes *= gMCounterDiff;
  918. if (dtimes < gThresholdTimes || dist2 < gThresholdDist) {
  919. // console.log("split: remove 77 dtimes=" + dtimes + ",dist2=" + dist2 + ",gAngleDiff[1]=" + gAngleDiff[1] + ",gThresholdAngle=" + gThresholdAngle);
  920. if (dtimes > (gThresholdTimes * 2) && dist1 > 0.1) {
  921. gSPtCnt = 3;
  922. return;
  923. }
  924. gbPt3Remain = false;
  925. gSPtX[2] = 2 * gSPtX[1] - gSPtX[0];
  926. gSPtY[2] = 2 * gSPtY[1] - gSPtY[0];
  927. gSPtX[0] = gSPtX[2];
  928. gSPtY[0] = gSPtY[2];
  929. gSPtX[1] = gSPtX[3];
  930. gSPtY[1] = gSPtY[3];
  931. gSPtCnt = 2;
  932. } else {
  933. gSPtCnt = 3;
  934. //console.log("split: remove 88");
  935. return;
  936. }
  937. } else {
  938. if (dtimes < gThresholdTimes || dist2 < gThresholdDist) {
  939. gSPtX[0] = gSPtX[2];
  940. gSPtY[0] = gSPtY[2];
  941. gSPtX[1] = gSPtX[3];
  942. gSPtY[1] = gSPtY[3];
  943. gbPt3Remain = true;
  944. gSPtCnt = 2;
  945. } else {
  946. gSPtCnt = 3;
  947. //console.log("split: remove 99");
  948. return;
  949. }
  950. }
  951. }
  952. } else {
  953. if (gSPtCnt == 3) {
  954. gSPtX[0] = gSPtX[1];
  955. gSPtY[0] = gSPtY[1];
  956. gSPtX[1] = gSPtX[2];
  957. gSPtY[1] = gSPtY[2];
  958. gSPtCnt = 2;
  959. }
  960. }
  961. break;
  962. case "Pen Up":
  963. gPtPos++;
  964. //console.log("gbDownGot = " + gbDownGot + "gbUpGot" + gbUpGot+"xxxxxx"+lpData);
  965. //20181007 only Pen Down & Pen Up 2 points
  966. if (gPtPos == 1) {
  967. gbUpGot = true;
  968. gFirstDotsCheckState = 1;
  969. gbFirstDotsFly[2] = true;
  970. gbFirstDotsFly[3] = true;
  971. break;
  972. }
  973. // console.log("pen up is " + gAbsXM + ", " + gAbsfx + ", " + gAbsYM + ", " + gAbsfy);
  974. if (gPtPos <= 3) {
  975. gbUpGot = true;
  976. gFirstDots[gPtPos].counter = counter;
  977. gFirstDots[gPtPos].x = gAbsXM;
  978. gFirstDots[gPtPos].fx = gAbsfx;
  979. gFirstDots[gPtPos].y = gAbsYM;
  980. gFirstDots[gPtPos].fy = gAbsfy;
  981. gFirstDots[gPtPos].force = force;
  982. gFirstDots[gPtPos].angle = angle;
  983. gFirstDots[gPtPos].timelong = systemTime;
  984. gFirstDotsCheckState = 1;
  985. gbFirstDotsUp = true;
  986. gFirstDotsCnt++;
  987. if (gFirstDotsCnt == 3)
  988. checkFirstPtValidate_SplitData();
  989. else if (gFirstDotsCnt == 4) {
  990. checkFirstPtValidate_SplitData_4P();
  991. }
  992. gbFirstDotsFly[3] = true;
  993. } else {
  994. gbUpGot = true;
  995. gUCounter = counter;
  996. gx3 = gAbsXM + (gAbsfx / 128.0);
  997. gy3 = gAbsYM + (gAbsfy / 128.0);
  998. dist3 = Math.sqrt(((gx3 - gx2) * (gx3 - gx2)) + ((gy3 - gy2) * (gy3 - gy2)));
  999. if (gSPtCnt == 3 && dist3 > 1.5) {
  1000. gSPtX[3] = gx3;
  1001. gSPtY[3] = gy3;
  1002. //1,2,4 Angle Diff
  1003. gAngleDiff[1] = utils.angleDifferent(utils.pointsAngle(gSPtX[1], gSPtY[1], gSPtX[2], gSPtY[2]), utils.pointsAngle(gSPtX[2], gSPtY[2], gSPtX[3], gSPtY[3]));
  1004. // console.log("Pen Up gAngleDiff[1] --gThresholdAngle: " + gAngleDiff[1] + "-----" + gThresholdAngle);
  1005. //if (gAngleDiff[1] < 10 && Math.Abs((decimal)(gAngleDiff[0]-gAngleDiff[1])) > 20)
  1006. if (gAngleDiff[1] >= gThresholdAngle) {
  1007. gx1 = gSPtX[0];
  1008. gy1 = gSPtY[0];
  1009. gx2 = gSPtX[1];
  1010. gy2 = gSPtY[1];
  1011. gbPt3Remain = false;
  1012. gSPtX[0] = gSPtX[1];
  1013. gSPtY[0] = gSPtY[1];
  1014. gSPtX[1] = gSPtX[3];
  1015. gSPtY[1] = gSPtY[3];
  1016. } else {
  1017. gSPtX[0] = gSPtX[2];
  1018. gSPtY[0] = gSPtY[2];
  1019. gSPtX[1] = gSPtX[3];
  1020. gSPtY[1] = gSPtY[3];
  1021. gbPt3Remain = true;
  1022. //gSPtCnt = 2;
  1023. }
  1024. }
  1025. if ((gSPtCnt >= 3 && gbPt3Remain == false) || (gLongFlyState == 1)) {
  1026. // 20181025
  1027. // gx2 = (gx1 + gx3) / 2;
  1028. // gy2 = (gy1 + gy3) / 2;
  1029. gLongFlyState = 0;
  1030. }
  1031. angleDiff = utils.angleDifferent(utils.pointsAngle(gx1, gy1, gx2, gy2), utils.pointsAngle(gx1, gy1, gx3, gy3));
  1032. dist1 = Math.sqrt(((gx2 - gx1) * (gx2 - gx1)) + ((gy2 - gy1) * (gy2 - gy1)));
  1033. if (dist1 == 0.0) dist1 = 0.000001;
  1034. dist2 = Math.sqrt(((gx3 - gx2) * (gx3 - gx2)) + ((gy3 - gy2) * (gy3 - gy2)));
  1035. if (dist2 == 0.0) dist2 = 0.000001;
  1036. dtimes = dist2 / dist1;
  1037. var CounterDiff;
  1038. if (gUCounter > gMCounter)
  1039. CounterDiff = gUCounter - gMCounter;
  1040. else
  1041. CounterDiff = 247 + gUCounter - gMCounter;
  1042. dtimes = dist2 / CounterDiff / dist1;
  1043. //20180929
  1044. /* if (dtimes > 15 && angleDiff < 30 && dist1 > 0.18)*/
  1045. if ((dtimes > 15 && angleDiff < 30 && dist1 > 0.1 && dist2 > 1.5) || (dtimes > 6 && angleDiff < gThresholdAngle && dist2 > 3)) // 20181005 add dtimes >6 and dist2 > 3 for Up Point
  1046. {
  1047. gMUpX = ((CounterDiff + 1) * gx2) - CounterDiff * gx1;
  1048. gMUpY = ((CounterDiff + 1) * gy2) - CounterDiff * gy1;
  1049. let XM = (gMUpX * 100);
  1050. gAbsXM = XM / 100;
  1051. gAbsfx = (XM % 100) * 128 / 100;
  1052. let YM = (gMUpY * 100);
  1053. gAbsYM = YM / 100;
  1054. gAbsfy = (YM % 100) * 128 / 100;
  1055. }
  1056. if (angleDiff >= gThresholdUpAngle && CounterDiff == 1 && dist2 > 1.5) {
  1057. gMUpX = gx2;
  1058. gMUpY = gy2;
  1059. let XM = (gMUpX * 100);
  1060. gAbsXM = XM / 100;
  1061. gAbsfx = (XM % 100) * 128 / 100;
  1062. let YM = (gMUpY * 100);
  1063. gAbsYM = YM / 100;
  1064. gAbsfy = (YM % 100) * 128 / 100;
  1065. }
  1066. }
  1067. break;
  1068. default:
  1069. break;
  1070. }
  1071. let MS;
  1072. let SS;
  1073. let SBID;
  1074. //20181004
  1075. if (gFirstDotsCheckState == 0) return;
  1076. else if (gFirstDotsCheckState == 1) {
  1077. for (i = 0; i < gFirstDotsCnt; i++) {
  1078. if (gbFirstDotsFly[i] == false) {
  1079. MS = (gFirstDots[i].timelong % 1000);
  1080. SS = gFirstDots[i].timelong / 1000;
  1081. SBID = gSID * 1024 + gBID;
  1082. g_CompressData[0] = gFirstDots[i].counter;
  1083. //g_CompressData[1] = gSID;
  1084. g_CompressData[1] = (SBID / 256);
  1085. g_CompressData[2] = gOID;
  1086. //g_CompressData[3] = gBID;
  1087. g_CompressData[3] = (SBID % 256);
  1088. g_CompressData[4] = gPID;
  1089. g_CompressData[5] = (gFirstDots[i].x % 256);
  1090. g_CompressData[6] = (gFirstDots[i].x / 256);
  1091. g_CompressData[7] = (gFirstDots[i].fx);
  1092. g_CompressData[8] = (gFirstDots[i].y % 256);
  1093. g_CompressData[9] = (gFirstDots[i].y / 256);
  1094. g_CompressData[10] = (gFirstDots[i].fy);
  1095. g_CompressData[11] = (gFirstDots[i].force % 256);
  1096. g_CompressData[12] = (gFirstDots[i].force / 256);
  1097. g_CompressData[13] = (SS % 256);
