Weerstation.java 12 KB

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  1. import java.util.ArrayList;
  2. import java.util.Calendar;
  3. import java.util.Iterator;
  4. import java.util.List;
  5. import java.util.Timer;
  6. import java.util.TimerTask;
  7. /**
  8. * De main klasse die het hele programma aanstuurt
  9. *
  10. * @author Projectgroep B5
  11. */
  12. public class Weerstation {
  13. WeerstationConnector weerstation1;
  14. Calendar now, calPeriod;
  15. Measurement meting1;
  16. ArrayList<Measurement> meting2;
  17. Timer starter;
  18. Timer animator;
  19. int currentScreen;
  20. boolean wait;
  21. boolean graph;
  22. boolean currentGraph;
  23. boolean startup;
  24. boolean startupState;
  25. boolean load;
  26. /**
  27. * Constructor voor weerstation
  28. */
  29. public Weerstation(){
  30. now = Calendar.getInstance();
  31. calPeriod = Calendar.getInstance();
  32. final ArrayList<Periode> periods = new ArrayList<Periode>();
  33. GUIboard.init();
  34. startupState = true;
  35. starter = new Timer();
  36. startStartupAnimatie();
  37. calPeriod.add(Calendar.DATE, -1);
  38. periods.add(new Periode(now, calPeriod, "Dag"));
  39. calPeriod = Calendar.getInstance();
  40. calPeriod.add(Calendar.DATE, -7);
  41. periods.add(new Periode(now, calPeriod, "Week"));
  42. calPeriod = Calendar.getInstance();
  43. calPeriod.add(Calendar.MONTH, -1);
  44. periods.add(new Periode(now, calPeriod, "Maand"));
  45. calPeriod = Calendar.getInstance();
  46. calPeriod.add(Calendar.MONTH, -3);
  47. periods.add(new Periode(now, calPeriod, "Maand 3"));
  48. calPeriod = Calendar.getInstance();
  49. calPeriod.add(Calendar.MONTH, -6);
  50. periods.add(new Periode(now, calPeriod, "Maand 6"));
  51. calPeriod = Calendar.getInstance();
  52. calPeriod.add(Calendar.YEAR, -1);
  53. periods.add(new Periode(now, calPeriod, "Jaar"));
  54. calPeriod = Calendar.getInstance();
  55. calPeriod.add(Calendar.YEAR, -2);
  56. periods.add(new Periode(now, calPeriod, "Jaar 2"));
  57. calPeriod = Calendar.getInstance();
  58. System.out.println("Day: " + periods.get(0));
  59. System.out.println("Week: " + periods.get(1));
  60. System.out.println("Month: " + periods.get(2));
  61. System.out.println("3 Months: " + periods.get(3));
  62. System.out.println("6 Months: " + periods.get(4));
  63. System.out.println("Year: " + periods.get(5));
  64. System.out.println("2 Years: " + periods.get(6));
  65. //Kies hier welke periode je wil laden, hij veranderd in een keer alles:
  66. final int periodeNr = 5;
  67. weerstation1 = new WeerstationConnector();
  68. meting1 = weerstation1.getMostRecentMeasurement();
  69. meting2 = weerstation1.getAllMeasurementsBetween(periods.get(periodeNr).getBeginPeriode(), periods.get(periodeNr).getEindePeriode());
  70. currentGraph = false;
  71. startupState = false;
  72. currentScreen = 0;
  73. wait = true;
  74. graph = false;
  75. Timer timer = new Timer();
  76. checkData();
  77. //All the different screen classes
  78. final List<Grootheid> lstScreens = new ArrayList<Grootheid>();
  79. lstScreens.add(new OutsideTemp(meting1, meting2)); //Buitentemperatuur
  80. lstScreens.add(new OutsideHum(meting1, meting2)); //Luchtv. Buiten
  81. lstScreens.add(new InsideTemp(meting1, meting2)); //Binnentemperatuur
  82. lstScreens.add(new InsideHum(meting1, meting2)); //Luchtv. Binnen
