tween.cpp 44 KB

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  1. /*************************************************************************/
  2. /* tween.cpp */
  3. /*************************************************************************/
  4. /* This file is part of: */
  5. /* GODOT ENGINE */
  6. /* https://godotengine.org */
  7. /*************************************************************************/
  8. /* Copyright (c) 2007-2019 Juan Linietsky, Ariel Manzur. */
  9. /* Copyright (c) 2014-2019 Godot Engine contributors (cf. AUTHORS.md) */
  10. /* */
  11. /* Permission is hereby granted, free of charge, to any person obtaining */
  12. /* a copy of this software and associated documentation files (the */
  13. /* "Software"), to deal in the Software without restriction, including */
  14. /* without limitation the rights to use, copy, modify, merge, publish, */
  15. /* distribute, sublicense, and/or sell copies of the Software, and to */
  16. /* permit persons to whom the Software is furnished to do so, subject to */
  17. /* the following conditions: */
  18. /* */
  19. /* The above copyright notice and this permission notice shall be */
  20. /* included in all copies or substantial portions of the Software. */
  21. /* */
  22. /* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
  23. /* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
  24. /* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
  25. /* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
  26. /* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
  27. /* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
  28. /* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
  29. /*************************************************************************/
  30. #include "tween.h"
  31. #include "core/method_bind_ext.gen.inc"
  32. void Tween::_add_pending_command(StringName p_key, const Variant &p_arg1, const Variant &p_arg2, const Variant &p_arg3, const Variant &p_arg4, const Variant &p_arg5, const Variant &p_arg6, const Variant &p_arg7, const Variant &p_arg8, const Variant &p_arg9, const Variant &p_arg10) {
  33. pending_commands.push_back(PendingCommand());
  34. PendingCommand &cmd = pending_commands.back()->get();
  35. cmd.key = p_key;
  36. int &count = cmd.args;
  37. if (p_arg10.get_type() != Variant::NIL)
  38. count = 10;
  39. else if (p_arg9.get_type() != Variant::NIL)
  40. count = 9;
  41. else if (p_arg8.get_type() != Variant::NIL)
  42. count = 8;
  43. else if (p_arg7.get_type() != Variant::NIL)
  44. count = 7;
  45. else if (p_arg6.get_type() != Variant::NIL)
  46. count = 6;
  47. else if (p_arg5.get_type() != Variant::NIL)
  48. count = 5;
  49. else if (p_arg4.get_type() != Variant::NIL)
  50. count = 4;
  51. else if (p_arg3.get_type() != Variant::NIL)
  52. count = 3;
  53. else if (p_arg2.get_type() != Variant::NIL)
  54. count = 2;
  55. else if (p_arg1.get_type() != Variant::NIL)
  56. count = 1;
  57. if (count > 0)
  58. cmd.arg[0] = p_arg1;
  59. if (count > 1)
  60. cmd.arg[1] = p_arg2;
  61. if (count > 2)
  62. cmd.arg[2] = p_arg3;
  63. if (count > 3)
  64. cmd.arg[3] = p_arg4;
  65. if (count > 4)
  66. cmd.arg[4] = p_arg5;
  67. if (count > 5)
  68. cmd.arg[5] = p_arg6;
  69. if (count > 6)
  70. cmd.arg[6] = p_arg7;
  71. if (count > 7)
  72. cmd.arg[7] = p_arg8;
  73. if (count > 8)
  74. cmd.arg[8] = p_arg9;
  75. if (count > 9)
  76. cmd.arg[9] = p_arg10;
  77. }
  78. void Tween::_process_pending_commands() {
  79. for (List<PendingCommand>::Element *E = pending_commands.front(); E; E = E->next()) {
  80. PendingCommand &cmd = E->get();
  81. Variant::CallError err;
  82. Variant *arg[10] = {
  83. &cmd.arg[0],
  84. &cmd.arg[1],
  85. &cmd.arg[2],
  86. &cmd.arg[3],
  87. &cmd.arg[4],
  88. &cmd.arg[5],
  89. &cmd.arg[6],
  90. &cmd.arg[7],
  91. &cmd.arg[8],
  92. &cmd.arg[9],
  93. };
  94. this->call(cmd.key, (const Variant **)arg, cmd.args, err);
  95. }
  96. pending_commands.clear();
  97. }
  98. bool Tween::_set(const StringName &p_name, const Variant &p_value) {
  99. String name = p_name;
  100. if (name == "playback/speed" || name == "speed") { //bw compatibility
  101. set_speed_scale(p_value);
  102. } else if (name == "playback/active") {
  103. set_active(p_value);
  104. } else if (name == "playback/repeat") {
  105. set_repeat(p_value);
  106. }
  107. return true;
  108. }
  109. bool Tween::_get(const StringName &p_name, Variant &r_ret) const {
  110. String name = p_name;
  111. if (name == "playback/speed") { //bw compatibility
  112. r_ret = speed_scale;
  113. } else if (name == "playback/active") {
  114. r_ret = is_active();
  115. } else if (name == "playback/repeat") {
  116. r_ret = is_repeat();
  117. }
  118. return true;
  119. }
  120. void Tween::_get_property_list(List<PropertyInfo> *p_list) const {
  121. p_list->push_back(PropertyInfo(Variant::BOOL, "playback/active", PROPERTY_HINT_NONE, ""));
  122. p_list->push_back(PropertyInfo(Variant::BOOL, "playback/repeat", PROPERTY_HINT_NONE, ""));
  123. p_list->push_back(PropertyInfo(Variant::REAL, "playback/speed", PROPERTY_HINT_RANGE, "-64,64,0.01"));
  124. }
  125. void Tween::_notification(int p_what) {
  126. switch (p_what) {
  127. case NOTIFICATION_ENTER_TREE: {
  128. if (!is_active()) {
  129. //make sure that a previous process state was not saved
  130. //only process if "processing" is set
  131. set_physics_process_internal(false);
  132. set_process_internal(false);
  133. }
  134. } break;
  135. case NOTIFICATION_READY: {
  136. } break;
  137. case NOTIFICATION_INTERNAL_PROCESS: {
  138. if (tween_process_mode == TWEEN_PROCESS_PHYSICS)
  139. break;
  140. if (is_active())
  141. _tween_process(get_process_delta_time());
  142. } break;
  143. case NOTIFICATION_INTERNAL_PHYSICS_PROCESS: {
  144. if (tween_process_mode == TWEEN_PROCESS_IDLE)
  145. break;
  146. if (is_active())
  147. _tween_process(get_physics_process_delta_time());
  148. } break;
  149. case NOTIFICATION_EXIT_TREE: {
  150. stop_all();
  151. } break;
  152. }
  153. }
  154. void Tween::_bind_methods() {
  155. ClassDB::bind_method(D_METHOD("is_active"), &Tween::is_active);
  156. ClassDB::bind_method(D_METHOD("set_active", "active"), &Tween::set_active);
