Spaces:
Running
Running
Update backup1.index.html
Browse files- backup1.index.html +216 -186
backup1.index.html
CHANGED
|
@@ -1,11 +1,10 @@
|
|
| 1 |
<!DOCTYPE html>
|
| 2 |
<html>
|
| 3 |
<head>
|
| 4 |
-
<title>Three.js
|
| 5 |
<style>
|
| 6 |
body { margin: 0; overflow: hidden; }
|
| 7 |
canvas { display: block; }
|
| 8 |
-
/* No Save button needed here anymore */
|
| 9 |
</style>
|
| 10 |
</head>
|
| 11 |
<body>
|
|
@@ -21,20 +20,30 @@
|
|
| 21 |
<script type="module">
|
| 22 |
import * as THREE from 'three';
|
| 23 |
|
| 24 |
-
let scene, camera, renderer,
|
| 25 |
let raycaster, mouse;
|
| 26 |
const keysPressed = {};
|
| 27 |
const playerSpeed = 0.15;
|
| 28 |
let newlyPlacedObjects = []; // Track objects added THIS session for saving
|
|
|
|
|
|
|
| 29 |
|
| 30 |
// --- Session Storage Key ---
|
| 31 |
-
const SESSION_STORAGE_KEY = '
|
| 32 |
|
| 33 |
// --- Access State from Streamlit ---
|
| 34 |
const allInitialObjects = window.ALL_INITIAL_OBJECTS || [];
|
|
|
|
| 35 |
const selectedObjectType = window.SELECTED_OBJECT_TYPE || "None";
|
| 36 |
const plotWidth = window.PLOT_WIDTH || 50.0;
|
| 37 |
-
const
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
| 38 |
|
| 39 |
|
| 40 |
function init() {
|
|
@@ -42,13 +51,13 @@
|
|
| 42 |
scene.background = new THREE.Color(0xabcdef);
|
| 43 |
|
| 44 |
const aspect = window.innerWidth / window.innerHeight;
|
| 45 |
-
camera = new THREE.PerspectiveCamera(60, aspect, 0.1,
|
| 46 |
camera.position.set(0, 15, 20);
|
| 47 |
camera.lookAt(0, 0, 0);
|
| 48 |
scene.add(camera);
|
| 49 |
|
| 50 |
setupLighting();
|
| 51 |
-
|
| 52 |
setupPlayer();
|
| 53 |
|
| 54 |
raycaster = new THREE.Raycaster();
|
|
@@ -60,10 +69,8 @@
|
|
| 60 |
renderer.shadowMap.type = THREE.PCFSoftShadowMap;
|
| 61 |
document.body.appendChild(renderer.domElement);
|
| 62 |
|
| 63 |
-
loadInitialObjects();
|
| 64 |
-
|
| 65 |
-
// *** ADDED: Restore unsaved state from sessionStorage ***
|
| 66 |
-
restoreUnsavedState();
|
| 67 |
|
| 68 |
// Event Listeners
|
| 69 |
document.addEventListener('mousemove', onMouseMove, false);
|
|
@@ -71,14 +78,13 @@
|
|
| 71 |
window.addEventListener('resize', onWindowResize, false);
|
| 72 |
document.addEventListener('keydown', onKeyDown);
|
| 73 |
document.addEventListener('keyup', onKeyUp);
|
| 74 |
-
// No save button listener needed here
|
| 75 |
|
| 76 |
-
// Define global functions needed by Python
|
| 77 |
window.teleportPlayer = teleportPlayer;
|
| 78 |
-
window.
|
| 79 |
window.resetNewlyPlacedObjects = resetNewlyPlacedObjects;
|
| 80 |
|
| 81 |
-
console.log("Three.js Initialized.
|
| 82 |
animate();
|
| 83 |
}
|
| 84 |
|
|
@@ -86,57 +92,74 @@
|
|
| 86 |
const ambientLight = new THREE.AmbientLight(0xffffff, 0.5);
|
| 87 |
scene.add(ambientLight);
|
| 88 |
const directionalLight = new THREE.DirectionalLight(0xffffff, 1.0);
|
| 89 |
-
directionalLight.position.set(50,
|
| 90 |
directionalLight.castShadow = true;
|
| 91 |
-
directionalLight.shadow.mapSize.width =
|
| 92 |
-
directionalLight.shadow.mapSize.height =
|
| 93 |
directionalLight.shadow.camera.near = 0.5;
|
| 94 |
-
directionalLight.shadow.camera.far = 500;
|
| 95 |
-
//
|
| 96 |
-
directionalLight.shadow.camera.left = -
|
| 97 |
-
directionalLight.shadow.camera.right =
|
| 98 |
-
directionalLight.shadow.camera.top =
|
| 99 |
-
directionalLight.shadow.camera.bottom = -
|
| 100 |
directionalLight.shadow.bias = -0.001;
|
| 101 |
scene.add(directionalLight);
|
| 102 |
}
|
| 103 |
|
| 104 |
-
function
|
| 105 |
-
|
| 106 |
-
|
| 107 |
-
|
| 108 |
-
|
| 109 |
-
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
| 110 |
groundMesh.rotation.x = -Math.PI / 2;
|
| 111 |
groundMesh.position.y = -0.05;
|
| 112 |
-
|
|
|
|
|
|
|
|
|
|
| 113 |
groundMesh.receiveShadow = true;
|
|
|
|
| 114 |
scene.add(groundMesh);
|
| 115 |
-
|
|
|
|
|
|
|
|
|
|
| 116 |
}
|
| 117 |
|
| 118 |
function setupPlayer() { /* ... unchanged ... */
|
| 119 |
const playerGeo = new THREE.CapsuleGeometry(0.4, 0.8, 4, 8);
|
| 120 |
const playerMat = new THREE.MeshStandardMaterial({ color: 0x0000ff, roughness: 0.6 });
|
| 121 |
playerMesh = new THREE.Mesh(playerGeo, playerMat);
|
| 122 |
-
playerMesh.position.set(2, 0.4 + 0.8/2,
|
| 123 |
-
playerMesh.castShadow = true;