  1098. SS = SS / 256;
  1099. g_CompressData[14] = (SS % 256);
  1100. SS = SS / 256;
  1101. g_CompressData[15] = (SS % 256);
  1102. g_CompressData[16] = (SS / 256);
  1103. g_CompressData[17] = (MS % 256);
  1104. g_CompressData[18] = (MS / 256);
  1105. g_CompressData[19] = (gFirstDots[i].angle % 256);
  1106. g_CompressData[20] = (gFirstDots[i].angle / 256);
  1107. gPreStatus = status;
  1108. // console.log('gbFirstDotsFly ========= ' + gbFirstDotsFly[i] + 'gFirstDots[i].x = ' + gFirstDots[i].x + 'gFirstDots[i].fx =' + gFirstDots[i].fx + 'gFirstDots[i].counter' + gFirstDots[i].counter);
  1109. // console.log('++++++++' + parseInt(gFirstDots[i].angle / 256));
  1110. processDots(g_CompressData, bIsOnline, bOID4);
  1111. }
  1112. }
  1113. gFirstDotsCheckState = 2;
  1114. }
  1115. if (gbPt3Remain == true && bOID4) {
  1116. MS = (gPt3TimeLong % 1000);
  1117. SS = gPt3TimeLong / 1000;
  1118. SBID = gSID * 1024 + gBID;
  1119. g_CompressData[0] = gPt3Counter;
  1120. //g_CompressData[1] = gSID;
  1121. g_CompressData[1] = (SBID / 256);
  1122. g_CompressData[2] = gOID;
  1123. //g_CompressData[3] = gBID;
  1124. g_CompressData[3] = (SBID % 256);
  1125. g_CompressData[4] = gPID;
  1126. g_CompressData[5] = (gPt3X % 256);
  1127. g_CompressData[6] = (gPt3X / 256);
  1128. g_CompressData[7] = (gPt3fx);
  1129. g_CompressData[8] = (gPt3Y % 256);
  1130. g_CompressData[9] = (gPt3Y / 256);
  1131. g_CompressData[10] = (gPt3fy);
  1132. g_CompressData[11] = (gPt3Force % 256);
  1133. g_CompressData[12] = (gPt3Force / 256);
  1134. g_CompressData[13] = (SS % 256);
  1135. SS = SS / 256;
  1136. g_CompressData[14] = (SS % 256);
  1137. SS = SS / 256;
  1138. g_CompressData[15] = (SS % 256);
  1139. g_CompressData[16] = (SS / 256);
  1140. g_CompressData[17] = (MS % 256);
  1141. g_CompressData[18] = (MS / 256);
  1142. g_CompressData[19] = (gPt3Angle % 256);
  1143. g_CompressData[20] = (gPt3Angle / 256);
  1144. gPreStatus = "Pen Move";
  1145. processDots(g_CompressData, bIsOnline, bOID4);
  1146. //penOnlineStrokeDot(g_CompressData, bIsOnline, bOID4);
  1147. gbPt3Remain = false;
  1148. }
  1149. MS = (systemTime % 1000);
  1150. SS = systemTime / 1000;
  1151. if (bOID4) {
  1152. SBID = gSID * 1024 + gBID;
  1153. g_CompressData[0] = counter;
  1154. g_CompressData[1] = (SBID / 256);
  1155. g_CompressData[2] = gOID;
  1156. g_CompressData[3] = (SBID % 256);
  1157. g_CompressData[4] = gPID;
  1158. g_CompressData[5] = (gAbsXM % 256);
  1159. g_CompressData[6] = (gAbsXM / 256);
  1160. g_CompressData[7] = (gAbsfx);
  1161. g_CompressData[8] = (gAbsYM % 256);
  1162. g_CompressData[9] = (gAbsYM / 256);
  1163. g_CompressData[10] = gAbsfy;
  1164. g_CompressData[11] = (force % 256);
  1165. g_CompressData[12] = (force / 256);
  1166. g_CompressData[13] = (SS % 256);
  1167. SS = SS / 256;
  1168. g_CompressData[14] = (SS % 256);
  1169. SS = SS / 256;
  1170. g_CompressData[15] = (SS % 256);
  1171. g_CompressData[16] = (SS / 256);
  1172. g_CompressData[17] = (MS % 256);
  1173. g_CompressData[18] = (MS / 256);
  1174. g_CompressData[19] = (angle % 256);
  1175. g_CompressData[20] = (angle / 256);
  1176. }
  1177. gPreStatus = status;
  1178. processDots(g_CompressData, bIsOnline, bOID4);
  1179. } else {
  1180. return;
  1181. }
  1182. }
  1183. /**
  1184. * Auther: kims wang
  1185. * Describe: 四点过滤算法
  1186. * Date: 2018-10-20
  1187. */
  1188. function checkFirstPtValidate_SplitData_4P() {
  1189. var i, j;
  1190. //var tangle = new Array(4);
  1191. //var InitAngle;
  1192. //var adiff12, adiff23, adiff31, adiff34;
  1193. var dist1, dist2, dist3;
  1194. var dist12, dist13, dist14, dist23, dist24, dist34;
  1195. var d12Times, d23Times, d31Times;
  1196. var Angle123, Angle124, Angle134, Angle234;
  1197. //201809
  1198. var d32Times, d13Times;
  1199. var countDiff;
  1200. for (i = 0; i < 4; i++) {
  1201. // console.log('1111111111111111111');
  1202. pointX123[i] = (gFirstDots[i].x) + (gFirstDots[i].fx) / 128.0;
  1203. pointY123[i] = (gFirstDots[i].y) + (gFirstDots[i].fy) / 128.0;
  1204. // tangle[i] = gFirstDots[i].angle;
  1205. //console.log('i==='+ i + 'counter ===' + gFirstDots[i].counter + 'x = ' + gFirstDots[i].x +'fx = '+ gFirstDots[i].fx);
  1206. gbFirstDotsFly[i] = false;
  1207. }
  1208. //20181025 Resolve Special case
  1209. // adiff12 = utils.angleDifferent(tangle[0], tangle[1]);
  1210. // adiff23 = utils.angleDifferent(tangle[1], tangle[2]);
  1211. // adiff34 = utils.angleDifferent(tangle[2], tangle[3]);
  1212. // if (adiff12 <= adiff23) {
  1213. // if (adiff12 <= adiff34) {
  1214. // InitAngle = tangle[0];
  1215. // } else {
  1216. // InitAngle = tangle[3];
  1217. // }
  1218. // } else {
  1219. // if (adiff23 <= adiff34) {
  1220. // InitAngle = tangle[1];
  1221. // } else {
  1222. // InitAngle = tangle[3];
  1223. // }
  1224. // }
  1225. Angle123 = utils.angleDifferent(utils.pointsAngle(pointX123[0], pointY123[0], pointX123[1], pointY123[1]), utils.pointsAngle(pointX123[1], pointY123[1], pointX123[2], pointY123[2]));
  1226. Angle124 = utils.angleDifferent(utils.pointsAngle(pointX123[0], pointY123[0], pointX123[1], pointY123[1]), utils.pointsAngle(pointX123[1], pointY123[1], pointX123[3], pointY123[3]));
  1227. Angle134 = utils.angleDifferent(utils.pointsAngle(pointX123[0], pointY123[0], pointX123[2], pointY123[2]), utils.pointsAngle(pointX123[2], pointY123[2], pointX123[3], pointY123[3]));
  1228. Angle234 = utils.angleDifferent(utils.pointsAngle(pointX123[1], pointY123[1], pointX123[2], pointY123[2]), utils.pointsAngle(pointX123[2], pointY123[2], pointX123[3], pointY123[3]));
  1229. //20181027
  1230. dist12 = Math.sqrt(((pointX123[1] - pointX123[0]) * (pointX123[1] - pointX123[0])) + ((pointY123[1] - pointY123[0]) * (pointY123[1] - pointY123[0])));
  1231. if (dist12 == 0.0)
  1232. dist12 = 0.000001;
  1233. dist13 = Math.sqrt(((pointX123[2] - pointX123[0]) * (pointX123[2] - pointX123[0])) + ((pointY123[2] - pointY123[0]) * (pointY123[2] - pointY123[0])));
  1234. if (dist13 == 0.0)
  1235. dist13 = 0.000001;
  1236. dist14 = Math.sqrt(((pointX123[3] - pointX123[0]) * (pointX123[3] - pointX123[0])) + ((pointY123[3] - pointY123[0]) * (pointY123[3] - pointY123[0])));
  1237. if (dist14 == 0.0)
  1238. dist14 = 0.000001;
  1239. dist23 = Math.sqrt(((pointX123[2] - pointX123[1]) * (pointX123[2] - pointX123[1])) + ((pointY123[2] - pointY123[1]) * (pointY123[2] - pointY123[1])));
  1240. if (dist23 == 0.0)
  1241. dist23 = 0.000001;
