Partial Intersection Calculation
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@ -123,7 +123,7 @@ public class Engine {
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Light light = new Light(new Vector3f(0,0,-20), new Vector3f(1,1,1));
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//Generate Simple, Flat Terrain
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Terrain terrain = new Terrain( loader, new ModelTexture(loader.loadTexture("white")), 16, 32, 7);
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Terrain terrain = new Terrain( loader, new ModelTexture(loader.loadTexture("white")), 16, 16, 7);
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//Create Hexagon
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HexagonModel hexagonModel = new HexagonModel();
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@ -3,6 +3,7 @@ package core.engine.toolbox;
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import core.engine.Engine;
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import core.engine.entity.Camera;
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import core.engine.terrain.Terrain;
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import core.engine.terrain.TerrainTile;
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import org.lwjgl.system.windows.MOUSEINPUT;
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import utils.MatrixGraphicUtils;
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import utils.vectors.*;
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@ -20,6 +21,7 @@ public class MousePicker {
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private Terrain terrain;
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private Vector3f currentTerrainPoint;
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private TerrainTile currentTerrainTile;
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public MousePicker(Camera cam, Matrix4f projection, Terrain terrain) {
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camera = cam;
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@ -39,11 +41,7 @@ public class MousePicker {
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public void update(float mouseX, float mouseY) {
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viewMatrix = MatrixGraphicUtils.createViewMatrix(camera);
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currentRay = calculateMouseRay(mouseX, mouseY);
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if (intersectionInRange(0, RAY_RANGE, currentRay)) {
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currentTerrainPoint = binarySearch(0, 0, RAY_RANGE, currentRay);
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} else {
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currentTerrainPoint = null;
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}
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currentTerrainPoint = calcCurrentTerrainIntersection();
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}
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private Vector3f calculateMouseRay(float mouseX, float mouseY) {
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@ -51,9 +49,7 @@ public class MousePicker {
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Vector2f normalizedCoords = getNormalisedDeviceCoordinates(mouseX, mouseY);
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Vector4f clipCoords = new Vector4f(normalizedCoords.x, normalizedCoords.y, -1.0f, 1.0f);
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Vector4f eyeCoords = toEyeCoords(clipCoords);
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Vector3f worldRay = toWorldCoords(eyeCoords);
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System.out.println(worldRay);
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return worldRay;
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return toWorldCoords(eyeCoords);
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}
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private Vector3f toWorldCoords(Vector4f eyeCoords) {
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@ -78,52 +74,12 @@ public class MousePicker {
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//**********************************************************
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private Vector3f getPointOnRay(Vector3f ray, float distance) {
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private Vector3f calcCurrentTerrainIntersection() {
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Vector3f camPos = camera.getPosition();
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Vector3f start = new Vector3f(camPos.x, camPos.y, camPos.z);
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Vector3f scaledRay = new Vector3f(ray.x * distance, ray.y * distance, ray.z * distance);
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return Vector3f.add(start, scaledRay, null);
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return null;
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}
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private Vector3f binarySearch(int count, float start, float finish, Vector3f ray) {
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float half = start + ((finish - start) / 2f);
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if (count >= RECURSION_COUNT) {
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Vector3f endPoint = getPointOnRay(ray, half);
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Terrain terrain = getTerrain(endPoint.getX(), endPoint.getZ());
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if (terrain != null) {
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return endPoint;
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} else {
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return null;
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}
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}
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if (intersectionInRange(start, half, ray)) {
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return binarySearch(count + 1, start, half, ray);
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} else {
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return binarySearch(count + 1, half, finish, ray);
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}
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}
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//**********************************************************
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private boolean intersectionInRange(float start, float finish, Vector3f ray) {
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Vector3f startPoint = getPointOnRay(ray, start);
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Vector3f endPoint = getPointOnRay(ray, finish);
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if (!isUnderGround(startPoint) && isUnderGround(endPoint)) {
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return true;
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} else {
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return false;
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}
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}
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private boolean isUnderGround(Vector3f testPoint) {
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Terrain terrain = getTerrain(testPoint.getX(), testPoint.getZ());
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float height = 0;
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if (testPoint.y < height) {
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return true;
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} else {
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return false;
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}
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}
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private Terrain getTerrain(float worldX, float worldZ) {
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return terrain;
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}
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}
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