gdscript_functions.cpp 54 KB

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  1. /*************************************************************************/
  2. /* gdscript_functions.cpp */
  3. /*************************************************************************/
  4. /* This file is part of: */
  5. /* GODOT ENGINE */
  6. /* https://godotengine.org */
  7. /*************************************************************************/
  8. /* Copyright (c) 2007-2020 Juan Linietsky, Ariel Manzur. */
  9. /* Copyright (c) 2014-2020 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 "gdscript_functions.h"
  31. #include "core/class_db.h"
  32. #include "core/func_ref.h"
  33. #include "core/io/json.h"
  34. #include "core/io/marshalls.h"
  35. #include "core/math/math_funcs.h"
  36. #include "core/os/os.h"
  37. #include "core/reference.h"
  38. #include "core/variant_parser.h"
  39. #include "gdscript.h"
  40. const char *GDScriptFunctions::get_func_name(Function p_func) {
  41. ERR_FAIL_INDEX_V(p_func, FUNC_MAX, "");
  42. static const char *_names[FUNC_MAX] = {
  43. "sin",
  44. "cos",
  45. "tan",
  46. "sinh",
  47. "cosh",
  48. "tanh",
  49. "asin",
  50. "acos",
  51. "atan",
  52. "atan2",
  53. "sqrt",
  54. "fmod",
  55. "fposmod",
  56. "posmod",
  57. "floor",
  58. "ceil",
  59. "round",
  60. "abs",
  61. "sign",
  62. "pow",
  63. "log",
  64. "exp",
  65. "is_nan",
  66. "is_inf",
  67. "is_equal_approx",
  68. "is_zero_approx",
  69. "ease",
  70. "step_decimals",
  71. "stepify",
  72. "lerp",
  73. "lerp_angle",
  74. "inverse_lerp",
  75. "range_lerp",
  76. "smoothstep",
  77. "move_toward",
  78. "dectime",
  79. "randomize",
  80. "randi",
  81. "randf",
  82. "rand_range",
  83. "seed",
  84. "rand_seed",
  85. "deg2rad",
  86. "rad2deg",
  87. "linear2db",
  88. "db2linear",
  89. "polar2cartesian",
  90. "cartesian2polar",
  91. "wrapi",
  92. "wrapf",
  93. "max",
  94. "min",
  95. "clamp",
  96. "nearest_po2",
  97. "weakref",
  98. "funcref",
  99. "convert",
  100. "typeof",
  101. "type_exists",
  102. "char",
  103. "ord",
  104. "str",
  105. "print",
  106. "printt",
  107. "prints",
  108. "printerr",
  109. "printraw",
  110. "print_debug",
  111. "push_error",
  112. "push_warning",
  113. "var2str",
  114. "str2var",
  115. "var2bytes",
  116. "bytes2var",
  117. "range",
  118. "load",
  119. "inst2dict",
  120. "dict2inst",
  121. "validate_json",
  122. "parse_json",
  123. "to_json",
  124. "hash",
  125. "Color8",
  126. "ColorN",
  127. "print_stack",
  128. "get_stack",
  129. "instance_from_id",
  130. "len",
  131. "is_instance_valid",
  132. };
  133. return _names[p_func];
  134. }
  135. void GDScriptFunctions::call(Function p_func, const Variant **p_args, int p_arg_count, Variant &r_ret, Callable::CallError &r_error) {
  136. r_error.error = Callable::CallError::CALL_OK;
  137. #ifdef DEBUG_ENABLED
  138. #define VALIDATE_ARG_COUNT(m_count) \
  139. if (p_arg_count < m_count) { \
  140. r_error.error = Callable::CallError::CALL_ERROR_TOO_FEW_ARGUMENTS; \
  141. r_error.argument = m_count; \
  142. r_ret = Variant(); \
  143. return; \
  144. } \
  145. if (p_arg_count > m_count) { \
  146. r_error.error = Callable::CallError::CALL_ERROR_TOO_MANY_ARGUMENTS; \
  147. r_error.argument = m_count; \
  148. r_ret = Variant(); \
  149. return; \
  150. }
  151. #define VALIDATE_ARG_NUM(m_arg) \
  152. if (!p_args[m_arg]->is_num()) { \
  153. r_error.error = Callable::CallError::CALL_ERROR_INVALID_ARGUMENT; \
  154. r_error.argument = m_arg; \
  155. r_error.expected = Variant::FLOAT; \
  156. r_ret = Variant(); \
  157. return; \
  158. }
  159. #else
  160. #define VALIDATE_ARG_COUNT(m_count)
  161. #define VALIDATE_ARG_NUM(m_arg)
  162. #endif
  163. //using a switch, so the compiler generates a jumptable
