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source: orxonox.OLD/orxonox/trunk/src/track_manager.cc @ 3840

Last change on this file since 3840 was 3840, checked in by bensch, 19 years ago

orxonox/trunk: preventing joining from join, IF and only if one trackElement is not found

File size: 28.5 KB
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1/*
2   orxonox - the future of 3D-vertical-scrollers
3
4   Copyright (C) 2004 orx
5
6   This program is free software; you can redistribute it and/or modify
7   it under the terms of the GNU General Public License as published by
8   the Free Software Foundation; either version 2, or (at your option)
9   any later version.
10
11   ### File Specific:
12   main-programmer: Benjamin Grauer
13   co-programmer: ...
14*/
15
16#define DEBUG_SPECIAL_MODULE DEBUG_MODULE_TRACK_MANAGER
17
18#include "track_manager.h"
19
20#include "base_object.h"
21#include "p_node.h"
22#include "track_node.h"
23#include "stdincl.h"
24#include "list.h"
25
26
27
28#include <stdarg.h>
29
30using namespace std;
31
32/**
33   \brief initializes a TrackElement (sets the default values)
34*/
35TrackElement::TrackElement(void)
36{
37  this->isFresh = true;
38  this->isHotPoint = false;
39  this->isSavePoint = false;
40  this->isFork = false;
41  this->isJoined = false;
42  this->mainJoin = false;
43  this->ID = -1;
44  this->startingTime = 0;
45  this->duration = TMAN_DEFAULT_DURATION;
46  this->endTime = 1;
47  this->jumpTime = 0;
48  this->width = TMAN_DEFAULT_WIDTH;
49  this->nodeCount = 0;
50  this->curve = NULL;
51  this->childCount = 0;
52  this->children = NULL;
53  this->name = NULL;
54
55  this->history = NULL;
56
57  this->subject = NULL;
58  this->condFunc = &TrackElement::random;
59}
60
61/**
62    \brief destroys all alocated memory)
63    \todo eventually when deleting a TrackElement you would not like to delete all its preceding TrackElements
64*/
65TrackElement::~TrackElement(void)
66{
67  // deleting the Name
68  delete []name;
69  // deleting the Curve
70  delete this->curve;
71
72  // deleting all the Children of this TrackNode.
73  if ((!this->isJoined &&this->childCount > 0) 
74      || (this->isJoined && this->mainJoin)) // only if this is the MainJoin.
75    {
76      tIterator<TrackElement>* iterator = this->children->getIterator();
77      TrackElement* enumElem = iterator->nextElement();
78      while (enumElem)
79        {
80          delete enumElem;
81          enumElem = iterator->nextElement();
82        }
83      delete iterator;
84      delete this->children;
85    }
86}
87
88/**
89   \brief Searches through all the TrackElements for trackID.
90   \param trackID The ID to search for.
91   \returns The TrackElement if Found, NULL otherwise.
92*/
93TrackElement* TrackElement::findByID(unsigned int trackID)
94{
95  // return if Found.
96  if (this->ID == trackID)
97    return this;
98  // search all children
99  if (this->childCount > 0)
100    {
101      tIterator<TrackElement>* iterator = this->children->getIterator();
102      TrackElement* enumElem = iterator->nextElement();
103      TrackElement* tmpElem;
104      while (enumElem)
105        {
106          if ((tmpElem = enumElem->findByID(trackID)))
107            return tmpElem;
108          enumElem = iterator->nextElement();
109        }
110      delete iterator;
111    }
112  // if not found
113  else 
114    return NULL;
115}
116
117
118/**
119   \brief Searches through all the TrackElements for a trackName
120   \param trackName The name to search for.
121   \returns The TrackElement if Found, NULL otherwise.
122*/
123TrackElement* TrackElement::findByName(const char* trackName)
124{
125  // return if Found.