  157. ClassDB::bind_method(D_METHOD("is_repeat"), &Tween::is_repeat);
  158. ClassDB::bind_method(D_METHOD("set_repeat", "repeat"), &Tween::set_repeat);
  159. ClassDB::bind_method(D_METHOD("set_speed_scale", "speed"), &Tween::set_speed_scale);
  160. ClassDB::bind_method(D_METHOD("get_speed_scale"), &Tween::get_speed_scale);
  161. ClassDB::bind_method(D_METHOD("set_tween_process_mode", "mode"), &Tween::set_tween_process_mode);
  162. ClassDB::bind_method(D_METHOD("get_tween_process_mode"), &Tween::get_tween_process_mode);
  163. ClassDB::bind_method(D_METHOD("start"), &Tween::start);
  164. ClassDB::bind_method(D_METHOD("reset", "object", "key"), &Tween::reset, DEFVAL(""));
  165. ClassDB::bind_method(D_METHOD("reset_all"), &Tween::reset_all);
  166. ClassDB::bind_method(D_METHOD("stop", "object", "key"), &Tween::stop, DEFVAL(""));
  167. ClassDB::bind_method(D_METHOD("stop_all"), &Tween::stop_all);
  168. ClassDB::bind_method(D_METHOD("resume", "object", "key"), &Tween::resume, DEFVAL(""));
  169. ClassDB::bind_method(D_METHOD("resume_all"), &Tween::resume_all);
  170. ClassDB::bind_method(D_METHOD("remove", "object", "key"), &Tween::remove, DEFVAL(""));
  171. ClassDB::bind_method(D_METHOD("_remove_by_uid", "uid"), &Tween::_remove_by_uid);
  172. ClassDB::bind_method(D_METHOD("remove_all"), &Tween::remove_all);
  173. ClassDB::bind_method(D_METHOD("seek", "time"), &Tween::seek);
  174. ClassDB::bind_method(D_METHOD("tell"), &Tween::tell);
  175. ClassDB::bind_method(D_METHOD("get_runtime"), &Tween::get_runtime);
  176. ClassDB::bind_method(D_METHOD("interpolate_property", "object", "property", "initial_val", "final_val", "duration", "trans_type", "ease_type", "delay"), &Tween::interpolate_property, DEFVAL(0));
  177. ClassDB::bind_method(D_METHOD("interpolate_method", "object", "method", "initial_val", "final_val", "duration", "trans_type", "ease_type", "delay"), &Tween::interpolate_method, DEFVAL(0));
  178. ClassDB::bind_method(D_METHOD("interpolate_callback", "object", "duration", "callback", "arg1", "arg2", "arg3", "arg4", "arg5"), &Tween::interpolate_callback, DEFVAL(Variant()), DEFVAL(Variant()), DEFVAL(Variant()), DEFVAL(Variant()), DEFVAL(Variant()));
  179. ClassDB::bind_method(D_METHOD("interpolate_deferred_callback", "object", "duration", "callback", "arg1", "arg2", "arg3", "arg4", "arg5"), &Tween::interpolate_deferred_callback, DEFVAL(Variant()), DEFVAL(Variant()), DEFVAL(Variant()), DEFVAL(Variant()), DEFVAL(Variant()));
  180. ClassDB::bind_method(D_METHOD("follow_property", "object", "property", "initial_val", "target", "target_property", "duration", "trans_type", "ease_type", "delay"), &Tween::follow_property, DEFVAL(0));
  181. ClassDB::bind_method(D_METHOD("follow_method", "object", "method", "initial_val", "target", "target_method", "duration", "trans_type", "ease_type", "delay"), &Tween::follow_method, DEFVAL(0));
  182. ClassDB::bind_method(D_METHOD("targeting_property", "object", "property", "initial", "initial_val", "final_val", "duration", "trans_type", "ease_type", "delay"), &Tween::targeting_property, DEFVAL(0));
  183. ClassDB::bind_method(D_METHOD("targeting_method", "object", "method", "initial", "initial_method", "final_val", "duration", "trans_type", "ease_type", "delay"), &Tween::targeting_method, DEFVAL(0));
  184. ADD_SIGNAL(MethodInfo("tween_started", PropertyInfo(Variant::OBJECT, "object"), PropertyInfo(Variant::NODE_PATH, "key")));
  185. ADD_SIGNAL(MethodInfo("tween_step", PropertyInfo(Variant::OBJECT, "object"), PropertyInfo(Variant::NODE_PATH, "key"), PropertyInfo(Variant::REAL, "elapsed"), PropertyInfo(Variant::OBJECT, "value")));
  186. ADD_SIGNAL(MethodInfo("tween_completed", PropertyInfo(Variant::OBJECT, "object"), PropertyInfo(Variant::NODE_PATH, "key")));
  187. ADD_SIGNAL(MethodInfo("tween_all_completed"));
  188. ADD_PROPERTY(PropertyInfo(Variant::BOOL, "repeat"), "set_repeat", "is_repeat");
  189. ADD_PROPERTY(PropertyInfo(Variant::INT, "playback_process_mode", PROPERTY_HINT_ENUM, "Physics,Idle"), "set_tween_process_mode", "get_tween_process_mode");
  190. ADD_PROPERTY(PropertyInfo(Variant::REAL, "playback_speed", PROPERTY_HINT_RANGE, "-64,64,0.01"), "set_speed_scale", "get_speed_scale");
  191. BIND_ENUM_CONSTANT(TWEEN_PROCESS_PHYSICS);
  192. BIND_ENUM_CONSTANT(TWEEN_PROCESS_IDLE);
  193. BIND_ENUM_CONSTANT(TRANS_LINEAR);
  194. BIND_ENUM_CONSTANT(TRANS_SINE);
  195. BIND_ENUM_CONSTANT(TRANS_QUINT);
  196. BIND_ENUM_CONSTANT(TRANS_QUART);
  197. BIND_ENUM_CONSTANT(TRANS_QUAD);
  198. BIND_ENUM_CONSTANT(TRANS_EXPO);
  199. BIND_ENUM_CONSTANT(TRANS_ELASTIC);
  200. BIND_ENUM_CONSTANT(TRANS_CUBIC);
  201. BIND_ENUM_CONSTANT(TRANS_CIRC);
  202. BIND_ENUM_CONSTANT(TRANS_BOUNCE);
  203. BIND_ENUM_CONSTANT(TRANS_BACK);
  204. BIND_ENUM_CONSTANT(EASE_IN);
  205. BIND_ENUM_CONSTANT(EASE_OUT);
  206. BIND_ENUM_CONSTANT(EASE_IN_OUT);
  207. BIND_ENUM_CONSTANT(EASE_OUT_IN);
  208. }
  209. Variant &Tween::_get_initial_val(InterpolateData &p_data) {
  210. switch (p_data.type) {
  211. case INTER_PROPERTY:
  212. case INTER_METHOD:
  213. case FOLLOW_PROPERTY:
  214. case FOLLOW_METHOD:
  215. return p_data.initial_val;
  216. case TARGETING_PROPERTY:
  217. case TARGETING_METHOD: {
  218. Object *object = ObjectDB::get_instance(p_data.target_id);
  219. ERR_FAIL_COND_V(object == NULL, p_data.initial_val);
  220. static Variant initial_val;
  221. if (p_data.type == TARGETING_PROPERTY) {
  222. bool valid = false;
  223. initial_val = object->get_indexed(p_data.target_key, &valid);
  224. ERR_FAIL_COND_V(!valid, p_data.initial_val);
  225. } else {
  226. Variant::CallError error;
  227. initial_val = object->call(p_data.target_key[0], NULL, 0, error);
  228. ERR_FAIL_COND_V(error.error != Variant::CallError::CALL_OK, p_data.initial_val);
  229. }
  230. return initial_val;
  231. }
  232. case INTER_CALLBACK:
  233. break;
  234. }
  235. return p_data.delta_val;
  236. }
  237. Variant &Tween::_get_delta_val(InterpolateData &p_data) {
  238. switch (p_data.type) {
  239. case INTER_PROPERTY:
  240. case INTER_METHOD:
  241. return p_data.delta_val;
  242. case FOLLOW_PROPERTY:
  243. case FOLLOW_METHOD: {
  244. Object *target = ObjectDB::get_instance(p_data.target_id);
