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= false\n\nIsAvoidingMissile = \"T\"  \nIsAvoidingMissileUrgent = \"Y\"\nIsAvoidingMissilePanic = \"G\"\nGTFO = \"H\"\nTakeControl = \"U\" \nAntiCollide = \"I\"\nAntiCollideCritical = \"J\"\n\nPanicTti  = 0.75\nUrgentTti = 1.20\t\t\t\t\nWarnedTti = 1.80\t\nLastRunTime = 0\nAvoidanceRadius = 60\nAltMin = 60\nSpeedMin = 20\nMinAltitude = 50\nMaxAltitude = 600\nPredictTime = 0.5\n\nDebugControlOutputs = true\nExampleControlVal = \"K\"\n\n\nAvoidCollisionsFriendly = false\nAvoidCollisionsEnemy = true\nAvoidCollisionsRadius = 30\t\t-- reserved area around ourselves and other craft\nAvoidanceTurnRate = 20 \t\t\t-- how quickly we turn to avoid collisions.  High values may interfere with other behaviors\nAvoidanceTimeThreshold = 0.45 \t\t-- Seconds Ahead to avoid collision\n\n\nfunction CallComplexControl(I, keyRequested)\n\n    --T G Y H U J I K O L up down left right\n\n    if keyRequested == nil then return end\n    if string.len(keyRequested) == 0 then return end\n\n    keyRequested = string.upper(keyRequested)\n\n    stim = 0\n    if     keyRequested == \"T\" then stim = 1 \n    elseif keyRequested == \"G\" then stim = 2 \n    elseif keyRequested == \"Y\" then stim = 3 \n    elseif keyRequested == \"H\" then stim = 4 \n    elseif keyRequested == \"U\" then stim = 5 \n    elseif keyRequested == \"J\" then stim = 6 \n    elseif keyRequested == \"I\" then stim = 7 \n    elseif keyRequested == \"K\" then stim = 8 \n    elseif keyRequested == \"O\" then stim = 9 \n    elseif keyRequested == \"L\" then stim = 10 \n    elseif keyRequested == \"UP\" then stim = 11 \n    elseif keyRequested == \"DOWN\" then stim = 12 \n    elseif keyRequested == \"LEFT\" then stim = 13 \n    elseif keyRequested == \"RIGHT\" then stim = 14 end\n\n    if stim > 0 then \n        I:RequestComplexControllerStimulus(stim) \n        if DebugControlOutputs then\n            I:Log(\"ComplexKey Output: \" .. keyRequested)\n        end\n    else\n        if DebugControlOutputs then\n            I:Log(\"Requested Output '\" .. keyRequested .. \"' not recognized\")\n        end\n    end\n\nend\n\n\nfunction GetNumberOfWarnings(I)      \n\t  if unexpected_condition then error() end   \n\t  return I:GetNumberOfWarnings()       \nend\n\nfunction GetMissileWarnings(I,ii)    \n\t  if unexpected_condition then error() end   \n\t  return I:GetMissileWarning(ii)\nend\n\n\nfunction Jink(I)\n\tI:Log(\"RunningJink\")\nI:Log(I:GetTime())\n\tFrameTime = I:GetTimeSinceSpawn() - LastRunTime\nI:Log(FrameTime)\nif FrameTime == 0 then return false end\n\n\tLastRunTime = I:GetTimeSinceSpawn()\n\n\n\tI:Log(LastRunTime)\nI:Log(\"Check\")\n\n\tif I:GetNumberOfTargets(0) > 0 then\n\n \t\ttargetPosInfoJink = I:GetTargetPositionInfo(0, 0)\n \t\ttargetAltitudeJink = targetPosInfo.AltitudeAboveSeaLevel\n\n\t\t\n\t\t\n\t\tif CurrPos == nil then \n\t\t\tPrevPos = I:GetConstructPosition()\n\t\t\t\n\t\telse \n\t\t\tPrevPos = CurrPos\n\t\t\t \n\t\tend\n\t\tCurrPos = I:GetConstructPosition()\n\n\n\t\t\n\t\tif CurrVel == nil then \n\t\t\tPrevVel = I:GetVelocityVector()\n\t\t\t\n\t\telse\n\t\t\tPrevVel = CurrVel\n\t\t\t\n\t\tend\n\n\t\tCurrVel = I:GetVelocityVector()\n\n\t\tAcc = (CurrVel - PrevVel) / FrameTime\nI:Log(string.format(\"Acc x:%.2f y:%.2f z:%.2f\", Acc.x, Acc.y, Acc.z))\n\n\t \ttargetPosJink = targetPosInfoJink.Position\n \t\ttargetDirJink = targetPosInfoJink.Direction\n\n\n\t\t worldDirection = CurrPos - targetPosJink\n\n\t\tif targetVelJink == nil then \nTargetPrevVel = targetPosInfoJink.Velocity\n\nelse\n\n\t\nTargetPrevVel = targetVelJink\n\t\t\t\nI:Log(string.format(\"TargetPrevVel x:%.2f y:%.2f z:%.2f\", TargetPrevVel.x, TargetPrevVel.y, TargetPrevVel.z))\n\nend\n\ntargetVelJink = targetPosInfoJink.Velocity\nI:Log(string.format(\"targetVel x:%.2f y:%.2f z:%.2f\", targetVel.x, targetVel.y, targetVel.z))\nTargetAcc = (targetVelJink - TargetPrevVel) / FrameTime\nI:Log(string.format(\"TargetAcc x:%.2f y:%.2f z:%.2f\", TargetAcc.x, TargetAcc.y, TargetAcc.z))\nTargetSpeedJink = targetVelJink.magnitude\n\t\t distance = worldDirection.magnitude\n\t\t targetDot = Vector3.Dot(targetVelJink/TargetSpeedJink, worldDirection/distance)\nTargetFuturePosition = targetPosJink + targetVelJink * PredictTime + 0.5 * TargetAcc * PredictTime ^2\nTargetFutureVel = targetVelJink + TargetAcc * PredictTime\n\n\n\t\tTargetFutureSpeed = TargetFutureVel.magnitude\n\n\t\tFuturePos_Euler = CurrPos + CurrVel * PredictTime + (Acc * PredictTime ^ 2 ) / 2\n\t\tFuturePos_Verlet = 2 * CurrPos - PrevPos + Acc * PredictTime ^ 2 \n\t\t\n\n\t\tFutureWorldDir = FuturePos_Verlet - TargetFuturePosition\n\t\tFutureDistance = FutureWorldDir.magnitude\n\n\n\t\tFutureTargetDot = Vector3.Dot(TargetFutureVel/TargetFutureSpeed, FutureWorldDir/FutureDistance)\n\n\n\n\t\t behind = targetDot < 0.25\n\t\t PointAtUs = (targetDot > 0.707) or (FutureTargetDot > 0.707)  \nI:Log(tostring(PointAtUs))\n\n\n\nif PointAtUs == true and TargetSpeedJink > SpeedMin then\n                 \n\t\t\tCallComplexControl(I, GTFO)\n                 \tI:Log(tostring(GTFO))\n                 \tI:Log(\"Jink\")\nI:LogToHud(\"Jinking\")\nend\nend\nend\n\n\nfunction AvoidCollisions(I)\n\n\tif AvoidCollisionsFsiendly == false and AvoidCollisionsEnemy == false then return false end --we do not avoid.\n\n\t--Collect some variables about myself.