  1242. dist24 = Math.sqrt(((pointX123[3] - pointX123[1]) * (pointX123[3] - pointX123[1])) + ((pointY123[3] - pointY123[1]) * (pointY123[3] - pointY123[1])));
  1243. if (dist24 == 0.0)
  1244. dist24 = 0.000001;
  1245. dist34 = Math.sqrt(((pointX123[3] - pointX123[2]) * (pointX123[3] - pointX123[2])) + ((pointY123[3] - pointY123[2]) * (pointY123[3] - pointY123[2])));
  1246. if (dist34 == 0.0)
  1247. dist34 = 0.000001;
  1248. // 20181025 p2, p3 fly case
  1249. if (Angle124 > 135 && Angle134 > 135 && (dist14 < dist12) && (dist14 < dist13) && (dist34 / dist23 >= 3.0) && (dist24 / dist23 >= 3.0)) {
  1250. gbFirstDotsFly[1] = true;
  1251. gbFirstDotsFly[2] = true;
  1252. gSPtX[1] = gSPtX[3];
  1253. gSPtY[1] = gSPtY[3];
  1254. gSPtCnt = 2;
  1255. //gFirstDots[0].angle = InitAngle;
  1256. gx1 = gSPtX[0];
  1257. gy1 = gSPtY[0];
  1258. gx2 = gSPtX[3];
  1259. gy2 = gSPtY[3];
  1260. return;
  1261. }
  1262. // 20181028 p1, p2 fly case
  1263. var dtimes1312, dtimes1412, dtimes2312, dtimes2412;
  1264. var dtimes1334, dtimes1434, dtimes2334, dtimes2434;
  1265. dtimes1312 = dist13 / dist12;
  1266. dtimes1412 = dist14 / dist12;
  1267. dtimes2312 = dist23 / dist12;
  1268. dtimes2412 = dist24 / dist12;
  1269. dtimes1334 = dist13 / dist34;
  1270. dtimes1434 = dist14 / dist34;
  1271. dtimes2334 = dist23 / dist34;
  1272. dtimes2434 = dist24 / dist34;
  1273. // 2018.12.13
  1274. if ((dtimes1312 > gFlyDist) && (dtimes1412 > gFlyDist) && (dtimes2312 > gFlyDist) && (dtimes2412 > gFlyDist) && (dtimes1334 > gFlyDist) && (dtimes1434 > gFlyDist) && (dtimes2334 > gFlyDist) && (dtimes2434 > gFlyDist) && (dist12 > 0.001) && (dist34 > 0.001)) {
  1275. if (dist23 > 3.0) //20181110
  1276. {
  1277. // gbFirstDotsFly[0] = true;
  1278. // gbFirstDotsFly[1] = true;
  1279. // gSPtX[0] = gSPtX[2];
  1280. // gSPtY[0] = gSPtY[2];
  1281. // gSPtX[1] = gSPtX[3];
  1282. // gSPtY[1] = gSPtY[3];
  1283. // gSPtCnt = 2;
  1284. // gFirstDots[2].angle = InitAngle;
  1285. // gx1 = gSPtX[0];
  1286. // gy1 = gSPtY[0];
  1287. // gx2 = gSPtX[1];
  1288. // gy2 = gSPtY[1];
  1289. isNeedFiveCheck = true;
  1290. return;
  1291. }
  1292. }
  1293. // 20181025 p1 fly case
  1294. if (Angle124 > 135 && Angle134 > 135 && (dist14 < dist12) && (dist14 < dist13) && (dist34 / dist23 < 3.0) && (dist24 / dist23 < 3.0) && (dist23 / dist13 < 3.0) && dist12 > 1.5) {
  1295. if ((pointX123[0] == pointX123[1] && pointX123[1] == pointX123[2]) || (pointY123[0] == pointY123[1] && pointY123[1] == pointY123[2]) || (pointX123[1] == pointX123[2] && pointY123[1] == pointY123[2]) || ((Angle123 < 20) || (Angle123 > 160))) {
  1296. gbFirstDotsFly[0] = true;
  1297. gSPtX[0] = gSPtX[1];
  1298. gSPtY[0] = gSPtY[1];
  1299. gSPtX[1] = gSPtX[2];
  1300. gSPtY[1] = gSPtY[2];
  1301. gSPtX[2] = gSPtX[3];
  1302. gSPtY[2] = gSPtY[3];
  1303. gSPtCnt = 3;
  1304. if (gbFirstDotsUp) {
  1305. gx1 = gSPtX[0];
  1306. gy1 = gSPtY[0];
  1307. gx2 = gSPtX[1];
  1308. gy2 = gSPtY[1];
  1309. gx3 = gSPtX[2];
  1310. gy3 = gSPtY[2];
  1311. } else {
  1312. gx1 = gSPtX[1];
  1313. gy1 = gSPtY[1];
  1314. gx2 = gSPtX[2];
  1315. gy2 = gSPtY[2];
  1316. }
  1317. //gbFirst3DotsChecked = true;
  1318. } else {
  1319. //20181017 y = ax + b
  1320. var a, b;
  1321. if (pointX123[1] == pointX123[2])
  1322. a = (pointY123[2] - pointY123[1]) / 0.000001;
  1323. else
  1324. a = (pointY123[2] - pointY123[1]) / (pointX123[2] - pointX123[1]);
  1325. b = pointY123[1] - (a * pointX123[1]);
  1326. var Rx, Ry;
  1327. Ry = (a * pointX123[0]) + b;
  1328. Rx = (pointY123[0] - b) / a;
  1329. if (Math.abs(pointX123[0] - Rx) > Math.abs(pointY123[0] - Ry)) // Y diecrtion fly away, use Ry to be the Y coordinate of first pt
  1330. {
  1331. var iy, fy;
  1332. //iy = (int)Math.round(Ry);
  1333. //fy = (int)Math.round((Ry - (float)iy) * (float)128.0);
  1334. iy = (Ry);
  1335. fy = ((Ry - iy) * 128.0);
  1336. gFirstDots[0].y = iy;
  1337. gFirstDots[0].fy = fy;
  1338. } else // X direction fly away, use Rx to be the X coordinate of first pt
  1339. {
  1340. var ix, fx;
  1341. //ix = (int)Math.round(Rx);
  1342. //fx = (int)Math.round((Rx - (float)ix) * (float)128.0);
  1343. ix = (Rx);
  1344. fx = ((Rx - ix) * 128.0);
  1345. gFirstDots[0].x = ix;
  1346. gFirstDots[0].fx = fx;
  1347. }
  1348. var pointXX = (gFirstDots[0].x) + (gFirstDots[0].fx) / 128.0;
  1349. var pointYY = (gFirstDots[0].y) + (gFirstDots[0].fy) / 128.0;
  1350. var dist12C = Math.sqrt(((pointX123[1] - pointXX) * (pointX123[1] - pointXX)) + ((pointY123[1] - pointYY) * (pointY123[1] - pointYY)));
  1351. if ((dist12C / dist23) > 3) {
  1352. gbFirstDotsFly[0] = true;
  1353. } else {}
  1354. }
  1355. gSPtCnt = 3;
  1356. if (gbFirstDotsUp) {
  1357. gx1 = gSPtX[1];
  1358. gy1 = gSPtY[1];
  1359. gx2 = gSPtX[2];
  1360. gy2 = gSPtY[2];
  1361. gx3 = gSPtX[3];
  1362. gy3 = gSPtY[3];
  1363. } else {
  1364. gx1 = gSPtX[2];
  1365. gy1 = gSPtY[2];
  1366. gx2 = gSPtX[3];
  1367. gy2 = gSPtY[3];
  1368. }
  1369. gSPtX[0] = gSPtX[1];
  1370. gSPtY[0] = gSPtY[1];
  1371. gSPtX[1] = gSPtX[2];
  1372. gSPtY[1] = gSPtY[2];
  1373. gSPtX[2] = gSPtX[3];
  1374. gSPtY[2] = gSPtY[3];
  1375. return;
  1376. }
  1377. //20181025
  1378. // adiff12 = utils.angleDifferent(tangle[0], tangle[1]);
  1379. // adiff23 = utils.angleDifferent(tangle[1], tangle[2]);
  1380. // adiff31 = utils.angleDifferent(tangle[2], tangle[0]);
  1381. g2ndAngle = utils.angleDifferent(utils.pointsAngle(pointX123[0], pointY123[0], pointX123[1], pointY123[1]), utils.pointsAngle(pointX123[1], pointY123[1], pointX123[2], pointY123[2]));
  1382. //20181017 added for getting counter difference of first pt & second pt
  1383. countDiff = (247 + gFirstDots[1].counter - gFirstDots[0].counter) % 247;
  1384. dist1 = Math.sqrt(((pointX123[1] - pointX123[0]) * (pointX123[1] - pointX123[0])) + ((pointY123[1] - pointY123[0]) * (pointY123[1] - pointY123[0])));
  1385. dist2 = Math.sqrt(((pointX123[2] - pointX123[1]) * (pointX123[2] - pointX123[1])) + ((pointY123[2] - pointY123[1]) * (pointY123[2] - pointY123[1])));
  1386. dist3 = Math.sqrt(((pointX123[2] - pointX123[0]) * (pointX123[2] - pointX123[0])) + ((pointY123[2] - pointY123[0]) * (pointY123[2] - pointY123[0])));
  1387. if (dist1 == 0.0)
  1388. dist1 = 0.000001;
  1389. if (dist2 == 0.0)
  1390. dist2 = 0.000001;
  1391. if (dist3 == 0.0)
  1392. dist3 = 0.000001;
  1393. //20181017 added
  1394. dist1 /= countDiff;
  1395. d12Times = dist1 / dist2;
  1396. d23Times = dist3 / dist2;