  245. ERR_FAIL_COND_V(target == NULL, p_data.initial_val);
  246. Variant final_val;
  247. if (p_data.type == FOLLOW_PROPERTY) {
  248. bool valid = false;
  249. final_val = target->get_indexed(p_data.target_key, &valid);
  250. ERR_FAIL_COND_V(!valid, p_data.initial_val);
  251. } else {
  252. Variant::CallError error;
  253. final_val = target->call(p_data.target_key[0], NULL, 0, error);
  254. ERR_FAIL_COND_V(error.error != Variant::CallError::CALL_OK, p_data.initial_val);
  255. }
  256. // convert INT to REAL is better for interpolaters
  257. if (final_val.get_type() == Variant::INT) final_val = final_val.operator real_t();
  258. _calc_delta_val(p_data.initial_val, final_val, p_data.delta_val);
  259. return p_data.delta_val;
  260. }
  261. case TARGETING_PROPERTY:
  262. case TARGETING_METHOD: {
  263. Variant initial_val = _get_initial_val(p_data);
  264. // convert INT to REAL is better for interpolaters
  265. if (initial_val.get_type() == Variant::INT) initial_val = initial_val.operator real_t();
  266. //_calc_delta_val(p_data.initial_val, p_data.final_val, p_data.delta_val);
  267. _calc_delta_val(initial_val, p_data.final_val, p_data.delta_val);
  268. return p_data.delta_val;
  269. }
  270. case INTER_CALLBACK:
  271. break;
  272. }
  273. return p_data.initial_val;
  274. }
  275. Variant Tween::_run_equation(InterpolateData &p_data) {
  276. Variant &initial_val = _get_initial_val(p_data);
  277. Variant &delta_val = _get_delta_val(p_data);
  278. Variant result;
  279. #define APPLY_EQUATION(element) \
  280. r.element = _run_equation(p_data.trans_type, p_data.ease_type, p_data.elapsed - p_data.delay, i.element, d.element, p_data.duration);
  281. switch (initial_val.get_type()) {
  282. case Variant::BOOL:
  283. result = (_run_equation(p_data.trans_type, p_data.ease_type, p_data.elapsed - p_data.delay, initial_val, delta_val, p_data.duration)) >= 0.5;
  284. break;
  285. case Variant::INT:
  286. result = (int)_run_equation(p_data.trans_type, p_data.ease_type, p_data.elapsed - p_data.delay, (int)initial_val, (int)delta_val, p_data.duration);
  287. break;
  288. case Variant::REAL:
  289. result = _run_equation(p_data.trans_type, p_data.ease_type, p_data.elapsed - p_data.delay, (real_t)initial_val, (real_t)delta_val, p_data.duration);
  290. break;
  291. case Variant::VECTOR2: {
  292. Vector2 i = initial_val;
  293. Vector2 d = delta_val;
  294. Vector2 r;
  295. APPLY_EQUATION(x);
  296. APPLY_EQUATION(y);
  297. result = r;
  298. } break;
  299. case Variant::VECTOR3: {
  300. Vector3 i = initial_val;
  301. Vector3 d = delta_val;
  302. Vector3 r;
  303. APPLY_EQUATION(x);
  304. APPLY_EQUATION(y);
  305. APPLY_EQUATION(z);
  306. result = r;
  307. } break;
  308. case Variant::BASIS: {
  309. Basis i = initial_val;
  310. Basis d = delta_val;
  311. Basis r;
  312. APPLY_EQUATION(elements[0][0]);
  313. APPLY_EQUATION(elements[0][1]);
  314. APPLY_EQUATION(elements[0][2]);
  315. APPLY_EQUATION(elements[1][0]);
  316. APPLY_EQUATION(elements[1][1]);
  317. APPLY_EQUATION(elements[1][2]);
  318. APPLY_EQUATION(elements[2][0]);
  319. APPLY_EQUATION(elements[2][1]);
  320. APPLY_EQUATION(elements[2][2]);
  321. result = r;
  322. } break;
  323. case Variant::TRANSFORM2D: {
  324. Transform2D i = initial_val;
  325. Transform2D d = delta_val;
  326. Transform2D r;
  327. APPLY_EQUATION(elements[0][0]);
  328. APPLY_EQUATION(elements[0][1]);
  329. APPLY_EQUATION(elements[1][0]);
  330. APPLY_EQUATION(elements[1][1]);
  331. APPLY_EQUATION(elements[2][0]);
  332. APPLY_EQUATION(elements[2][1]);
  333. result = r;
  334. } break;
  335. case Variant::QUAT: {
  336. Quat i = initial_val;
  337. Quat d = delta_val;
  338. Quat r;
  339. APPLY_EQUATION(x);
  340. APPLY_EQUATION(y);
  341. APPLY_EQUATION(z);
  342. APPLY_EQUATION(w);
  343. result = r;
  344. } break;
  345. case Variant::AABB: {
  346. AABB i = initial_val;
  347. AABB d = delta_val;
  348. AABB r;
  349. APPLY_EQUATION(position.x);
  350. APPLY_EQUATION(position.y);
  351. APPLY_EQUATION(position.z);
  352. APPLY_EQUATION(size.x);
  353. APPLY_EQUATION(size.y);
  354. APPLY_EQUATION(size.z);
  355. result = r;
  356. } break;
  357. case Variant::TRANSFORM: {
  358. Transform i = initial_val;
  359. Transform d = delta_val;
  360. Transform r;
  361. APPLY_EQUATION(basis.elements[0][0]);
  362. APPLY_EQUATION(basis.elements[0][1]);
  363. APPLY_EQUATION(basis.elements[0][2]);
  364. APPLY_EQUATION(basis.elements[1][0]);
  365. APPLY_EQUATION(basis.elements[1][1]);
  366. APPLY_EQUATION(basis.elements[1][2]);
  367. APPLY_EQUATION(basis.elements[2][0]);
  368. APPLY_EQUATION(basis.elements[2][1]);
  369. APPLY_EQUATION(basis.elements[2][2]);
  370. APPLY_EQUATION(origin.x);
  371. APPLY_EQUATION(origin.y);
  372. APPLY_EQUATION(origin.z);
  373. result = r;
  374. } break;
  375. case Variant::COLOR: {
  376. Color i = initial_val;
  377. Color d = delta_val;
  378. Color r;
  379. APPLY_EQUATION(r);
  380. APPLY_EQUATION(g);
  381. APPLY_EQUATION(b);
  382. APPLY_EQUATION(a);
  383. result = r;
  384. } break;
  385. default: {
  386. result = initial_val;
  387. } break;
  388. };
  389. #undef APPLY_EQUATION
  390. return result;
  391. }
  392. bool Tween::_apply_tween_value(InterpolateData &p_data, Variant &value) {
  393. Object *object = ObjectDB::get_instance(p_data.id);
  394. ERR_FAIL_COND_V(object == NULL, false);
  395. switch (p_data.type) {
  396. case INTER_PROPERTY:
  397. case FOLLOW_PROPERTY:
  398. case TARGETING_PROPERTY: {
  399. bool valid = false;
  400. object->set_indexed(p_data.key, value, &valid);
  401. return valid;
  402. }
  403. case INTER_METHOD:
  404. case FOLLOW_METHOD:
  405. case TARGETING_METHOD: {
  406. Variant::CallError error;
  407. if (value.get_type() != Variant::NIL) {
  408. Variant *arg[1] = { &value };
  409. object->call(p_data.key[0], (const Variant **)arg, 1, error);
  410. } else {
  411. object->call(p_data.key[0], NULL, 0, error);
  412. }
  413. if (error.error == Variant::CallError::CALL_OK)
  414. return true;
  415. return false;
  416. }
  417. case INTER_CALLBACK:
  418. break;
  419. };
  420. return true;
  421. }
  422. void Tween::_tween_process(float p_delta) {
