GUIboard.java 15 KB

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  1. import java.util.ArrayList;
  2. /**
  3. * Biedt een makkelijke interface om data weer te geven op het GUIBoard
  4. *
  5. * @author Kenneth van Ewijk
  6. * @author Janco Kock
  7. */
  8. public class GUIboard {
  9. /**
  10. * Initaliseert de verbinding met het GUIBoard
  11. */
  12. public static void init()
  13. {
  14. IO.init();
  15. }
  16. /**
  17. * Schrijft een getal naar de bovenste digits van het GUIBoard
  18. *
  19. * @param number Het getal dat je wilt weergeven
  20. */
  21. public static void writeUpperDigits(double number){
  22. clearTop();
  23. int checkNumber = String.valueOf(Math.round(number)).length();
  24. if(checkNumber <= 5){
  25. checkNumber = 5 - checkNumber > 0 ? 5 - checkNumber : 0;
  26. number = number * Math.pow(10, checkNumber);
  27. number = Math.round(number);
  28. number = number / Math.pow(10, checkNumber);
  29. }
  30. else
  31. {
  32. number = 0;
  33. }
  34. writeDigits(number, 0x10, 0x18);
  35. }
  36. /**
  37. * Schrijft een getal naar de linker digits van het GUIBoard
  38. *
  39. * @param number Het getal dat je wilt weergeven
  40. */
  41. public static void writeLeftDigits(double number){
  42. clearLeft();
  43. int checkNumber = String.valueOf(Math.round(number)).length();
  44. if(checkNumber <= 3){
  45. checkNumber = 3 - checkNumber > 0 ? 3 - checkNumber : 0;
  46. number = number * Math.pow(10, checkNumber);
  47. number = Math.round(number);
  48. number = number / Math.pow(10, checkNumber);
  49. }
  50. else
  51. {
  52. number = 0;
  53. }
  54. writeDigits(number, 0x20, 0x24);
  55. }
  56. /**
  57. * Schrijft een getal naar de rechter digits van het GUIBoard
  58. *
  59. * @param number Het getal dat je wilt weergeven
  60. */
  61. public static void writeRightDigits(double number){
  62. clearRight();
  63. int checkNumber = String.valueOf(Math.round(number)).length();
  64. if(checkNumber <= 3){
  65. checkNumber = 3 - checkNumber > 0 ? 3 - checkNumber : 0;
  66. number = number * Math.pow(10, checkNumber);
  67. number = Math.round(number);
  68. number = number / Math.pow(10, checkNumber);
  69. }
  70. else
  71. {
  72. number = 0;
  73. }
  74. writeDigits(number, 0x30, 0x34);
  75. }
  76. /**
  77. * Private methode die het schrijven van een getal naar een digit uitvoert
  78. *
  79. * @param number Het getal dat je wilt weergeven
  80. * @param firstSegment De digit waar begonnen moet worden
  81. * @param lastSegment De digit waar geëindigd moet worden
  82. */
  83. private static void writeDigits(double number, int firstSegment, int lastSegment){
  84. String numberString = "";
  85. //Segments
  86. int segA = 0x01;
  87. int segB = 0x02;
  88. int segC = 0x04;
  89. int segD = 0x08;
  90. int segE = 0x10;
  91. int segF = 0x20;
  92. int segG = 0x40;
  93. int segDP = 0x80;
  94. //Digits
  95. int[] digits = {
  96. segA | segB | segC | segD | segE | segF, //0
  97. segB | segC, //1
  98. segA | segB | segG | segE | segD, //2
  99. segA | segB | segC | segG | segD, //3
  100. segB | segC | segF | segG | segC, //4
  101. segA | segF | segG | segC | segD, //5
  102. segA | segF | segG | segC | segD | segE, //6
  103. segA | segB | segC, //7
  104. segA | segB | segC | segD | segE | segF | segG, //8
  105. segA | segF | segG | segC | segD | segB, //9
  106. };
  107. int digit = firstSegment;
  108. if( number == 0 || (number % (int)number == 0)){
  109. numberString = String.valueOf((int)number);
  110. }else{
  111. numberString = String.valueOf(number);
  112. }
  113. char numberSplit[] = numberString.toCharArray();
  114. for(int i = numberSplit.length-1; i >= 0; i--){
  115. if(numberSplit[i] == '.'){
  116. IO.writeShort(digit, digits[(Character.getNumericValue(numberSplit[i - 1]))]|0x180); //display a . with the next number
  117. i--;
  118. }else if(numberSplit[i] == '-'){
  119. IO.writeShort(digit, 0x140); //will display a -
  120. }else{
  121. IO.writeShort(digit, Character.getNumericValue(numberSplit[i]));
  122. }
  123. digit += 2; //Next digits screen
  124. if(digit > lastSegment){ //If there are more then max digits needed, it will stop.
