mirror of
https://github.com/ApfelTeeSaft/PlanetFleet.git
synced 2026-08-26 19:33:38 +00:00
306 lines
7.8 KiB
C++
306 lines
7.8 KiB
C++
#include <cmath>
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#include <solUtil.h>
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#include <util.h>
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#include <rayCaster.h>
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#include <box.h>
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#include <model.h>
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#include <quaternion.h>
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#include "vehicle.h"
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#include "pathfinder.h"
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#include "map.h"
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using namespace gameBase;
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using namespace vb01;
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using namespace std;
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namespace battleship{
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Vehicle::Vehicle(Player *player, int id, Vector3 pos, Quaternion rot) : Unit(player, id, pos, rot){
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initProperties();
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debugMat = new Material(Root::getSingleton()->getLibPath() + "texture");
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debugMat->addBoolUniform("lightingEnabled", false);
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debugMat->addBoolUniform("texturingEnabled", false);
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debugMat->addVec4Uniform("diffuseColor", Vector4::VEC_IJKL);
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}
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Vehicle::~Vehicle(){
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removeAllPathpoints();
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delete debugMat;
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}
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void Vehicle::update(){
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Unit::update();
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model->setVisible(!garrisonable);
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}
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void Vehicle::halt(){
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Unit::halt();
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removeAllPathpoints();
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patrolPointId = 0;
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pursuingTarget = false;
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}
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void Vehicle::addOrder(Order order){
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if(order.type != Order::TYPE::EJECT){
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Order::Target targ = order.targets[0];
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Vector3 targPos = (targ.unit ? targ.unit->getPos() : targ.pos);
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preparePathpoints(targPos);
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if(!pathPoints.empty())
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orders.push_back(order);
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}
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else
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orders.push_back(order);
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}
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void Vehicle::turn(float angle) {
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Quaternion newRot = Quaternion(angle, upVec) * model->getOrientation();
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model->setOrientation(newRot);
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rot = newRot;
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}
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void Vehicle::advance(float speed, MoveDir moveDir) {
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Vector3 dir;
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switch(moveDir){
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case MoveDir::FORW:
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dir = dirVec;
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break;
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case MoveDir::LEFT:
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dir = leftVec;
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break;
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case MoveDir::UP:
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dir = upVec;
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break;
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}
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placeAt(pos + dir * speed);
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}
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void Vehicle::initProperties(){
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sol::table SOL_LUA_STATE = generateView()[GameObject::getGameObjTableName()];
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maxTurnAngle = SOL_LUA_STATE["maxTurnAngle"][id + 1];
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speed = SOL_LUA_STATE["speed"][id + 1];
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anglePrecision = SOL_LUA_STATE["anglePrecision"][id + 1];
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}
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void Vehicle::navigate(float destOffset){
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Vector3 hypVec = (pathPoints[0] - pos);
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float hypAngle = hypVec.norm().getAngleBetween(upVec) - PI / 2;
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float offset = hypVec.getLength() * sin(hypAngle);
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Vector3 linDest = pathPoints[0] + upVec * offset;
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float vertDist = fabs(pos.y - pathPoints[0].y);
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Vector3 destDir = (linDest - pos).norm();
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float angle = (destDir != Vector3::VEC_ZERO ? dirVec.getAngleBetween(destDir) : -1);
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if(angle > anglePrecision && pos.getDistanceFrom(linDest) > destOffset)
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turn(calculateRotation(destDir, angle, maxTurnAngle));
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else{
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if(pos.getDistanceFrom(linDest) > destOffset){
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float dist = pos.getDistanceFrom(linDest);
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float movementAmmount = (speed > dist ? dist : speed);
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advance(movementAmmount);
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}
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if(vertDist > 0.5 * height){
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float dist = pos.y - pathPoints[0].y;
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float movementAmmount = (speed > fabs(dist) ? dist : speed);
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if(dist > 0)
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movementAmmount *= -1;
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advance(movementAmmount, MoveDir::UP);
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}
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if(pos.getDistanceFrom(linDest) <= destOffset){
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bool orderHasDir = (orders[0].direction != Vector3::VEC_ZERO);
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float angleToOrderDir = dirVec.getAngleBetween(orders[0].direction);
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bool destDirWithin = (!orderHasDir || (orderHasDir && angleToOrderDir <= anglePrecision));
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if(pathPoints.size() == 1 && !destDirWithin)
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turn(calculateRotation(orders[0].direction, angleToOrderDir, maxTurnAngle));
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if(pathPoints.size() > 1 || (pathPoints.size() == 1 && destDirWithin)){
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if(type == UnitType::UNDERWATER && vertDist < 0.5 * height)
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removePathpoint();
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else if(type != UnitType::UNDERWATER)
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removePathpoint();
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}
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}
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}
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}
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void Vehicle::alignToSurface(){
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/*
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Map *map = Map::getSingleton();
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TerrainObject terr = map->getTerrainObject(0);
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vector<RayCaster::CollisionResult> res = RayCaster::cast(Vector3(pos.x, terr.size.y, pos.z), Vector3(0, -1, 0), terr.node);
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if(!res.empty()){
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placeAt(res[0].pos);
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float angle = upVec.getAngleBetween(res[0].norm);