  423. _process_pending_commands();
  424. if (speed_scale == 0)
  425. return;
  426. p_delta *= speed_scale;
  427. pending_update++;
  428. // if repeat and all interpolates was finished then reset all interpolates
  429. bool all_finished = true;
  430. if (repeat) {
  431. for (List<InterpolateData>::Element *E = interpolates.front(); E; E = E->next()) {
  432. InterpolateData &data = E->get();
  433. if (!data.finish) {
  434. all_finished = false;
  435. break;
  436. }
  437. }
  438. if (all_finished)
  439. reset_all();
  440. }
  441. all_finished = true;
  442. for (List<InterpolateData>::Element *E = interpolates.front(); E; E = E->next()) {
  443. InterpolateData &data = E->get();
  444. all_finished = all_finished && data.finish;
  445. if (!data.active || data.finish)
  446. continue;
  447. Object *object = ObjectDB::get_instance(data.id);
  448. if (object == NULL)
  449. continue;
  450. bool prev_delaying = data.elapsed <= data.delay;
  451. data.elapsed += p_delta;
  452. if (data.elapsed < data.delay)
  453. continue;
  454. else if (prev_delaying) {
  455. _apply_tween_value(data, data.initial_val);
  456. emit_signal("tween_started", object, NodePath(Vector<StringName>(), data.key, false));
  457. }
  458. if (data.elapsed > (data.delay + data.duration)) {
  459. data.elapsed = data.delay + data.duration;
  460. data.finish = true;
  461. }
  462. if (data.type == INTER_CALLBACK) {
  463. if (data.finish) {
  464. if (data.call_deferred) {
  465. switch (data.args) {
  466. case 0:
  467. object->call_deferred(data.key[0]);
  468. break;
  469. case 1:
  470. object->call_deferred(data.key[0], data.arg[0]);
  471. break;
  472. case 2:
  473. object->call_deferred(data.key[0], data.arg[0], data.arg[1]);
  474. break;
  475. case 3:
  476. object->call_deferred(data.key[0], data.arg[0], data.arg[1], data.arg[2]);
  477. break;
  478. case 4:
  479. object->call_deferred(data.key[0], data.arg[0], data.arg[1], data.arg[2], data.arg[3]);
  480. break;
  481. case 5:
  482. object->call_deferred(data.key[0], data.arg[0], data.arg[1], data.arg[2], data.arg[3], data.arg[4]);
  483. break;
  484. }
  485. } else {
  486. Variant::CallError error;
  487. Variant *arg[5] = {
  488. &data.arg[0],
  489. &data.arg[1],
  490. &data.arg[2],
  491. &data.arg[3],
  492. &data.arg[4],
  493. };
  494. object->call(data.key[0], (const Variant **)arg, data.args, error);
  495. }
  496. }
  497. } else {
  498. Variant result = _run_equation(data);
  499. _apply_tween_value(data, result);
  500. emit_signal("tween_step", object, NodePath(Vector<StringName>(), data.key, false), data.elapsed, result);
  501. }
  502. if (data.finish) {
  503. _apply_tween_value(data, data.final_val);
  504. data.elapsed = 0;
  505. emit_signal("tween_completed", object, NodePath(Vector<StringName>(), data.key, false));
  506. // not repeat mode, remove completed action
  507. if (!repeat)
  508. call_deferred("_remove_by_uid", data.uid);
  509. } else if (!repeat)
  510. all_finished = all_finished && data.finish;
  511. }
  512. pending_update--;
  513. if (all_finished) {
  514. set_active(false);
  515. emit_signal("tween_all_completed");
  516. }
  517. }
  518. void Tween::set_tween_process_mode(TweenProcessMode p_mode) {
  519. tween_process_mode = p_mode;
  520. }
  521. Tween::TweenProcessMode Tween::get_tween_process_mode() const {
  522. return tween_process_mode;
  523. }
  524. bool Tween::is_active() const {
  525. return is_processing_internal() || is_physics_processing_internal();
  526. }
  527. void Tween::set_active(bool p_active) {
  528. if (is_active() == p_active)
  529. return;
  530. switch (tween_process_mode) {
  531. case TWEEN_PROCESS_IDLE: set_process_internal(p_active); break;
  532. case TWEEN_PROCESS_PHYSICS: set_physics_process_internal(p_active); break;
  533. }
  534. }
  535. bool Tween::is_repeat() const {
  536. return repeat;
  537. }
  538. void Tween::set_repeat(bool p_repeat) {
  539. repeat = p_repeat;
  540. }
  541. void Tween::set_speed_scale(float p_speed) {
  542. speed_scale = p_speed;
  543. }
  544. float Tween::get_speed_scale() const {
  545. return speed_scale;
  546. }
  547. bool Tween::start() {
  548. if (pending_update != 0) {
  549. call_deferred("start");
  550. return true;
  551. }
  552. set_active(true);
  553. return true;
  554. }
  555. bool Tween::reset(Object *p_object, StringName p_key) {
  556. pending_update++;
  557. for (List<InterpolateData>::Element *E = interpolates.front(); E; E = E->next()) {
  558. InterpolateData &data = E->get();
  559. Object *object = ObjectDB::get_instance(data.id);
  560. if (object == NULL)
  561. continue;
  562. if (object == p_object && (data.concatenated_key == p_key || p_key == "")) {
  563. data.elapsed = 0;
  564. data.finish = false;
  565. if (data.delay == 0)
  566. _apply_tween_value(data, data.initial_val);
  567. }
  568. }
  569. pending_update--;
  570. return true;
  571. }
  572. bool Tween::reset_all() {
  573. pending_update++;
  574. for (List<InterpolateData>::Element *E = interpolates.front(); E; E = E->next()) {
  575. InterpolateData &data = E->get();
  576. data.elapsed = 0;
  577. data.finish = false;
  578. if (data.delay == 0)
  579. _apply_tween_value(data, data.initial_val);
  580. }
  581. pending_update--;
  582. return true;
  583. }
  584. bool Tween::stop(Object *p_object, StringName p_key) {
  585. pending_update++;
  586. for (List<InterpolateData>::Element *E = interpolates.front(); E; E = E->next()) {
  587. InterpolateData &data = E->get();
  588. Object *object = ObjectDB::get_instance(data.id);
  589. if (object == NULL)
  590. continue;
  591. if (object == p_object && (data.concatenated_key == p_key || p_key == ""))
  592. data.active = false;
  593. }
  594. pending_update--;
  595. return true;
  596. }
  597. bool Tween::stop_all() {
  598. set_active(false);
  599. pending_update++;
  600. for (List<InterpolateData>::Element *E = interpolates.front(); E; E = E->next()) {
  601. InterpolateData &data = E->get();
  602. data.active = false;
  603. }
  604. pending_update--;
  605. return true;
  606. }
  607. bool Tween::resume(Object *p_object, StringName p_key) {