|
| 124 |
-
playerMesh.receiveShadow = true;
|
| 125 |
scene.add(playerMesh);
|
| 126 |
}
|
| 127 |
|
| 128 |
-
function loadInitialObjects() {
|
| 129 |
console.log(`Loading ${allInitialObjects.length} initial objects from Python.`);
|
| 130 |
-
allInitialObjects.forEach(objData => {
|
| 131 |
-
|
| 132 |
-
});
|
| 133 |
-
console.log("Finished loading initial objects.");
|
| 134 |
}
|
| 135 |
-
|
| 136 |
-
// --- NEW: Helper to create/place objects from data ---
|
| 137 |
-
function createAndPlaceObject(objData, isNewObject) {
|
| 138 |
let loadedObject = null;
|
| 139 |
-
// Need to deserialize object based on 'type' field from CSV/Storage
|
| 140 |
switch (objData.type) {
|
| 141 |
case "Simple House": loadedObject = createSimpleHouse(); break;
|
| 142 |
case "Tree": loadedObject = createTree(); break;
|
|
@@ -144,182 +167,133 @@
|
|
| 144 |
case "Fence Post": loadedObject = createFencePost(); break;
|
| 145 |
default: console.warn("Unknown object type in data:", objData.type); break;
|
| 146 |
}
|
| 147 |
-
|
| 148 |
if (loadedObject) {
|
| 149 |
-
// Position depends on whether it's from initial load (world) or storage (world)
|
| 150 |
-
// or potentially relative if storage format changes (keep world for now)
|
| 151 |
if (objData.position && objData.position.x !== undefined) {
|
| 152 |
loadedObject.position.set(objData.position.x, objData.position.y, objData.position.z);
|
| 153 |
-
} else if (objData.pos_x !== undefined) {
|
| 154 |
loadedObject.position.set(objData.pos_x, objData.pos_y, objData.pos_z);
|
| 155 |
}
|
| 156 |
-
|
| 157 |
-
// Apply rotation
|
| 158 |
-
if (objData.rotation) { // Format from storage/newlyPlaced
|
| 159 |
loadedObject.rotation.set(objData.rotation._x, objData.rotation._y, objData.rotation._z, objData.rotation._order || 'XYZ');
|
| 160 |
-
} else if (objData.rot_x !== undefined) {
|
| 161 |
loadedObject.rotation.set(objData.rot_x, objData.rot_y, objData.rot_z, objData.rot_order || 'XYZ');
|
| 162 |
}
|
| 163 |
-
|
| 164 |
-
// Assign unique ID if it has one, else use the one generated by createObjectBase
|
| 165 |
loadedObject.userData.obj_id = objData.obj_id || loadedObject.userData.obj_id;
|
| 166 |
-
|
| 167 |
scene.add(loadedObject);
|
| 168 |
-
|
| 169 |
-
|
| 170 |
-
// Only add to this array if it's being placed now or restored from session
|
| 171 |
-
newlyPlacedObjects.push(loadedObject);
|
| 172 |
-
}
|
| 173 |
-
return loadedObject; // Return the mesh/group
|
| 174 |
}
|
| 175 |
return null;
|
| 176 |
}
|
| 177 |
-
|
| 178 |
-
|
| 179 |
-
// --- NEW: Save/Load/Clear Unsaved State using sessionStorage ---
|
| 180 |
-
function saveUnsavedState() {
|
| 181 |
try {
|
| 182 |
-
const stateToSave = newlyPlacedObjects.map(obj => ({
|
| 183 |
-
obj_id: obj.userData.obj_id,
|
| 184 |
-
type: obj.userData.type,
|
| 185 |
-
position: { x: obj.position.x, y: obj.position.y, z: obj.position.z },
|
| 186 |
-
rotation: { _x: obj.rotation.x, _y: obj.rotation.y, _z: obj.rotation.z, _order: obj.rotation.order }
|
| 187 |
-
}));
|
| 188 |
sessionStorage.setItem(SESSION_STORAGE_KEY, JSON.stringify(stateToSave));
|
| 189 |
console.log(`Saved ${stateToSave.length} unsaved objects to sessionStorage.`);
|
| 190 |
-
} catch (e) {
|
| 191 |
-
console.error("Error saving state to sessionStorage:", e);
|
| 192 |
-
}
|
| 193 |
}
|
| 194 |
-
|
| 195 |
-
function restoreUnsavedState() {
|
| 196 |
try {
|
| 197 |
const savedState = sessionStorage.getItem(SESSION_STORAGE_KEY);
|
| 198 |
if (savedState) {
|
| 199 |
console.log("Found unsaved state in sessionStorage. Restoring...");
|
| 200 |
const objectsToRestore = JSON.parse(savedState);
|
| 201 |
if (Array.isArray(objectsToRestore)) {
|
| 202 |
-
|
| 203 |
-
|
| 204 |
-
let count = 0;
|
| 205 |
-
objectsToRestore.forEach(objData => {
|
| 206 |
-
// Create object, add to scene, AND add to newlyPlacedObjects array
|
| 207 |
-
if(createAndPlaceObject(objData, true)) {
|
| 208 |
-
count++;
|
| 209 |
-
}
|
| 210 |
-
});
|
| 211 |
console.log(`Restored ${count} objects.`);
|
| 212 |
}
|
| 213 |
-
} else {
|
| 214 |
-
|
| 215 |
-
}
|
| 216 |
-
} catch (e) {
|
| 217 |
-
console.error("Error restoring state from sessionStorage:", e);
|
| 218 |
-