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Vector3 axis = upVec.cross(res[0].norm).norm();
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Quaternion rotQuat = Quaternion(angle, axis);
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orientAt(rotQuat * rot);
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}
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*/
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}
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void Vehicle::move(Order order) {
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navigate(0.5 * Map::getSingleton()->getCellSize().x);
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if(type == UnitType::LAND)
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alignToSurface();
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if(pathPoints.empty())
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removeOrder(0);
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}
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void Vehicle::exitGarrisonable(){
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placeAt(garrisonable->getPos());
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garrisonable->updateGarrison(this, false);
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garrisonable = nullptr;
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}
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void Vehicle::enterGarrisonable(){
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Unit *targUnit = orders[0].targets[0].unit;
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targUnit->updateGarrison(this, true);
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removeAllPathpoints();
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removeOrder(0);
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garrisonable = targUnit;
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pursuingTarget = false;
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}
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void Vehicle::navigateToTarget(float minDist){
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if(!pursuingTarget){
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Vector3 targPos = (orders[0].targets[0].unit ? orders[0].targets[0].unit->getPos() : orders[0].targets[0].pos);
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preparePathpoints(targPos);
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pursuingTarget = true;
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if(orders[0].type == Order::TYPE::GARRISON) addPathpoint(targPos);
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}
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navigate(minDist);
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}
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void Vehicle::garrison(Order order){
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Unit *targUnit = order.targets[0].unit;
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float distToGarrisonable = pos.getDistanceFrom(targUnit->getPos()), garrisonDist = .1;
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if(distToGarrisonable > garrisonDist)
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navigateToTarget(garrisonDist);
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else
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enterGarrisonable();
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}
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void Vehicle::patrol(Order order){
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if(pathPoints.empty()){
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patrolPointId = getNextPatrolPointId(order.targets.size());
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preparePathpoints(order.targets[patrolPointId].pos);
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}
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navigate(.5 * Map::getSingleton()->getCellSize().x);
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}
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void Vehicle::addPathpoint(Vector3 pointPos){
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pathPoints.push_back(pointPos);
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Box *b = new Box(Vector3::VEC_IJK);
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b->setMaterial(debugMat);
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Node *n = new Node(pointPos);
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n->attachMesh(b);
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Root::getSingleton()->getRootNode()->attachChild(n);
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debugPathPoints.push_back(n);
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}
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void Vehicle::preparePathpoints(Vector3 destPos){
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removeAllPathpoints();
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Map *map = Map::getSingleton();
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vector<Map::Cell> &cells = map->getCells();
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int source = map->getCellId(pos);
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int dest = map->getCellId(destPos);
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if(type == UnitType::UNDERWATER || type == UnitType::SEA_LEVEL || type == UnitType::LAND){
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Map::Cell::Type cellType = (type == UnitType::LAND ? Map::Cell::LAND : Map::Cell::WATER);
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bool canReach = (cells[source].type == cellType && cells[dest].type == cellType);
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if(!canReach) return;
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}
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Pathfinder *pathfinder = Pathfinder::getSingleton();
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vector<int> path = pathfinder->findPath(cells, source, dest, (int)type);
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for(int p : path)
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addPathpoint(cells[p].pos);
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}
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void Vehicle::removePathpoint(int i){
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Node *rootNode = Root::getSingleton()->getRootNode();
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Node *debugPathPointNode = debugPathPoints[i];
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rootNode->dettachChild(debugPathPointNode);
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Mesh *mesh = debugPathPointNode->getMesh(0);
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mesh->setMaterial(nullptr);
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debugPathPoints.erase(debugPathPoints.begin() + i);
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delete debugPathPointNode;
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pathPoints.erase(pathPoints.begin() + i);
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if(pathPoints.empty())
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pursuingTarget = false;
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}
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void Vehicle::removeAllPathpoints(){
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while(!pathPoints.empty())
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removePathpoint();
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}
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void Vehicle::attack(Order order){
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int prevNumOrders = orders.size();
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Unit::attack(order);
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int currNumOrders = orders.size();
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if(prevNumOrders != currNumOrders) return;
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Order::Target target = order.targets[0];
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Vector3 targVec = (target.unit ? target.unit->getPos() : target.pos) - pos;
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float distToTarg = targVec.getLength();
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float minDist = range;
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if(distToTarg > minDist)
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navigateToTarget(.5 * Map::getSingleton()->getCellSize().x);
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else
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pursuingTarget = false;
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float angleToTarg = targVec.norm().getAngleBetween(dirVec);
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if(distToTarg <= range){
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if(angleToTarg <= anglePrecision && canFire())
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fire();
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else if(angleToTarg > anglePrecision)
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turn(calculateRotation(targVec.norm(), angleToTarg, maxTurnAngle));
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}
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}
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void Vehicle::select(){
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if(!garrisonable)
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Unit::select();
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}
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}
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