  608. set_active(true);
  609. pending_update++;
  610. for (List<InterpolateData>::Element *E = interpolates.front(); E; E = E->next()) {
  611. InterpolateData &data = E->get();
  612. Object *object = ObjectDB::get_instance(data.id);
  613. if (object == NULL)
  614. continue;
  615. if (object == p_object && (data.concatenated_key == p_key || p_key == ""))
  616. data.active = true;
  617. }
  618. pending_update--;
  619. return true;
  620. }
  621. bool Tween::resume_all() {
  622. set_active(true);
  623. pending_update++;
  624. for (List<InterpolateData>::Element *E = interpolates.front(); E; E = E->next()) {
  625. InterpolateData &data = E->get();
  626. data.active = true;
  627. }
  628. pending_update--;
  629. return true;
  630. }
  631. bool Tween::remove(Object *p_object, StringName p_key) {
  632. if (pending_update != 0) {
  633. call_deferred("remove", p_object, p_key);
  634. return true;
  635. }
  636. List<List<InterpolateData>::Element *> for_removal;
  637. for (List<InterpolateData>::Element *E = interpolates.front(); E; E = E->next()) {
  638. InterpolateData &data = E->get();
  639. Object *object = ObjectDB::get_instance(data.id);
  640. if (object == NULL)
  641. continue;
  642. if (object == p_object && (data.concatenated_key == p_key || p_key == "")) {
  643. for_removal.push_back(E);
  644. }
  645. }
  646. for (List<List<InterpolateData>::Element *>::Element *E = for_removal.front(); E; E = E->next()) {
  647. interpolates.erase(E->get());
  648. }
  649. return true;
  650. }
  651. void Tween::_remove_by_uid(int uid) {
  652. if (pending_update != 0) {
  653. call_deferred("_remove_by_uid", uid);
  654. return;
  655. }
  656. for (List<InterpolateData>::Element *E = interpolates.front(); E; E = E->next()) {
  657. if (uid == E->get().uid) {
  658. E->erase();
  659. break;
  660. }
  661. }
  662. }
  663. void Tween::_push_interpolate_data(InterpolateData &p_data) {
  664. pending_update++;
  665. p_data.uid = ++uid;
  666. interpolates.push_back(p_data);
  667. pending_update--;
  668. }
  669. bool Tween::remove_all() {
  670. if (pending_update != 0) {
  671. call_deferred("remove_all");
  672. return true;
  673. }
  674. set_active(false);
  675. interpolates.clear();
  676. uid = 0;
  677. return true;
  678. }
  679. bool Tween::seek(real_t p_time) {
  680. pending_update++;
  681. for (List<InterpolateData>::Element *E = interpolates.front(); E; E = E->next()) {
  682. InterpolateData &data = E->get();
  683. data.elapsed = p_time;
  684. if (data.elapsed < data.delay) {
  685. data.finish = false;
  686. continue;
  687. } else if (data.elapsed >= (data.delay + data.duration)) {
  688. data.finish = true;
  689. data.elapsed = (data.delay + data.duration);
  690. } else {
  691. data.finish = false;
  692. }
  693. if (data.type == INTER_CALLBACK) {
  694. continue;
  695. }
  696. Variant result = _run_equation(data);
  697. _apply_tween_value(data, result);
  698. }
  699. pending_update--;
  700. return true;
  701. }
  702. real_t Tween::tell() const {
  703. pending_update++;
  704. real_t pos = 0;
  705. for (const List<InterpolateData>::Element *E = interpolates.front(); E; E = E->next()) {
  706. const InterpolateData &data = E->get();
  707. if (data.elapsed > pos)
  708. pos = data.elapsed;
  709. }
  710. pending_update--;
  711. return pos;
  712. }
  713. real_t Tween::get_runtime() const {
  714. if (speed_scale == 0) {
  715. return INFINITY;
  716. }
  717. pending_update++;
  718. real_t runtime = 0;
  719. for (const List<InterpolateData>::Element *E = interpolates.front(); E; E = E->next()) {
  720. const InterpolateData &data = E->get();
  721. real_t t = data.delay + data.duration;
  722. if (t > runtime)
  723. runtime = t;
  724. }
  725. pending_update--;
  726. return runtime / speed_scale;
  727. }
  728. bool Tween::_calc_delta_val(const Variant &p_initial_val, const Variant &p_final_val, Variant &p_delta_val) {
  729. const Variant &initial_val = p_initial_val;
  730. const Variant &final_val = p_final_val;
  731. Variant &delta_val = p_delta_val;
  732. switch (initial_val.get_type()) {
  733. case Variant::BOOL:
  734. //delta_val = p_final_val;
  735. delta_val = (int)p_final_val - (int)p_initial_val;
  736. break;
  737. case Variant::INT:
  738. delta_val = (int)final_val - (int)initial_val;
  739. break;
  740. case Variant::REAL:
  741. delta_val = (real_t)final_val - (real_t)initial_val;
  742. break;
  743. case Variant::VECTOR2:
  744. delta_val = final_val.operator Vector2() - initial_val.operator Vector2();
  745. break;
  746. case Variant::VECTOR3:
  747. delta_val = final_val.operator Vector3() - initial_val.operator Vector3();
  748. break;
  749. case Variant::BASIS: {
  750. Basis i = initial_val;
  751. Basis f = final_val;
  752. delta_val = Basis(f.elements[0][0] - i.elements[0][0],
  753. f.elements[0][1] - i.elements[0][1],
  754. f.elements[0][2] - i.elements[0][2],
  755. f.elements[1][0] - i.elements[1][0],
  756. f.elements[1][1] - i.elements[1][1],
  757. f.elements[1][2] - i.elements[1][2],
  758. f.elements[2][0] - i.elements[2][0],
  759. f.elements[2][1] - i.elements[2][1],
  760. f.elements[2][2] - i.elements[2][2]);
  761. } break;
  762. case Variant::TRANSFORM2D: {
  763. Transform2D i = initial_val;
  764. Transform2D f = final_val;
  765. Transform2D d = Transform2D();
  766. d[0][0] = f.elements[0][0] - i.elements[0][0];
  767. d[0][1] = f.elements[0][1] - i.elements[0][1];
  768. d[1][0] = f.elements[1][0] - i.elements[1][0];
  769. d[1][1] = f.elements[1][1] - i.elements[1][1];
  770. d[2][0] = f.elements[2][0] - i.elements[2][0];
  771. d[2][1] = f.elements[2][1] - i.elements[2][1];
  772. delta_val = d;
  773. } break;
  774. case Variant::QUAT:
  775. delta_val = final_val.operator Quat() - initial_val.operator Quat();
  776. break;
  777. case Variant::AABB: {
  778. AABB i = initial_val;
  779. AABB f = final_val;
  780. delta_val = AABB(f.position - i.position, f.size - i.size);
  781. } break;
  782. case Variant::TRANSFORM: {
  783. Transform i = initial_val;
  784. Transform f = final_val;
  785. Transform d;
  786. d.set(f.basis.elements[0][0] - i.basis.elements[0][0],
  787. f.basis.elements[0][1] - i.basis.elements[0][1],