126  if (this->name && !strcmp(this->name, trackName))
127    return this;
128  // search all children
129  if (this->childCount > 0)
130    {
131      tIterator<TrackElement>* iterator = this->children->getIterator();
132      TrackElement* enumElem = iterator->nextElement();
133      TrackElement* tmpElem;
134      while (enumElem)
135        {
136          if ((tmpElem = enumElem->findByName(trackName)))
137            return tmpElem;
138          enumElem = iterator->nextElement();
139        }
140      delete iterator;
141    }
142  // if not found
143  else 
144    return NULL;
145}
146
147/**
148   \brief checks if there are any BackLoops in the Track (Backloops only
149   \param trackElem the trackElement to check about
150   \returns true if NO loop was found, false Otherwise
151   You actually have to act on false!!
152   it simply does this by looking if the current trackElem is found again somewhere else in the Track
153*/
154bool TrackElement::backLoopCheck(const TrackElement* trackElem, unsigned int depth) const
155{
156  if(depth == 0 || this != trackElem)
157    {
158      if (this->children)
159        {
160          tIterator<TrackElement>* iterator = this->children->getIterator();
161          TrackElement* enumElem = iterator->nextElement();
162          while (enumElem)
163            {
164              if(!enumElem->backLoopCheck(trackElem, depth + 1))
165                return false;
166              enumElem = iterator->nextElement();
167            }
168          delete iterator;
169        }
170    }
171  else
172    return false;
173
174  // only returns if everything worked out
175  return true;
176}
177
178/**
179   \param childNumber which child to return
180   \returns the n-the children (starting at 0).
181   Be aware, that when the trackElement has no Children, NULL will be returned
182*/
183TrackElement* TrackElement::getChild(int childCount) const
184{
185  // if the the trackElement has no children return NULL.
186  if (this->childCount == 0)
187    return NULL;
188  // we cannot return the childCount+m's Child, so we return the last.
189  if (childCount > this->childCount)
190    childCount = this->childCount;
191 
192  tIterator<TrackElement>* iterator = this->children->getIterator();
193  TrackElement* enumElem = iterator->nextElement();
194  for (int i = 0; i < childCount; i++)
195    enumElem = iterator->nextElement();
196  delete iterator;
197  return enumElem;
198}
199
200/**
201   \param name the Name to set.
202*/
203void TrackElement::setName(const char* name)
204{
205  //  delete the old name
206  if (this->name)
207    delete []this->name;
208  // if a name was given.
209  if (name)
210    {
211      this->name = new char[strlen(name)+1];
212      strcpy(this->name, name);
213    }
214  else 
215    this->name = NULL;
216}
217
218/**
219   \returns The name of this TrackElement
220*/
221const char* TrackElement::getName(void) const
222{
223  return this->name;
224}
225
226/**
227   \brief prints out debug information about this TrackElement
228*/
229void TrackElement::debug(void) const
230{
231  PRINT(0)("--== TrackElement:%i ==--", this->ID);
232  if(this->getName())
233    PRINT(0)("Name: %s::", this->getName());
234  if(this->isFresh)
235    PRINT(0)("  -- has not jet eddited in any way --\n");
236  PRINT(0)("\n   TimeTable: startingTime=%f; endTime=%f; duration=%f; jumpTime=%f\n", this->startingTime, this->endTime, this->duration, this->jumpTime);
237  PRINT(0)("   consists of %d Points\n", this->nodeCount);
238  if (this->childCount == 0)
239    PRINT(0)("   has no child\n");
240  else if (this->childCount == 1)
241    PRINT(0)("   has 1 child: =%d=\n", this->getChild(0)->ID);
242  else if (this->childCount > 1)
243    {
244      PRINT(0)("   has %d children: ", this->childCount);
245      //TrackElement* enumElem = this->children->enumerate();
246      tIterator<TrackElement>* iterator = this->children->getIterator();
247      TrackElement* enumElem = iterator->nextElement();
248      while (enumElem)
249        {
250          PRINT(0)("=%d= ", enumElem->ID);
251          enumElem = iterator->nextElement();
252        }
253      delete iterator;
254      PRINT(0)("\n");
255    }
256 
257  if(this->isHotPoint)
258    PRINT(0)("   is a special Point:\n");
259  if(this->isSavePoint)
260    PRINT(0)("    is a SavePoint\n");
261  if(this->isFork)
262    {
263      PRINT(0)("    is A Fork with with %d children.\n", this->childCount);
264    }
265  if(this->isJoined)
266    PRINT(0)("   is Joined at the End\n");
267 
268  if(!this->backLoopCheck(this)) /* this should not happen */
269    PRINT(2)(" THERE IS A BACKLOOP TO THIS ELEMENT\n");
270}
271
272/**
273   \brief CONDITION that chooses the first child for the decision (static)
274   \param nothing Nothing in this function
275   \returns the chosen child
276*/
277int TrackElement::lowest(const void* nothing) const
278{
279  return 0;
280}
281
282/**
283   \brief CONDITION that chooses the last child for the decision (static)
284   \param nothing Nothing in this function
285   \returns the chosen child
286*/
287int TrackElement::highest(const void* nothing) const
288{ 
289  return this->childCount-1;
290}
291
292/**
293   \brief CONDITION that chooses a random child for the decision (static)
294   \param nothing Nothing in this function
295   \returns the chosen child
296*/
297int TrackElement::random(const void* nothing) const
298{
299  int i = (int)floor ((float)rand()/(float)RAND_MAX * (float)this->childCount);
300  if (i >= this->childCount)
301    return this->childCount-1;
302  else 
303    return i;
304}
305
306/**
307   \brief CONDITION that chooses child 0, if the node(probably Player)
308   is left of its parent (z<0)) and 1/right otherwise.