  164. switch (p_func) {
  165. case MATH_SIN: {
  166. VALIDATE_ARG_COUNT(1);
  167. VALIDATE_ARG_NUM(0);
  168. r_ret = Math::sin((double)*p_args[0]);
  169. } break;
  170. case MATH_COS: {
  171. VALIDATE_ARG_COUNT(1);
  172. VALIDATE_ARG_NUM(0);
  173. r_ret = Math::cos((double)*p_args[0]);
  174. } break;
  175. case MATH_TAN: {
  176. VALIDATE_ARG_COUNT(1);
  177. VALIDATE_ARG_NUM(0);
  178. r_ret = Math::tan((double)*p_args[0]);
  179. } break;
  180. case MATH_SINH: {
  181. VALIDATE_ARG_COUNT(1);
  182. VALIDATE_ARG_NUM(0);
  183. r_ret = Math::sinh((double)*p_args[0]);
  184. } break;
  185. case MATH_COSH: {
  186. VALIDATE_ARG_COUNT(1);
  187. VALIDATE_ARG_NUM(0);
  188. r_ret = Math::cosh((double)*p_args[0]);
  189. } break;
  190. case MATH_TANH: {
  191. VALIDATE_ARG_COUNT(1);
  192. VALIDATE_ARG_NUM(0);
  193. r_ret = Math::tanh((double)*p_args[0]);
  194. } break;
  195. case MATH_ASIN: {
  196. VALIDATE_ARG_COUNT(1);
  197. VALIDATE_ARG_NUM(0);
  198. r_ret = Math::asin((double)*p_args[0]);
  199. } break;
  200. case MATH_ACOS: {
  201. VALIDATE_ARG_COUNT(1);
  202. VALIDATE_ARG_NUM(0);
  203. r_ret = Math::acos((double)*p_args[0]);
  204. } break;
  205. case MATH_ATAN: {
  206. VALIDATE_ARG_COUNT(1);
  207. VALIDATE_ARG_NUM(0);
  208. r_ret = Math::atan((double)*p_args[0]);
  209. } break;
  210. case MATH_ATAN2: {
  211. VALIDATE_ARG_COUNT(2);
  212. VALIDATE_ARG_NUM(0);
  213. VALIDATE_ARG_NUM(1);
  214. r_ret = Math::atan2((double)*p_args[0], (double)*p_args[1]);
  215. } break;
  216. case MATH_SQRT: {
  217. VALIDATE_ARG_COUNT(1);
  218. VALIDATE_ARG_NUM(0);
  219. r_ret = Math::sqrt((double)*p_args[0]);
  220. } break;
  221. case MATH_FMOD: {
  222. VALIDATE_ARG_COUNT(2);
  223. VALIDATE_ARG_NUM(0);
  224. VALIDATE_ARG_NUM(1);
  225. r_ret = Math::fmod((double)*p_args[0], (double)*p_args[1]);
  226. } break;
  227. case MATH_FPOSMOD: {
  228. VALIDATE_ARG_COUNT(2);
  229. VALIDATE_ARG_NUM(0);
  230. VALIDATE_ARG_NUM(1);
  231. r_ret = Math::fposmod((double)*p_args[0], (double)*p_args[1]);
  232. } break;
  233. case MATH_POSMOD: {
  234. VALIDATE_ARG_COUNT(2);
  235. VALIDATE_ARG_NUM(0);
  236. VALIDATE_ARG_NUM(1);
  237. r_ret = Math::posmod((int)*p_args[0], (int)*p_args[1]);
  238. } break;
  239. case MATH_FLOOR: {
  240. VALIDATE_ARG_COUNT(1);
  241. VALIDATE_ARG_NUM(0);
  242. r_ret = Math::floor((double)*p_args[0]);
  243. } break;
  244. case MATH_CEIL: {
  245. VALIDATE_ARG_COUNT(1);
  246. VALIDATE_ARG_NUM(0);
  247. r_ret = Math::ceil((double)*p_args[0]);
  248. } break;
  249. case MATH_ROUND: {
  250. VALIDATE_ARG_COUNT(1);
  251. VALIDATE_ARG_NUM(0);
  252. r_ret = Math::round((double)*p_args[0]);
  253. } break;
  254. case MATH_ABS: {
  255. VALIDATE_ARG_COUNT(1);
  256. if (p_args[0]->get_type() == Variant::INT) {
  257. int64_t i = *p_args[0];
  258. r_ret = ABS(i);
  259. } else if (p_args[0]->get_type() == Variant::FLOAT) {
  260. double r = *p_args[0];
  261. r_ret = Math::abs(r);
  262. } else {
  263. r_error.error = Callable::CallError::CALL_ERROR_INVALID_ARGUMENT;
  264. r_error.argument = 0;
  265. r_error.expected = Variant::FLOAT;
  266. r_ret = Variant();
  267. }
  268. } break;
  269. case MATH_SIGN: {
  270. VALIDATE_ARG_COUNT(1);
  271. if (p_args[0]->get_type() == Variant::INT) {
  272. int64_t i = *p_args[0];
  273. r_ret = i < 0 ? -1 : (i > 0 ? +1 : 0);
  274. } else if (p_args[0]->get_type() == Variant::FLOAT) {
  275. real_t r = *p_args[0];
  276. r_ret = r < 0.0 ? -1.0 : (r > 0.0 ? +1.0 : 0.0);
  277. } else {
  278. r_error.error = Callable::CallError::CALL_ERROR_INVALID_ARGUMENT;
  279. r_error.argument = 0;
  280. r_error.expected = Variant::FLOAT;
  281. r_ret = Variant();
  282. }
  283. } break;
  284. case MATH_POW: {
  285. VALIDATE_ARG_COUNT(2);
  286. VALIDATE_ARG_NUM(0);
  287. VALIDATE_ARG_NUM(1);