  788. f.basis.elements[0][2] - i.basis.elements[0][2],
  789. f.basis.elements[1][0] - i.basis.elements[1][0],
  790. f.basis.elements[1][1] - i.basis.elements[1][1],
  791. f.basis.elements[1][2] - i.basis.elements[1][2],
  792. f.basis.elements[2][0] - i.basis.elements[2][0],
  793. f.basis.elements[2][1] - i.basis.elements[2][1],
  794. f.basis.elements[2][2] - i.basis.elements[2][2],
  795. f.origin.x - i.origin.x,
  796. f.origin.y - i.origin.y,
  797. f.origin.z - i.origin.z);
  798. delta_val = d;
  799. } break;
  800. case Variant::COLOR: {
  801. Color i = initial_val;
  802. Color f = final_val;
  803. delta_val = Color(f.r - i.r, f.g - i.g, f.b - i.b, f.a - i.a);
  804. } break;
  805. default:
  806. ERR_PRINT("Invalid param type, except(int/real/vector2/vector/matrix/matrix32/quat/aabb/transform/color)");
  807. return false;
  808. };
  809. return true;
  810. }
  811. bool Tween::interpolate_property(Object *p_object, NodePath p_property, Variant p_initial_val, Variant p_final_val, real_t p_duration, TransitionType p_trans_type, EaseType p_ease_type, real_t p_delay) {
  812. if (pending_update != 0) {
  813. _add_pending_command("interpolate_property", p_object, p_property, p_initial_val, p_final_val, p_duration, p_trans_type, p_ease_type, p_delay);
  814. return true;
  815. }
  816. p_property = p_property.get_as_property_path();
  817. if (p_initial_val.get_type() == Variant::NIL) p_initial_val = p_object->get_indexed(p_property.get_subnames());
  818. // convert INT to REAL is better for interpolaters
  819. if (p_initial_val.get_type() == Variant::INT) p_initial_val = p_initial_val.operator real_t();
  820. if (p_final_val.get_type() == Variant::INT) p_final_val = p_final_val.operator real_t();
  821. ERR_FAIL_COND_V(p_object == NULL, false);
  822. ERR_FAIL_COND_V(!ObjectDB::instance_validate(p_object), false);
  823. ERR_FAIL_COND_V(p_initial_val.get_type() != p_final_val.get_type(), false);
  824. ERR_FAIL_COND_V(p_duration <= 0, false);
  825. ERR_FAIL_COND_V(p_trans_type < 0 || p_trans_type >= TRANS_COUNT, false);
  826. ERR_FAIL_COND_V(p_ease_type < 0 || p_ease_type >= EASE_COUNT, false);
  827. ERR_FAIL_COND_V(p_delay < 0, false);
  828. bool prop_valid = false;
  829. p_object->get_indexed(p_property.get_subnames(), &prop_valid);
  830. ERR_FAIL_COND_V(!prop_valid, false);
  831. InterpolateData data;
  832. data.active = true;
  833. data.type = INTER_PROPERTY;
  834. data.finish = false;
  835. data.elapsed = 0;
  836. data.id = p_object->get_instance_id();
  837. data.key = p_property.get_subnames();
  838. data.concatenated_key = p_property.get_concatenated_subnames();
  839. data.initial_val = p_initial_val;
  840. data.final_val = p_final_val;
  841. data.duration = p_duration;
  842. data.trans_type = p_trans_type;
  843. data.ease_type = p_ease_type;
  844. data.delay = p_delay;
  845. if (!_calc_delta_val(data.initial_val, data.final_val, data.delta_val))
  846. return false;
  847. _push_interpolate_data(data);
  848. return true;
  849. }
  850. bool Tween::interpolate_method(Object *p_object, StringName p_method, Variant p_initial_val, Variant p_final_val, real_t p_duration, TransitionType p_trans_type, EaseType p_ease_type, real_t p_delay) {
  851. if (pending_update != 0) {
  852. _add_pending_command("interpolate_method", p_object, p_method, p_initial_val, p_final_val, p_duration, p_trans_type, p_ease_type, p_delay);
  853. return true;
  854. }
  855. // convert INT to REAL is better for interpolaters
  856. if (p_initial_val.get_type() == Variant::INT) p_initial_val = p_initial_val.operator real_t();
  857. if (p_final_val.get_type() == Variant::INT) p_final_val = p_final_val.operator real_t();
  858. ERR_FAIL_COND_V(p_object == NULL, false);
  859. ERR_FAIL_COND_V(!ObjectDB::instance_validate(p_object), false);
  860. ERR_FAIL_COND_V(p_initial_val.get_type() != p_final_val.get_type(), false);
  861. ERR_FAIL_COND_V(p_duration <= 0, false);
  862. ERR_FAIL_COND_V(p_trans_type < 0 || p_trans_type >= TRANS_COUNT, false);
  863. ERR_FAIL_COND_V(p_ease_type < 0 || p_ease_type >= EASE_COUNT, false);
  864. ERR_FAIL_COND_V(p_delay < 0, false);
  865. ERR_EXPLAIN("Object has no method named: %s" + p_method);
  866. ERR_FAIL_COND_V(!p_object->has_method(p_method), false);
  867. InterpolateData data;
  868. data.active = true;
  869. data.type = INTER_METHOD;
  870. data.finish = false;
  871. data.elapsed = 0;
  872. data.id = p_object->get_instance_id();
  873. data.key.push_back(p_method);
  874. data.concatenated_key = p_method;
  875. data.initial_val = p_initial_val;
  876. data.final_val = p_final_val;
  877. data.duration = p_duration;
  878. data.trans_type = p_trans_type;
  879. data.ease_type = p_ease_type;
  880. data.delay = p_delay;
  881. if (!_calc_delta_val(data.initial_val, data.final_val, data.delta_val))
  882. return false;
  883. _push_interpolate_data(data);
  884. return true;
  885. }
  886. bool Tween::interpolate_callback(Object *p_object, real_t p_duration, String p_callback, VARIANT_ARG_DECLARE) {
  887. if (pending_update != 0) {
  888. _add_pending_command("interpolate_callback", p_object, p_duration, p_callback, p_arg1, p_arg2, p_arg3, p_arg4, p_arg5);
  889. return true;
  890. }
  891. ERR_FAIL_COND_V(p_object == NULL, false);
  892. ERR_FAIL_COND_V(!ObjectDB::instance_validate(p_object), false);
  893. ERR_FAIL_COND_V(p_duration < 0, false);
  894. ERR_EXPLAIN("Object has no callback named: %s" + p_callback);
  895. ERR_FAIL_COND_V(!p_object->has_method(p_callback), false);
  896. InterpolateData data;
  897. data.active = true;
  898. data.type = INTER_CALLBACK;
  899. data.finish = false;
  900. data.call_deferred = false;
  901. data.elapsed = 0;
  902. data.id = p_object->get_instance_id();
  903. data.key.push_back(p_callback);
  904. data.concatenated_key = p_callback;
  905. data.duration = p_duration;
  906. data.delay = 0;
  907. int args = 0;
  908. if (p_arg5.get_type() != Variant::NIL)
  909. args = 5;
  910. else if (p_arg4.get_type() != Variant::NIL)
  911. args = 4;
  912. else if (p_arg3.get_type() != Variant::NIL)
  913. args = 3;
  914. else if (p_arg2.get_type() != Variant::NIL)
  915. args = 2;
