SimulationManager.java 10 KB

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  1. package ui.controller;
  2. import java.util.ArrayList;
  3. import java.util.HashMap;
  4. import classes.CpsEdge;
  5. import classes.CpsNode;
  6. import classes.CpsObject;
  7. import classes.HolonElement;
  8. import classes.HolonObject;
  9. import classes.HolonSwitch;
  10. import classes.subNet;
  11. import ui.model.Model;
  12. import ui.view.MyCanvas;
  13. public class SimulationManager {
  14. private Model model;
  15. private ArrayList<CpsObject> objectsToHandle;
  16. private ArrayList<CpsEdge> allConnections;
  17. private ArrayList<subNet> subNets;
  18. private MyCanvas canvas;
  19. private int timeStep;
  20. private boolean simMode;
  21. private HashMap<Integer, Float> tagTable = new HashMap<Integer, Float>();
  22. public SimulationManager(Model m){
  23. canvas = null;
  24. model = m;
  25. subNets = new ArrayList<subNet>();
  26. simMode = model.getIsSimulation();
  27. }
  28. /**
  29. * calculates the flow of the edges and the supply for objects
  30. * @param x
  31. */
  32. public void calculateStateForTimeStep(int x){
  33. simMode = model.getIsSimulation();
  34. timeStep = x;
  35. searchForSubNets();
  36. for(subNet singleSubNet: subNets){
  37. ResetConnections(singleSubNet.getObjects().get(0), new ArrayList<Integer>(), new ArrayList<CpsEdge>());
  38. }
  39. for(subNet singleSubNet: subNets){
  40. float production = calculateEnergy("prod", singleSubNet, timeStep);
  41. float consumption = calculateEnergy("cons", singleSubNet, timeStep);
  42. float minConsumption = calculateMinimumEnergy( singleSubNet, timeStep);
  43. setFlow(singleSubNet, simMode);
  44. for(HolonObject hl: singleSubNet.getObjects()){
  45. if(!(hl.getState() == 0) && !(hl.getState() == 3)){
  46. for(int i = 0; i < hl.getConnections().size(); i++){
  47. CpsEdge edge = hl.getConnectedTo().get(i);
  48. if(edge.getState() && edge.getFlow() > 0 || edge.getCapacity() == -1){
  49. // 0 = no energy, 1 = not supplied, 2 = supplied, 3 = producer, 4 = partially supplied
  50. if((production + consumption) >= 0){
  51. hl.setState(2);
  52. }
  53. if((production + consumption) < 0 ){
  54. if((production + minConsumption) >= 0){
  55. hl.setState(4);
  56. }else if(hl.checkIfPartiallySupplied(timeStep)){
  57. hl.setState(4);
  58. }else {
  59. hl.setState(1);
  60. }
  61. }
  62. break;
  63. }
  64. hl.setState(1);
  65. }
  66. if(hl.checkIfPartiallySupplied(timeStep) && !(hl.getState() == 2)){
  67. hl.setState(4);
  68. }
  69. }
  70. }
  71. }
  72. canvas.repaint();
  73. }
  74. public void setFlow(subNet sN, boolean simulation){
  75. if(simulation){
  76. setFlowSimulation(sN);
  77. } else {
  78. setFlowModelation(sN);
  79. }
  80. }
  81. public void setFlowModelation(subNet sN){
  82. for(HolonObject hl: sN.getObjects()){
  83. float energy = hl.getCurrentEnergyAtTimeStep(timeStep);
  84. if(energy > 0){
  85. for(CpsEdge e : sN.getEdges()){
  86. e.setFlow(e.getFlow() + energy);
  87. e.calculateState(simMode);
  88. }
  89. }
  90. }
  91. }
  92. public void setFlowSimulation(subNet sN){
  93. ArrayList<CpsObject> producers = new ArrayList<CpsObject>();
  94. CpsObject tmp = null;
  95. tagTable = new HashMap<Integer, Float>();
  96. for(HolonObject hl: sN.getObjects()){
  97. float energy = hl.getCurrentEnergyAtTimeStep(timeStep);
  98. if(energy > 0){
  99. tagTable.put(hl.getID(), energy);
  100. for(CpsEdge edge: hl.getConnections()){
  101. if(edge.getState()){
  102. if(edge.getA().getID() == hl.getID()){
  103. edge.getB().addTag(hl.getID());
  104. tmp = edge.getB();
  105. }
  106. if(edge.getB().getID() == hl.getID()){
  107. edge.getA().addTag(hl.getID());
  108. tmp = edge.getA();
  109. }
  110. edge.setFlow(edge.getFlow() + energy);
  111. edge.calculateState(true);
  112. edge.addTag(hl.getID());
  113. if(edge.getState() && !producers.contains(tmp)){
  114. producers.add(tmp);
  115. }
  116. }
  117. }