// Clear potentially corrupted storage
|
| 219 |
-
sessionStorage.removeItem(SESSION_STORAGE_KEY);
|
| 220 |
-
}
|
| 221 |
}
|
| 222 |
-
|
| 223 |
-
function clearUnsavedState() {
|
| 224 |
sessionStorage.removeItem(SESSION_STORAGE_KEY);
|
| 225 |
-
newlyPlacedObjects = [];
|
| 226 |
console.log("Cleared unsaved state from memory and sessionStorage.");
|
| 227 |
}
|
| 228 |
-
|
| 229 |
-
|
| 230 |
-
// --- Object Creation Functions (MUST add userData.type and obj_id) ---
|
| 231 |
-
function createObjectBase(type) { // Helper to assign common data
|
| 232 |
-
const obj = { userData: { type: type, obj_id: THREE.MathUtils.generateUUID() } };
|
| 233 |
-
return obj;
|
| 234 |
}
|
| 235 |
-
|
| 236 |
-
const base = createObjectBase("Simple House");
|
| 237 |
-
const
|
| 238 |
-
const
|
| 239 |
-
const
|
| 240 |
-
const baseMesh = new THREE.Mesh(new THREE.BoxGeometry(2, 1.5, 2.5), mainMaterial);
|
| 241 |
-
baseMesh.position.y = 1.5 / 2; baseMesh.castShadow = true; baseMesh.receiveShadow = true; group.add(baseMesh);
|
| 242 |
-
const roof = new THREE.Mesh(new THREE.ConeGeometry(1.8, 1, 4), roofMaterial);
|
| 243 |
-
roof.position.y = 1.5 + 1 / 2; roof.rotation.y = Math.PI / 4; roof.castShadow = true; roof.receiveShadow = true; group.add(roof);
|
| 244 |
-
return group;
|
| 245 |
}
|
| 246 |
-
function createTree() { /* ... unchanged
|
| 247 |
-
const base
|
| 248 |
-
const
|
| 249 |
-
const
|
| 250 |
-
const
|
| 251 |
-
trunk.position.y = 2 / 2; trunk.castShadow = true; trunk.receiveShadow = true; group.add(trunk);
|
| 252 |
-
const leaves = new THREE.Mesh(new THREE.IcosahedronGeometry(1.2, 0), leavesMaterial);
|
| 253 |
-
leaves.position.y = 2 + 0.8; leaves.castShadow = true; leaves.receiveShadow = true; group.add(leaves);
|
| 254 |
-
return group;
|
| 255 |
}
|
| 256 |
-
function createRock() { /* ... unchanged
|
| 257 |
-
const base
|
| 258 |
-
const
|
| 259 |
-
|
| 260 |
-
rock.position.y = 0.7 / 2; rock.rotation.x = Math.random() * Math.PI; rock.rotation.y = Math.random() * Math.PI;
|
| 261 |
-
rock.castShadow = true; rock.receiveShadow = true;
|
| 262 |
-
return rock;
|
| 263 |
}
|
| 264 |
-
function createFencePost() { /* ... unchanged
|
| 265 |
-
const base
|
| 266 |
-
const
|
| 267 |
-
|
| 268 |
-
post.position.y = 1.5 / 2; post.castShadow = true; post.receiveShadow = true;
|
| 269 |
-
return post;
|
| 270 |
}
|
| 271 |
|
| 272 |
-
|
| 273 |
// --- Event Handlers ---
|
| 274 |
function onMouseMove(event) { /* ... unchanged ... */
|
| 275 |
mouse.x = (event.clientX / window.innerWidth) * 2 - 1;
|
| 276 |
mouse.y = -(event.clientY / window.innerHeight) * 2 + 1;
|
| 277 |
}
|
| 278 |
|
| 279 |
-
function onDocumentClick(event) {
|
| 280 |
-
if (selectedObjectType === "None"
|
|
|
|
|
|
|
|
|
|
| 281 |
|
| 282 |
-
|
| 283 |
-
|
|
|
|
| 284 |
|
| 285 |
-
|
| 286 |
-
|
| 287 |
-
|
|
|
|
| 288 |
|
| 289 |
-
|
| 290 |
case "Simple House": newObjectToPlace = createSimpleHouse(); break;
|
| 291 |
case "Tree": newObjectToPlace = createTree(); break;
|
| 292 |
case "Rock": newObjectToPlace = createRock(); break;
|
| 293 |
case "Fence Post": newObjectToPlace = createFencePost(); break;
|
| 294 |
default: return;
|
| 295 |
-
|
| 296 |
-
|
| 297 |
-
if (newObjectToPlace) {
|
| 298 |
-
// Position in WORLD coordinates where clicked
|
| 299 |
-
newObjectToPlace.position.copy(intersectPoint);
|
| 300 |
-
// Adjust Y based on object's geometry center if needed
|
| 301 |
-
// (Create functions mostly handle placing base at y=0)
|
| 302 |
-
|
| 303 |
-
scene.add(newObjectToPlace);
|
| 304 |
-
newlyPlacedObjects.push(newObjectToPlace); // Add to list for saving
|
| 305 |
-
|
| 306 |
-
// *** ADDED: Save state to sessionStorage immediately after placing ***
|
| 307 |
-
saveUnsavedState();
|
| 308 |
|
| 309 |
-
|
| 310 |
-
|
| 311 |
-
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
| 312 |
}
|
| 313 |
|
| 314 |
function onKeyDown(event) { keysPressed[event.code] = true; }
|
| 315 |
function onKeyUp(event) { keysPressed[event.code] = false; }
|
| 316 |
|
| 317 |
// --- Functions called by Python via streamlit-js-eval ---
|
| 318 |
-
function teleportPlayer(targetX) {
|
| 319 |
-
console.log(
|
| 320 |
if (playerMesh) {
|
| 321 |
-
|
| 322 |
-
playerMesh.position.