309   \param node The node to act upon.
310   \returns the chosen child
311*/
312int TrackElement::leftRight(const void* node) const
313{
314  PNode* tmpNode = (PNode*)node;
315
316  if (tmpNode->getRelCoor()->z < 0)
317    return 0;
318  else 
319    return 1;
320}
321
322
323/**
324   \brief CONDITION that chooses the child, that has the nearest distance to the node (probably player).
325   \param node The node to act upon.
326   \returns the chosen child
327
328   This is rather dangerous, because one must carefully set the points on the curve.
329   The best Way is to set the nodes as wide away of each other as possible,
330   but take into consideration, that if the nodes are to far from a center node, the center will be chosen.
331   (play with this!!).
332*/
333int TrackElement::nearest(const void* node) const
334{
335  PNode* tmpNode = (PNode*)node;
336
337  Vector nodeRelCoord = *tmpNode->getRelCoor();
338  float minDist = 100000000;
339  int childNumber = 0;
340  int i = 0;
341
342  //TrackElement* enumElem = this->children->enumerate();
343  tIterator<TrackElement>* iterator = this->children->getIterator();
344  TrackElement* enumElem = iterator->nextElement();
345  while (enumElem)
346    {
347      float dist = (nodeRelCoord - enumElem->curve->getNode(4)).len();
348      if (dist < minDist)
349        {
350          minDist = dist;
351          childNumber = i;
352        }
353      i++;
354      enumElem = iterator->nextElement();
355    }
356  delete iterator;
357
358  PRINTF(4)("PathDecision with nearest algorithm: %d\n", childNumber);
359  return childNumber;
360}
361
362
363////////////////////////
364///// TRACKMANAGER /////
365////////////////////////
366/**
367   \brief standard constructor
368
369*/
370TrackManager::TrackManager(void)
371{
372  this->setClassName("TrackManager");
373 
374  TrackManager::singletonRef = this; // do this because otherwise the TrackNode cannot get The instance of the TrackManager
375
376  PRINTF(3)("Initializing the TrackManager\n");
377  // setting up the First TrackElement
378  this->firstTrackElem = new TrackElement();
379  this->firstTrackElem->ID = 1;
380  this->currentTrackElem = firstTrackElem;
381
382  this->curveType = CURVE_BEZIER;
383  this->localTime = 0;
384  this->maxTime = 0;
385  this->trackElemCount = 1;
386  this->trackNode = new TrackNode();
387  this->setBindSlave(this->trackNode);
388}
389
390/**
391   \brief standard destructor
392*/
393TrackManager::~TrackManager(void)
394{
395  PRINTF(3)("Destruct TrackManager\n");
396
397  PRINTF(4)("Deleting all the TrackElements\n");
398  delete this->firstTrackElem;
399
400  // the tracknode should be deleted here, but is deleted by pNode: -> null_parent
401
402  // we do not have a TrackManager anymore
403  TrackManager::singletonRef = NULL;
404}
405
406//! Singleton Reference to TrackManager
407TrackManager* TrackManager::singletonRef = NULL;
408
409/**
410   \returns The reference on the TrackManager.
411
412   If the TrackManager does not exist, it will be created.
413*/
414TrackManager* TrackManager::getInstance(void) 
415{
416  if (!TrackManager::singletonRef)
417    TrackManager::singletonRef = new TrackManager();
418  return TrackManager::singletonRef;
419}
420
421
422// INITIALIZE //
423/**
424   \brief reserves Space for childCount children
425   \param childCount The Count of children to make space for.