  83. lstScreens.add(new AvgWindSpeed(meting1, meting2)); //Gem. Windsnelheid
  84. lstScreens.add(new WindDirection(meting1, meting2)); //Windrichting
  85. lstScreens.add(new WindChill(meting1, meting2)); //Gevoelstemperatuur
  86. lstScreens.add(new Barometer(meting1, meting2)); //Luchtdruk
  87. lstScreens.add(new Voorspellingen(meting1)); //Weervoorspelling
  88. lstScreens.add(new RainRate(meting1, meting2)); //Regenval
  89. lstScreens.add(new CloudHeight(meting1, meting2)); //Wolkhoogte
  90. lstScreens.add(new UVLevel(meting1, meting2)); //UV Level
  91. lstScreens.add(new HeatIndex(meting1, meting2)); //Dauwpunt
  92. lstScreens.add(new Zonsterkte(meting1, meting2)); //Zonkracht
  93. lstScreens.add(new DewPoint(meting1, meting2)); //Dauwpunt
  94. lstScreens.add(new Sun(meting1)); //Sunrise en Sunset
  95. lstScreens.add(new LangsteHittegolfPeriode(meting1, meting2));
  96. lstScreens.add(new LangsteZomerPeriode(meting1, meting2)); //Langste Zomerse Periode
  97. // lstScreens.add(new LangsteTempStijgingPeriode(meting1, meting2)); //Langste temperatuurstijging
  98. lstScreens.add(new LangsteRegenPeriode(meting1, meting2)); //Langste Regen Periode
  99. lstScreens.add(new MaximaleRegenPeriode(meting1, meting2)); //Totale regenval in een periode
  100. lstScreens.add(new GraadDagen(meting1, meting2)); //Aantal graaddagen in een periode
  101. stopStartupAnimatie();
  102. while(startup)
  103. {
  104. try
  105. {
  106. Thread.sleep(1);
  107. }
  108. catch(InterruptedException e)
  109. {
  110. e.printStackTrace();
  111. }
  112. }
  113. GUIboard.clearTop();
  114. GUIboard.clearLeft();
  115. GUIboard.clearRight();
  116. //Screen switcher
  117. timer.scheduleAtFixedRate(new TimerTask() {
  118. public void run() {
  119. if(!wait){
  120. currentScreen++;
  121. }
  122. if(currentScreen == lstScreens.size()){
  123. currentScreen = 0;
  124. }
  125. Grootheid obj = lstScreens.get(currentScreen);
  126. if(graph && (graph != currentGraph))
  127. {
  128. obj.displayGraph();
  129. currentGraph = true;
  130. }
  131. else if(!graph)
  132. {
  133. obj.display();
  134. }
  135. }
  136. }, 0, 5*1000);
  137. //Update recent measurement every 60 seconds
  138. timer.scheduleAtFixedRate(new TimerTask() {
  139. public void run() {
  140. meting1 = weerstation1.getMostRecentMeasurement();
  141. for(Grootheid obj : lstScreens){
  142. obj.updateRecent(meting1);
  143. }
  144. }
  145. }, 60*1000, 60*1000);
  146. //Update 24hours every 60 seconds
  147. timer.scheduleAtFixedRate(new TimerTask() {
  148. public void run() {
  149. animator = new Timer();
  150. startLoadAnimatie();
  151. meting2 = weerstation1.getAllMeasurementsBetween(periods.get(periodeNr).getBeginPeriode(), periods.get(periodeNr).getEindePeriode());
  152. for(Grootheid obj : lstScreens){
  153. obj.updatePeriod(meting2);
  154. }
  155. stopLoadAnimatie();
  156. while(load)
  157. {
  158. try
  159. {
  160. Thread.sleep(1);
  161. }
  162. catch(InterruptedException e)
  163. {
  164. e.printStackTrace();
  165. }
  166. }
  167. }
  168. },10*60*1000, 10*60*1000);
  169. //Button checker
  170. timer.scheduleAtFixedRate(new TimerTask() {
  171. public void run() {
  172. if(IO.readShort(0x100) == 1){
  173. if(IO.readShort(0x80) == 1){
  174. wait = true;
  175. if(!graph)
  176. {