  288. r_ret = Math::pow((double)*p_args[0], (double)*p_args[1]);
  289. } break;
  290. case MATH_LOG: {
  291. VALIDATE_ARG_COUNT(1);
  292. VALIDATE_ARG_NUM(0);
  293. r_ret = Math::log((double)*p_args[0]);
  294. } break;
  295. case MATH_EXP: {
  296. VALIDATE_ARG_COUNT(1);
  297. VALIDATE_ARG_NUM(0);
  298. r_ret = Math::exp((double)*p_args[0]);
  299. } break;
  300. case MATH_ISNAN: {
  301. VALIDATE_ARG_COUNT(1);
  302. VALIDATE_ARG_NUM(0);
  303. r_ret = Math::is_nan((double)*p_args[0]);
  304. } break;
  305. case MATH_ISINF: {
  306. VALIDATE_ARG_COUNT(1);
  307. VALIDATE_ARG_NUM(0);
  308. r_ret = Math::is_inf((double)*p_args[0]);
  309. } break;
  310. case MATH_ISEQUALAPPROX: {
  311. VALIDATE_ARG_COUNT(2);
  312. VALIDATE_ARG_NUM(0);
  313. VALIDATE_ARG_NUM(1);
  314. r_ret = Math::is_equal_approx((real_t)*p_args[0], (real_t)*p_args[1]);
  315. } break;
  316. case MATH_ISZEROAPPROX: {
  317. VALIDATE_ARG_COUNT(1);
  318. VALIDATE_ARG_NUM(0);
  319. r_ret = Math::is_zero_approx((real_t)*p_args[0]);
  320. } break;
  321. case MATH_EASE: {
  322. VALIDATE_ARG_COUNT(2);
  323. VALIDATE_ARG_NUM(0);
  324. VALIDATE_ARG_NUM(1);
  325. r_ret = Math::ease((double)*p_args[0], (double)*p_args[1]);
  326. } break;
  327. case MATH_STEP_DECIMALS: {
  328. VALIDATE_ARG_COUNT(1);
  329. VALIDATE_ARG_NUM(0);
  330. r_ret = Math::step_decimals((double)*p_args[0]);
  331. } break;
  332. case MATH_STEPIFY: {
  333. VALIDATE_ARG_COUNT(2);
  334. VALIDATE_ARG_NUM(0);
  335. VALIDATE_ARG_NUM(1);
  336. r_ret = Math::stepify((double)*p_args[0], (double)*p_args[1]);
  337. } break;
  338. case MATH_LERP: {
  339. VALIDATE_ARG_COUNT(3);
  340. VALIDATE_ARG_NUM(2);
  341. const double t = (double)*p_args[2];
  342. switch (p_args[0]->get_type() == p_args[1]->get_type() ? p_args[0]->get_type() : Variant::FLOAT) {
  343. case Variant::VECTOR2: {
  344. r_ret = ((Vector2)*p_args[0]).lerp((Vector2)*p_args[1], t);
  345. } break;
  346. case Variant::VECTOR3: {
  347. r_ret = (p_args[0]->operator Vector3()).lerp(p_args[1]->operator Vector3(), t);
  348. } break;
  349. case Variant::COLOR: {
  350. r_ret = ((Color)*p_args[0]).lerp((Color)*p_args[1], t);
  351. } break;
  352. default: {
  353. VALIDATE_ARG_NUM(0);
  354. VALIDATE_ARG_NUM(1);
  355. r_ret = Math::lerp((double)*p_args[0], (double)*p_args[1], t);
  356. } break;
  357. }
  358. } break;
  359. case MATH_LERP_ANGLE: {
  360. VALIDATE_ARG_COUNT(3);
  361. VALIDATE_ARG_NUM(0);
  362. VALIDATE_ARG_NUM(1);
  363. VALIDATE_ARG_NUM(2);
  364. r_ret = Math::lerp_angle((double)*p_args[0], (double)*p_args[1], (double)*p_args[2]);
  365. } break;
  366. case MATH_INVERSE_LERP: {
  367. VALIDATE_ARG_COUNT(3);
  368. VALIDATE_ARG_NUM(0);
  369. VALIDATE_ARG_NUM(1);
  370. VALIDATE_ARG_NUM(2);
  371. r_ret = Math::inverse_lerp((double)*p_args[0], (double)*p_args[1], (double)*p_args[2]);
  372. } break;
  373. case MATH_RANGE_LERP: {
  374. VALIDATE_ARG_COUNT(5);
  375. VALIDATE_ARG_NUM(0);
  376. VALIDATE_ARG_NUM(1);
  377. VALIDATE_ARG_NUM(2);
  378. VALIDATE_ARG_NUM(3);
  379. VALIDATE_ARG_NUM(4);
  380. r_ret = Math::range_lerp((double)*p_args[0], (double)*p_args[1], (double)*p_args[2], (double)*p_args[3], (double)*p_args[4]);
  381. } break;
  382. case MATH_SMOOTHSTEP: {
  383. VALIDATE_ARG_COUNT(3);
  384. VALIDATE_ARG_NUM(0);
  385. VALIDATE_ARG_NUM(1);
  386. VALIDATE_ARG_NUM(2);
  387. r_ret = Math::smoothstep((double)*p_args[0], (double)*p_args[1], (double)*p_args[2]);
  388. } break;
  389. case MATH_MOVE_TOWARD: {
  390. VALIDATE_ARG_COUNT(3);
  391. VALIDATE_ARG_NUM(0);
  392. VALIDATE_ARG_NUM(1);
  393. VALIDATE_ARG_NUM(2);
  394. r_ret = Math::move_toward((double)*p_args[0], (double)*p_args[1], (double)*p_args[2]);
  395. } break;
  396. case MATH_DECTIME: {
  397. VALIDATE_ARG_COUNT(3);
  398. VALIDATE_ARG_NUM(0);