  125. break;
  126. }
  127. }
  128. }
  129. /**
  130. * Schrijft een standaard pagina naar het matrix scherm van het GUIBoard
  131. *
  132. * @param regel1 De tekst die je op de eerste regel wilt weergeven. Normaliter de naam
  133. * @param regel2 De tekst die je op de tweede regel wilt weergeven.
  134. * @param regel3 De tekst die je op de derde regel wilt weergeven. Wordt standaard gevolgd door de navigatie.
  135. */
  136. public static boolean writePageToMatrix(String regel1, String regel2, String regel3, Boolean pPeriod, Boolean pScreen)
  137. {
  138. clearBottom();
  139. if(regel1.length() > 20 && regel2.length() > 20 && regel3.length() > 11) //check if the length is not to long
  140. {
  141. return false;
  142. }
  143. String nav = "G"; //creates the navigation and will center it out to the right
  144. for(int i=0; i < (19-regel3.length()); i++)
  145. {
  146. nav = " " + nav;
  147. }
  148. char[] regel1CharArray = regel1.toCharArray();
  149. char[] regel2CharArray = regel2.toCharArray();
  150. char[] regel3CharArray = (regel3 + nav).toCharArray();
  151. double centerMargins = 20-regel1CharArray.length;
  152. int centerLeft = (int) Math.floor(centerMargins/2.0);
  153. double centerMargins2 = 20-regel2CharArray.length;
  154. int centerLeft2 = (int) Math.floor(centerMargins2/2.0);
  155. for(int i=0; i<centerLeft; i++)
  156. {
  157. IO.writeShort(0x40, ' ');
  158. }
  159. for(char ch : regel1CharArray)
  160. {
  161. IO.writeShort(0x40, ch);
  162. }
  163. IO.writeShort(0x40, '\n');
  164. for(int i=0; i<centerLeft2; i++)
  165. {
  166. IO.writeShort(0x40, ' ');
  167. }
  168. for(char ch : regel2CharArray)
  169. {
  170. IO.writeShort(0x40, ch);
  171. }
  172. IO.writeShort(0x40, '\n');
  173. for(char ch : regel3CharArray)
  174. {
  175. IO.writeShort(0x40, ch);
  176. }
  177. //Draw the play/pause
  178. if(pPeriod)
  179. {
  180. IO.writeShort(0x42, 1 << 12 | 76 << 5 | 28);
  181. IO.writeShort(0x42, 1 << 12 | 76 << 5 | 27);
  182. IO.writeShort(0x42, 1 << 12 | 76 << 5 | 26);
  183. IO.writeShort(0x42, 1 << 12 | 76 << 5 | 25);
  184. IO.writeShort(0x42, 1 << 12 | 76 << 5 | 24);
  185. IO.writeShort(0x42, 1 << 12 | 76 << 5 | 23);
  186. IO.writeShort(0x42, 1 << 12 | 76 << 5 | 22);
  187. IO.writeShort(0x42, 1 << 12 | 77 << 5 | 27);
  188. IO.writeShort(0x42, 1 << 12 | 77 << 5 | 26);
  189. IO.writeShort(0x42, 1 << 12 | 77 << 5 | 25);
  190. IO.writeShort(0x42, 1 << 12 | 77 << 5 | 24);
  191. IO.writeShort(0x42, 1 << 12 | 77 << 5 | 23);
  192. IO.writeShort(0x42, 1 << 12 | 78 << 5 | 26);
  193. IO.writeShort(0x42, 1 << 12 | 78 << 5 | 25);
  194. IO.writeShort(0x42, 1 << 12 | 78 << 5 | 24);
  195. IO.writeShort(0x42, 1 << 12 | 79 << 5 | 25);
  196. }
  197. else
  198. {
  199. IO.writeShort(0x42, 1 << 12 | 76 << 5 | 28);
  200. IO.writeShort(0x42, 1 << 12 | 76 << 5 | 27);
  201. IO.writeShort(0x42, 1 << 12 | 76 << 5 | 26);
  202. IO.writeShort(0x42, 1 << 12 | 76 << 5 | 25);
  203. IO.writeShort(0x42, 1 << 12 | 76 << 5 | 24);
  204. IO.writeShort(0x42, 1 << 12 | 76 << 5 | 23);
  205. IO.writeShort(0x42, 1 << 12 | 76 << 5 | 22);