426   \param trackElem The TrackElement to appy this to. (if NULL chose this->currentTrackElement)
427*/
428void TrackManager::initChildren(unsigned int childCount, TrackElement* trackElem)
429{
430  if (!trackElem)
431    trackElem = this->currentTrackElem;
432
433  trackElem->childCount = childCount;
434  trackElem->mainJoin = true;  // this tells join, that this one is the Main Join, if it tries to join multiple Tracks
435  trackElem->children =  new tList<TrackElement>();
436  for (int i = 0; i < childCount; i++)
437    {
438      // create a new Element
439      TrackElement* newElem = new TrackElement();
440      // setting up the new ID
441      newElem->ID = ++trackElemCount;
442      // setting up the Time
443      newElem->startingTime = trackElem->endTime + trackElem->jumpTime;
444      // adds the conection Point
445      this->addPoint(trackElem->curve->getNode(trackElem->curve->getNodeCount()),
446                     newElem);
447      // add the new child to the childList.
448      trackElem->children->add(newElem);
449    }
450
451  // setting the Name of the new TrackElement to the name of the last one, if the childCount is one
452  if (childCount == 1)
453    trackElem->getChild(0)->setName(trackElem->getName());
454
455  // select the first Child to work on.
456  this->currentTrackElem = trackElem->getChild(0);
457}
458
459
460/**
461   \brief Sets the trackID we are working on.
462   \param trackID the trackID we are working on
463*/
464void TrackManager::workOn(unsigned int trackID)
465{
466  TrackElement* tmpElem = this->firstTrackElem->findByID(trackID);
467  if (tmpElem)
468    this->currentTrackElem = tmpElem;
469  else
470    PRINTF(2)("TrackElement %d not Found, leaving unchanged\n", trackID);
471  PRINTF(4)("now Working on %d\n", this->currentTrackElem->ID);
472}
473
474/**
475   \brief Sets the TrackElement to work on
476   \param trackName the Name of the Track to work on
477*/
478void TrackManager::workOn(const char* trackName)
479{
480  TrackElement* tmpElem = this->firstTrackElem->findByName(trackName);
481  if (tmpElem)
482    this->currentTrackElem = tmpElem;
483  else
484    PRINTF(2)("TrackElement %s not Found, leaving unchanged\n", trackName);
485  PRINTF(4)("now Working on %d\n", this->currentTrackElem->ID);
486}
487
488/**
489   \brief Sets the Type of the Curve
490   \param curveType The Type to set
491   \param trackElem the TrackElement that should get a new Curve.
492
493   \brief this will possibly get obsolete during the process.
494*/
495void TrackManager::setCurveType(CurveType curveType, TrackElement* trackElem)
496{
497  if (!trackElem->isFresh)
498    {
499      PRINTF(2)("It is not possible to change the type of a Curve after you have have appended some points to it\n");
500      return;
501    }
502  this->curveType = curveType;
503  switch (curveType)
504    {
505    case CURVE_BEZIER:
506      trackElem->curve = new BezierCurve();
507      break;
508    }
509}
510
511/**
512   \brief Sets the duration of the current path in seconds.
513   \param duration The duration in seconds.
514   \param trackElem The TrackElement to apply this to.
515*/
516void TrackManager::setDuration(float duration, TrackElement* trackElem)
517{
518  if (!trackElem)
519    trackElem = this->currentTrackElem;
520
521  trackElem->duration = duration;
522  trackElem->endTime = trackElem->startingTime + duration;
523}
524
525/**
526   \brief adds a point to trackElem
527   \param newPoint The point to add.
528   \param trackElem The TrackElement to add the Point to
529*/
530bool TrackManager::addPoint(Vector newPoint, TrackElement* trackElem)
531{
532  if (!trackElem)
533    trackElem = this->currentTrackElem;
534
535  if (trackElem->isFresh)
536    {
537      this->setCurveType(TMAN_DEFAULT_CURVETYPE, trackElem);
538      trackElem->isFresh = false;
539    }
540  trackElem->curve->addNode(newPoint);
541  trackElem->nodeCount++;
542}
543
544/**
545   \brief adds save/splitpoint.
546   \param newPoint The point to add.