|
|
|
|
| 323 |
const offset = new THREE.Vector3(0, 15, 20);
|
| 324 |
const targetPosition = playerMesh.position.clone().add(offset);
|
| 325 |
camera.position.copy(targetPosition);
|
|
@@ -328,22 +302,27 @@
|
|
| 328 |
} else { console.error("Player mesh not found for teleport."); }
|
| 329 |
}
|
| 330 |
|
| 331 |
-
|
| 332 |
-
|
| 333 |
-
|
| 334 |
const objectsToSave = newlyPlacedObjects.map(obj => {
|
| 335 |
if (!obj.userData || !obj.userData.type) { return null; }
|
| 336 |
const rotation = { _x: obj.rotation.x, _y: obj.rotation.y, _z: obj.rotation.z, _order: obj.rotation.order };
|
| 337 |
-
return {
|
| 338 |
-
obj_id: obj.userData.obj_id,
|
| 339 |
-
type: obj.userData.type,
|
| 340 |
position: { x: obj.position.x, y: obj.position.y, z: obj.position.z },
|
| 341 |
rotation: rotation
|
| 342 |
};
|
| 343 |
}).filter(obj => obj !== null);
|
| 344 |
|
| 345 |
-
|
| 346 |
-
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
| 347 |
}
|
| 348 |
|
| 349 |
function resetNewlyPlacedObjects() { // Called by Python AFTER successful save
|
|
@@ -353,24 +332,75 @@
|
|
| 353 |
|
| 354 |
|
| 355 |
// --- Animation Loop ---
|
| 356 |
-
function updatePlayerMovement() {
|
| 357 |
-
|
| 358 |
-
|
| 359 |
-
|
| 360 |
-
|
| 361 |
-
|
| 362 |
-
|
| 363 |
-
|
| 364 |
-
|
| 365 |
-
|
| 366 |
-
|
| 367 |
-
|
| 368 |
-
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
| 369 |
}
|
| 370 |
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
| 371 |
function updateCamera() { /* ... unchanged ... */
|
| 372 |
if (!playerMesh) return;
|
| 373 |
-
const offset = new THREE.Vector3(0, 15, 20);
|
| 374 |
const targetPosition = playerMesh.position.clone().add(offset);
|
| 375 |
camera.position.lerp(targetPosition, 0.08);
|
| 376 |
camera.lookAt(playerMesh.position);
|
|
@@ -384,7 +414,7 @@
|
|
| 384 |
|
| 385 |
function animate() {
|
| 386 |
requestAnimationFrame(animate);
|
| 387 |
-
updatePlayerMovement();
|
| 388 |
updateCamera();
|
| 389 |
renderer.render(scene, camera);
|
| 390 |
}
|
|
|
|
| 1 |
<!DOCTYPE html>
|
| 2 |
<html>
|
| 3 |
<head>
|
| 4 |
+
<title>Three.js Infinite World</title>
|
| 5 |
<style>
|
| 6 |
body { margin: 0; overflow: hidden; }
|
| 7 |
canvas { display: block; }
|
|
|
|
| 8 |
</style>
|
| 9 |
</head>
|
| 10 |
<body>
|
|
|
|
| 20 |
<script type="module">
|
| 21 |
import * as THREE from 'three';
|
| 22 |
|
| 23 |
+
let scene, camera, renderer, playerMesh;
|
| 24 |
let raycaster, mouse;
|
| 25 |
const keysPressed = {};
|
| 26 |
const playerSpeed = 0.15;
|
| 27 |
let newlyPlacedObjects = []; // Track objects added THIS session for saving
|
| 28 |
+
const placeholderPlots = new Set(); // Track visually created placeholder grounds: 'x_z' string key
|
| 29 |
+
const groundMeshes = {}; // Store references to ground meshes: 'x_z' string key -> mesh
|
| 30 |
|
| 31 |
// --- Session Storage Key ---
|
| 32 |
+
const SESSION_STORAGE_KEY = 'unsavedInfiniteWorldState';
|
| 33 |
|
| 34 |
// --- Access State from Streamlit ---
|
| 35 |
const allInitialObjects = window.ALL_INITIAL_OBJECTS || [];
|
| 36 |
+
const plotsMetadata = window.PLOTS_METADATA || []; // List of saved plot info
|
| 37 |
const selectedObjectType = window.SELECTED_OBJECT_TYPE || "None";
|
| 38 |
const plotWidth = window.PLOT_WIDTH || 50.0;
|
| 39 |
+
const plotDepth = window.PLOT_DEPTH || 50.0; // Use plot depth
|
| 40 |
+
|
| 41 |
+
const groundMaterial = new THREE.MeshStandardMaterial({ // Reusable material
|
| 42 |
+
color: 0x55aa55, roughness: 0.9, metalness: 0.1, side: THREE.DoubleSide
|
| 43 |
+
});
|
| 44 |
+
const placeholderGroundMaterial = new THREE.MeshStandardMaterial({ // Dimmer for placeholders
|
| 45 |
+
color: 0x448844, roughness: 0.95, metalness: 0.1, side: THREE.DoubleSide
|
| 46 |
+
});
|
| 47 |
|
| 48 |
|
| 49 |
function init() {
|
|
|
|
| 51 |
scene.background = new THREE.Color(0xabcdef);
|
| 52 |
|
| 53 |
const aspect = window.innerWidth / window.innerHeight;
|
| 54 |
+
camera = new THREE.PerspectiveCamera(60, aspect, 0.1, 4000); // Increase far plane more
|
| 55 |
camera.position.set(0, 15, 20);
|
| 56 |
camera.lookAt(0, 0, 0);
|
| 57 |
scene.add(camera);
|
| 58 |
|
| 59 |
setupLighting();
|
| 60 |
+
setupInitialGround(); // Setup ground for existing plots ONLY initially
|
| 61 |
setupPlayer();
|
| 62 |
|
| 63 |
raycaster = new THREE.Raycaster();
|
|
|
|
| 69 |
renderer.shadowMap.type = THREE.PCFSoftShadowMap;
|
| 70 |
document.body.appendChild(renderer.domElement);
|
| 71 |
|
| 72 |
+
loadInitialObjects();
|
| 73 |
+
restoreUnsavedState(); // Restore unsaved objects after initial load
|
|
|
|
|
|
|
| 74 |
|
| 75 |
// Event Listeners
|
| 76 |
document.addEventListener('mousemove', onMouseMove, false);
|
|
|
|