  399. VALIDATE_ARG_NUM(1);
  400. VALIDATE_ARG_NUM(2);
  401. r_ret = Math::dectime((double)*p_args[0], (double)*p_args[1], (double)*p_args[2]);
  402. } break;
  403. case MATH_RANDOMIZE: {
  404. VALIDATE_ARG_COUNT(0);
  405. Math::randomize();
  406. r_ret = Variant();
  407. } break;
  408. case MATH_RAND: {
  409. VALIDATE_ARG_COUNT(0);
  410. r_ret = Math::rand();
  411. } break;
  412. case MATH_RANDF: {
  413. VALIDATE_ARG_COUNT(0);
  414. r_ret = Math::randf();
  415. } break;
  416. case MATH_RANDOM: {
  417. VALIDATE_ARG_COUNT(2);
  418. VALIDATE_ARG_NUM(0);
  419. VALIDATE_ARG_NUM(1);
  420. r_ret = Math::random((double)*p_args[0], (double)*p_args[1]);
  421. } break;
  422. case MATH_SEED: {
  423. VALIDATE_ARG_COUNT(1);
  424. VALIDATE_ARG_NUM(0);
  425. uint64_t seed = *p_args[0];
  426. Math::seed(seed);
  427. r_ret = Variant();
  428. } break;
  429. case MATH_RANDSEED: {
  430. VALIDATE_ARG_COUNT(1);
  431. VALIDATE_ARG_NUM(0);
  432. uint64_t seed = *p_args[0];
  433. int ret = Math::rand_from_seed(&seed);
  434. Array reta;
  435. reta.push_back(ret);
  436. reta.push_back(seed);
  437. r_ret = reta;
  438. } break;
  439. case MATH_DEG2RAD: {
  440. VALIDATE_ARG_COUNT(1);
  441. VALIDATE_ARG_NUM(0);
  442. r_ret = Math::deg2rad((double)*p_args[0]);
  443. } break;
  444. case MATH_RAD2DEG: {
  445. VALIDATE_ARG_COUNT(1);
  446. VALIDATE_ARG_NUM(0);
  447. r_ret = Math::rad2deg((double)*p_args[0]);
  448. } break;
  449. case MATH_LINEAR2DB: {
  450. VALIDATE_ARG_COUNT(1);
  451. VALIDATE_ARG_NUM(0);
  452. r_ret = Math::linear2db((double)*p_args[0]);
  453. } break;
  454. case MATH_DB2LINEAR: {
  455. VALIDATE_ARG_COUNT(1);
  456. VALIDATE_ARG_NUM(0);
  457. r_ret = Math::db2linear((double)*p_args[0]);
  458. } break;
  459. case MATH_POLAR2CARTESIAN: {
  460. VALIDATE_ARG_COUNT(2);
  461. VALIDATE_ARG_NUM(0);
  462. VALIDATE_ARG_NUM(1);
  463. double r = *p_args[0];
  464. double th = *p_args[1];
  465. r_ret = Vector2(r * Math::cos(th), r * Math::sin(th));
  466. } break;
  467. case MATH_CARTESIAN2POLAR: {
  468. VALIDATE_ARG_COUNT(2);
  469. VALIDATE_ARG_NUM(0);
  470. VALIDATE_ARG_NUM(1);
  471. double x = *p_args[0];
  472. double y = *p_args[1];
  473. r_ret = Vector2(Math::sqrt(x * x + y * y), Math::atan2(y, x));
  474. } break;
  475. case MATH_WRAP: {
  476. VALIDATE_ARG_COUNT(3);
  477. r_ret = Math::wrapi((int64_t)*p_args[0], (int64_t)*p_args[1], (int64_t)*p_args[2]);
  478. } break;
  479. case MATH_WRAPF: {
  480. VALIDATE_ARG_COUNT(3);
  481. r_ret = Math::wrapf((double)*p_args[0], (double)*p_args[1], (double)*p_args[2]);
  482. } break;
  483. case LOGIC_MAX: {
  484. VALIDATE_ARG_COUNT(2);
  485. if (p_args[0]->get_type() == Variant::INT && p_args[1]->get_type() == Variant::INT) {
  486. int64_t a = *p_args[0];
  487. int64_t b = *p_args[1];
  488. r_ret = MAX(a, b);
  489. } else {
  490. VALIDATE_ARG_NUM(0);
  491. VALIDATE_ARG_NUM(1);
  492. real_t a = *p_args[0];
  493. real_t b = *p_args[1];
  494. r_ret = MAX(a, b);
  495. }
  496. } break;
  497. case LOGIC_MIN: {
  498. VALIDATE_ARG_COUNT(2);
  499. if (p_args[0]->get_type() == Variant::INT && p_args[1]->get_type() == Variant::INT) {
  500. int64_t a = *p_args[0];
  501. int64_t b = *p_args[1];
  502. r_ret = MIN(a, b);
  503. } else {
  504. VALIDATE_ARG_NUM(0);
  505. VALIDATE_ARG_NUM(1);
  506. real_t a = *p_args[0];
  507. real_t b = *p_args[1];
  508. r_ret = MIN(a, b);
  509. }
  510. } break;
  511. case LOGIC_CLAMP: {
  512. VALIDATE_ARG_COUNT(3);
  513. if (p_args[0]->get_type() == Variant::INT && p_args[1]->get_type() == Variant::INT && p_args[2]->get_type() == Variant::INT) {
  514. int64_t a = *p_args[0];
  515. int64_t b = *p_args[1];
  516. int64_t c = *p_args[2];
  517. r_ret = CLAMP(a, b, c);
  518. } else {
  519. VALIDATE_ARG_NUM(0);
  520. VALIDATE_ARG_NUM(1);