547   \returns A Pointer to a newly appended Curve
548*/
549int TrackManager::addHotPoint(Vector newPoint, TrackElement* trackElem)
550{
551  if (!trackElem)
552    trackElem = this->currentTrackElem;
553
554  PRINTF(4)("setting up a HotPoint\n");
555  if (trackElem->isFresh)
556    {
557      trackElem->isFresh = false;
558    }
559
560  // \todo HotPoint Handling.
561  trackElem->curve->addNode(newPoint);
562  trackElem->nodeCount++;
563  this->initChildren(1, trackElem);
564}
565
566/**
567   \brief Sets the last HotPoint into a savePoint.
568   \param trackElem The TrackElement to appy this to. (if NULL chose this->currentTrackElement)
569   \returns A Pointer to a newly appended Curve
570
571   If no HotPoint was defined the last added Point will be rendered into a savePoint. \n
572   If the HotPoint was defined as a fork the Point will \b not be set into a savePoint.
573*/
574int TrackManager::setSavePoint(TrackElement* trackElem)
575{
576  if (!trackElem)
577    trackElem = this->currentTrackElem;
578
579  PRINTF(4)("setting up a SavePoint.\n");
580  if (trackElem->isFork || trackElem->isSavePoint)
581    {
582      PRINTF(2)("%d is already finished \n", trackElem->ID);
583      return trackElem->getChild(0)->ID;
584    }
585  trackElem->isSavePoint = true;
586  trackElem->isHotPoint = true;
587
588  this->initChildren(1, trackElem);
589}
590
591/**
592   \brief adds some interessting non-linear movments through the level.
593   \param count The Count of childrens the current HotPoint will have.
594
595   If no HotPoint was defined the last added Point will be rendered into a fork. \n
596   If the HotPoint was defined as a savePoint the Point will \b not be set into a fork.
597*/
598void TrackManager::fork(unsigned int count, ...)
599{
600  int* trackIDs = new int[count];
601  this->forkV(count, trackIDs);
602  va_list ID;
603  va_start (ID, count);
604  for(int i = 0; i < count; i++)
605    {
606      *va_arg (ID, int*) = trackIDs[i];
607    }
608  va_end(ID); 
609  delete []trackIDs;
610}
611
612/**
613   \brief adds some interessting non-linear movments through the level.
614   \param count The Count of childrens the current HotPoint will have.
615   \param trackIDs A Pointer to an Array of ints which will hold the trackID's (the user will have to reserve space for this).
616   \param trackElem The TrackElement to appy this to. (if NULL chose this->currentTrackElement)
617   \see TrackManager::fork(unsigned int count, ...)
618*/
619void TrackManager::forkV(unsigned int count, int* trackIDs, TrackElement* trackElem)
620{
621  if (!trackElem)
622    trackElem = this->currentTrackElem;
623
624  PRINTF(4)("Forking with %d children\n", count);
625  if (trackElem->isSavePoint)
626    return;
627  trackElem->isFork = true;
628  trackElem->isHotPoint = true;
629  for(int i = 0; i < count; i++)
630    trackIDs[i]=this->trackElemCount+1+i;
631  this->initChildren(count, trackElem);
632}
633
634/**
635   \brief decides under what condition a certain Path will be chosen.
636   \param trackID the trackID to apply this to.
637   \param cond the CONDITION of the decision
638   \param subject the Subject that will be decided upon with CONDITION cond.
639*/
640void TrackManager::condition(unsigned int trackID, CONDITION cond, void* subject)
641{
642  this->condition(cond, subject, this->firstTrackElem->findByID(trackID));
643}
644
645/**
646   \brief decides under what condition a certain Path will be chosen.
647   \param cond the CONDITION of the decision
648   \param subject the Subject that will be decided upon with CONDITION cond.
649   \param trackElem The TrackElement to appy this to. (if NULL chose this->currentTrackElement)
650*/
651void TrackManager::condition(CONDITION cond, void* subject, TrackElement* trackElem)
652{
653  if (!trackElem)
654    trackElem = this->currentTrackElem;
655
656  if (!trackElem->isFork)
657    {
658      PRINTF(2)("%d is not a Fork, and no condition can be set in this case\n", trackElem->ID);
659      return;
660    }
661  else
662    {
663      switch (cond)
664        {
665        case LOWEST:
666          trackElem->condFunc = &TrackElement::lowest;
667          break;
668        case HIGHEST:
669          trackElem->condFunc = &TrackElement::highest;
670          break;
671        case RANDOM: 
672          trackElem->condFunc = &TrackElement::random;
673          break;
674        case LEFTRIGHT:
675          trackElem->condFunc = &TrackElement::leftRight;
676          break;
677        case NEAREST:
678          trackElem->condFunc = &TrackElement::nearest;
679          break;
680        case ENEMYKILLED:
681          break;
682        }
683      trackElem->subject=subject;
684    }
685}
686
687/**
688   \brief joins some tracks together again.