  118. }
  119. }
  120. setFlowSimRec(producers);
  121. }
  122. public void setFlowSimRec(ArrayList<CpsObject> nodes){
  123. ArrayList<CpsObject> newNodes = new ArrayList<CpsObject>();
  124. CpsObject tmp = null;
  125. if(nodes.size() != 0){
  126. for(CpsObject cps: nodes){
  127. for(CpsEdge edge: cps.getConnections()){
  128. for(Integer tag: cps.getTag()){
  129. if(edge.getState() && !(edge.getTags().contains(tag))){
  130. edge.setFlow(edge.getFlow() + tagTable.get(tag));
  131. System.out.println(cps.getID() + " has tags:" + getString(cps));
  132. edge.addTag(tag);
  133. if(edge.getA().getID() == cps.getID()){
  134. tmp = edge.getB();
  135. tmp.setTags(mergeLists(tmp.getTag(), cps.getTag()));
  136. }
  137. if(edge.getB().getID() == cps.getID()){
  138. tmp = edge.getA();
  139. tmp.setTags(mergeLists(tmp.getTag(), cps.getTag()));
  140. }
  141. if(edge.getState() && !(newNodes.contains(tmp))){
  142. newNodes.add(tmp);
  143. }
  144. }
  145. }
  146. edge.calculateState(true);
  147. }
  148. }
  149. setFlowSimRec(newNodes);
  150. }
  151. }
  152. public String getString(CpsObject cps){
  153. String result = "";
  154. for(Integer i:cps.getTag()){
  155. result = result + ", " + i;
  156. }
  157. return result;
  158. }
  159. public ArrayList<Integer> mergeLists(ArrayList<Integer> A, ArrayList<Integer> B){
  160. ArrayList<Integer> result = new ArrayList<Integer>();
  161. for(Integer i: A){
  162. if(!(B.contains(i))){
  163. result.add(i);
  164. }
  165. }
  166. result.addAll(B);
  167. return result;
  168. }
  169. public void ResetConnections(CpsObject cps, ArrayList<Integer> visitedObj, ArrayList<CpsEdge> visitedEdges){
  170. visitedObj.add(cps.getID());
  171. cps.resetTags();
  172. for(CpsEdge e: cps.getConnections()){
  173. if(!(visitedEdges.contains(e))){
  174. e.setFlow(0);
  175. e.calculateState(simMode);
  176. e.setTags(new ArrayList<Integer>());
  177. visitedEdges.add(e);
  178. if(!(visitedObj.contains(e.getA().getID()))){
  179. ResetConnections(e.getA(), visitedObj, visitedEdges);
  180. e.getA().resetTags();
  181. }
  182. if(!(visitedObj.contains(e.getB().getID()))){
  183. ResetConnections(e.getB(), visitedObj, visitedEdges);
  184. e.getB().resetTags();
  185. }
  186. }
  187. }
  188. }
  189. /**
  190. * calculates the energy of either all producers or consumers
  191. * @param type
  192. * @param sN
  193. * @return
  194. */
  195. public float calculateEnergy(String type, subNet sN, int x){
  196. float energy = 0;
  197. for(HolonObject hl: sN.getObjects()){
  198. if(type.equals("prod")){
  199. if(hl.getCurrentEnergyAtTimeStep(x) > 0){
  200. energy = energy + hl.getCurrentEnergyAtTimeStep(x);
  201. hl.setState(3);
  202. }
  203. }
  204. if(type.equals("cons")){
  205. if(hl.getCurrentEnergyAtTimeStep(x) < 0){
  206. energy = energy + hl.getCurrentEnergyAtTimeStep(x);
  207. hl.setState(1);
  208. }
  209. }
  210. if(hl.getCurrentEnergyAtTimeStep(x) == 0){
  211. hl.setState(0);
  212. }
  213. }
  214. return energy;
  215. }
  216. public float calculateMinimumEnergy(subNet sN, int x){
  217. float min = 0;
  218. float minElement = 0;
  219. for(HolonObject hl: sN.getObjects()){
  220. if(hl.getElements().size() > 0 && hl.getElements().get(0).getTotalEnergyAtTimeStep(x) < 0 ){
  221. minElement = hl.getElements().get(0).getTotalEnergyAtTimeStep(x);
  222. }
  223. for(HolonElement he: hl.getElements()){
  224. if(minElement < he.getTotalEnergyAtTimeStep(x) && he.getTotalEnergyAtTimeStep(x) < 0){
  225. minElement = he.getTotalEnergyAtTimeStep(x);
  226. }
  227. }
  228. min = min + minElement;
  229. }
  230. return min;
  231. }
  232. /**
  233. * generates all subNets from all objectsToHandle
  234. */
  235. public void searchForSubNets(){
  236. subNets = new ArrayList<subNet>();
  237. boolean end = false;
  238. int i = 0;
  239. CpsObject cps;
  240. if(objectsToHandle.size() > 0){
  241. while(!end){
  242. cps = objectsToHandle.get(i);