  177. Grootheid obj = lstScreens.get(currentScreen);
  178. obj.displayGraph();
  179. }
  180. graph = true;
  181. }else if(IO.readShort(0x80) == 0){
  182. wait = false;
  183. if(graph)
  184. {
  185. Grootheid obj = lstScreens.get(currentScreen);
  186. obj.display();
  187. }
  188. graph = false;
  189. }
  190. }else if(IO.readShort(0x100) == 0){
  191. if(IO.readShort(0x80) == 1){
  192. if(!graph)
  193. {
  194. Grootheid obj = lstScreens.get(currentScreen);
  195. obj.displayGraph();
  196. }
  197. graph = true;
  198. }else if(IO.readShort(0x80) == 0){
  199. if(graph)
  200. {
  201. Grootheid obj = lstScreens.get(currentScreen);
  202. obj.display();
  203. }
  204. graph = false;
  205. }
  206. wait = true;
  207. }
  208. }
  209. }, 0, 100);
  210. }
  211. /**
  212. * Start de animatie die speelt tijdens het opstarten en laden van het weerstation
  213. *
  214. * @param starter De timer die de animatie laat lopen
  215. */
  216. public void startStartupAnimatie()
  217. {
  218. starter.scheduleAtFixedRate(new TimerTask() {
  219. public void run() {
  220. startup = true;
  221. GUIboard.clearBottom();
  222. GUIboard.clearTop();
  223. GUIboard.clearLeft();
  224. GUIboard.clearRight();
  225. char[] charray;
  226. if(startupState)
  227. {
  228. charray = " Weerstation Breda\n Connecting".toCharArray();
  229. }
  230. else
  231. {
  232. charray = " Weerstation Breda\n Calculating".toCharArray();
  233. }
  234. for(char ch : charray)
  235. {
  236. IO.writeShort(0x40, ch);
  237. }
  238. int p = 1;
  239. for(int i=0; i<256;i++)
  240. {
  241. if(i<128)
  242. {
  243. IO.writeShort(0x42, 1 << 12 | i << 5 | 26);
  244. }
  245. else
  246. {
  247. IO.writeShort(0x42, 0 << 12 | i-128 << 5 | 26);
  248. }
  249. if(i%42==0)
  250. {
  251. p = p << 1;
  252. if(p>32)
  253. {
  254. p=1;
  255. }
  256. for(int q=0x10; q<0x40; q+=0x02)
  257. {
  258. IO.writeShort(q, 0x100 | p);
  259. }
  260. }
  261. IO.delay(4);
  262. }
  263. startup = false;
  264. }
  265. }, 0, (128 + 1)*8);
  266. }
  267. /**
  268. * Stopt de animatie die speelt tijdens het opstarten en laden van het weerstation
  269. */
  270. public void stopStartupAnimatie()
  271. {
  272. starter.cancel();
  273. }
  274. /**
  275. * Start de animatie die speelt tijdens het laden op de achtergrond van het weerstation
  276. */
  277. public void startLoadAnimatie()
  278. {
  279. animator.scheduleAtFixedRate(new TimerTask() {
  280. public void run() {
  281. load = true;
  282. for(int i=0; i<128;i++)
  283. {
  284. IO.writeShort(0x42, 0 << 12 | i << 5 | 31);
  285. IO.delay(4);
  286. }
  287. for(int i=0; i<128;i++)
  288. {
  289. IO.writeShort(0x42, 1 << 12 | i << 5 | 31);
  290. IO.delay(4);
  291. }
  292. load = false;
  293. }
  294. }, 0, (128 + 1)*8);
  295. }
  296. /**
  297. * Stopt de animatie die speelt tijdens het laden op de achtergrond van het weerstation
  298. */
  299. public void stopLoadAnimatie()
  300. {
  301. animator.cancel();
  302. }
  303. /**
  304. * Controleert de binnenkomende data op corrupte data en verwijderd deze
  305. */
  306. public void checkData(){
  307. Iterator<Measurement> it = meting2.iterator();
  308. while( it.hasNext() )
  309. {
  310. Measurement m = it.next();
  311. if(m.getRawOutsideTemp() >= Short.MAX_VALUE)
  312. {
  313. it.remove();
  314. }
  315. }
  316. }
  317. }