689   \param count The count of Paths to join.
690
691   Join will set the localTime to the longest time a Path has to get to this Point. \n
692   Join will join all curves to the first curve, meaning that all the tangents will be matched.
693*/
694void TrackManager::join(unsigned int count, ...)
695{
696  int* trackIDs = new int [count];
697  va_list ID;
698  va_start (ID, count);
699  for(int i = 0; i < count; i++)
700    {
701      trackIDs[i] = va_arg (ID, int);
702    }
703  va_end(ID);
704  this->joinV(count, trackIDs);
705  delete []trackIDs;
706}
707
708/**
709   \brief joins some tracks together again.
710   \param count The count of Paths to join.
711   \param trackIDs an Array with the trackID's to join
712
713   \see void TrackManager::join(int count, ...)
714*/
715void TrackManager::joinV(unsigned int count, int* trackIDs)
716{
717  TrackElement* tmpTrackElem;
718  for (int i = 0; i < count; i++)
719    if (!this->firstTrackElem->findByID(trackIDs[i]))
720      {
721        PRINTF(1)("Error trying to Connect Paths that do not exist yet: %d\n Not Joining Anything", trackIDs[i]);
722        return;
723      }
724                 
725
726  PRINTF(3)("Joining %d tracks and merging to Track %d\n", count, trackIDs[0]);
727
728  // checking if there is a back-loop-connection and ERROR if it is.
729  tmpTrackElem = this->firstTrackElem->findByID(trackIDs[0]);
730  if (!tmpTrackElem->backLoopCheck(tmpTrackElem))
731    {
732      PRINTF(2)("Backloop connection detected at joining trackElements\n -> TRACK WILL NOT BE JOINED\n");
733      return;
734    }
735
736  TrackElement* firstJoint =   this->firstTrackElem->findByID(trackIDs[0]);
737  float tmpLatestTime = firstJoint->endTime;
738
739  Vector tmpEndPoint = firstJoint->curve->getNode(firstJoint->curve->getNodeCount());
740  Vector tmpTangentPoint = firstJoint->curve->getNode(firstJoint->curve->getNodeCount()-1);
741  Vector tmpc2Point = firstJoint->curve->getNode(firstJoint->curve->getNodeCount()-2);
742  firstJoint->isJoined = true;
743  //  firstJoint->mainJoin = true;
744  if(!firstJoint->isHotPoint)
745    this->setSavePoint(firstJoint);
746  // Timing:
747  for (int i = 0; i < count; i++)
748    {
749      TrackElement* tmpJoinElem = this->firstTrackElem->findByID(trackIDs[i]);
750      if (tmpJoinElem->childCount == 0
751          && tmpJoinElem->endTime > tmpLatestTime)
752        tmpLatestTime = tmpJoinElem->endTime;
753    }
754  // time the main Join.