  243. subNet singleSubNet = new subNet(new ArrayList<HolonObject>(), new ArrayList<CpsEdge>(), new ArrayList<HolonSwitch>());
  244. singleSubNet = buildSubNet(cps, new ArrayList<Integer>(), singleSubNet);
  245. if(singleSubNet.getObjects().size() != 0){
  246. subNets.add(singleSubNet);
  247. }
  248. if(0 == objectsToHandle.size()){
  249. end = true;
  250. }
  251. }
  252. }
  253. }
  254. /**
  255. * recursivly generates a subnet of all objects, that one specific object is connected to
  256. * @param cps
  257. * @param visited
  258. * @param sN
  259. * @return
  260. */
  261. public subNet buildSubNet(CpsObject cps, ArrayList<Integer> visited, subNet sN){
  262. visited.add(cps.getID());
  263. if(cps instanceof HolonObject){
  264. sN.getObjects().add((HolonObject) cps);
  265. }
  266. if(cps instanceof HolonSwitch){
  267. sN.getSwitches().add((HolonSwitch) cps);
  268. }
  269. removeFromToHandle(cps.getID());
  270. CpsObject A;
  271. CpsObject B;
  272. for(CpsEdge edge: cps.getConnections()){
  273. A = edge.getA();
  274. B = edge.getB();
  275. if(!(cps instanceof HolonSwitch)){
  276. if(!(sN.getEdges().contains(edge))){
  277. sN.getEdges().add(edge);
  278. }
  279. }
  280. if(!visited.contains(A.getID()) && legitState(A, cps)){
  281. sN = buildSubNet(A, visited, sN);
  282. }
  283. if(!visited.contains(B.getID()) && legitState(B, cps)){
  284. sN = buildSubNet(B, visited, sN);
  285. }
  286. }
  287. return sN;
  288. }
  289. public boolean legitState(CpsObject neighbor, CpsObject current){
  290. if(current instanceof HolonSwitch){
  291. if(((HolonSwitch) current).getActiveAt()[timeStep]){
  292. if(neighbor instanceof HolonSwitch){
  293. if(((HolonSwitch) neighbor).getActiveAt()[timeStep]){
  294. return true;
  295. }else{
  296. return false;
  297. }
  298. }
  299. }else{
  300. return false;
  301. }
  302. }
  303. return true;
  304. }
  305. /**
  306. * removes an Object that already has been handled with
  307. * @param id
  308. */
  309. public void removeFromToHandle(int id){
  310. for(int i = 0; i < objectsToHandle.size(); i++){
  311. if(objectsToHandle.get(i).getID() == id){
  312. objectsToHandle.remove(i);
  313. }
  314. }
  315. }
  316. /**
  317. * ensures that objectsToHandle only contains HolonObjects
  318. */
  319. public void cleanObjectsToHandle(){
  320. for(int i = 0; i < objectsToHandle.size(); i++){
  321. if(!(objectsToHandle.get(i) instanceof HolonObject)){
  322. objectsToHandle.remove(i);
  323. }
  324. }
  325. }
  326. /**
  327. * copies the data of an array of Objects
  328. * @param toCopy
  329. */
  330. public void copyObjects(ArrayList<CpsObject> toCopy){
  331. objectsToHandle = new ArrayList<CpsObject>();
  332. for(CpsObject cps: toCopy){
  333. objectsToHandle.add(cps);
  334. }
  335. }
  336. /**
  337. * Prints the Components auf all subnets
  338. */
  339. public void printNet(){
  340. for(int i = 0; i < subNets.size(); i++){
  341. System.out.println("SUBNET NR:" + i);
  342. System.out.println(" Objects:");
  343. for(int j = 0; j < subNets.get(i).getObjects().size(); j++){
  344. HolonObject hl = subNets.get(i).getObjects().get(j);
  345. System.out.println(" " + hl.getName() + " " + hl.getID());
  346. }
  347. System.out.println(" Edges:");
  348. for(int j = 0; j < subNets.get(i).getEdges().size(); j++){
  349. CpsEdge edge = subNets.get(i).getEdges().get(j);
  350. System.out.println(" " + edge.getA().getName() + " connected To " + edge.getB().getName());
  351. }
  352. System.out.println(" Switches:");
  353. for(int j = 0; j < subNets.get(i).getSwitches().size(); j++){
  354. HolonSwitch sw = subNets.get(i).getSwitches().get(j);
  355. System.out.println(" " + sw.getName() + " " + sw.getID() + " State:" + sw.getActiveAt()[timeStep]);
  356. }
  357. }
  358. }
  359. public void setCanvas(MyCanvas can){
  360. canvas = can;
  361. }
  362. public void reset(){
  363. copyObjects(model.getObjectsOnCanvas());
  364. }
  365. }