#include #include #include #include #include #include #include "vessel.h" #include "util.h" #include "vesselData.h" #include "shell.h" #include "guidedMissile.h" #include "projectileData.h" using namespace std; using namespace vb01; namespace battleship{ using namespace unitData; Vessel::Turret::Turret(Unit *vessel, int unitId, int turretId) { this->vessel = vessel; this->unitId = unitId; this->turretId = turretId; string fr[]{DEFAULT_TEXTURE}; Texture *turretDiffTex = new Texture(fr, 1, false); GameManager *gm = GameManager::getSingleton(); Root *root = Root::getSingleton(); string libPath = root->getLibPath(); Material *turretMat = new Material(libPath + "texture"); turretMat->addBoolUniform("texturingEnabled", true); turretMat->addBoolUniform("lightingEnabled", false); turretMat->addTexUniform("textures[0]", turretDiffTex, true); Node *hull = vessel->getNode()->getChild(0); node = hull->getChild(turretId); node->getMesh(0)->setMaterial(turretMat); initNodeRot = node->getOrientation(); for(int i = 0; i < numberOfMantlets[unitId][turretId]; i++){ Mantlet mantlet; mantlet.mantletNode = node->getChild(i); mantlet.mantletNode->getMesh(0)->setMaterial(turretMat); mantlet.barrelNode = mantlet.mantletNode->getChild(0); mantlet.barrelNode->getMesh(0)->setMaterial(turretMat); mantlets.push_back(mantlet); } maxAngle = unitData::turretMaxAngle[unitId][turretId] / 180 * PI; rotationSpeed = unitData::turretRotationSpeed[unitId][turretId] / 180 * PI; sfxBuffer = new sf::SoundBuffer(); if(sfxBuffer->loadFromFile(getExplosionSfxPath().c_str())) sfx = new sf::Sound(*sfxBuffer); } void Vessel::Turret::rotate(double angle) { this->angle += angle; node->setOrientation(Quaternion(this->angle, Vector3::VEC_J) * initNodeRot); } void Vessel::Turret::update() { dirVec = node->getGlobalAxis(2), leftVec = node->getGlobalAxis(0); } Vector3 Vessel::Turret::getInitDir(int dirType){ Vector3 initDirs[3]; switch(unitData::initDirs[unitId][turretId]){ case unitData::FORWARD: initDirs[0] = vessel->getLeftVec(); initDirs[1] = vessel->getUpVec(); initDirs[2] = vessel->getDirVec(); break; case unitData::BACKWARD: initDirs[0] = -vessel->getLeftVec(); initDirs[1] = vessel->getUpVec(); initDirs[2] = -vessel->getDirVec(); break; case unitData::LEFT: initDirs[0] = -vessel->getDirVec(); initDirs[1] = vessel->getUpVec(); initDirs[2] = vessel->getLeftVec(); break; case unitData::RIGHT: initDirs[0] = vessel->getDirVec(); initDirs[1] = vessel->getUpVec(); initDirs[2] = -vessel->getLeftVec(); break; } return initDirs[dirType]; } void Vessel::Turret::fire() { if(sfx) sfx->play(); lastShotTime = getTime(); } Vessel::Vessel(Player *player, Vector3 pos, int id) : Unit(player, pos, id) { for (int i = 0; i < numberOfTurrets[id]; i++) turrets.push_back(new Turret(this, id, i)); } void Vessel::update() { Unit::update(); for (Turret *t : turrets) { t->update(); if ((!orders.empty() && orders[0].type != Order::TYPE::ATTACK) || orders.empty()) { float rotAngle = abs(t->getAngle()) < t->getRotationSpeed() ? abs(t->getAngle()) : t->getRotationSpeed(); t->rotate(t->getAngle() > 0 ? -rotAngle : rotAngle); } } } void Vessel::attack(Order order) { Vector3 target = order.targets[0].pos; for (Turret *t : turrets) { Vector3 turrPos = t->getNode()->localToGlobalPosition(Vector3::VEC_ZERO); Vector3 targDir = (target - turrPos); targDir.y = 0; targDir = targDir.norm(); bool right = (t->getLeftVec().getAngleBetween(targDir) > PI / 2); float angle = t->getInitDir(0).getAngleBetween(targDir); float rotAngle = (t->getRotationSpeed() > angle ? angle : t->getRotationSpeed() * (right ? -1 : 1)); if (fabs(t->getAngle() + rotAngle) <= fabs(t->getMaxAngle())) { t->rotate(rotAngle); if (t->canFire()) t->fire(); } } } }