  1397. d31Times = dist1 / dist3;
  1398. //201809
  1399. d32Times = dist2 / dist3;
  1400. // 20181011
  1401. //20181108
  1402. var dtimes1234;
  1403. dtimes1234 = dist12 / dist34;
  1404. if ((d12Times > 3.0 && d23Times > 3.0 && g2ndAngle > 45 && dist2 > 0.08) || (d12Times > 15.0 && d23Times > 15.0 && dist2 > 0.08) || (d12Times > 10.0 && d23Times > 10.0 && dist2 > 0.6) || (d12Times > 3.0 && d23Times > 3.0 && dtimes1234 > 3.0)) {
  1405. if ((pointX123[0] == pointX123[1] && pointX123[1] == pointX123[2]) || (pointY123[0] == pointY123[1] && pointY123[1] == pointY123[2]) || (pointX123[1] == pointX123[2] && pointY123[1] == pointY123[2]) || ((g2ndAngle < 20) || (g2ndAngle > 160))) {
  1406. gbFirstDotsFly[0] = true;
  1407. if (gbFirstDotsUp) {
  1408. gx1 = gSPtX[1];
  1409. gy1 = gSPtY[1];
  1410. gx2 = gSPtX[2];
  1411. gy2 = gSPtY[2];
  1412. gx3 = gSPtX[3];
  1413. gy3 = gSPtY[3];
  1414. } else {
  1415. gx1 = gSPtX[2];
  1416. gy1 = gSPtY[2];
  1417. gx2 = gSPtX[3];
  1418. gy2 = gSPtY[3];
  1419. }
  1420. gSPtX[0] = gSPtX[1];
  1421. gSPtY[0] = gSPtY[1];
  1422. gSPtX[1] = gSPtX[2];
  1423. gSPtY[1] = gSPtY[2];
  1424. gSPtX[2] = gSPtX[3];
  1425. gSPtY[2] = gSPtY[3];
  1426. gSPtCnt = 3;
  1427. } else {
  1428. //20181017 y = ax + b
  1429. var a, b;
  1430. if (pointX123[1] == pointX123[2])
  1431. a = (pointY123[2] - pointY123[1]) / 0.000001;
  1432. else
  1433. a = (pointY123[2] - pointY123[1]) / (pointX123[2] - pointX123[1]);
  1434. b = pointY123[1] - (a * pointX123[1]);
  1435. var Rx, Ry;
  1436. Ry = (a * pointX123[0]) + b;
  1437. Rx = (pointY123[0] - b) / a;
  1438. if (Math.abs(pointX123[0] - Rx) > Math.abs(pointY123[0] - Ry)) // Y diecrtion fly away, use Ry to be the Y coordinate of first pt
  1439. {
  1440. var iy, fy;
  1441. //iy = (int)Math.round(Ry);
  1442. //fy = (int)Math.round((Ry - (float)iy) * (float)128.0);
  1443. iy = (Ry);
  1444. fy = ((Ry - iy) * 128.0);
  1445. gFirstDots[0].y = iy;
  1446. gFirstDots[0].fy = fy;
  1447. } else // X direction fly away, use Rx to be the X coordinate of first pt
  1448. {
  1449. var ix, fx;
  1450. //ix = (int)Math.round(Rx);
  1451. //fx = (int)Math.round((Rx - (float)ix) * (float)128.0);
  1452. ix = (Rx);
  1453. fx = ((Rx - ix) * 128.0);
  1454. gFirstDots[0].x = ix;
  1455. gFirstDots[0].fx = fx;
  1456. }
  1457. var pointXX = (gFirstDots[0].x) + (gFirstDots[0].fx) / 128.0;
  1458. var pointYY = (gFirstDots[0].y) + (gFirstDots[0].fy) / 128.0;
  1459. var dist12C = Math.sqrt(((pointX123[1] - pointXX) * (pointX123[1] - pointXX)) + ((pointY123[1] - pointYY) * (pointY123[1] - pointYY)));
  1460. if ((dist12C / dist23) > 3) {
  1461. gbFirstDotsFly[0] = true;
  1462. // gFirstDots[1].angle = InitAngle;
  1463. } else {
  1464. // gFirstDots[0].angle = InitAngle;
  1465. }
  1466. gbFirst3DotsChecked = true;
  1467. gSPtCnt = 3;
  1468. if (gbFirstDotsUp) {
  1469. gx1 = gSPtX[1];
  1470. gy1 = gSPtY[1];
  1471. gx2 = gSPtX[2];
  1472. gy2 = gSPtY[2];
  1473. gx3 = gSPtX[3];
  1474. gy3 = gSPtY[3];
  1475. } else {
  1476. gx1 = gSPtX[2];
  1477. gy1 = gSPtY[2];
  1478. gx2 = gSPtX[3];
  1479. gy2 = gSPtY[3];
  1480. }
  1481. gSPtX[0] = gSPtX[1];
  1482. gSPtY[0] = gSPtY[1];
  1483. gSPtX[1] = gSPtX[2];
  1484. gSPtY[1] = gSPtY[2];
  1485. gSPtX[2] = gSPtX[3];
  1486. gSPtY[2] = gSPtY[3];
  1487. return;
  1488. }
  1489. }
  1490. d12Times = dist2 / dist1;
  1491. d23Times = dist2 / dist3;
  1492. d31Times = dist1 / dist3;
  1493. //if (d23Times > 15.0 && d13Times > 15.0)
  1494. //if ((d23Times > 3.0 && d31Times > 3.0 && g2ndAngle > 45 && dist3 > 0.08) || (d23Times > 15.0 && d31Times > 15.0 && dist3 > 0.06)) {
  1495. //20181108
  1496. //if ((d23Times > 3.0 && d31Times > 3.0 && g2ndAngle > 45 && dist3 > 0.08) || (d23Times > 15.0 && d31Times > 15.0 && dist3 > 0.06) || (d23Times > 15.0 && d31Times > 15.0 && (Math.max(dist1,dist2) > 1.5))) {
  1497. //20181108
  1498. if ((d23Times > 3.0 && d31Times > 3.0 && g2ndAngle > 45 && dist3 > 0.08) || (d23Times > 15.0 && d31Times > 15.0 && dist3 > 0.06) || ((Math.max(d23Times, d31Times) * dist3) > 1.5 && d23Times > 15.0 && d31Times > 15.0)) {
  1499. gbFirstDotsFly[1] = true;
  1500. }
  1501. //
  1502. //201809
  1503. //if (gbFirstDotsFly[0] == false && gbFirstDotsFly[1] == false && gbFirstDotsFly[2] == false)
  1504. if (gbFirstDotsFly[0] == false && gbFirstDotsFly[1] == false) {
  1505. //20180926
  1506. d12Times = dist1 / dist2;
  1507. d32Times = dist3 / dist2;
  1508. d23Times = dist2 / dist3;
  1509. d13Times = dist1 / dist3;
  1510. g2ndAngle = utils.angleDifferent(utils.pointsAngle(pointX123[0], pointY123[0], pointX123[1], pointY123[1]), utils.pointsAngle(pointX123[1], pointY123[1], pointX123[2], pointY123[2]));
  1511. if (g2ndAngle > 135) {
  1512. if (d12Times > 3 && d23Times > 3 && dist2 > 0.08) {
  1513. gbFirstDotsFly[0] = true;
  1514. } else if (d23Times > 3 && d13Times > 3 && dist3 > 0.08) {
  1515. gbFirstDotsFly[1] = true;
  1516. }
  1517. }
  1518. }
  1519. //20181025
  1520. d23Times = dist23 / dist12;
  1521. d13Times = dist13 / dist12;
  1522. //if (((d23Times > 3.0 && d13Times > 3.0 && Angle123 > 45 && dist12 > 0.2) || (d23Times > 15.0 && d13Times > 15.0 && dist12 > 0.02))) {
  1523. //20181108
  1524. if (((d23Times > 3.0 && d13Times > 3.0 && Angle123 > 45 && dist23 > 1.5) || (d23Times > 15.0 && d13Times > 15.0 && dist23 > 1.5))) {
  1525. if (dtimes2334 > 0.66 && dtimes2334 < 1.5 && Angle234 < 20) {
  1526. } else {
  1527. gbFirstDotsFly[2] = true;
  1528. gSPtCnt = 3;
  1529. if (gbFirstDotsUp) {
  1530. gx1 = gSPtX[0];
  1531. gy1 = gSPtY[0];
  1532. gx2 = gSPtX[1];
  1533. gy2 = gSPtY[1];
  1534. gx3 = gSPtX[3];
  1535. gy3 = gSPtY[3];
  1536. } else {
  1537. gx1 = gSPtX[1];
  1538. gy1 = gSPtY[1];
  1539. gx2 = gSPtX[3];
  1540. gy2 = gSPtY[3];
  1541. }
  1542. gSPtX[2] = gSPtX[3];
  1543. gSPtY[2] = gSPtY[3];
  1544. }
  1545. }
  1546. //20181004
  1547. if (gbFirstDotsFly[0] == true) {
  1548. gSPtX[0] = gSPtX[1];
  1549. gSPtY[0] = gSPtY[1];
  1550. gSPtX[1] = gSPtX[2];
  1551. gSPtY[1] = gSPtY[2];
  1552. gSPtX[2] = gSPtX[3];
  1553. gSPtY[2] = gSPtY[3];
  1554. gSPtCnt = 3;
  1555. if (gbFirstDotsUp) {
  1556. gx1 = gSPtX[0];
  1557. gy1 = gSPtY[0];
  1558. gx2 = gSPtX[1];
  1559. gy2 = gSPtY[1];
  1560. gx3 = gSPtX[2];
  1561. gy3 = gSPtY[2];
  1562. } else {
  1563. gx1 = gSPtX[1];
  1564. gy1 = gSPtY[1];
  1565. gx2 = gSPtX[2];
  1566. gy2 = gSPtY[2];
  1567. }
  1568. }
  1569. if (gbFirstDotsFly[1] == true) {
  1570. gSPtX[1] = gSPtX[2];
  1571. gSPtY[1] = gSPtY[2];