  206. IO.writeShort(0x42, 1 << 12 | 79 << 5 | 28);
  207. IO.writeShort(0x42, 1 << 12 | 79 << 5 | 27);
  208. IO.writeShort(0x42, 1 << 12 | 79 << 5 | 26);
  209. IO.writeShort(0x42, 1 << 12 | 79 << 5 | 25);
  210. IO.writeShort(0x42, 1 << 12 | 79 << 5 | 24);
  211. IO.writeShort(0x42, 1 << 12 | 79 << 5 | 23);
  212. IO.writeShort(0x42, 1 << 12 | 79 << 5 | 22);
  213. }
  214. if(pScreen)
  215. {
  216. IO.writeShort(0x42, 1 << 12 | 96 << 5 | 28);
  217. IO.writeShort(0x42, 1 << 12 | 96 << 5 | 27);
  218. IO.writeShort(0x42, 1 << 12 | 96 << 5 | 26);
  219. IO.writeShort(0x42, 1 << 12 | 96 << 5 | 25);
  220. IO.writeShort(0x42, 1 << 12 | 96 << 5 | 24);
  221. IO.writeShort(0x42, 1 << 12 | 96 << 5 | 23);
  222. IO.writeShort(0x42, 1 << 12 | 96 << 5 | 22);
  223. IO.writeShort(0x42, 1 << 12 | 97 << 5 | 27);
  224. IO.writeShort(0x42, 1 << 12 | 97 << 5 | 26);
  225. IO.writeShort(0x42, 1 << 12 | 97 << 5 | 25);
  226. IO.writeShort(0x42, 1 << 12 | 97 << 5 | 24);
  227. IO.writeShort(0x42, 1 << 12 | 97 << 5 | 23);
  228. IO.writeShort(0x42, 1 << 12 | 98 << 5 | 26);
  229. IO.writeShort(0x42, 1 << 12 | 98 << 5 | 25);
  230. IO.writeShort(0x42, 1 << 12 | 98 << 5 | 24);
  231. IO.writeShort(0x42, 1 << 12 | 99 << 5 | 25);
  232. }
  233. else
  234. {
  235. IO.writeShort(0x42, 1 << 12 | 96 << 5 | 28);
  236. IO.writeShort(0x42, 1 << 12 | 96 << 5 | 27);
  237. IO.writeShort(0x42, 1 << 12 | 96 << 5 | 26);
  238. IO.writeShort(0x42, 1 << 12 | 96 << 5 | 25);
  239. IO.writeShort(0x42, 1 << 12 | 96 << 5 | 24);
  240. IO.writeShort(0x42, 1 << 12 | 96 << 5 | 23);
  241. IO.writeShort(0x42, 1 << 12 | 96 << 5 | 22);
  242. IO.writeShort(0x42, 1 << 12 | 99 << 5 | 28);
  243. IO.writeShort(0x42, 1 << 12 | 99 << 5 | 27);
  244. IO.writeShort(0x42, 1 << 12 | 99 << 5 | 26);
  245. IO.writeShort(0x42, 1 << 12 | 99 << 5 | 25);
  246. IO.writeShort(0x42, 1 << 12 | 99 << 5 | 24);
  247. IO.writeShort(0x42, 1 << 12 | 99 << 5 | 23);
  248. IO.writeShort(0x42, 1 << 12 | 99 << 5 | 22);
  249. }
  250. return true;
  251. }
  252. /**
  253. * Schrijft een grafiek naar het matrix display van het GUIBoard
  254. *
  255. * @param msList ArrayList met alle meetwaarden die je wilt weergeven in grafiekvorm
  256. * @param min De minimale waarden die bij msList hoort
  257. * @param max De maximale waarden die bij msList hoort
  258. */
  259. public static void writeGraphToMatrix(ArrayList<Double> msList, double min, double max)
  260. {
  261. clearBottom();
  262. msList = normalizeData(msList, (max-min)/32);
  263. max = StatisticsCalculator.max(msList)+1;
  264. min = StatisticsCalculator.min(msList)-1 > 0 ? StatisticsCalculator.min(msList)-1 : StatisticsCalculator.min(msList);
  265. createAxis(min,max);
  266. int x,y;
  267. double getal;
  268. for(double i=0;i<msList.size();i++)
  269. {
  270. getal = msList.get((int)i);
  271. x = (int)(i/(msList.size()-1)*127.0);
  272. double temp = ((getal - min)/(max-min));
  273. y = (int)(temp*31.0);
  274. y = 31 - y;
  275. IO.writeShort(0x42, 1 << 12 | x << 5 | y );
  276. }
  277. }
  278. /**
  279. * Berekent of er assen moeten worden getekend. Zo ja, berekent ook waar en tekent ze vervolgens.