  521. VALIDATE_ARG_NUM(2);
  522. real_t a = *p_args[0];
  523. real_t b = *p_args[1];
  524. real_t c = *p_args[2];
  525. r_ret = CLAMP(a, b, c);
  526. }
  527. } break;
  528. case LOGIC_NEAREST_PO2: {
  529. VALIDATE_ARG_COUNT(1);
  530. VALIDATE_ARG_NUM(0);
  531. int64_t num = *p_args[0];
  532. r_ret = next_power_of_2(num);
  533. } break;
  534. case OBJ_WEAKREF: {
  535. VALIDATE_ARG_COUNT(1);
  536. if (p_args[0]->get_type() == Variant::OBJECT) {
  537. if (p_args[0]->is_ref()) {
  538. Ref<WeakRef> wref = memnew(WeakRef);
  539. REF r = *p_args[0];
  540. if (r.is_valid()) {
  541. wref->set_ref(r);
  542. }
  543. r_ret = wref;
  544. } else {
  545. Ref<WeakRef> wref = memnew(WeakRef);
  546. Object *obj = *p_args[0];
  547. if (obj) {
  548. wref->set_obj(obj);
  549. }
  550. r_ret = wref;
  551. }
  552. } else if (p_args[0]->get_type() == Variant::NIL) {
  553. Ref<WeakRef> wref = memnew(WeakRef);
  554. r_ret = wref;
  555. } else {
  556. r_error.error = Callable::CallError::CALL_ERROR_INVALID_ARGUMENT;
  557. r_error.argument = 0;
  558. r_error.expected = Variant::OBJECT;
  559. r_ret = Variant();
  560. return;
  561. }
  562. } break;
  563. case FUNC_FUNCREF: {
  564. VALIDATE_ARG_COUNT(2);
  565. if (p_args[0]->get_type() != Variant::OBJECT) {
  566. r_error.error = Callable::CallError::CALL_ERROR_INVALID_ARGUMENT;
  567. r_error.argument = 0;
  568. r_error.expected = Variant::OBJECT;
  569. r_ret = Variant();
  570. return;
  571. }
  572. if (p_args[1]->get_type() != Variant::STRING && p_args[1]->get_type() != Variant::NODE_PATH) {
  573. r_error.error = Callable::CallError::CALL_ERROR_INVALID_ARGUMENT;
  574. r_error.argument = 1;
  575. r_error.expected = Variant::STRING;
  576. r_ret = Variant();
  577. return;
  578. }
  579. Ref<FuncRef> fr = memnew(FuncRef);
  580. fr->set_instance(*p_args[0]);
  581. fr->set_function(*p_args[1]);
  582. r_ret = fr;
  583. } break;
  584. case TYPE_CONVERT: {
  585. VALIDATE_ARG_COUNT(2);
  586. VALIDATE_ARG_NUM(1);
  587. int type = *p_args[1];
  588. if (type < 0 || type >= Variant::VARIANT_MAX) {
  589. r_ret = RTR("Invalid type argument to convert(), use TYPE_* constants.");
  590. r_error.error = Callable::CallError::CALL_ERROR_INVALID_ARGUMENT;
  591. r_error.argument = 0;
  592. r_error.expected = Variant::INT;
  593. return;
  594. } else {
  595. r_ret = Variant::construct(Variant::Type(type), p_args, 1, r_error);
  596. }
  597. } break;
  598. case TYPE_OF: {
  599. VALIDATE_ARG_COUNT(1);
  600. r_ret = p_args[0]->get_type();
  601. } break;
  602. case TYPE_EXISTS: {
  603. VALIDATE_ARG_COUNT(1);
  604. r_ret = ClassDB::class_exists(*p_args[0]);
  605. } break;
  606. case TEXT_CHAR: {
  607. VALIDATE_ARG_COUNT(1);
  608. VALIDATE_ARG_NUM(0);
  609. CharType result[2] = { *p_args[0], 0 };
  610. r_ret = String(result);
  611. } break;
  612. case TEXT_ORD: {
  613. VALIDATE_ARG_COUNT(1);
  614. if (p_args[0]->get_type() != Variant::STRING) {
  615. r_error.error = Callable::CallError::CALL_ERROR_INVALID_ARGUMENT;
  616. r_error.argument = 0;
  617. r_error.expected = Variant::STRING;
  618. r_ret = Variant();
  619. return;
  620. }
  621. String str = p_args[0]->operator String();
  622. if (str.length() != 1) {
  623. r_error.error = Callable::CallError::CALL_ERROR_INVALID_ARGUMENT;
  624. r_error.argument = 0;
  625. r_error.expected = Variant::STRING;
  626. r_ret = RTR("Expected a string of length 1 (a character).");
  627. return;
  628. }
  629. r_ret = str.get(0);
  630. } break;
  631. case TEXT_STR: {
  632. if (p_arg_count < 1) {
  633. r_error.error = Callable::CallError::CALL_ERROR_TOO_FEW_ARGUMENTS;
  634. r_error.argument = 1;
  635. r_ret = Variant();
  636. return;
  637. }
  638. String str;
  639. for (int i = 0; i < p_arg_count; i++) {
  640. String os = p_args[i]->operator String();
