#include "aicombat.hpp" #include "aifollow.hpp" #include "movement.hpp" #include "../mwworld/class.hpp" #include "../mwworld/timestamp.hpp" #include "../mwbase/environment.hpp" #include "../mwbase/mechanicsmanager.hpp" #include "../mwbase/dialoguemanager.hpp" #include "character.hpp" #include "../mwworld/inventorystore.hpp" #include "creaturestats.hpp" #include #include namespace { static float sgn(Ogre::Radian a) { if(a.valueDegrees() > 0) return 1.0; return -1.0; } void determineAttackType(const MWWorld::Ptr& actor, MWMechanics::Movement &movement); //chooses an attack depending on probability to avoid uniformity void chooseBestAttack(const ESM::Weapon* weapon, MWMechanics::Movement &movement); } namespace MWMechanics { AiCombat::AiCombat(const MWWorld::Ptr& actor) : mTarget(actor), mTimerAttack(0), mTimerReact(0), mTimerCombatMove(0), mFollowTarget(false), mReadyToAttack(false), mStrike(false), mCombatMove(false), mMovement() { } bool AiCombat::execute (const MWWorld::Ptr& actor,float duration) { //General description if(!actor.getClass().getCreatureStats(actor).isHostile()) return true; if(actor.getClass().getCreatureStats(actor).getHealth().getCurrent() <= 0) return true; //Update every frame if(mReadyToAttack) determineAttackType(actor, mMovement); if(mCombatMove) { mTimerCombatMove -= duration; if( mTimerCombatMove <= 0) { mTimerCombatMove = 0; mMovement.mPosition[1] = mMovement.mPosition[0] = 0; mCombatMove = false; } } actor.getClass().getMovementSettings(actor) = mMovement; //actor.getClass().getCreatureStats(actor).setAttackingOrSpell(mReadyToAttack); mTimerAttack -= duration; actor.getClass().getCreatureStats(actor).setAttackingOrSpell(mStrike); float tReaction = 0.25f; if(mTimerReact < tReaction) { mTimerReact += duration; return false; } //Update with period = tReaction mTimerReact = 0; //actual attacking logic //TODO: Some skills affect period of strikes.For berserk-like style period ~ 0.25f float attackPeriod = 1.0f; if(mReadyToAttack) { if(mTimerAttack <= -attackPeriod) { //TODO: should depend on time between 'start' to 'min attack' //for better controlling of NPCs' attack strength. //Also it seems that this time is different for slash/thrust/chop mTimerAttack = 0.35f * static_cast(rand())/RAND_MAX; mStrike = true; //say a provoking combat phrase if (actor.getClass().isNpc()) { const MWWorld::ESMStore &store = MWBase::Environment::get().getWorld()->getStore(); int chance = store.get().find("iVoiceAttackOdds")->getInt(); int roll = std::rand()/ (static_cast (RAND_MAX) + 1) * 100; // [0, 99] if (roll < chance) { MWBase::Environment::get().getDialogueManager()->say(actor, "attack"); } } } else if (mTimerAttack <= 0) mStrike = false; } else { mTimerAttack = -attackPeriod; mStrike = false; } const MWWorld::Class &cls = actor.getClass(); const ESM::Weapon *weapon = NULL; MWMechanics::WeaponType weaptype; float weapRange, weapSpeed = 1.0f; actor.getClass().getCreatureStats(actor).setMovementFlag(CreatureStats::Flag_Run, true); if(actor.getClass().hasInventoryStore(actor)) { MWMechanics::DrawState_ state = actor.getClass().getCreatureStats(actor).getDrawState(); if (state == MWMechanics::DrawState_Spell || state == MWMechanics::DrawState_Nothing) actor.getClass().getCreatureStats(actor).setDrawState(MWMechanics::DrawState_Weapon); //Get weapon speed and range MWWorld::ContainerStoreIterator weaponSlot = MWMechanics::getActiveWeapon(cls.getCreatureStats(actor), cls.getInventoryStore(actor), &weaptype); if (weaptype == WeapType_HandToHand) { const MWWorld::Store &gmst = MWBase::Environment::get().getWorld()->getStore().get(); weapRange = gmst.find("fHandToHandReach")->getFloat(); } else { weapon = weaponSlot->get()->mBase; weapRange = weapon->mData.mReach; weapSpeed = weapon->mData.mSpeed; } weapRange *= 100.0f; } else //is creature { weaptype = WeapType_HandToHand; //doesn't matter, should only reflect if it