  280. *
  281. * @param min De minimale waarden die zal worden weergegeven
  282. * @param max De maximale waarden die zal worden weergegeven
  283. */
  284. public static void createAxis(double min, double max)
  285. {
  286. int x,y;
  287. double diff = max-min;
  288. double valpix = diff/32;
  289. if(min<=0){
  290. if(min==0)
  291. {
  292. y = 31;
  293. }
  294. else
  295. {
  296. y = (int) ( (diff-max) / valpix);
  297. y = 31 - y;
  298. }
  299. for(int x2 = 0; x2 < 128; x2++)
  300. {
  301. IO.writeShort(0x42, 1 << 12 | x2 << 5 | y );
  302. }
  303. }
  304. }
  305. /**
  306. * Probeert de data te controleren en aan te passen om een vloeierende grafiek te kunnen tekenen
  307. *
  308. * @param data2 ArrayList met alle meetwaarden die je wilt weergeven in grafiekvorm
  309. * @param margin Waarde die aangeeft wanneer een waarde teveel afwijkt van het berekende gemiddelde
  310. *
  311. * @return ArrayList met genormaliseerde data
  312. */
  313. private static ArrayList<Double> normalizeData(ArrayList<Double> data2 , double margin){
  314. ArrayList<Double> data = new ArrayList<Double>();
  315. int deler = data2.size() / 256; //Delen door het aantal punten dat je over wil houden.
  316. double avg=0;
  317. for(int q=0;q<data2.size(); q++)
  318. {
  319. if(q%deler==0)
  320. {
  321. avg /= deler;
  322. data.add(avg);
  323. avg=0;
  324. }
  325. avg += data2.get(q);
  326. }
  327. double prevPrevVal = 0.0, prevVal = 0.0, nextVal = 0.0, nextNextVal = 0.0, avrVal = 0.0, setVal = 0.0;
  328. for(int i = 0; i < data.size(); i ++){
  329. if(i + 1 < data.size()){
  330. nextVal = data.get(i+1);
  331. }
  332. if(i + 2 < data.size()){
  333. nextNextVal = data.get(i+2);
  334. }
  335. if(prevPrevVal != 0 && prevVal != 0 && nextVal != 0 && nextNextVal != 0){
  336. avrVal = (prevPrevVal + prevVal + nextVal + nextNextVal) / 4;
  337. if((data.get(i) - avrVal) >= margin){
  338. setVal = avrVal;
  339. }else{
  340. setVal = data.get(i);
  341. }
  342. }else{
  343. setVal = data.get(i);
  344. }
  345. data.set(i, setVal);
  346. prevVal = data.get(i);
  347. if(i - 1 >= 0){
  348. prevPrevVal = data.get(i-1);
  349. }
  350. }
  351. return data;
  352. }
  353. /**
  354. * Wis de bovenste digits
  355. */
  356. public static void clearTop()
  357. {
  358. IO.writeShort(0x10, 0x100 | 0x0);
  359. IO.writeShort(0x12, 0x100 | 0x0);
  360. IO.writeShort(0x14, 0x100 | 0x0);
  361. IO.writeShort(0x16, 0x100 | 0x0);
  362. IO.writeShort(0x18, 0x100 | 0x0);
  363. }
  364. /**
  365. * Wis de linker digits
  366. */
  367. public static void clearLeft()
  368. {
  369. IO.writeShort(0x24, 0x100 | 0x0);
  370. IO.writeShort(0x22, 0x100 | 0x0);
  371. IO.writeShort(0x20, 0x100 | 0x0);
  372. }
  373. /**
  374. * Wis de rechter digits
  375. */
  376. public static void clearRight()
  377. {
  378. IO.writeShort(0x34, 0x100 | 0x0);
  379. IO.writeShort(0x32, 0x100 | 0x0);
  380. IO.writeShort(0x30, 0x100 | 0x0);
  381. }
  382. /**
  383. * Wis het matrix display
  384. */
  385. public static void clearBottom()
  386. {
  387. IO.writeShort(0x40, 0xFE);
  388. IO.writeShort(0x40, 0x01);
  389. IO.writeShort(0x42, 3 << 12);
  390. }
  391. }