  1572. gSPtX[2] = gSPtX[3];
  1573. gSPtY[2] = gSPtY[3];
  1574. if (gbFirstDotsUp) {
  1575. gx1 = gSPtX[0];
  1576. gy1 = gSPtY[0];
  1577. gx2 = gSPtX[1];
  1578. gy2 = gSPtY[1];
  1579. gx3 = gSPtX[2];
  1580. gy3 = gSPtY[2];
  1581. } else {
  1582. gx1 = gSPtX[1];
  1583. gy1 = gSPtY[1];
  1584. gx2 = gSPtX[2];
  1585. gy2 = gSPtY[2];
  1586. }
  1587. gSPtCnt = 3;
  1588. }
  1589. if (gbFirstDotsFly[2] == true) {
  1590. gSPtX[2] = gSPtX[3];
  1591. gSPtY[2] = gSPtY[3];
  1592. gSPtCnt = 3;
  1593. if (gbFirstDotsUp) {
  1594. gx1 = gSPtX[0];
  1595. gy1 = gSPtY[0];
  1596. gx2 = gSPtX[1];
  1597. gy2 = gSPtY[1];
  1598. gx3 = gSPtX[2];
  1599. gy3 = gSPtY[2];
  1600. } else {
  1601. gx1 = gSPtX[1];
  1602. gy1 = gSPtY[1];
  1603. gx2 = gSPtX[2];
  1604. gy2 = gSPtY[2];
  1605. }
  1606. }
  1607. //
  1608. // for (i = 0; i < 4; i++) {
  1609. // if (gbFirstDotsFly[i] == false) {
  1610. // gFirstDots[i].angle = InitAngle;
  1611. // break;
  1612. // }
  1613. // }
  1614. //20181025
  1615. if (gbFirstDotsFly[0] == false && gbFirstDotsFly[1] == false && gbFirstDotsFly[2] == false) {
  1616. gSPtCnt = 3;
  1617. gSPtX[0] = gSPtX[1];
  1618. gSPtY[0] = gSPtY[1];
  1619. gSPtX[1] = gSPtX[2];
  1620. gSPtY[1] = gSPtY[2];
  1621. gSPtX[2] = gSPtX[3];
  1622. gSPtY[2] = gSPtY[3];
  1623. if (gbFirstDotsUp) {
  1624. gx1 = gSPtX[0];
  1625. gy1 = gSPtY[0];
  1626. gx2 = gSPtX[1];
  1627. gy2 = gSPtY[1];
  1628. gx3 = gSPtX[2];
  1629. gy3 = gSPtY[2];
  1630. } else {
  1631. gx1 = gSPtX[1];
  1632. gy1 = gSPtY[1];
  1633. gx2 = gSPtX[2];
  1634. gy2 = gSPtY[2];
  1635. }
  1636. }
  1637. if (gbFirstDotsUp) {
  1638. var x1, y1, x2, y2, x3, y3;
  1639. var UCounter, MCounter;
  1640. var MUpX, MUpY;
  1641. x1 = pointX123[1];
  1642. y1 = pointY123[1];
  1643. x2 = pointX123[2];
  1644. y2 = pointY123[2];
  1645. x3 = pointX123[3];
  1646. y3 = pointY123[3];
  1647. UCounter = gFirstDots[3].counter;
  1648. MCounter = gFirstDots[2].counter;
  1649. if (gbFirstDotsFly[2] == true) {
  1650. x1 = pointX123[0];
  1651. y1 = pointY123[0];
  1652. x2 = pointX123[1];
  1653. y2 = pointY123[1];
  1654. x3 = pointX123[3];
  1655. y3 = pointY123[3];
  1656. MCounter = gFirstDots[1].counter;
  1657. } else if (gbFirstDotsFly[1] == true) {
  1658. x1 = pointX123[0];
  1659. y1 = pointY123[0];
  1660. x2 = pointX123[2];
  1661. y2 = pointY123[2];
  1662. x3 = pointX123[3];
  1663. y3 = pointY123[3];
  1664. MCounter = gFirstDots[2].counter;
  1665. }
  1666. var angleDiff = utils.angleDifferent(utils.pointsAngle(x1, y1, x2, y2), utils.pointsAngle(x1, y1, x3, y3));
  1667. //cb.onReceiveDotTest("AngleDifferent=" + angleDiff.ToString());
  1668. dist1 = Math.sqrt(((x2 - x1) * (x2 - x1)) + ((y2 - y1) * (y2 - y1)));
  1669. if (dist1 == 0.0) dist1 = 0.000001;
  1670. dist2 = Math.sqrt(((x3 - x2) * (x3 - x2)) + ((y3 - y2) * (y3 - y2)));
  1671. if (dist2 == 0.0) dist2 = 0.000001;
  1672. var dtimes = dist2 / dist1;
  1673. //
  1674. var CounterDiff;
  1675. if (UCounter > MCounter)
  1676. CounterDiff = UCounter - MCounter;
  1677. else
  1678. CounterDiff = 247 + UCounter - MCounter;
  1679. dtimes = dist2 / CounterDiff / dist1;
  1680. if ((dtimes > 15 && angleDiff < 30 && dist1 > 0.1) || (dtimes > 6 && angleDiff < 30 && dist2 > 3)) // 20181005 add dtimes >6 and dist2 > 3 for Up Point
  1681. {
  1682. MUpX = ((CounterDiff + 1) * x2) - CounterDiff * x1;
  1683. MUpY = ((CounterDiff + 1) * y2) - CounterDiff * y1;
  1684. var XM = (MUpX * 100);
  1685. gAbsXM = XM / 100;
  1686. gAbsfx = (XM % 100) * 128 / 100;
  1687. var YM = (MUpY * 100);
  1688. gAbsYM = YM / 100;
  1689. gAbsfy = (YM % 100) * 128 / 100;
  1690. }
  1691. //20181111
  1692. //if (angleDiff >= gThresholdUpAngle)
  1693. if (angleDiff >= gThresholdUpAngle && CounterDiff == 1) {
  1694. MUpX = x2;
  1695. MUpY = y2;
  1696. var XM = (MUpX * 100);
  1697. gAbsXM = XM / 100;
  1698. gAbsfx = (XM % 100) * 128 / 100;
  1699. var YM = (MUpY * 100);
  1700. gAbsYM = YM / 100;
  1701. gAbsfy = (YM % 100) * 128 / 100;
  1702. }
  1703. }
  1704. gbFirst3DotsChecked = true;
  1705. }
  1706. /**
  1707. * Auther: kims wang
  1708. * Describe: 标准数据校验,无异常则将正常数据输出
  1709. * Date: 2018-10-20
  1710. */
  1711. function checkFirstPtValidate_SplitData() {
  1712. //console.log("checkFirstPtValidate_SplitData -------");
  1713. //var txValue = new Array(30);
  1714. var i, j;
  1715. var tangle = new Array(3);
  1716. var InitAngle;
  1717. // var adiff12, adiff23, adiff31;
  1718. var dist1, dist2, dist3;
  1719. var d12Times, d23Times, d31Times;
  1720. //201809
  1721. var d21Times, d32Times, d13Times;
  1722. var countDiff;
  1723. //20181025 Not to check 4th Pt
  1724. gbFirstDotsFly[3] = true;
  1725. for (i = 0; i < 3; i++) {
  1726. pointX123[i] = (gFirstDots[i].x) + (gFirstDots[i].fx) / 128.0;
  1727. pointY123[i] = (gFirstDots[i].y) + (gFirstDots[i].fy) / 128.0;
  1728. //tangle[i] = gFirstDots[i].angle;
  1729. gbFirstDotsFly[i] = false;
  1730. }
  1731. // adiff12 = utils.angleDifferent(tangle[0], tangle[1]);
  1732. // adiff23 = utils.angleDifferent(tangle[1], tangle[2]);
  1733. // adiff31 = utils.angleDifferent(tangle[2], tangle[0]);
  1734. g2ndAngle = utils.angleDifferent(utils.pointsAngle(pointX123[0], pointY123[0], pointX123[1], pointY123[1]), utils.pointsAngle(pointX123[1], pointY123[1], pointX123[2], pointY123[2]));
  1735. //20181017 added for getting counter difference of first pt & second pt
  1736. countDiff = (247 + gFirstDots[1].counter - gFirstDots[0].counter) % 247;
  1737. dist1 = Math.sqrt(((pointX123[1] - pointX123[0]) * (pointX123[1] - pointX123[0])) + ((pointY123[1] - pointY123[0]) * (pointY123[1] - pointY123[0])));
  1738. dist2 = Math.sqrt(((pointX123[2] - pointX123[1]) * (pointX123[2] - pointX123[1])) + ((pointY123[2] - pointY123[1]) * (pointY123[2] - pointY123[1])));
  1739. dist3 = Math.sqrt(((pointX123[2] - pointX123[0]) * (pointX123[2] - pointX123[0])) + ((pointY123[2] - pointY123[0]) * (pointY123[2] - pointY123[0])));
  1740. if (dist1 == 0.0) dist1 = 0.000001;
  1741. if (dist2 == 0.0) dist2 = 0.000001;
  1742. if (dist3 == 0.0) dist3 = 0.000001;
  1743. //20181017 added
  1744. dist1 /= countDiff;
  1745. d12Times = dist1 / dist2;
  1746. d23Times = dist3 / dist2;
  1747. d31Times = dist1 / dist3;
  1748. //201809
  1749. d32Times = dist2 / dist3;
  1750. // 20181011
  1751. //201809
  1752. if ((d12Times > 3.0 && d23Times > 3.0 && g2ndAngle > 45 && dist2 > 0.08) || (d12Times > 15.0 && d23Times > 15.0 && dist2 > 0.08)) {