is melee or distant weapon weapRange = 150; //TODO: use true attack range (the same problem in Creature::hit) } //MWWorld::Class::get(actor).getCreatureStats(actor).setAttackingOrSpell(false); ESM::Position pos = actor.getRefData().getPosition(); float zAngle; float rangeMelee; float rangeCloseUp; bool distantCombat = false; if (weaptype==WeapType_BowAndArrow || weaptype==WeapType_Crossbow || weaptype==WeapType_ThowWeapon) // || WeapType_Spell_OnTarget { rangeMelee = 1000; // TODO: should depend on archer skill rangeCloseUp = 0; //doesn't needed when attacking from distance distantCombat = true; } else { rangeMelee = weapRange; rangeCloseUp = 300; } Ogre::Vector3 vStart(pos.pos[0], pos.pos[1], pos.pos[2]); ESM::Position targetPos = mTarget.getRefData().getPosition(); Ogre::Vector3 vDest(targetPos.pos[0], targetPos.pos[1], targetPos.pos[2]); Ogre::Vector3 vDir = vDest - vStart; float distBetween = vDir.length(); if(distBetween < rangeMelee || (distBetween <= rangeCloseUp && mFollowTarget) ) { //Melee and Close-up combat vDir.z = 0; float dirLen = vDir.length(); zAngle = Ogre::Radian( Ogre::Math::ACos(vDir.y / dirLen) * sgn(Ogre::Math::ASin(vDir.x / dirLen)) ).valueDegrees(); // TODO: use movement settings instead of rotating directly MWBase::Environment::get().getWorld()->rotateObject(actor, 0, 0, zAngle, false); //MWWorld::Class::get(actor).getMovementSettings(actor).mPosition[1] = 0; //bool LOS = MWBase::Environment::get().getWorld()->getLOS(actor, mTarget); if (mFollowTarget && distBetween > rangeMelee) { //Close-up combat: just run up on target mMovement.mPosition[1] = 1; } else { //Melee: stop running and attack mMovement.mPosition[1] = 0; chooseBestAttack(weapon, mMovement); if(mMovement.mPosition[0] != 0 || mMovement.mPosition[1]) { mTimerCombatMove = 0.1f + 0.1f * static_cast(rand())/RAND_MAX; mCombatMove = true; } else if(actor.getClass().isNpc() && (!distantCombat || (distantCombat && rangeMelee/5))) { //apply sideway movement (kind of dodging) with some probability if(static_cast(rand())/RAND_MAX < 0.25) { mMovement.mPosition[0] = static_cast(rand())/RAND_MAX < 0.5? 1: -1; mTimerCombatMove = 0.05f + 0.15f * static_cast(rand())/RAND_MAX; mCombatMove = true; } } if(distantCombat && distBetween < rangeMelee/4) { mMovement.mPosition[1] = -1; } mReadyToAttack = true; //only once got in melee combat, actor is allowed to use close-up shortcutting mFollowTarget = true; } } else { //target is at far distance: build path to target OR follow target (if previously actor had reached it once) /* //apply when AIFOLLOW package implementation will be existent if(mFollowTarget) actor.getClass().getCreatureStats(actor).getAiSequence().stack(AiFollow(mTarget));*/ mFollowTarget = false; buildNewPath(actor); //delete visited path node mPathFinder.checkPathCompleted(pos.pos[0],pos.pos[1],pos.pos[2]); zAngle = mPathFinder.getZAngleToNext(pos.pos[0], pos.pos[1]); // TODO: use movement settings instead of rotating directly MWBase::Environment::get().getWorld()->rotateObject(actor, 0, 0, zAngle, false); //MWWorld::Class::get(actor).getMovementSettings(actor).mPosition[1] = 1; mMovement.mPosition[1] = 1; mReadyToAttack = false; } if(distBetween > rangeMelee) { //special run attack; it shouldn't affect melee combat tactics if(actor.getClass().getMovementSettings(actor).mPosition[1] == 1) { //check if actor can overcome the distance = distToTarget - attackerWeapRange //less than in time of playing weapon anim from 'start' to 'hit' tags (t_swing) //then start attacking float speed1 = cls.getSpeed(actor); float speed2 = mTarget.getClass().getSpeed(mTarget); if(mTarget.getClass().getMovementSettings(mTarget).mPosition[0] == 0 && mTarget.getClass().getMovementSettings(mTarget).mPosition[1] == 0) speed2 = 0; float s1 = distBetween - weapRange; float t = s1/speed1; float s2 = speed2 * t; float t_swing = 0.17f/weapSpeed;//0.17 should be the