  641. if (i == 0)
  642. str = os;
  643. else
  644. str += os;
  645. }
  646. r_ret = str;
  647. } break;
  648. case TEXT_PRINT: {
  649. String str;
  650. for (int i = 0; i < p_arg_count; i++) {
  651. str += p_args[i]->operator String();
  652. }
  653. print_line(str);
  654. r_ret = Variant();
  655. } break;
  656. case TEXT_PRINT_TABBED: {
  657. String str;
  658. for (int i = 0; i < p_arg_count; i++) {
  659. if (i)
  660. str += "\t";
  661. str += p_args[i]->operator String();
  662. }
  663. print_line(str);
  664. r_ret = Variant();
  665. } break;
  666. case TEXT_PRINT_SPACED: {
  667. String str;
  668. for (int i = 0; i < p_arg_count; i++) {
  669. if (i)
  670. str += " ";
  671. str += p_args[i]->operator String();
  672. }
  673. print_line(str);
  674. r_ret = Variant();
  675. } break;
  676. case TEXT_PRINTERR: {
  677. String str;
  678. for (int i = 0; i < p_arg_count; i++) {
  679. str += p_args[i]->operator String();
  680. }
  681. print_error(str);
  682. r_ret = Variant();
  683. } break;
  684. case TEXT_PRINTRAW: {
  685. String str;
  686. for (int i = 0; i < p_arg_count; i++) {
  687. str += p_args[i]->operator String();
  688. }
  689. OS::get_singleton()->print("%s", str.utf8().get_data());
  690. r_ret = Variant();
  691. } break;
  692. case TEXT_PRINT_DEBUG: {
  693. String str;
  694. for (int i = 0; i < p_arg_count; i++) {
  695. str += p_args[i]->operator String();
  696. }
  697. ScriptLanguage *script = GDScriptLanguage::get_singleton();
  698. if (script->debug_get_stack_level_count() > 0) {
  699. str += "\n At: " + script->debug_get_stack_level_source(0) + ":" + itos(script->debug_get_stack_level_line(0)) + ":" + script->debug_get_stack_level_function(0) + "()";
  700. }
  701. print_line(str);
  702. r_ret = Variant();
  703. } break;
  704. case PUSH_ERROR: {
  705. VALIDATE_ARG_COUNT(1);
  706. if (p_args[0]->get_type() != Variant::STRING) {
  707. r_error.error = Callable::CallError::CALL_ERROR_INVALID_ARGUMENT;
  708. r_error.argument = 0;
  709. r_error.expected = Variant::STRING;
  710. r_ret = Variant();
  711. break;
  712. }
  713. String message = *p_args[0];
  714. ERR_PRINT(message);
  715. r_ret = Variant();
  716. } break;
  717. case PUSH_WARNING: {
  718. VALIDATE_ARG_COUNT(1);
  719. if (p_args[0]->get_type() != Variant::STRING) {
  720. r_error.error = Callable::CallError::CALL_ERROR_INVALID_ARGUMENT;
  721. r_error.argument = 0;
  722. r_error.expected = Variant::STRING;
  723. r_ret = Variant();
  724. break;
  725. }
  726. String message = *p_args[0];
  727. WARN_PRINT(message);
  728. r_ret = Variant();
  729. } break;
  730. case VAR_TO_STR: {
  731. VALIDATE_ARG_COUNT(1);
  732. String vars;
  733. VariantWriter::write_to_string(*p_args[0], vars);
  734. r_ret = vars;
  735. } break;
  736. case STR_TO_VAR: {
  737. VALIDATE_ARG_COUNT(1);
  738. if (p_args[0]->get_type() != Variant::STRING) {
  739. r_error.error = Callable::CallError::CALL_ERROR_INVALID_ARGUMENT;
  740. r_error.argument = 0;
  741. r_error.expected = Variant::STRING;
  742. r_ret = Variant();
  743. return;
  744. }
  745. r_ret = *p_args[0];
  746. VariantParser::StreamString ss;
  747. ss.s = *p_args[0];
  748. String errs;
  749. int line;
  750. (void)VariantParser::parse(&ss, r_ret, errs, line);
  751. } break;
  752. case VAR_TO_BYTES: {
  753. bool full_objects = false;
  754. if (p_arg_count < 1) {
  755. r_error.error = Callable::CallError::CALL_ERROR_TOO_FEW_ARGUMENTS;
  756. r_error.argument = 1;
  757. r_ret = Variant();
  758. return;
  759. } else if (p_arg_count > 2) {
  760. r_error.error = Callable::CallError::CALL_ERROR_TOO_MANY_ARGUMENTS;
  761. r_error.argument = 2;
  762. r_ret = Variant();
  763. } else if (p_arg_count == 2) {
  764. if (p_args[1]->get_type() != Variant::BOOL) {