| 78 |
window.addEventListener('resize', onWindowResize, false);
|
| 79 |
document.addEventListener('keydown', onKeyDown);
|
| 80 |
document.addEventListener('keyup', onKeyUp);
|
|
|
|
| 81 |
|
| 82 |
+
// Define global functions needed by Python
|
| 83 |
window.teleportPlayer = teleportPlayer;
|
| 84 |
+
window.getSaveDataAndPosition = getSaveDataAndPosition; // Renamed JS function
|
| 85 |
window.resetNewlyPlacedObjects = resetNewlyPlacedObjects;
|
| 86 |
|
| 87 |
+
console.log("Three.js Initialized. World ready.");
|
| 88 |
animate();
|
| 89 |
}
|
| 90 |
|
|
|
|
| 92 |
const ambientLight = new THREE.AmbientLight(0xffffff, 0.5);
|
| 93 |
scene.add(ambientLight);
|
| 94 |
const directionalLight = new THREE.DirectionalLight(0xffffff, 1.0);
|
| 95 |
+
directionalLight.position.set(50, 150, 100); // Higher and angled light
|
| 96 |
directionalLight.castShadow = true;
|
| 97 |
+
directionalLight.shadow.mapSize.width = 4096; // Increase shadow map size
|
| 98 |
+
directionalLight.shadow.mapSize.height = 4096;
|
| 99 |
directionalLight.shadow.camera.near = 0.5;
|
| 100 |
+
directionalLight.shadow.camera.far = 500;
|
| 101 |
+
// Dynamic frustum needed for large worlds, but keep wide for now
|
| 102 |
+
directionalLight.shadow.camera.left = -150;
|
| 103 |
+
directionalLight.shadow.camera.right = 150;
|
| 104 |
+
directionalLight.shadow.camera.top = 150;
|
| 105 |
+
directionalLight.shadow.camera.bottom = -150;
|
| 106 |
directionalLight.shadow.bias = -0.001;
|
| 107 |
scene.add(directionalLight);
|
| 108 |
}
|
| 109 |
|
| 110 |
+
function setupInitialGround() {
|
| 111 |
+
// Create ground ONLY for plots defined in plotsMetadata
|
| 112 |
+
console.log(`Setting up initial ground for ${plotsMetadata.length} plots.`);
|
| 113 |
+
plotsMetadata.forEach(plot => {
|
| 114 |
+
createGroundPlane(plot.grid_x, plot.grid_z, false); // false = not a placeholder
|
| 115 |
+
});
|
| 116 |
+
// Create a small initial ground at 0,0 if no plots exist yet
|
| 117 |
+
if (plotsMetadata.length === 0) {
|
| 118 |
+
createGroundPlane(0, 0, false);
|
| 119 |
+
}
|
| 120 |
+
}
|
| 121 |
+
|
| 122 |
+
// *** NEW: Function to create a ground plane for a specific grid cell ***
|
| 123 |
+
function createGroundPlane(gridX, gridZ, isPlaceholder) {
|
| 124 |
+
const gridKey = `${gridX}_${gridZ}`;
|
| 125 |
+
if (groundMeshes[gridKey]) return; // Don't recreate if it exists
|
| 126 |
+
|
| 127 |
+
console.log(`Creating ${isPlaceholder ? 'placeholder' : 'initial'} ground at ${gridX}, ${gridZ}`);
|
| 128 |
+
const groundGeometry = new THREE.PlaneGeometry(plotWidth, plotDepth);
|
| 129 |
+
const material = isPlaceholder ? placeholderGroundMaterial : groundMaterial;
|
| 130 |
+
const groundMesh = new THREE.Mesh(groundGeometry, material);
|
| 131 |
+
|
| 132 |
groundMesh.rotation.x = -Math.PI / 2;
|
| 133 |
groundMesh.position.y = -0.05;
|
| 134 |
+
// Position the center of the plane correctly
|
| 135 |
+
groundMesh.position.x = gridX * plotWidth + plotWidth / 2.0;
|
| 136 |
+
groundMesh.position.z = gridZ * plotDepth + plotDepth / 2.0;
|
| 137 |
+
|
| 138 |
groundMesh.receiveShadow = true;
|
| 139 |
+
groundMesh.userData.gridKey = gridKey; // Store key for potential removal/update
|
| 140 |
scene.add(groundMesh);
|
| 141 |
+
groundMeshes[gridKey] = groundMesh; // Store reference
|
| 142 |
+
if (isPlaceholder) {
|
| 143 |
+
placeholderPlots.add(gridKey); // Track placeholders
|
| 144 |
+
}
|
| 145 |
}
|
| 146 |
|
| 147 |
function setupPlayer() { /* ... unchanged ... */
|
| 148 |
const playerGeo = new THREE.CapsuleGeometry(0.4, 0.8, 4, 8);
|
| 149 |
const playerMat = new THREE.MeshStandardMaterial({ color: 0x0000ff, roughness: 0.6 });
|
| 150 |
playerMesh = new THREE.Mesh(playerGeo, playerMat);
|
| 151 |
+
playerMesh.position.set(plotWidth / 2, 0.4 + 0.8/2, plotDepth/2); // Start in center of 0,0 plot
|
| 152 |
+
playerMesh.castShadow = true; playerMesh.receiveShadow = true;
|
|
|
|
| 153 |
scene.add(playerMesh);
|
| 154 |
}
|
| 155 |
|
| 156 |
+
function loadInitialObjects() { /* ... unchanged, uses createAndPlaceObject ... */
|
| 157 |
console.log(`Loading ${allInitialObjects.length} initial objects from Python.`);
|
| 158 |
+
allInitialObjects.forEach(objData => { createAndPlaceObject(objData, false); });
|
| 159 |
+
console.log("Finished loading initial objects.");
|
|
|
|
|
|
|
| 160 |
}
|
| 161 |
+
function createAndPlaceObject(objData, isNewObject) { /* ... unchanged ... */
|
|
|
|
|
|
|
| 162 |
let loadedObject = null;
|
|
|
|
| 163 |
switch (objData.type) {
|
| 164 |
case "Simple House": loadedObject = createSimpleHouse(); break;
|
| 165 |
case "Tree": loadedObject = createTree(); break;
|
|
|
|
| 167 |