time of playing weapon anim from 'start' to 'hit' tags if (t + s2/speed1 <= t_swing) { mReadyToAttack = true; if(mTimerAttack <= -attackPeriod) { mTimerAttack = 0.3f*static_cast(rand())/RAND_MAX; mStrike = true; } } } } return false; } void AiCombat::buildNewPath(const MWWorld::Ptr& actor) { //Construct path to target ESM::Pathgrid::Point dest; dest.mX = mTarget.getRefData().getPosition().pos[0]; dest.mY = mTarget.getRefData().getPosition().pos[1]; dest.mZ = mTarget.getRefData().getPosition().pos[2]; Ogre::Vector3 newPathTarget = Ogre::Vector3(dest.mX, dest.mY, dest.mZ); ESM::Pathgrid::Point lastPt = mPathFinder.getPath().back(); Ogre::Vector3 currPathTarget(lastPt.mX, lastPt.mY, lastPt.mZ); float dist = Ogre::Math::Abs((newPathTarget - currPathTarget).length()); float targetPosThreshold; bool isOutside = actor.getCell()->mCell->isExterior(); if (isOutside) targetPosThreshold = 300; else targetPosThreshold = 100; if(dist > targetPosThreshold) { //construct new path only if target has moved away more than on ESM::Position pos = actor.getRefData().getPosition(); ESM::Pathgrid::Point start; start.mX = pos.pos[0]; start.mY = pos.pos[1]; start.mZ = pos.pos[2]; const ESM::Pathgrid *pathgrid = MWBase::Environment::get().getWorld()->getStore().get().search(*actor.getCell()->mCell); float xCell = 0; float yCell = 0; if (actor.getCell()->mCell->isExterior()) { xCell = actor.getCell()->mCell->mData.mX * ESM::Land::REAL_SIZE; yCell = actor.getCell()->mCell->mData.mY * ESM::Land::REAL_SIZE; } if(!mPathFinder.isPathConstructed()) mPathFinder.buildPath(start, dest, pathgrid, xCell, yCell, isOutside); else { PathFinder newPathFinder; newPathFinder.buildPath(start, dest, pathgrid, xCell, yCell, isOutside); //TO EXPLORE: //maybe here is a mistake (?): PathFinder::getPathSize() returns number of grid points in the path, //not the actual path length. Here we should know if the new path is actually more effective. //if(pathFinder2.getPathSize() < mPathFinder.getPathSize()) newPathFinder.syncStart(mPathFinder.getPath()); mPathFinder = newPathFinder; } } } int AiCombat::getTypeId() const { return TypeIdCombat; } unsigned int AiCombat::getPriority() const { return 1; } const std::string &AiCombat::getTargetId() const { return mTarget.getRefData().getHandle(); } AiCombat *MWMechanics::AiCombat::clone() const { return new AiCombat(*this); } } namespace { void determineAttackType(const MWWorld::Ptr& actor, MWMechanics::Movement &movement) { if (movement.mPosition[0] && !movement.mPosition[1]) //sideway actor.getClass().getCreatureStats(actor).setAttackType(MWMechanics::CreatureStats::AT_Slash); else if (movement.mPosition[1]) //forward actor.getClass().getCreatureStats(actor).setAttackType(MWMechanics::CreatureStats::AT_Thrust); else actor.getClass().getCreatureStats(actor).setAttackType(MWMechanics::CreatureStats::AT_Chop); } void chooseBestAttack(const ESM::Weapon* weapon, MWMechanics::Movement &movement) { //the more damage attackType deals the more probability it has if (weapon == NULL) { //hand-to-hand and creatures' attacks handled here //hand-to-hand deals equal damage float roll = static_cast(rand())/RAND_MAX; if(roll <= 0.333f) //side punch { movement.mPosition[0] = (static_cast(rand())/RAND_MAX < 0.5f)? 1: -1; movement.mPosition[1] = 0; } else if(roll <= 0.666f) //forward punch movement.mPosition[1] = 1; return; } int slash = (weapon->mData.mSlash[0] + weapon->mData.mSlash[1])/2; int chop = (weapon->mData.mChop[0] + weapon->mData.mChop[1])/2; int thrust = (weapon->mData.mThrust[0] + weapon->mData.mThrust[1])/2; float total = slash + chop + thrust; float roll = static_cast(rand())/RAND_MAX; if(roll <= static_cast(slash)/total) { movement.mPosition[0] = (static_cast(rand())/RAND_MAX < 0.5f)? 1: -1; movement.mPosition[1] = 0; } else if(roll <= (static_cast(slash) + static_cast(thrust))/total) movement.mPosition[1] = 1; //else chop } }