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@ -113,7 +113,7 @@ namespace MWMechanics
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AiWander::AiWander(int distance, int duration, int timeOfDay, const std::vector<unsigned char>& idle, bool repeat):
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mDistance(distance), mDuration(duration), mRemainingDuration(duration), mTimeOfDay(timeOfDay), mIdle(idle),
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mRepeat(repeat), mStoredInitialActorPosition(false)
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mRepeat(repeat), mStoredInitialActorPosition(false), mInitialActorPosition(osg::Vec3f(0, 0, 0)), mHasDestination(false), mDestination(osg::Vec3f(0, 0, 0))
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{
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mIdle.resize(8, 0);
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init();
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@ -123,9 +123,6 @@ namespace MWMechanics
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{
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// NOTE: mDistance and mDuration must be set already
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mHasReturnPosition = false;
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mReturnPosition = osg::Vec3f(0,0,0);
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if(mDistance < 0)
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mDistance = 0;
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if(mDuration < 0)
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@ -212,6 +209,19 @@ namespace MWMechanics
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ESM::Position pos = actor.getRefData().getPosition();
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// If there is already a destination due to the package having been interrupted by a combat or pursue package,
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// rebuild a path to it
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if (!mPathFinder.isPathConstructed() && mHasDestination)
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{
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ESM::Pathgrid::Point dest(PathFinder::MakePathgridPoint(mDestination));
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ESM::Pathgrid::Point start(PathFinder::MakePathgridPoint(pos));
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mPathFinder.buildSyncedPath(start, dest, actor.getCell());
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if (mPathFinder.isPathConstructed())
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storage.setState(Wander_Walking);
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}
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doPerFrameActionsForState(actor, duration, storage, pos);
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playIdleDialogueRandomly(actor);
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@ -253,9 +263,8 @@ namespace MWMechanics
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getAllowedNodes(actor, currentCell->getCell(), storage);
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}
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// Actor becomes stationary - see above URL's for previous research
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// If a creature or an NPC with a wander distance and no pathgrid is available,
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// randomly idle or wander around near spawn point
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// If the package has a wander distance but no pathgrid is available,
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// randomly idle or wander near spawn point
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if(storage.mAllowedNodes.empty() && mDistance > 0 && !storage.mIsWanderingManually) {
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// Typically want to idle for a short time before the next wander
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if (Misc::Rng::rollDice(100) >= 96) {
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@ -277,10 +286,8 @@ namespace MWMechanics
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mDistance = 0;
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// For stationary NPCs, move back to the starting location if another AiPackage moved us elsewhere
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if (cellChange)
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mHasReturnPosition = false;
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if (mDistance == 0 && mHasReturnPosition
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&& (pos.asVec3() - mReturnPosition).length2() > (DESTINATION_TOLERANCE * DESTINATION_TOLERANCE))
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if (mDistance == 0 && !cellChange
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&& (pos.asVec3() - mInitialActorPosition).length2() > (DESTINATION_TOLERANCE * DESTINATION_TOLERANCE))
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{
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returnToStartLocation(actor, storage, pos);
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}
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@ -334,7 +341,8 @@ namespace MWMechanics
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{
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if (!mPathFinder.isPathConstructed())
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{
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ESM::Pathgrid::Point dest(PathFinder::MakePathgridPoint(mReturnPosition));
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mDestination = mInitialActorPosition;
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ESM::Pathgrid::Point dest(PathFinder::MakePathgridPoint(mDestination));
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// actor position is already in world coordinates
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ESM::Pathgrid::Point start(PathFinder::MakePathgridPoint(pos));
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@ -345,6 +353,7 @@ namespace MWMechanics
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if (mPathFinder.isPathConstructed())
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{
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storage.setState(Wander_Walking);
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mHasDestination = true;
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}
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}
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}
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@ -357,7 +366,6 @@ namespace MWMechanics
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const osg::Vec3f currentPositionVec3f = osg::Vec3f(currentPosition.mX, currentPosition.mY, currentPosition.mZ);
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std::size_t attempts = 10; // If a unit can't wander out of water, don't want to hang here
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osg::Vec3f destination;
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ESM::Pathgrid::Point destinationPosition;
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bool isWaterCreature = actor.getClass().isPureWaterCreature(actor);
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do {
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@ -369,17 +377,18 @@ namespace MWMechanics
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const float destinationY = mInitialActorPosition.y() + wanderRadius * std::sin(randomDirection);
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const float destinationZ = mInitialActorPosition.z();
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destinationPosition = ESM::Pathgrid::Point(destinationX, destinationY, destinationZ);
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destination = osg::Vec3f(destinationX, destinationY, destinationZ);
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mDestination = osg::Vec3f(destinationX, destinationY, destinationZ);
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// Check if land creature will walk onto water or if water creature will swim onto land
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if ((!isWaterCreature && !destinationIsAtWater(actor, destination)) ||
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(isWaterCreature && !destinationThroughGround(currentPositionVec3f, destination))) {
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if ((!isWaterCreature && !destinationIsAtWater(actor, mDestination)) ||
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(isWaterCreature && !destinationThroughGround(currentPositionVec3f, mDestination))) {
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mPathFinder.buildSyncedPath(currentPosition, destinationPosition, actor.getCell());
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mPathFinder.addPointToPath(destinationPosition);
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if (mPathFinder.isPathConstructed())