755  firstJoint->jumpTime = tmpLatestTime - firstJoint->endTime;
756 
757  // Joining:
758  for (int i = 1; i < count; i++)
759    {
760      TrackElement* tmpJoinElem = this->firstTrackElem->findByID(trackIDs[i]);
761      if (tmpJoinElem->childCount > 0)
762        printf("!!This Curve has children, and as such will not be joined!!\n You can try joining other childless TrackElements to this one!");
763      else
764        {
765          this->addPoint(tmpc2Point, tmpJoinElem);
766          this->addPoint(tmpTangentPoint, tmpJoinElem);
767          this->addPoint(tmpEndPoint, tmpJoinElem);
768          // time all other Joins
769          tmpJoinElem->jumpTime = tmpLatestTime - tmpJoinElem->endTime;
770         
771          //Copying Joint-Info
772          tmpJoinElem->children = firstJoint->children;
773          tmpJoinElem->childCount = firstJoint->childCount;
774          tmpJoinElem->isSavePoint = firstJoint->isSavePoint;
775          tmpJoinElem->isFork = firstJoint->isFork;
776
777          tmpJoinElem->isJoined = true;
778        }
779    }
780  if(firstJoint->children)
781    {
782      //TrackElement* enumElem = firstJoint->children->enumerate();
783      tIterator<TrackElement>* iterator = firstJoint->children->getIterator();
784      TrackElement* enumElem = iterator->nextElement();
785      while (enumElem)
786        {
787          PRINTF(5)("Setting startingTime of %d to %f.\n", enumElem->ID, tmpLatestTime);
788          enumElem->startingTime = tmpLatestTime;
789          enumElem->endTime = tmpLatestTime + enumElem->duration;
790         
791          enumElem = iterator->nextElement();
792        }
793      delete iterator;
794    }
795}
796
797/**
798   \brief finalizes the TrackSystem. after this it will not be editable anymore
799
800   \todo check for any inconsistencies, output errors
801*/
802void TrackManager::finalize(void)
803{
804  for (int i = 1; i<= trackElemCount ;i++)
805    {
806      TrackElement* tmpElem = this->firstTrackElem->findByID(i);
807      if( tmpElem->childCount > 0 && tmpElem->mainJoin)
808        {
809          tIterator<TrackElement>* iterator = tmpElem->children->getIterator();
810          TrackElement* enumElem = iterator->nextElement();
811          //TrackElement* enumElem = tmpElem->children->enumerate();
812          while (enumElem)
813            {
814             
815              // c1-continuity
816              enumElem->curve->addNode(enumElem->curve->getNode(0) +
817                                                   ((enumElem->curve->getNode(0) - 
818                                                    tmpElem->curve->getNode(tmpElem->curve->getNodeCount()-1))
819                                                    ),2);
820              enumElem->nodeCount++;
821              // c2-continuity
822              enumElem->curve->addNode((tmpElem->curve->getNode(tmpElem->curve->getNodeCount())-
823                                                    tmpElem->curve->getNode(tmpElem->curve->getNodeCount()-1)) * 4 +
824                                                   tmpElem->curve->getNode(tmpElem->curve->getNodeCount()-2), 3);
825              enumElem->nodeCount++;                                               
826              PRINTF(5)("accelerations: %d-in: count: %d, %f, %f, %f\n                  %d-out: count: %d %f, %f, %f\n",
827                     tmpElem->ID, tmpElem->nodeCount,
828                     tmpElem->curve->calcAcc(0.999).x, tmpElem->curve->calcAcc(0.999).y, tmpElem->curve->calcAcc(0.999).z,
829                     enumElem->ID, enumElem->nodeCount,
830                     enumElem->curve->calcAcc(0).x, enumElem->curve->calcAcc(0).y, enumElem->curve->calcAcc(0).z);
831             
832              enumElem = iterator->nextElement();
833            }
834          delete iterator;
835        }
836    }
837  for (int i = 1; i <= trackElemCount;i++)
838    if (this->firstTrackElem->findByID(i)->endTime > this->maxTime)
839      this->maxTime = this->firstTrackElem->findByID(i)->endTime; // very bad implemented :/
840}
841
842
843// RUNTIME //
844
845/**
846   \brief calculates the Position for the localTime of the Track.
847   \returns the calculated Position
848*/
849Vector TrackManager::calcPos() const
850{
851  return this->currentTrackElem->curve->calcPos((this->localTime-this->currentTrackElem->startingTime)/this->currentTrackElem->duration);
852}
853
854/**
855   \brief calculates the Rotation for the localTime of the Track.
856   \returns the calculated Rotation
857*/
858Vector TrackManager::calcDir() const
859{
860  return this->currentTrackElem->curve->calcDir((this->localTime - this->currentTrackElem->startingTime)/this->currentTrackElem->duration);
861}
862
863/**
864   \returns the current Width of the track
865*/
866float TrackManager::getWidth(void) const
867{
868  return this->currentTrackElem->width;
869}
870
871/**
872   \brief Advances the local-time of the Track around dt
873   \param dt The time about which to advance.