case "Fence Post": loadedObject = createFencePost(); break;
|
| 168 |
default: console.warn("Unknown object type in data:", objData.type); break;
|
| 169 |
}
|
|
|
|
| 170 |
if (loadedObject) {
|
|
|
|
|
|
|
| 171 |
if (objData.position && objData.position.x !== undefined) {
|
| 172 |
loadedObject.position.set(objData.position.x, objData.position.y, objData.position.z);
|
| 173 |
+
} else if (objData.pos_x !== undefined) {
|
| 174 |
loadedObject.position.set(objData.pos_x, objData.pos_y, objData.pos_z);
|
| 175 |
}
|
| 176 |
+
if (objData.rotation) {
|
|
|
|
|
|
|
| 177 |
loadedObject.rotation.set(objData.rotation._x, objData.rotation._y, objData.rotation._z, objData.rotation._order || 'XYZ');
|
| 178 |
+
} else if (objData.rot_x !== undefined) {
|
| 179 |
loadedObject.rotation.set(objData.rot_x, objData.rot_y, objData.rot_z, objData.rot_order || 'XYZ');
|
| 180 |
}
|
|
|
|
|
|
|
| 181 |
loadedObject.userData.obj_id = objData.obj_id || loadedObject.userData.obj_id;
|
|
|
|
| 182 |
scene.add(loadedObject);
|
| 183 |
+
if (isNewObject) { newlyPlacedObjects.push(loadedObject); }
|
| 184 |
+
return loadedObject;
|
|
|
|
|
|
|
|
|
|
|
|
|
| 185 |
}
|
| 186 |
return null;
|
| 187 |
}
|
| 188 |
+
function saveUnsavedState() { /* ... unchanged ... */
|
|
|
|
|
|
|
|
|
|
| 189 |
try {
|
| 190 |
+
const stateToSave = newlyPlacedObjects.map(obj => ({ obj_id: obj.userData.obj_id, type: obj.userData.type, position: { x: obj.position.x, y: obj.position.y, z: obj.position.z }, rotation: { _x: obj.rotation.x, _y: obj.rotation.y, _z: obj.rotation.z, _order: obj.rotation.order } }));
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
| 191 |
sessionStorage.setItem(SESSION_STORAGE_KEY, JSON.stringify(stateToSave));
|
| 192 |
console.log(`Saved ${stateToSave.length} unsaved objects to sessionStorage.`);
|
| 193 |
+
} catch (e) { console.error("Error saving state to sessionStorage:", e); }
|
|
|
|
|
|
|
| 194 |
}
|
| 195 |
+
function restoreUnsavedState() { /* ... unchanged ... */
|
|
|
|
| 196 |
try {
|
| 197 |
const savedState = sessionStorage.getItem(SESSION_STORAGE_KEY);
|
| 198 |
if (savedState) {
|
| 199 |
console.log("Found unsaved state in sessionStorage. Restoring...");
|
| 200 |
const objectsToRestore = JSON.parse(savedState);
|
| 201 |
if (Array.isArray(objectsToRestore)) {
|
| 202 |
+
newlyPlacedObjects = []; let count = 0;
|
| 203 |
+
objectsToRestore.forEach(objData => { if(createAndPlaceObject(objData, true)) { count++; } });
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
| 204 |
console.log(`Restored ${count} objects.`);
|
| 205 |
}
|
| 206 |
+
} else { console.log("No unsaved state found in sessionStorage."); }
|
| 207 |
+
} catch (e) { console.error("Error restoring state from sessionStorage:", e); sessionStorage.removeItem(SESSION_STORAGE_KEY); }
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
| 208 |
}
|
| 209 |
+
function clearUnsavedState() { /* ... unchanged ... */
|
|
|
|
| 210 |
sessionStorage.removeItem(SESSION_STORAGE_KEY);
|
| 211 |
+
newlyPlacedObjects = [];
|
| 212 |
console.log("Cleared unsaved state from memory and sessionStorage.");
|
| 213 |
}
|
| 214 |
+
function createObjectBase(type) { /* ... unchanged ... */
|
| 215 |
+
return { userData: { type: type, obj_id: THREE.MathUtils.generateUUID() } };
|
|
|
|
|
|
|
|
|
|
|
|
|
| 216 |
}
|
| 217 |
+
function createSimpleHouse() { /* ... unchanged ... */
|
| 218 |
+
const base = createObjectBase("Simple House"); const group = new THREE.Group(); Object.assign(group, base);
|
| 219 |
+
const mat1=new THREE.MeshStandardMaterial({color:0xffccaa,roughness:0.8}), mat2=new THREE.MeshStandardMaterial({color:0xaa5533,roughness:0.7});
|
| 220 |
+
const m1=new THREE.Mesh(new THREE.BoxGeometry(2,1.5,2.5),mat1); m1.position.y=1.5/2;m1.castShadow=true;m1.receiveShadow=true;group.add(m1);
|
| 221 |
+
const m2=new THREE.Mesh(new THREE.ConeGeometry(1.8,1,4),mat2); m2.position.y=1.5+1/2;m2.rotation.y=Math.PI/4;m2.castShadow=true;m2.receiveShadow=true;group.add(m2); return group;
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
| 222 |
}
|
| 223 |
+
function createTree() { /* ... unchanged ... */
|
| 224 |
+
const base=createObjectBase("Tree"); const group=new THREE.Group(); Object.assign(group,base);
|
| 225 |
+
const mat1=new THREE.MeshStandardMaterial({color:0x8B4513,roughness:0.9}), mat2=new THREE.MeshStandardMaterial({color:0x228B22,roughness:0.8});
|
| 226 |
+
const m1=new THREE.Mesh(new THREE.CylinderGeometry(0.3,0.4,2,8),mat1); m1.position.y=1; m1.castShadow=true;m1.receiveShadow=true;group.add(m1);
|
| 227 |
+
const m2=new THREE.Mesh(new THREE.IcosahedronGeometry(1.2,0),mat2); m2.position.y=2.8; m2.castShadow=true;m2.receiveShadow=true;group.add(m2); return group;