  1753. if ((pointX123[0] == pointX123[1] && pointX123[1] == pointX123[2]) || (pointY123[0] == pointY123[1] && pointY123[1] == pointY123[2]) || (pointX123[1] == pointX123[2] && pointY123[1] == pointY123[2]) || ((g2ndAngle < 20) || (g2ndAngle > 160))) {
  1754. //gFirstPtIndex = 1;
  1755. gbFirstDotsFly[0] = true;
  1756. } else {
  1757. //20181017 y = ax + b
  1758. var a, b;
  1759. if (pointX123[1] == pointX123[2])
  1760. a = (pointY123[2] - pointY123[1]) / 0.000001;
  1761. else
  1762. a = (pointY123[2] - pointY123[1]) / (pointX123[2] - pointX123[1]);
  1763. b = pointY123[1] - (a * pointX123[1]);
  1764. var Rx, Ry;
  1765. Ry = (a * pointX123[0]) + b;
  1766. Rx = (pointY123[0] - b) / a;
  1767. if (Math.abs(pointX123[0] - Rx) > Math.abs(pointY123[0] - Ry)) // Y diecrtion fly away, use Ry to be the Y coordinate of first pt
  1768. {
  1769. var iy, fy;
  1770. iy = parseInt(Ry);
  1771. fy = parseInt((Ry - iy) * 128.0);
  1772. gFirstDots[0].y = iy;
  1773. gFirstDots[0].fy = fy;
  1774. } else // X direction fly away, use Rx to be the X coordinate of first pt
  1775. {
  1776. var ix, fx;
  1777. ix = parseInt(Rx);
  1778. fx = parseInt((Rx - ix) * 128.0);
  1779. gFirstDots[0].x = ix;
  1780. gFirstDots[0].fx = fx;
  1781. }
  1782. var pointXX = (gFirstDots[0].x) + (gFirstDots[0].fx) / 128.0;
  1783. var pointYY = (gFirstDots[0].y) + (gFirstDots[0].fy) / 128.0;
  1784. var dist12C = Math.sqrt(((pointX123[1] - pointXX) * (pointX123[1] - pointXX)) + ((pointY123[1] - pointYY) * (pointY123[1] - pointYY)));
  1785. if ((dist12C / dist2) > 3) {
  1786. gbFirstDotsFly[0] = true;
  1787. }
  1788. gbFirst3DotsChecked = true;
  1789. return;
  1790. }
  1791. }
  1792. d12Times = dist2 / dist1;
  1793. d23Times = dist2 / dist3;
  1794. d31Times = dist1 / dist3;
  1795. d13Times = dist1 / dist3;
  1796. // 201809
  1797. if ((d23Times > 3.0 && d31Times > 3.0 && g2ndAngle > 45) || (d23Times > 15.0 && d31Times > 15.0)) {
  1798. gbFirstDotsFly[1] = true;
  1799. }
  1800. //201809
  1801. if (gbFirstDotsFly[0] == false && gbFirstDotsFly[1] == false) {
  1802. //20180926
  1803. d12Times = dist1 / dist2;
  1804. d23Times = dist2 / dist3;
  1805. g2ndAngle = utils.angleDifferent(utils.pointsAngle(pointX123[0], pointY123[0], pointX123[1], pointY123[1]), utils.pointsAngle(pointX123[1], pointY123[1], pointX123[2], pointY123[2]));
  1806. if (g2ndAngle > 135) {
  1807. if (d12Times > 3 && d23Times > 3) {
  1808. gbFirstDotsFly[0] = true;
  1809. } else if (d23Times > 3 && d13Times > 3 && dist3 > 0.08) {
  1810. gbFirstDotsFly[1] = true;
  1811. }
  1812. }
  1813. }
  1814. //20181004
  1815. d21Times = dist2 / dist1;
  1816. d31Times = dist3 / dist1;
  1817. if (((d21Times > 3.0 && d31Times > 3.0 && g2ndAngle > 45) || (d21Times > 15.0 && d31Times > 15.0)) && gbFirstDotsUp) {
  1818. //gFirstPtIndex = 3;
  1819. gbFirstDotsFly[2] = true;
  1820. }
  1821. //20181004
  1822. if (gbFirstDotsFly[0] == true) {
  1823. gSPtX[0] = gSPtX[1];
  1824. gSPtY[0] = gSPtY[1];
  1825. gSPtX[1] = gSPtX[2];
  1826. gSPtY[1] = gSPtY[2];
  1827. gSPtCnt = 2;
  1828. }
  1829. if (gbFirstDotsFly[1] == true) {
  1830. gSPtX[1] = gSPtX[2];
  1831. gSPtY[1] = gSPtY[2];
  1832. gSPtCnt = 2;
  1833. }
  1834. if (gbFirstDotsFly[2] == true && gbFirstDotsUp) {
  1835. gSPtCnt = 2;
  1836. }
  1837. // for (i = 0; i < 3; i++) {
  1838. // if (gbFirstDotsFly[i] == false) {
  1839. // gFirstDots[i].angle = InitAngle;
  1840. // break;
  1841. // }
  1842. // }
  1843. if (gbFirstDotsFly[0] == false && gbFirstDotsFly[1] == false && gbFirstDotsFly[2] == false && gbFirstDotsUp) {
  1844. var dtimes = 0;
  1845. gSPtCnt = 3;
  1846. //1,2,3 Angle Diffs
  1847. gAngleDiff[0] = utils.angleDifferent(utils.pointsAngle(gSPtX[0], gSPtY[0], gSPtX[1], gSPtY[1]), utils.pointsAngle(gSPtX[1], gSPtY[1], gSPtX[2], gSPtY[2]));
  1848. dist1 = Math.sqrt(((gSPtX[1] - gSPtX[0]) * (gSPtX[1] - gSPtX[0])) + ((gSPtY[1] - gSPtY[0]) * (gSPtY[1] - gSPtY[0])));
  1849. if (dist1 == 0.0) dist1 = 0.000001;
  1850. dist2 = Math.sqrt(((gSPtX[2] - gSPtX[1]) * (gSPtX[2] - gSPtX[1])) + ((gSPtY[2] - gSPtY[1]) * (gSPtY[2] - gSPtY[1])));
  1851. dist2 = dist2 / gMCounterDiff;
  1852. if (dist2 == 0.0) dist2 = 0.000001;
  1853. //dtimes = dist2 / dist1;
  1854. dtimes = dist2 / dist1;
  1855. if (gAngleDiff[0] < gThresholdAngle) {
  1856. if (dtimes < gThresholdTimes || dist2 < gThresholdDist) {
  1857. //201809
  1858. if (dtimes > (gThresholdTimes * 2) && dist1 > 0.1) {
  1859. gbFirst3DotsChecked = true;
  1860. gbFirstDotsFly[2] = true;
  1861. gSPtCnt = 2;
  1862. return;
  1863. }
  1864. gbFirstDotsFly[2] = false;
  1865. gSPtCnt = 3;
  1866. } else {
  1867. gbFirst3DotsChecked = true;
  1868. gbFirstDotsFly[2] = true;
  1869. gSPtCnt = 2;
  1870. return;
  1871. }
  1872. } else {
  1873. gbFirstDotsFly[2] = true;
  1874. gSPtCnt = 2;
  1875. }
  1876. }
  1877. }
  1878. /**
  1879. * Auther: kims wang
  1880. * Describe: 有效点验证
  1881. * Date: 2018-10-20
  1882. */
  1883. /**
  1884. * Auther: kims wang
  1885. * Describe: 处理成点数据(1)
  1886. * Date: 2018-10-20
  1887. */
  1888. function processDots(g_CompressData, bIsOnline, bOID4) {
  1889. penOnlineStrokeDot(g_CompressData, bIsOnline, bOID4);
  1890. }
  1891. /**
  1892. * Auther: kims wang
  1893. * Describe: 处理在线有效数据
  1894. * Date: 2018-10-20
  1895. */
  1896. function penOnlineStrokeDot(data, bIsOnline, bOID4) {
  1897. let dot = {
  1898. counter: 0, // 点计数
  1899. sectionID: 0, // 区域ID
  1900. ownerID: 0, // 客户ID
  1901. bookID: 0, // 书号
  1902. pageID: 0, // 页号
  1903. timeLong: utils.Dot.timeLong, // 当前点的RTC 时间,返回时间戳 ms(起止时间是2018-01-01 00:00:00,000)
  1904. x: 0, // 点横坐标,整数部分
  1905. y: 0, // 点纵坐标,整数部分
  1906. fx: 0.0, // 点横坐标,小数部分
  1907. fy: 0.0, // 点纵坐标,小数部分
  1908. ab_x: 0.0, // 点横坐标,整数+小数部分
  1909. ab_y: 0.0, // 点纵坐标,整数+小数部分
  1910. dotType: "",
  1911. force: 0, // 点的压力值
  1912. angle: 0, // 点的角度值
  1913. color: 0, // 笔的颜色值
  1914. };
  1915. if (bOID4) {
  1916. let SBID = (data[1] & 0xff) * 256 + (data[3] & 0xff);
  1917. dot.sectionID = parseInt(SBID / 1024);
  1918. dot.ownerID = (data[2] & 0xff);
  1919. dot.bookID = SBID % 1024;
  1920. dot.counter = data[0] & 0xff;
  1921. dot.pageID = data[4] & 0xff;
  1922. dot.x = (data[5] & 0xff) + ((data[6] & 0xff) * 256);
  1923. dot.fx = ((data[7] & 0xff) * 100 / 128);
  1924. dot.y = (data[8] & 0xff) + ((data[9] & 0xff) * 256);
  1925. dot.fy = ((data[10] & 0xff) * 100 / 128);
  1926. dot.force = ((data[12] << 8) & 0xff00) | (data[11] & 0xff);