874
875   This function also checks, if the TrackElement has to be changed.
876*/
877void TrackManager::tick(float dt)
878{
879  dt /= 1000;
880  PRINTF(4)("CurrentTrackID: %d, LocalTime is: %f, timestep is: %f\n", this->currentTrackElem->ID, this->localTime, dt);
881  if (this->localTime <= this->firstTrackElem->duration)
882    this->jumpTo(this->localTime);
883  if (this->localTime <= this->maxTime)
884    this->localTime += dt;
885  if (this->localTime > this->currentTrackElem->endTime
886      && this->currentTrackElem->children)
887    {
888      if (this->currentTrackElem->jumpTime != 0.0)
889        this->jumpTo(this->localTime + this->currentTrackElem->jumpTime);
890      // jump to the next TrackElement and also set the history of the new Element to the old one.
891      TrackElement* tmpHistoryElem = this->currentTrackElem;
892      this->currentTrackElem = this->currentTrackElem->getChild(this->choosePath(this->currentTrackElem));
893      this->currentTrackElem->history = tmpHistoryElem;
894    }
895  if (this->bindSlave)
896    {
897      Vector tmp = this->calcPos();
898      Quaternion quat = Quaternion(this->calcDir(), Vector(this->currentTrackElem->curve->calcAcc((localTime-this->currentTrackElem->startingTime)/this->currentTrackElem->duration).x,1,this->currentTrackElem->curve->calcAcc((localTime-this->currentTrackElem->startingTime)/this->currentTrackElem->duration).z)); 
899
900      Vector v(0.0, 1.0, 0.0);
901      Quaternion q(-PI/2, v);
902      quat = quat * q;
903
904      this->bindSlave->setAbsCoor(tmp);
905      this->bindSlave->setAbsDir(quat);
906    }
907}
908
909/**
910   \brief Jumps to a certain point on the Track.
911   \param time The time on the Track to jump to.
912
913   This should be used to Jump backwards on a Track, because moving forward means to change between the Path. (it then tries to choose the default.)
914   Max is trackLengthMax.
915*/
916void TrackManager::jumpTo(float time)
917{
918  if (time == 0)
919    this->currentTrackElem = this->firstTrackElem;
920  this->localTime = time;
921}
922
923/**
924   \brief a Function that decides which Path we should follow.
925   \param trackElem The Path to choose.
926   
927*/
928int TrackManager::choosePath(TrackElement* trackElem)
929{
930  return (trackElem->*(trackElem->condFunc))(trackElem->subject);
931}
932
933/**
934   \brief Sets the PNode, that should be moved along the Tack
935   \param bindSlave the PNode to set
936*/
937void TrackManager::setBindSlave(PNode* bindSlave)
938{
939  this->bindSlave = bindSlave;
940}
941
942/**
943   \returns the main TrackNode
944*/
945PNode* TrackManager::getTrackNode(void)
946{
947  return this->trackNode;
948}
949
950// DEBUG //
951
952/**
953   \brief Imports a model of the Graph into the OpenGL-environment.
954   \param dt The Iterator used in seconds for Painting the Graph.
955
956   This is for testing facility only. Do this if you want to see the Path inside the Level.
957   eventually this will all be packed into a gl-list.
958*/
959void TrackManager::drawGraph(float dt) const
960{
961  for (int i = 1; i <= trackElemCount; i++)
962    {
963      glBegin(GL_LINE_STRIP);
964      TrackElement* tmpElem = this->firstTrackElem->findByID(i);
965      if (tmpElem->curve)
966        for(float f = 0.0; f < 1.0; f+=dt)
967          {
968            //      printf("%f, %f, %f\n",trackManager->calcPos().x, trackManager->calcPos().y, trackManager->calcPos().z);
969            Vector tmpVector = tmpElem->curve->calcPos(f);
970            glVertex3f(tmpVector.x, tmpVector.y, tmpVector.z);
971          }
972      glEnd();
973    }
974}
975
976/**
977   \brief outputs debug information about the trackManager
978   \param level how much debug
979*/
980void TrackManager::debug(unsigned int level) const
981{
982  PRINT(0)("=========================================\n");
983  PRINT(0)("= CLASS TRACKMANAGER::debug information =\n");
984  PRINT(0)("=========================================\n");
985  //  PRINT(0)("Status is: %
986  PRINT(0)(" Consists of %d elements\n", this->trackElemCount);
987  PRINT(0)(" localTime is: %f\n", this->localTime);
988  if (level >= 2)
989    {
990      for (int i = 1; i <= trackElemCount; i++)
991        {
992          TrackElement* tmpElem = this->firstTrackElem->findByID(i);
993          tmpElem->debug();
994        }
995    }
996  PRINT(0)("-----------------------------------------\n");
997}
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