  916. else if (p_arg1.get_type() != Variant::NIL)
  917. args = 1;
  918. else
  919. args = 0;
  920. data.args = args;
  921. data.arg[0] = p_arg1;
  922. data.arg[1] = p_arg2;
  923. data.arg[2] = p_arg3;
  924. data.arg[3] = p_arg4;
  925. data.arg[4] = p_arg5;
  926. _push_interpolate_data(data);
  927. return true;
  928. }
  929. bool Tween::interpolate_deferred_callback(Object *p_object, real_t p_duration, String p_callback, VARIANT_ARG_DECLARE) {
  930. if (pending_update != 0) {
  931. _add_pending_command("interpolate_deferred_callback", p_object, p_duration, p_callback, p_arg1, p_arg2, p_arg3, p_arg4, p_arg5);
  932. return true;
  933. }
  934. ERR_FAIL_COND_V(p_object == NULL, false);
  935. ERR_FAIL_COND_V(!ObjectDB::instance_validate(p_object), false);
  936. ERR_FAIL_COND_V(p_duration < 0, false);
  937. ERR_EXPLAIN("Object has no callback named: %s" + p_callback);
  938. ERR_FAIL_COND_V(!p_object->has_method(p_callback), false);
  939. InterpolateData data;
  940. data.active = true;
  941. data.type = INTER_CALLBACK;
  942. data.finish = false;
  943. data.call_deferred = true;
  944. data.elapsed = 0;
  945. data.id = p_object->get_instance_id();
  946. data.key.push_back(p_callback);
  947. data.concatenated_key = p_callback;
  948. data.duration = p_duration;
  949. data.delay = 0;
  950. int args = 0;
  951. if (p_arg5.get_type() != Variant::NIL)
  952. args = 5;
  953. else if (p_arg4.get_type() != Variant::NIL)
  954. args = 4;
  955. else if (p_arg3.get_type() != Variant::NIL)
  956. args = 3;
  957. else if (p_arg2.get_type() != Variant::NIL)
  958. args = 2;
  959. else if (p_arg1.get_type() != Variant::NIL)
  960. args = 1;
  961. else
  962. args = 0;
  963. data.args = args;
  964. data.arg[0] = p_arg1;
  965. data.arg[1] = p_arg2;
  966. data.arg[2] = p_arg3;
  967. data.arg[3] = p_arg4;
  968. data.arg[4] = p_arg5;
  969. _push_interpolate_data(data);
  970. return true;
  971. }
  972. bool Tween::follow_property(Object *p_object, NodePath p_property, Variant p_initial_val, Object *p_target, NodePath p_target_property, real_t p_duration, TransitionType p_trans_type, EaseType p_ease_type, real_t p_delay) {
  973. if (pending_update != 0) {
  974. _add_pending_command("follow_property", p_object, p_property, p_initial_val, p_target, p_target_property, p_duration, p_trans_type, p_ease_type, p_delay);
  975. return true;
  976. }
  977. p_property = p_property.get_as_property_path();
  978. p_target_property = p_target_property.get_as_property_path();
  979. if (p_initial_val.get_type() == Variant::NIL) p_initial_val = p_object->get_indexed(p_property.get_subnames());
  980. // convert INT to REAL is better for interpolaters
  981. if (p_initial_val.get_type() == Variant::INT) p_initial_val = p_initial_val.operator real_t();
  982. ERR_FAIL_COND_V(p_object == NULL, false);
  983. ERR_FAIL_COND_V(!ObjectDB::instance_validate(p_object), false);
  984. ERR_FAIL_COND_V(p_target == NULL, false);
  985. ERR_FAIL_COND_V(!ObjectDB::instance_validate(p_target), false);
  986. ERR_FAIL_COND_V(p_duration <= 0, false);
  987. ERR_FAIL_COND_V(p_trans_type < 0 || p_trans_type >= TRANS_COUNT, false);
  988. ERR_FAIL_COND_V(p_ease_type < 0 || p_ease_type >= EASE_COUNT, false);
  989. ERR_FAIL_COND_V(p_delay < 0, false);
  990. bool prop_valid = false;
  991. p_object->get_indexed(p_property.get_subnames(), &prop_valid);
  992. ERR_FAIL_COND_V(!prop_valid, false);
  993. bool target_prop_valid = false;
  994. Variant target_val = p_target->get_indexed(p_target_property.get_subnames(), &target_prop_valid);
  995. ERR_FAIL_COND_V(!target_prop_valid, false);
  996. // convert INT to REAL is better for interpolaters
  997. if (target_val.get_type() == Variant::INT) target_val = target_val.operator real_t();
  998. ERR_FAIL_COND_V(target_val.get_type() != p_initial_val.get_type(), false);
  999. InterpolateData data;
  1000. data.active = true;
  1001. data.type = FOLLOW_PROPERTY;
  1002. data.finish = false;
  1003. data.elapsed = 0;
  1004. data.id = p_object->get_instance_id();
  1005. data.key = p_property.get_subnames();
  1006. data.concatenated_key = p_property.get_concatenated_subnames();
  1007. data.initial_val = p_initial_val;
  1008. data.target_id = p_target->get_instance_id();
  1009. data.target_key = p_target_property.get_subnames();
  1010. data.duration = p_duration;
  1011. data.trans_type = p_trans_type;
  1012. data.ease_type = p_ease_type;
  1013. data.delay = p_delay;
  1014. _push_interpolate_data(data);
  1015. return true;
  1016. }
  1017. bool Tween::follow_method(Object *p_object, StringName p_method, Variant p_initial_val, Object *p_target, StringName p_target_method, real_t p_duration, TransitionType p_trans_type, EaseType p_ease_type, real_t p_delay) {
  1018. if (pending_update != 0) {
  1019. _add_pending_command("follow_method", p_object, p_method, p_initial_val, p_target, p_target_method, p_duration, p_trans_type, p_ease_type, p_delay);
  1020. return true;
  1021. }
  1022. // convert INT to REAL is better for interpolaters
  1023. if (p_initial_val.get_type() == Variant::INT) p_initial_val = p_initial_val.operator real_t();
  1024. ERR_FAIL_COND_V(p_object == NULL, false);
  1025. ERR_FAIL_COND_V(!ObjectDB::instance_validate(p_object), false);
  1026. ERR_FAIL_COND_V(p_target == NULL, false);
  1027. ERR_FAIL_COND_V(!ObjectDB::instance_validate(p_target), false);
  1028. ERR_FAIL_COND_V(p_duration <= 0, false);
  1029. ERR_FAIL_COND_V(p_trans_type < 0 || p_trans_type >= TRANS_COUNT, false);
  1030. ERR_FAIL_COND_V(p_ease_type < 0 || p_ease_type >= EASE_COUNT, false);
  1031. ERR_FAIL_COND_V(p_delay < 0, false);
  1032. ERR_EXPLAIN("Object has no method named: %s" + p_method);
  1033. ERR_FAIL_COND_V(!p_object->has_method(p_method), false);
  1034. ERR_EXPLAIN("Target has no method named: %s" + p_target_method);
  1035. ERR_FAIL_COND_V(!p_target->has_method(p_target_method), false);
  1036. Variant::CallError error;
  1037. Variant target_val = p_target->call(p_target_method, NULL, 0, error);
  1038. ERR_FAIL_COND_V(error.error != Variant::CallError::CALL_OK, false);
  1039. // convert INT to REAL is better for interpolaters
  1040. if (target_val.get_type() == Variant::INT) target_val = target_val.operator real_t();