  1927. dot.ab_x = dot.x + (dot.fx / 100)
  1928. dot.ab_y = dot.y + (dot.fy / 100)
  1929. // console.log("xxxx = " + dot.x + "yyyy=" + dot.y + "zzz = " + dot.force);
  1930. //dot.force ;
  1931. // dot.force += ;
  1932. // dot.setColor(convertColor(onlineData[14] & 0xff));
  1933. // console.log("Dot data is : "+JSON.stringify(dot));
  1934. }
  1935. if (dot.PageID < 0 || dot.BookID < 0) {
  1936. return;
  1937. }
  1938. dot.timeLong = ((data[13] & 0xff) + ((data[14] & 0xff) << 8) + ((data[15] & 0xff) << 16) + ((data[16] & 0xff) << 24)) * 1000 + (data[17] & 0xff) + ((data[18] & 0xff) << 8);
  1939. // console.log(" dot.timeLong is : " + dot.timeLong);
  1940. dot.force = utils.outputForce(dot.force);
  1941. pointZ = dot.force;
  1942. let Angle = (data[19] & 0x0ff) | ((data[20] << 8) & 0xff00);
  1943. dot.angle = Angle;
  1944. if (dot.angle > 360) {
  1945. return;
  1946. }
  1947. sendDot(dot, bIsOnline);
  1948. }
  1949. /**
  1950. * Auther: kims wang
  1951. * Describe: 分解数据,将数据输出
  1952. * Date: 2018-10-20
  1953. */
  1954. function sendDot(dot, bIsOnline) {
  1955. /**********************20180820 T111A滤波算法 ***************************/
  1956. if (dot.x <= 0 || dot.y <= 0) {
  1957. return;
  1958. }
  1959. if (dot.force > 0) { // down or move
  1960. if (!firstDot) { // down
  1961. firstDot = true;
  1962. gCurBookID = dot.bookID;
  1963. gCurPageID = dot.pageID;
  1964. dot.dotType = utils.DotType.PEN_DOWN;
  1965. /********************20180910 补UP点*********************/
  1966. // lastDistence = 1;
  1967. gLastMoveDot = dot;
  1968. // mendUpArray.push(dot);
  1969. } else {
  1970. if (gCurPageID != dot.pageID || gCurBookID != dot.bookID) {
  1971. return;
  1972. }
  1973. gCurBookID = dot.bookID;
  1974. gCurPageID = dot.pageID;
  1975. dot.dotType = utils.DotType.PEN_MOVE;
  1976. gpreMoveDot = gLastMoveDot;
  1977. gLastMoveDot = dot;
  1978. // mendUpArray.push(dot);
  1979. }
  1980. } else {
  1981. if (firstDot) {
  1982. // To pageID and bookID ensure consistent
  1983. if (gCurPageID != dot.pageID || gCurBookID != dot.bookID) {
  1984. dot.pageID = gCurPageID;
  1985. dot.bookID = gCurBookID;
  1986. }
  1987. var lastDistance = Math.max(Math.abs((gpreMoveDot.x + gpreMoveDot.fx / 100.0) - (gLastMoveDot.x + gLastMoveDot.fx / 100.0)), Math.abs((gpreMoveDot.y + gpreMoveDot.fy / 100.0) - (gLastMoveDot.y + gLastMoveDot.fy / 100.0))) + 1;
  1988. var distance = Math.max(Math.abs((dot.x + dot.fx / 100.0) - (gLastMoveDot.x + gLastMoveDot.fx / 100.0)), Math.abs((dot.y + dot.fy / 100.0) - (gLastMoveDot.y + gLastMoveDot.fy / 100.0))) + 1;
  1989. if ((distance / lastDistance > 10.0 && lastDistance >= 0.5) || (distance > 5.0 && lastDistance < 0.5)) {
  1990. var dotx = 2 * (gLastMoveDot.x + gLastMoveDot.fx / 100.0) - (gpreMoveDot.x + gpreMoveDot.fx / 100.0);
  1991. var doty = 2 * (gLastMoveDot.y + gLastMoveDot.fy / 100.0) - (gpreMoveDot.y + gpreMoveDot.fy / 100.0);
  1992. dot.x = parseInt(dotx);
  1993. dot.fx = parseInt(dotx * 100 % 100);
  1994. dot.y = parseInt(doty);
  1995. dot.fy = parseInt(doty * 100 % 100);
  1996. }
  1997. dot.dotType = utils.DotType.PEN_UP;
  1998. firstDot = false;
  1999. } else {
  2000. return;
  2001. }
  2002. // 限制点up只送一次
  2003. }
  2004. //console.log('writeData' + 'dot.force=' + dot.force + 'dot.counter=' + dot.counter );
  2005. // 将数据传送出去
  2006. var dotData = dotDataCorrector.correct_point(dot);
  2007. if (dotData.length > 0) {
  2008. for (var i = 0; i < dotData.length; i++) {
  2009. var newDot = dotData[i];
  2010. // if (bIsOnline) {
  2011. // console.log('writeData' + 'dot.force=' + dot.force + 'dot.counter=' + dot.counter + 'dot.x = '+ dot.x + 'dot.y = ' + dot.y);
  2012. if (dot != null) {
  2013. if (isOffset) { //偏移 需修偏移
  2014. newDot = patchOffset.angleAndSensitivityLevelCheck(newDot)
  2015. emitPoint(newDot)
  2016. } else {
  2017. filter(newDot)
  2018. }
  2019. }
  2020. // }
  2021. }
  2022. }
  2023. }
  2024. // 2022-7-15 cd
  2025. function filter(dot) {
  2026. // emitPoint(dot)
  2027. // return
  2028. const firstFilterDot = firstFilter.handle(dot)
  2029. if (!firstFilterDot) return
  2030. const firstAverageDot = firstAverage.handle(firstFilterDot)
  2031. if (!firstAverageDot) return
  2032. const secondAverageDot = secondAverage.handle(firstAverageDot)
  2033. if (!secondAverageDot) return
  2034. const thirdAverageDot = thirdAverage.handle(secondAverageDot)
  2035. if (!thirdAverageDot) return
  2036. const fourthAverageDot = fourthAverage.handle(thirdAverageDot)
  2037. if (!fourthAverageDot) return
  2038. const fifthAverageDot = fifthAverage.handle(fourthAverageDot)
  2039. if (!fifthAverageDot) return
  2040. // const sixthAverageDot = sixthAverage.handle(fifthAverageDot)
  2041. // if (!sixthAverageDot) return
  2042. emitPoint(fifthAverageDot)
  2043. }
  2044. class LoseDot {
  2045. constructor() {
  2046. this.lastDot = null
  2047. }
  2048. handle(dot) {
  2049. switch (dot.dotType) {
  2050. case 'PEN_DOWN': {
  2051. this.lastDot = dot
  2052. return dot
  2053. }
  2054. case 'PEN_MOVE': {
  2055. //两点之间距离
  2056. const distance = Math.sqrt(Math.pow((dot.ab_x - this.lastDot.ab_x), 2) + Math.pow((dot.ab_y - this.lastDot.ab_y), 2))
  2057. //距离小于 0.25
  2058. if (distance > 0.25) {
  2059. this.lastDot = dot
  2060. return dot
  2061. }
  2062. return false
  2063. }
  2064. case 'PEN_UP': {
  2065. this.lastDot = null
  2066. return dot
  2067. }
  2068. default:
  2069. break;
  2070. }
  2071. }
  2072. }
  2073. class Average {
  2074. constructor() {
  2075. this.points = []
  2076. }
  2077. handle(dot) {
  2078. switch (dot.dotType) {
  2079. case "PEN_DOWN":
  2080. this.points.push(dot)
  2081. return dot
  2082. case "PEN_MOVE":
  2083. this.points.push(dot)
  2084. if (this.points.length === 3) {
  2085. const _dot = this.threeAverage(...this.points)
  2086. this.points.shift()
  2087. return _dot
  2088. } else {
  2089. this.points.push(dot)
  2090. const _dot = this.threeAverage(...this.points)
  2091. this.points.shift()
  2092. return _dot
  2093. }
  2094. case "PEN_UP":
  2095. this.points = []
  2096. return dot
  2097. // // 无up
  2098. // const up = this.points.some(i => i.dotType === 'PEN_MOVE')
  2099. // if (!up) {
  2100. // this.points.push({
  2101. // ...dot,
  2102. // dotType: 'PEN_MOVE'
  2103. // })
  2104. // }
  2105. // this.points.shift()
  2106. // this.points.push(dot)
  2107. // this.points.push(dot)
  2108. // const _dot = this.threeAverage(...this.points)