  765. r_error.error = Callable::CallError::CALL_ERROR_INVALID_ARGUMENT;
  766. r_error.argument = 1;
  767. r_error.expected = Variant::BOOL;
  768. r_ret = Variant();
  769. return;
  770. }
  771. full_objects = *p_args[1];
  772. }
  773. PackedByteArray barr;
  774. int len;
  775. Error err = encode_variant(*p_args[0], nullptr, len, full_objects);
  776. if (err) {
  777. r_error.error = Callable::CallError::CALL_ERROR_INVALID_ARGUMENT;
  778. r_error.argument = 0;
  779. r_error.expected = Variant::NIL;
  780. r_ret = "Unexpected error encoding variable to bytes, likely unserializable type found (Object or RID).";
  781. return;
  782. }
  783. barr.resize(len);
  784. {
  785. uint8_t *w = barr.ptrw();
  786. encode_variant(*p_args[0], w, len, full_objects);
  787. }
  788. r_ret = barr;
  789. } break;
  790. case BYTES_TO_VAR: {
  791. bool allow_objects = false;
  792. if (p_arg_count < 1) {
  793. r_error.error = Callable::CallError::CALL_ERROR_TOO_FEW_ARGUMENTS;
  794. r_error.argument = 1;
  795. r_ret = Variant();
  796. return;
  797. } else if (p_arg_count > 2) {
  798. r_error.error = Callable::CallError::CALL_ERROR_TOO_MANY_ARGUMENTS;
  799. r_error.argument = 2;
  800. r_ret = Variant();
  801. } else if (p_arg_count == 2) {
  802. if (p_args[1]->get_type() != Variant::BOOL) {
  803. r_error.error = Callable::CallError::CALL_ERROR_INVALID_ARGUMENT;
  804. r_error.argument = 1;
  805. r_error.expected = Variant::BOOL;
  806. r_ret = Variant();
  807. return;
  808. }
  809. allow_objects = *p_args[1];
  810. }
  811. if (p_args[0]->get_type() != Variant::PACKED_BYTE_ARRAY) {
  812. r_error.error = Callable::CallError::CALL_ERROR_INVALID_ARGUMENT;
  813. r_error.argument = 1;
  814. r_error.expected = Variant::PACKED_BYTE_ARRAY;
  815. r_ret = Variant();
  816. return;
  817. }
  818. PackedByteArray varr = *p_args[0];
  819. Variant ret;
  820. {
  821. const uint8_t *r = varr.ptr();
  822. Error err = decode_variant(ret, r, varr.size(), nullptr, allow_objects);
  823. if (err != OK) {
  824. r_ret = RTR("Not enough bytes for decoding bytes, or invalid format.");
  825. r_error.error = Callable::CallError::CALL_ERROR_INVALID_ARGUMENT;
  826. r_error.argument = 0;
  827. r_error.expected = Variant::PACKED_BYTE_ARRAY;
  828. return;
  829. }
  830. }
  831. r_ret = ret;
  832. } break;
  833. case GEN_RANGE: {
  834. switch (p_arg_count) {
  835. case 0: {
  836. r_error.error = Callable::CallError::CALL_ERROR_TOO_FEW_ARGUMENTS;
  837. r_error.argument = 1;
  838. r_ret = Variant();
  839. } break;
  840. case 1: {
  841. VALIDATE_ARG_NUM(0);
  842. int count = *p_args[0];
  843. Array arr;
  844. if (count <= 0) {
  845. r_ret = arr;
  846. return;
  847. }
  848. Error err = arr.resize(count);
  849. if (err != OK) {
  850. r_error.error = Callable::CallError::CALL_ERROR_INVALID_METHOD;
  851. r_ret = Variant();
  852. return;
  853. }
  854. for (int i = 0; i < count; i++) {
  855. arr[i] = i;
  856. }
  857. r_ret = arr;
  858. } break;
  859. case 2: {
  860. VALIDATE_ARG_NUM(0);
  861. VALIDATE_ARG_NUM(1);
  862. int from = *p_args[0];
  863. int to = *p_args[1];
  864. Array arr;
  865. if (from >= to) {
  866. r_ret = arr;
  867. return;
  868. }
  869. Error err = arr.resize(to - from);
  870. if (err != OK) {
  871. r_error.error = Callable::CallError::CALL_ERROR_INVALID_METHOD;
  872. r_ret = Variant();
  873. return;
  874. }
  875. for (int i = from; i < to; i++)
  876. arr[i - from] = i;
  877. r_ret = arr;
  878. } break;
  879. case 3: {
  880. VALIDATE_ARG_NUM(0);
  881. VALIDATE_ARG_NUM(1);
  882. VALIDATE_ARG_NUM(2);
  883. int from = *p_args[0];
  884. int to = *p_args[1];
  885. int incr = *p_args[2];
  886. if (incr == 0) {
  887. r_ret = RTR("Step argument is zero!");
  888. r_error.error = Callable::CallError::CALL_ERROR_INVALID_METHOD;
  889. return;