|
|
|
|
|
|
|
|
|
|
|
|
|
| 228 |
}
|
| 229 |
+
function createRock() { /* ... unchanged ... */
|
| 230 |
+
const base=createObjectBase("Rock"); const mat=new THREE.MeshStandardMaterial({color:0xaaaaaa,roughness:0.8,metalness:0.1});
|
| 231 |
+
const rock=new THREE.Mesh(new THREE.IcosahedronGeometry(0.7,0),mat); Object.assign(rock,base);
|
| 232 |
+
rock.position.y=0.35; rock.rotation.set(Math.random()*Math.PI, Math.random()*Math.PI, 0); rock.castShadow=true;rock.receiveShadow=true; return rock;
|
|
|
|
|
|
|
|
|
|
| 233 |
}
|
| 234 |
+
function createFencePost() { /* ... unchanged ... */
|
| 235 |
+
const base=createObjectBase("Fence Post"); const mat=new THREE.MeshStandardMaterial({color:0xdeb887,roughness:0.9});
|
| 236 |
+
const post=new THREE.Mesh(new THREE.BoxGeometry(0.2,1.5,0.2),mat); Object.assign(post,base);
|
| 237 |
+
post.position.y=0.75; post.castShadow=true;post.receiveShadow=true; return post;
|
|
|
|
|
|
|
| 238 |
}
|
| 239 |
|
|
|
|
| 240 |
// --- Event Handlers ---
|
| 241 |
function onMouseMove(event) { /* ... unchanged ... */
|
| 242 |
mouse.x = (event.clientX / window.innerWidth) * 2 - 1;
|
| 243 |
mouse.y = -(event.clientY / window.innerHeight) * 2 + 1;
|
| 244 |
}
|
| 245 |
|
| 246 |
+
function onDocumentClick(event) { // Place object and save state
|
| 247 |
+
if (selectedObjectType === "None") return;
|
| 248 |
+
// Determine ground mesh to intersect (could be multiple now)
|
| 249 |
+
const groundCandidates = Object.values(groundMeshes);
|
| 250 |
+
if (groundCandidates.length === 0) return; // No ground to place on
|
| 251 |
|
| 252 |
+
raycaster.setFromCamera(mouse, camera);
|
| 253 |
+
// Intersect ALL ground meshes
|
| 254 |
+
const intersects = raycaster.intersectObjects(groundCandidates);
|
| 255 |
|
| 256 |
+
if (intersects.length > 0) {
|
| 257 |
+
// Intersect point is on the specific ground mesh clicked
|
| 258 |
+
const intersectPoint = intersects[0].point;
|
| 259 |
+
let newObjectToPlace = null;
|
| 260 |
|
| 261 |
+
switch (selectedObjectType) { /* ... create object ... */
|
| 262 |
case "Simple House": newObjectToPlace = createSimpleHouse(); break;
|
| 263 |
case "Tree": newObjectToPlace = createTree(); break;
|
| 264 |
case "Rock": newObjectToPlace = createRock(); break;
|
| 265 |
case "Fence Post": newObjectToPlace = createFencePost(); break;
|
| 266 |
default: return;
|
| 267 |
+
}
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
| 268 |
|
| 269 |
+
if (newObjectToPlace) {
|
| 270 |
+
newObjectToPlace.position.copy(intersectPoint);
|
| 271 |
+
// Adjust Y position if needed based on object geometry origin
|
| 272 |
+
// Base objects on y=0 in create functions for simplicity
|
| 273 |
+
if(newObjectToPlace.geometry?.type.includes("Geometry")){ // Adjust Y so base is on ground
|
| 274 |
+
newObjectToPlace.position.y += 0.01; // Slight offset above ground
|
| 275 |
+
} else if (newObjectToPlace.type === "Group") {
|
| 276 |
+
newObjectToPlace.position.y += 0.01; // Assume group base is near 0
|
| 277 |
+
}
|
| 278 |
+
|
| 279 |
+
scene.add(newObjectToPlace);
|
| 280 |
+
newlyPlacedObjects.push(newObjectToPlace);
|
| 281 |
+
saveUnsavedState(); // Save to sessionStorage immediately
|
| 282 |
+
console.log(`Placed new ${selectedObjectType}. Total unsaved: ${newlyPlacedObjects.length}`);
|
| 283 |
+
}
|
| 284 |
+
}
|
| 285 |
}
|
| 286 |
|
| 287 |
function onKeyDown(event) { keysPressed[event.code] = true; }
|
| 288 |
function onKeyUp(event) { keysPressed[event.code] = false; }
|
| 289 |
|
| 290 |
// --- Functions called by Python via streamlit-js-eval ---
|
| 291 |
+
function teleportPlayer(targetX, targetZ) { // Now accepts Z coordinate
|
| 292 |
+
console.log(`JS teleportPlayer called with targetX: ${targetX}, targetZ: ${targetZ}`);
|
| 293 |
if (playerMesh) {
|
| 294 |
+
// Teleport near center of the target plot
|
| 295 |
+
playerMesh.position.x = targetX;
|
| 296 |
+
playerMesh.position.z = targetZ;
|
| 297 |
const offset = new THREE.Vector3(0, 15, 20);
|
| 298 |
const targetPosition = playerMesh.position.clone().add(offset);
|
| 299 |
camera.position.copy(targetPosition);
|
|
|
|
| 302 |
} else { console.error("Player mesh not found for teleport."); }
|
| 303 |
}
|
| 304 |
|
| 305 |
+
// *** UPDATED: Send player position along with save data ***
|
| 306 |
+
function getSaveDataAndPosition() {
|
| 307 |
+
console.log(`JS getSaveDataAndPosition called. Found ${newlyPlacedObjects.length} new objects.`);
|
| 308 |
const objectsToSave = newlyPlacedObjects.map(obj => {
|
| 309 |
if (!obj.userData || !obj.userData.type) { return null; }
|
| 310 |
const rotation = { _x: obj.rotation.x, _y: obj.rotation.y, _z: obj.rotation.z, _order: obj.rotation.order };