\n\tmyPos = I:GetConstructPosition()\n\tmyVel = I:GetVelocityVector()\n\tmySpeed = I:GetVelocityMagnitude()\n\tlocalTerrain = I:GetTerrainAltitudeForLocalPosition(0,0,0)\n\trealMinAlt = math.max(localTerrain + MinAltitude, MinAltitude)\n\tmyLowAlt = (MaxAltitude - realMinAlt)/4 + realMinAlt\n\tmyHiAlt =  MaxAltitude - (MaxAltitude - realMinAlt)/4\n\n\t--Create placeholders for craft we are about to inspect.\n\tnearestCollisionPos = Vector3(9999999,9999999,9999999)\n\tnearestTti = 9999999\n\tnearestDotTargetToMe = 0\n\tnearestDotMeToTarget = 0\n\tsource = 0\n\n\t--try and anticipate my future position along this path.\n\tmyFuturePos = I:GetConstructPosition() + (I:GetVelocityVector().normalized + I:GetVelocityVector().forward) * SpeedCurrent\n\n\t--parse a list of all friendlies and determine how likely we are to collide in the near future.\n\t--predictions are TTI based (comparing relative speed * DOT, since we don't know what direction everyone will turn in soon)\n\tif AvoidCollisionsFriendly and I:GetFriendlyCount() > 0 then\n\t\tfor ii=0,I:GetFriendlyCount()-1,1 do\n\t\t\n\t\t\ttargetPosInfo = I:GetFriendlyInfo(ii)\n\t\t\ttargetSizeVector = targetPosInfo.PositiveSize - targetPosInfo.NegativeSize\n\n\t\t\ttargetPos = targetPosInfo.CenterOfMass\n\t\t\ttargetVel = targetPosInfo.Velocity\n\n\t\t\tTargetDirection = myPos - targetPos\n\t\t\tMyDirection = targetPos - myPos\n\n\t\t\tdistance = (MyDirection.magnitude - AvoidCollisionsRadius) - targetSizeVector.magnitude\n\t\t\ttargetSpeed = targetVel.magnitude\n\t\t\t\n\t\t\ttargetDot = Vector3.Dot(targetVel.normalized, TargetDirection.normalized)\n\t\t\tmyDot = Vector3.Dot(myVel.normalized, MyDirection.normalized)\n\t\t\trelativeSpeed = (targetSpeed*targetDot + mySpeed*myDot)\n\t\t\ttti = 99999\n\t\t\t\n\t\t\tif relativeSpeed > 0 then tti = distance / relativeSpeed end\n\t\t\t\n\t\t\tif tti < nearestTti then --We record a new nearest collision threat.\n\t\t\t\tnearestCollisionPos = targetPos\n\t\t\t\tnearestTti = tti\n\t\t\t\tnearestDotTargetToMe = targetDot\n\t\t\t\tnearestDotMeToTarget = myDot\n\t\t\t\tsource = 1\n\t\t\tend\n\n\t\tend\n\tend\n\t\n\t--Do the same, but now for enemies.\n\ttargetCount = I:GetNumberOfTargets(0)\n\tif AvoidCollisionsEnemy and targetCount > 0 then\n\t\tfor ii=0,targetCount-1,1 do\n\t\t\ttargetPosInfo = I:GetTargetPositionInfo(0, ii)\n\n\t\t\ttargetPos = targetPosInfo.Position\n\t\t\ttargetVel = targetPosInfo.Velocity\n\n\t\t\tTargetDirection = myPos - targetPos\n\t\t\tMyDirection = targetPos - myPos\n\n\t\t\tdistance = (MyDirection.magnitude - AvoidCollisionsRadius*2)\n\t\t\ttargetSpeed = targetVel.magnitude\n\t\t\t\n\t\t\ttargetDot = Vector3.Dot(targetVel.normalized, TargetDirection.normalized)\n\t\t\tmyDot = Vector3.Dot(myVel.normalized, MyDirection.normalized)\n\t\t\trelativeSpeed = (targetSpeed*targetDot + mySpeed*myDot)\n\t\t\ttti = 99999\n\n\t\t\tif relativeSpeed > 0 then tti = distance / relativeSpeed end\n\n\t\t\tif tti < nearestTti then --We record a new nearest collision threat.