  1041. ERR_FAIL_COND_V(target_val.get_type() != p_initial_val.get_type(), false);
  1042. InterpolateData data;
  1043. data.active = true;
  1044. data.type = FOLLOW_METHOD;
  1045. data.finish = false;
  1046. data.elapsed = 0;
  1047. data.id = p_object->get_instance_id();
  1048. data.key.push_back(p_method);
  1049. data.concatenated_key = p_method;
  1050. data.initial_val = p_initial_val;
  1051. data.target_id = p_target->get_instance_id();
  1052. data.target_key.push_back(p_target_method);
  1053. data.duration = p_duration;
  1054. data.trans_type = p_trans_type;
  1055. data.ease_type = p_ease_type;
  1056. data.delay = p_delay;
  1057. _push_interpolate_data(data);
  1058. return true;
  1059. }
  1060. bool Tween::targeting_property(Object *p_object, NodePath p_property, Object *p_initial, NodePath p_initial_property, Variant p_final_val, real_t p_duration, TransitionType p_trans_type, EaseType p_ease_type, real_t p_delay) {
  1061. if (pending_update != 0) {
  1062. _add_pending_command("targeting_property", p_object, p_property, p_initial, p_initial_property, p_final_val, p_duration, p_trans_type, p_ease_type, p_delay);
  1063. return true;
  1064. }
  1065. p_property = p_property.get_as_property_path();
  1066. p_initial_property = p_initial_property.get_as_property_path();
  1067. // convert INT to REAL is better for interpolaters
  1068. if (p_final_val.get_type() == Variant::INT) p_final_val = p_final_val.operator real_t();
  1069. ERR_FAIL_COND_V(p_object == NULL, false);
  1070. ERR_FAIL_COND_V(!ObjectDB::instance_validate(p_object), false);
  1071. ERR_FAIL_COND_V(p_initial == NULL, false);
  1072. ERR_FAIL_COND_V(!ObjectDB::instance_validate(p_initial), false);
  1073. ERR_FAIL_COND_V(p_duration <= 0, false);
  1074. ERR_FAIL_COND_V(p_trans_type < 0 || p_trans_type >= TRANS_COUNT, false);
  1075. ERR_FAIL_COND_V(p_ease_type < 0 || p_ease_type >= EASE_COUNT, false);
  1076. ERR_FAIL_COND_V(p_delay < 0, false);
  1077. bool prop_valid = false;
  1078. p_object->get_indexed(p_property.get_subnames(), &prop_valid);
  1079. ERR_FAIL_COND_V(!prop_valid, false);
  1080. bool initial_prop_valid = false;
  1081. Variant initial_val = p_initial->get_indexed(p_initial_property.get_subnames(), &initial_prop_valid);
  1082. ERR_FAIL_COND_V(!initial_prop_valid, false);
  1083. // convert INT to REAL is better for interpolaters
  1084. if (initial_val.get_type() == Variant::INT) initial_val = initial_val.operator real_t();
  1085. ERR_FAIL_COND_V(initial_val.get_type() != p_final_val.get_type(), false);
  1086. InterpolateData data;
  1087. data.active = true;
  1088. data.type = TARGETING_PROPERTY;
  1089. data.finish = false;
  1090. data.elapsed = 0;
  1091. data.id = p_object->get_instance_id();
  1092. data.key = p_property.get_subnames();
  1093. data.concatenated_key = p_property.get_concatenated_subnames();
  1094. data.target_id = p_initial->get_instance_id();
  1095. data.target_key = p_initial_property.get_subnames();
  1096. data.initial_val = initial_val;
  1097. data.final_val = p_final_val;
  1098. data.duration = p_duration;
  1099. data.trans_type = p_trans_type;
  1100. data.ease_type = p_ease_type;
  1101. data.delay = p_delay;
  1102. if (!_calc_delta_val(data.initial_val, data.final_val, data.delta_val))
  1103. return false;
  1104. _push_interpolate_data(data);
  1105. return true;
  1106. }
  1107. bool Tween::targeting_method(Object *p_object, StringName p_method, Object *p_initial, StringName p_initial_method, Variant p_final_val, real_t p_duration, TransitionType p_trans_type, EaseType p_ease_type, real_t p_delay) {
  1108. if (pending_update != 0) {
  1109. _add_pending_command("targeting_method", p_object, p_method, p_initial, p_initial_method, p_final_val, p_duration, p_trans_type, p_ease_type, p_delay);
  1110. return true;
  1111. }
  1112. // convert INT to REAL is better for interpolaters
  1113. if (p_final_val.get_type() == Variant::INT) p_final_val = p_final_val.operator real_t();
  1114. ERR_FAIL_COND_V(p_object == NULL, false);
  1115. ERR_FAIL_COND_V(!ObjectDB::instance_validate(p_object), false);
  1116. ERR_FAIL_COND_V(p_initial == NULL, false);
  1117. ERR_FAIL_COND_V(!ObjectDB::instance_validate(p_initial), false);
  1118. ERR_FAIL_COND_V(p_duration <= 0, false);
  1119. ERR_FAIL_COND_V(p_trans_type < 0 || p_trans_type >= TRANS_COUNT, false);
  1120. ERR_FAIL_COND_V(p_ease_type < 0 || p_ease_type >= EASE_COUNT, false);
  1121. ERR_FAIL_COND_V(p_delay < 0, false);
  1122. ERR_EXPLAIN("Object has no method named: %s" + p_method);
  1123. ERR_FAIL_COND_V(!p_object->has_method(p_method), false);
  1124. ERR_EXPLAIN("Initial Object has no method named: %s" + p_initial_method);
  1125. ERR_FAIL_COND_V(!p_initial->has_method(p_initial_method), false);
  1126. Variant::CallError error;
  1127. Variant initial_val = p_initial->call(p_initial_method, NULL, 0, error);
  1128. ERR_FAIL_COND_V(error.error != Variant::CallError::CALL_OK, false);
  1129. // convert INT to REAL is better for interpolaters
  1130. if (initial_val.get_type() == Variant::INT) initial_val = initial_val.operator real_t();
  1131. ERR_FAIL_COND_V(initial_val.get_type() != p_final_val.get_type(), false);
  1132. InterpolateData data;
  1133. data.active = true;
  1134. data.type = TARGETING_METHOD;
  1135. data.finish = false;
  1136. data.elapsed = 0;
  1137. data.id = p_object->get_instance_id();
  1138. data.key.push_back(p_method);
  1139. data.concatenated_key = p_method;
  1140. data.target_id = p_initial->get_instance_id();
  1141. data.target_key.push_back(p_initial_method);
  1142. data.initial_val = initial_val;
  1143. data.final_val = p_final_val;
  1144. data.duration = p_duration;
  1145. data.trans_type = p_trans_type;
  1146. data.ease_type = p_ease_type;
  1147. data.delay = p_delay;
  1148. if (!_calc_delta_val(data.initial_val, data.final_val, data.delta_val))
  1149. return false;
  1150. _push_interpolate_data(data);
  1151. return true;
  1152. }
  1153. Tween::Tween() {
  1154. //String autoplay;
  1155. tween_process_mode = TWEEN_PROCESS_IDLE;
  1156. repeat = false;
  1157. speed_scale = 1;
  1158. pending_update = 0;
  1159. uid = 0;
  1160. }
  1161. Tween::~Tween() {
  1162. }