|
| 311 |
+
return { // Send WORLD positions
|
| 312 |
+
obj_id: obj.userData.obj_id, type: obj.userData.type,
|
|
|
|
| 313 |
position: { x: obj.position.x, y: obj.position.y, z: obj.position.z },
|
| 314 |
rotation: rotation
|
| 315 |
};
|
| 316 |
}).filter(obj => obj !== null);
|
| 317 |
|
| 318 |
+
const playerPos = playerMesh ? { x: playerMesh.position.x, y: playerMesh.position.y, z: playerMesh.position.z } : {x:0, y:0, z:0};
|
| 319 |
+
|
| 320 |
+
const payload = {
|
| 321 |
+
playerPosition: playerPos,
|
| 322 |
+
objectsToSave: objectsToSave
|
| 323 |
+
};
|
| 324 |
+
console.log("Prepared payload for saving:", payload);
|
| 325 |
+
return JSON.stringify(payload); // Return as JSON string
|
| 326 |
}
|
| 327 |
|
| 328 |
function resetNewlyPlacedObjects() { // Called by Python AFTER successful save
|
|
|
|
| 332 |
|
| 333 |
|
| 334 |
// --- Animation Loop ---
|
| 335 |
+
function updatePlayerMovement() {
|
| 336 |
+
if (!playerMesh) return;
|
| 337 |
+
const moveDirection = new THREE.Vector3(0, 0, 0);
|
| 338 |
+
// Basic WASD movement
|
| 339 |
+
if (keysPressed['KeyW'] || keysPressed['ArrowUp']) moveDirection.z -= 1;
|
| 340 |
+
if (keysPressed['KeyS'] || keysPressed['ArrowDown']) moveDirection.z += 1;
|
| 341 |
+
if (keysPressed['KeyA'] || keysPressed['ArrowLeft']) moveDirection.x -= 1;
|
| 342 |
+
if (keysPressed['KeyD'] || keysPressed['ArrowRight']) moveDirection.x += 1;
|
| 343 |
+
|
| 344 |
+
if (moveDirection.lengthSq() > 0) {
|
| 345 |
+
moveDirection.normalize().multiplyScalar(playerSpeed);
|
| 346 |
+
// Apply movement relative to camera direction for better control
|
| 347 |
+
const forward = new THREE.Vector3();
|
| 348 |
+
camera.getWorldDirection(forward);
|
| 349 |
+
forward.y = 0; // Project onto XZ plane
|
| 350 |
+
forward.normalize();
|
| 351 |
+
const right = new THREE.Vector3().crossVectors(camera.up, forward).normalize(); // Get right vector
|
| 352 |
+
|
| 353 |
+
const worldMove = new THREE.Vector3();
|
| 354 |
+
worldMove.add(forward.multiplyScalar(-moveDirection.z)); // W/S -> Forward/Backward
|
| 355 |
+
worldMove.add(right.multiplyScalar(-moveDirection.x)); // A/D -> Left/Right
|
| 356 |
+
worldMove.normalize().multiplyScalar(playerSpeed);
|
| 357 |
+
|
| 358 |
+
playerMesh.position.add(worldMove);
|
| 359 |
+
|
| 360 |
+
// Basic ground clamping
|
| 361 |
+
playerMesh.position.y = Math.max(playerMesh.position.y, 0.4 + 0.8/2); // Adjust based on capsule base
|
| 362 |
+
|
| 363 |
+
// *** ADDED: Check for ground expansion ***
|
| 364 |
+
checkAndExpandGround();
|
| 365 |
+
}
|
| 366 |
}
|
| 367 |
|
| 368 |
+
// *** NEW: Check if player is near edge and create placeholder ground ***
|
| 369 |
+
function checkAndExpandGround() {
|
| 370 |
+
if (!playerMesh) return;
|
| 371 |
+
|
| 372 |
+
const currentGridX = Math.floor(playerMesh.position.x / plotWidth);
|
| 373 |
+
const currentGridZ = Math.floor(playerMesh.position.z / plotDepth);
|
| 374 |
+
|
| 375 |
+
// Check surrounding cells (Manhattan distance 1)
|
| 376 |
+
for (let dx = -1; dx <= 1; dx++) {
|
| 377 |
+
for (let dz = -1; dz <= 1; dz++) {
|
| 378 |
+
if (dx === 0 && dz === 0) continue; // Skip current cell
|
| 379 |
+
|
| 380 |
+
const checkX = currentGridX + dx;
|
| 381 |
+
const checkZ = currentGridZ + dz;
|
| 382 |
+
const gridKey = `${checkX}_${checkZ}`;
|
| 383 |
+
|
| 384 |
+
// Check if this grid cell already has ground (initial or placeholder)
|
| 385 |
+
if (!groundMeshes[gridKey]) {
|
| 386 |
+
// Check if this grid cell corresponds to a SAVED plot (from metadata)
|
| 387 |
+
const isSavedPlot = plotsMetadata.some(plot => plot.grid_x === checkX && plot.grid_z === checkZ);
|
| 388 |
+
|
| 389 |
+
// If it's NOT a saved plot, create a placeholder
|
| 390 |
+
if (!isSavedPlot) {
|
| 391 |
+
createGroundPlane(checkX, checkZ, true); // true = is placeholder
|
| 392 |
+
}
|
| 393 |
+
// If it IS a saved plot but somehow missing ground (error?), recreate it?
|
| 394 |
+
// else { createGroundPlane(checkX, checkZ, false); } // Optional robustness
|
| 395 |
+
}
|
| 396 |
+
}
|
| 397 |
+
}
|
| 398 |
+
}
|
| 399 |
+
|
| 400 |
+
|
| 401 |
function updateCamera() { /* ... unchanged ... */
|
| 402 |
if (!playerMesh) return;
|
| 403 |
+
const offset = new THREE.Vector3(0, 15, 20); // Fixed offset for now
|
| 404 |
const targetPosition = playerMesh.position.clone().add(offset);
|
| 405 |
camera.position.lerp(targetPosition, 0.08);
|
| 406 |
camera.lookAt(playerMesh.position);
|
|
|
|
| 414 |
|
| 415 |
function animate() {
|
| 416 |
requestAnimationFrame(animate);
|
| 417 |
+
updatePlayerMovement(); // Includes ground check now
|
| 418 |
updateCamera();
|
| 419 |
renderer.render(scene, camera);
|
| 420 |
}
|