\n\t\t\t\tnearestCollisionPos = targetPos\n\t\t\t\tnearestTti = tti\n\t\t\t\tnearestDotTargetToMe = targetDot\n\t\t\t\tnearestDotMeToTarget = myDot\n\t\t\t\tsource = 2\n\t\t\tend\n\n\t\tend\n\tend\n\n\t--now we know the most likely near future collision...\n\n\tif source == 0 or nearestTti > AvoidanceTimeThreshold or nearestCollisionPos == nil then return false end -- we found no targets worth avoiding\n\tif DebugAIMode == true and source > 0 then I:Log(string.format(\"Collision tti %.2f\", nearestTti)) end\n\n\tAvoidPosInfo = I:GetTargetPositionInfoForPosition(0, nearestCollisionPos.x,nearestCollisionPos.y,nearestCollisionPos.z)\n\n\t--if our imminent collision is less than 1/4 of our TTI threshold away, it's critical, so we will turn harder.\n\tif nearestTti < AvoidanceTimeThreshold/4 then ttiCritical = true end\n\n\tif ttiCritical then \n\t\tCallComplexControl(I, AntiCollideCritical)\n\n\tI:LogToHud(\"AvoidingCollision\")\n\t\t\n\tif DebugAIMode then\n\t\tI:Log(\"Avoiding Collision\")\n\tend\n\tif source == 1 or source == 2 then\n\t\treturn true --We're avoiding\n\telse\n\t\treturn false  --We're safe\n\tend\nend\nend \n\n\nfunction MissileAvoidance(I)\n\t\n\tmissileRan, NumberOfWarnings = pcall(GetNumberOfWarnings, I) \n\t\t\n\tif not missileRan then \n\t\n\t\tI:Log(\"Captured GetMissileWarnings Error: \" .. NumberOfWarnings)\n\t\n\treturn \n\tend\n\t\n\tif UseMissileAvoidance == false or NumberOfWarnings == 0 then return false end -- no dodge needed \n\t\n\tPanicMissilesFound = 0\n\tUrgentMissilesFound = 0\n\tWarnedMissilesFound = 0\n\t\n\tPanicMissilePos = {}\n\tUrgentMissilePos = {}\n\tWarnedMissilePos = {}\n\n\n\tmyPos = I:GetConstructPosition()\n\tmyVel = I:GetVelocityVector()\n\tmySpeed = I:GetVelocityMagnitude()\n\n\t\n\tfor ii=0,NumberOfWarnings-1,1 do\n\n\t\tmissileInfoRan, MissileInfo = pcall(GetMissileWarnings,I, ii) \n\t\t\n\t\tif not missileInfoRan  then\n\t\t\tI:Log(\"Captured GetMissileWarnings Error: \" .. MissileInfo)\n\t\tend\n\t\t\n\t\tif MissileInfo == nil then goto continue end\n\n\tif missileInfoRan then\n\t\t\tif MissileInfo.Valid then\n\t\t\t\t\n\t\t\t\ttargetPos = MissileInfo.Position\n\t\t\t\ttargetVel = MissileInfo.Velocity\n\t\t\t\t\n\t\t\t\tMissileDirection = myPos - targetPos\n\t\t\t\tMyDirection = targetPos - myPos\n\t\t\t\t\n\t\t\t\tdistance = MyDirection.magnitude - AvoidanceRadius\n\t\t\t\ttargetSpeed = targetVel.magnitude\n\t\t\t\t\n\t\t\t\ttargetDot = Vector3.Dot(targetVel.normalized, MissileDirection.normalized)\n\t\t\t\tmyDot = Vector3.Dot(myVel.normalized, MyDirection.normalized)\n\t\t\t\t\n\t\t\t\ttti = 99999\n\t\t\t\trelativeSpeed = (targetSpeed*targetDot + mySpeed*myDot)\n\t\t\t\t\n\t\t\t\tif relativeSpeed > 0 then tti = distance / relativeSpeed end\n\t\t\t\n\n\t\t\t\tif tti < PanicTti then\n\t\t\t\t\tPanicMissilesFound = PanicMissilesFound + 1\n\t\t\t\t\ttable.insert(PanicMissilePos, targetPos)\n\t\t\t\t\t\n\t\t\t\telseif tti < UrgentTti then\n\t\t\t\t\tUrgentMissilesFound = UrgentMissilesFound + 1\n\t\t\t\t\ttable.insert(UrgentMissilePos, targetPos)\n\t\t\t\t\t\n\t\t\t\telseif tti < WarnedTti then\n\t\t\t\t\tWarnedMissilesFound = WarnedMissilesFound + 1\n\t\t\t\t\ttable.insert(WarnedMissilePos, targetPos)\n\t\t\t\tend\n\t\t\t\t\n\t\t\tend\n\t\tend\n\t\t ::continue::\n\tend\n\n\tI:Log(string.format(\"MISSILES! Panic: %.0f  Urgent: %.0f Warned: %.0f Ignored: %.0f\", PanicMissilesFound, UrgentMissilesFound, WarnedMissilesFound, NumberOfWarnings - (UrgentMissilesFound + WarnedMissilesFound)))\n\t\t\t\n\tif PanicMissilesFound + WarnedMissilesFound + UrgentMissilesFound == 0 then return false end --no missiles need avoiding.\n\t\n\tI:LogToHud(string.format(\"MISSILES! Panic: %.0f  Urgent: %.0f Warned: %.0f Ignored: %.0f\", PanicMissilesFound, UrgentMissilesFound, WarnedMissilesFound, NumberOfWarnings - (UrgentMissilesFound + WarnedMissilesFound)))\n\n\t\t\n\tif PanicMissilesFound > 0 then\n\t\tCallComplexControl(I, IsAvoidingMissilePanic)\n\telseif UrgentMissilesFound > 0 then \n\t\tCallComplexControl(I, IsAvoidingMissileUrgent) \n\telseif WarnedMissilesFound > 0 then\n\t\tCallComplexControl(I, IsAvoidingMissile)\n\telse\n\tend\n\tI:Log(\"Avoiding Missile\")\n\t\n\n\n\treturn true -- we are dodging missiles\n\n\n\nend\n\n\nfunction SetCurrentValues(I)\n\t\n\t \n\n\tSpeedCurrent = I:GetVelocityMagnitude()\n\tAltitudeCurrent = math.min(I:GetConstructPosition().y, I:GetConstructPosition().y - I:GetTerrainAltitudeForLocalPosition(0,0,0))\nend\n\n\n\n\nfunction Update(I)\n\n    UpdateRan, UpdateError = pcall(SafeUpdate,I) \n    if not UpdateRan  then\n        I:ClearLogs()\n        I:Log(\"Error In Update(I): \" .. UpdateError)\n    end\nend\n\nfunction SafeUpdate(I)\n\tI:ClearLogs()\n\t\n\t--InitAI(I)\n\tSetCurrentValues(I)\n\t\n\tif MissileAvoidance(I) then return end\n\tif AvoidCollisions(I) then return end\n\tif Jink(I) then return end\n\t\nend\n"],"BlockStringDataIds":[90],"GameVersion":"3.6.4.5","PersistentSubObjectIndex":55,"PersistentBlockIndex":299,"AuthorDetails":{"Valid":true,"ForeignBlocks":3,"CreatorId":"7885c4e1-ff75-44d7-a7f4-dfb6ba7fb5e2","ObjectId":"47aed55e-7dca-4c67-86ec-dd704e83a47e","CreatorReadableName":"EigenFN","HashV1":"be11cfb3075a7846ea20bc3309d1fe80"},"BlockCount":369}}