  2109. // this.points = []
  2110. // return _dot
  2111. default:
  2112. return false
  2113. }
  2114. }
  2115. // 三点
  2116. threeAverage(dot1, dot2, dot3) {
  2117. const [x1, y1] = [(dot1.ab_x + dot2.ab_x) / 2, (dot1.ab_y + dot2.ab_y) / 2]
  2118. const [x2, y2] = [(dot2.ab_x + dot3.ab_x) / 2, (dot2.ab_y + dot3.ab_y) / 2]
  2119. dot2.ab_x = (x1 + x2) / 2
  2120. dot2.ab_y = (y1 + y2) / 2
  2121. return dot2
  2122. }
  2123. }
  2124. const firstFilter = new LoseDot()
  2125. const firstAverage = new Average()
  2126. const secondAverage = new Average()
  2127. const thirdAverage = new Average()
  2128. const fourthAverage = new Average()
  2129. const fifthAverage = new Average()
  2130. const sixthAverage = new Average()
  2131. // let threePointCenterList = []
  2132. // function threePointToCenter(dot) {
  2133. // if (dot.dotType === 'PEN_DOWN') {
  2134. // threePointCenterList.push(dot)
  2135. // emitPoint(dot)
  2136. // }
  2137. // if (dot.dotType === 'PEN_MOVE') {
  2138. // const one = threePointCenterList[threePointCenterList.length - 1]
  2139. // //两点之间距离
  2140. // const _distance = Math.sqrt(Math.pow((dot.ab_x - one.ab_x), 2) + Math.pow((dot.ab_y - one.ab_y), 2))
  2141. // //距离小于0.2 丢弃点
  2142. // if (_distance > 0.5) {
  2143. // threePointCenterList.push(dot)
  2144. // }
  2145. // if (threePointCenterList.length === 3) {
  2146. // const one = threePointCenterList[0]
  2147. // const two = threePointCenterList[1]
  2148. // const three = threePointCenterList[2]
  2149. // const [x1, y1] = [(one.ab_x + two.ab_x) / 2, (one.ab_y + two.ab_y) / 2]
  2150. // const [x2, y2] = [(two.ab_x + three.ab_x) / 2, (two.ab_y + three.ab_y) / 2]
  2151. // two.ab_x = (x1 + x2) / 2
  2152. // two.ab_y = (y1 + y2) / 2
  2153. // threePointCenterList = [one, two, three]
  2154. // emitPoint(two)
  2155. // threePointCenterList.shift()
  2156. // }
  2157. // }
  2158. // if (dot.dotType === 'PEN_UP') {
  2159. // threePointCenterList = []
  2160. // emitPoint(dot)
  2161. // }
  2162. // }
  2163. // Android start
  2164. // const migrationDou = 0.5
  2165. // let migrationDotMigration, migrationDotQueue, migrationDotQueue2, migrationDotQueue3
  2166. // let lastDot = null
  2167. // function mGoMigration1(dot) {
  2168. // if (dot.dotType === 'PEN_DOWN') {
  2169. // migrationDotMigration = []
  2170. // migrationDotMigration.push(dot)
  2171. // lastDot = dot
  2172. // mGoMigration2(dot)
  2173. // } else if (dot.dotType === 'PEN_MOVE' && dot.force > 1) {
  2174. // migrationDotMigration.push(dot)
  2175. // const dist12 = Math.sqrt(((dot.ab_x - lastDot.ab_x) * (dot.ab_x - lastDot.ab_x)) +
  2176. // ((dot.ab_y - lastDot.ab_y) * (dot.ab_y - lastDot.ab_y)))
  2177. // lastDot = dot
  2178. // if (dist12 > migrationDou) {
  2179. // mGoMigration2(dot)
  2180. // }
  2181. // }
  2182. // // else if (dot.dotType === 'PEN_MOVE' && dot.force === 1) {
  2183. // // mGoMigration2(dot)
  2184. // // }
  2185. // else if (dot.dotType === 'PEN_UP') {
  2186. // lastDot = dot
  2187. // mGoMigration2(dot)
  2188. // migrationDotMigration = []
  2189. // }
  2190. // }
  2191. // function mGoMigration2(dot) {
  2192. // if (dot.dotType === 'PEN_DOWN') {
  2193. // migrationDotQueue2 = []
  2194. // migrationDotQueue2.push(dot)
  2195. // } else if (dot.dotType === 'PEN_MOVE') {
  2196. // migrationDotQueue2.push(dot)
  2197. // if (migrationDotQueue2.length === 3) {
  2198. // const dot1 = migrationDotQueue2[0]
  2199. // const dot2 = migrationDotQueue2[1]
  2200. // const dot3 = migrationDotQueue2[2]
  2201. // const center1X = (dot1.ab_x + dot2.ab_x) / 2
  2202. // const center1y = (dot1.ab_y + dot2.ab_y) / 2
  2203. // const center2X = (dot3.ab_x + dot2.ab_x) / 2
  2204. // const center2y = (dot3.ab_y + dot2.ab_y) / 2
  2205. // dot2.ab_x = (center1X + center2X) / 2
  2206. // dot2.ab_y = (center1y + center2y) / 2
  2207. // threePointCenter2(dot1)
  2208. // migrationDotQueue2.shift()
  2209. // }
  2210. // } else if (dot.dotType === 'PEN_UP') {
  2211. // if (migrationDotQueue2 !== null && migrationDotQueue2.length > 0) {
  2212. // migrationDotQueue2.map(_dot => {
  2213. // threePointCenter2(_dot)
  2214. // })
  2215. // }
  2216. // threePointCenter2(dot);
  2217. // }
  2218. // }
  2219. // function threePointCenter2(dot) {
  2220. // if (dot.dotType === 'PEN_DOWN') {
  2221. // migrationDotQueue3 = []
  2222. // migrationDotQueue3.push(dot)
  2223. // } else if (dot.dotType === 'PEN_MOVE') {
  2224. // migrationDotQueue3.push(dot)
  2225. // if (migrationDotQueue3.length === 3) {
  2226. // const dot1 = migrationDotQueue3[0]
  2227. // const dot2 = migrationDotQueue3[1]
  2228. // const dot3 = migrationDotQueue3[2]
  2229. // dot2.ab_x = (dot1.ab_x, dot3.ab_x) / 2
  2230. // dot2.ab_y = (dot1.ab_y, dot3.ab_y) / 2
  2231. // threePointCenter(dot1)
  2232. // migrationDotQueue3.shift()
  2233. // }
  2234. // } else if (dot.dotType === 'PEN_UP') {
  2235. // if (migrationDotQueue3 !== null && migrationDotQueue3.length > 0) {
  2236. // migrationDotQueue3.map(_dot => threePointCenter(_dot))
  2237. // }
  2238. // threePointCenter(dot)
  2239. // }
  2240. // }
  2241. // function threePointCenter(dot) {
  2242. // if (dot.dotType === 'PEN_DOWN') {
  2243. // migrationDotQueue = []
  2244. // migrationDotQueue.push(dot)
  2245. // } else if (dot.dotType === 'PEN_MOVE') {
  2246. // migrationDotQueue.push(dot)
  2247. // if (migrationDotQueue.length === 3) {
  2248. // const dot1 = migrationDotQueue[0]
  2249. // const dot2 = migrationDotQueue[1]
  2250. // const dot3 = migrationDotQueue[2]
  2251. // const center1X = (dot1.ab_x + dot2.ab_x) / 2
  2252. // const center1y = (dot1.ab_y + dot2.ab_y) / 2
  2253. // const center2X = (dot3.ab_x + dot2.ab_x) / 2
  2254. // const center2y = (dot3.ab_y + dot2.ab_y) / 2
  2255. // dot2.ab_x = (center1X + center2X) / 2;
  2256. // dot2.ab_y = (center1y + center2y) / 2;
  2257. // emitPoint(dot1)
  2258. // migrationDotQueue.shift()
  2259. // }
  2260. // } else if (dot.dotType === 'PEN_UP') {
  2261. // if (migrationDotQueue !== null && migrationDotQueue.length > 0) {
  2262. // migrationDotQueue.map(_dot => emitPoint(_dot))
  2263. // }
  2264. // emitPoint(dot)
  2265. // }
  2266. // }
  2267. // Android end
  2268. //向上层应用发点
  2269. function emitPoint(dot) {
  2270. // console.log(JSON.stringify(dot))
  2271. event.emit('AddressDataChanged', dot);
  2272. }
  2273. module.exports = {
  2274. splitData: splitData,
  2275. changeOffset: changeOffset
  2276. }