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{
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storage.setState(Wander_Walking, true);
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mHasDestination = true;
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}
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return;
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}
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@ -466,7 +475,10 @@ namespace MWMechanics
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GreetingState& greetingState = storage.mSaidGreeting;
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if (!checkIdle(actor, storage.mIdleAnimation) && (greetingState == Greet_Done || greetingState == Greet_None))
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{
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storage.setState(Wander_ChooseAction);
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if (mPathFinder.isPathConstructed())
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storage.setState(Wander_Walking);
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else
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storage.setState(Wander_ChooseAction);
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}
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}
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@ -478,7 +490,6 @@ namespace MWMechanics
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{
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stopWalking(actor, storage);
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storage.setState(Wander_ChooseAction);
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mHasReturnPosition = false;
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}
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else
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{
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@ -490,8 +501,8 @@ namespace MWMechanics
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void AiWander::onChooseActionStatePerFrameActions(const MWWorld::Ptr& actor, AiWanderStorage& storage)
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{
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short unsigned& idleAnimation = storage.mIdleAnimation;
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idleAnimation = getRandomIdle();
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unsigned short idleAnimation = getRandomIdle();
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storage.mIdleAnimation = idleAnimation;
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if (!idleAnimation && mDistance)
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{
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@ -525,7 +536,7 @@ namespace MWMechanics
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storage.mTrimCurrentNode = true;
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trimAllowedNodes(storage.mAllowedNodes, mPathFinder);
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mObstacleCheck.clear();
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mPathFinder.clearPath();
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stopWalking(actor, storage);
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storage.setState(Wander_MoveNow);
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}
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@ -535,9 +546,7 @@ namespace MWMechanics
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// if stuck for sufficiently long, act like current location was the destination
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if (storage.mStuckCount >= COUNT_BEFORE_RESET) // something has gone wrong, reset
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{
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//std::cout << "Reset \""<< cls.getName(actor) << "\"" << std::endl;
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mObstacleCheck.clear();
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stopWalking(actor, storage);
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storage.setState(Wander_ChooseAction);
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storage.mStuckCount = 0;
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@ -612,7 +621,7 @@ namespace MWMechanics
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if (storage.mState == Wander_Walking)
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{
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stopWalking(actor, storage);
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stopWalking(actor, storage, false);
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mObstacleCheck.clear();
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storage.setState(Wander_IdleNow);
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}
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@ -657,6 +666,8 @@ namespace MWMechanics
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if (mPathFinder.isPathConstructed())
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{
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mDestination = osg::Vec3f(dest.mX, dest.mY, dest.mZ);
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mHasDestination = true;
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// Remove this node as an option and add back the previously used node (stops NPC from picking the same node):
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ESM::Pathgrid::Point temp = storage.mAllowedNodes[randNode];
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storage.mAllowedNodes.erase(storage.mAllowedNodes.begin() + randNode);
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@ -710,9 +721,13 @@ namespace MWMechanics
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return TypeIdWander;
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}
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void AiWander::stopWalking(const MWWorld::Ptr& actor, AiWanderStorage& storage)
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void AiWander::stopWalking(const MWWorld::Ptr& actor, AiWanderStorage& storage, bool clearPath)
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{
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mPathFinder.clearPath();
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if (clearPath)
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{
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mPathFinder.clearPath();
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mHasDestination = false;
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}
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actor.getClass().getMovementSettings(actor).mPosition[1] = 0;
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}
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@ -743,15 +758,6 @@ namespace MWMechanics
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}
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}
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void AiWander::setReturnPosition(const osg::Vec3f& position)
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{
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if (!mHasReturnPosition)
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{
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mHasReturnPosition = true;
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mReturnPosition = position;
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}
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}
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short unsigned AiWander::getRandomIdle()
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{
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unsigned short idleRoll = 0;
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@ -945,6 +951,8 @@ namespace MWMechanics
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, mTimeOfDay(wander->mData.mTimeOfDay)
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, mRepeat(wander->mData.mShouldRepeat != 0)
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, mStoredInitialActorPosition(wander->mStoredInitialActorPosition)
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, mHasDestination(false)
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, mDestination(osg::Vec3f(0, 0, 0))
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{
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if (mStoredInitialActorPosition)
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mInitialActorPosition = wander->mInitialActorPosition;
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@ -953,7 +961,6 @@ namespace MWMechanics
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if (mRemainingDuration <= 0 || mRemainingDuration >= 24)
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mRemainingDuration = mDuration;
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init();
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}
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}
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