  890. }
  891. Array arr;
  892. if (from >= to && incr > 0) {
  893. r_ret = arr;
  894. return;
  895. }
  896. if (from <= to && incr < 0) {
  897. r_ret = arr;
  898. return;
  899. }
  900. //calculate how many
  901. int count = 0;
  902. if (incr > 0) {
  903. count = ((to - from - 1) / incr) + 1;
  904. } else {
  905. count = ((from - to - 1) / -incr) + 1;
  906. }
  907. Error err = arr.resize(count);
  908. if (err != OK) {
  909. r_error.error = Callable::CallError::CALL_ERROR_INVALID_METHOD;
  910. r_ret = Variant();
  911. return;
  912. }
  913. if (incr > 0) {
  914. int idx = 0;
  915. for (int i = from; i < to; i += incr) {
  916. arr[idx++] = i;
  917. }
  918. } else {
  919. int idx = 0;
  920. for (int i = from; i > to; i += incr) {
  921. arr[idx++] = i;
  922. }
  923. }
  924. r_ret = arr;
  925. } break;
  926. default: {
  927. r_error.error = Callable::CallError::CALL_ERROR_TOO_MANY_ARGUMENTS;
  928. r_error.argument = 3;
  929. r_ret = Variant();
  930. } break;
  931. }
  932. } break;
  933. case RESOURCE_LOAD: {
  934. VALIDATE_ARG_COUNT(1);
  935. if (p_args[0]->get_type() != Variant::STRING) {
  936. r_error.error = Callable::CallError::CALL_ERROR_INVALID_ARGUMENT;
  937. r_error.argument = 0;
  938. r_error.expected = Variant::STRING;
  939. r_ret = Variant();
  940. } else {
  941. r_ret = ResourceLoader::load(*p_args[0]);
  942. }
  943. } break;
  944. case INST2DICT: {
  945. VALIDATE_ARG_COUNT(1);
  946. if (p_args[0]->get_type() == Variant::NIL) {
  947. r_ret = Variant();
  948. } else if (p_args[0]->get_type() != Variant::OBJECT) {
  949. r_error.error = Callable::CallError::CALL_ERROR_INVALID_ARGUMENT;
  950. r_error.argument = 0;
  951. r_ret = Variant();
  952. } else {
  953. Object *obj = *p_args[0];
  954. if (!obj) {
  955. r_ret = Variant();
  956. } else if (!obj->get_script_instance() || obj->get_script_instance()->get_language() != GDScriptLanguage::get_singleton()) {
  957. r_error.error = Callable::CallError::CALL_ERROR_INVALID_ARGUMENT;
  958. r_error.argument = 0;
  959. r_error.expected = Variant::DICTIONARY;
  960. r_ret = RTR("Not a script with an instance");
  961. return;
  962. } else {
  963. GDScriptInstance *ins = static_cast<GDScriptInstance *>(obj->get_script_instance());
  964. Ref<GDScript> base = ins->get_script();
  965. if (base.is_null()) {
  966. r_error.error = Callable::CallError::CALL_ERROR_INVALID_ARGUMENT;
  967. r_error.argument = 0;
  968. r_error.expected = Variant::DICTIONARY;
  969. r_ret = RTR("Not based on a script");
  970. return;
  971. }
  972. GDScript *p = base.ptr();
  973. Vector<StringName> sname;
  974. while (p->_owner) {
  975. sname.push_back(p->name);
  976. p = p->_owner;
  977. }
  978. sname.invert();
  979. if (!p->path.is_resource_file()) {
  980. r_error.error = Callable::CallError::CALL_ERROR_INVALID_ARGUMENT;
  981. r_error.argument = 0;
  982. r_error.expected = Variant::DICTIONARY;
  983. r_ret = Variant();
  984. r_ret = RTR("Not based on a resource file");
  985. return;
  986. }
  987. NodePath cp(sname, Vector<StringName>(), false);
  988. Dictionary d;
  989. d["@subpath"] = cp;
  990. d["@path"] = p->get_path();
  991. for (Map<StringName, GDScript::MemberInfo>::Element *E = base->member_indices.front(); E; E = E->next()) {
  992. if (!d.has(E->key())) {
  993. d[E->key()] = ins->members[E->get().index];
  994. }
  995. }
  996. r_ret = d;
  997. }
  998. }
  999. } break;
  1000. case DICT2INST: {
  1001. VALIDATE_ARG_COUNT(1);
  1002. if (p_args[0]->get_type() != Variant::DICTIONARY) {
  1003. r_error.error = Callable::CallError::CALL_ERROR_INVALID_ARGUMENT;
  1004. r_error.argument = 0;
  1005. r_error.expected = Variant::DICTIONARY;
  1006. r_ret = Variant();
  1007. return;
  1008. }
  1009. Dictionary d = *p_args[0];
  1010. if (!d.has("@path")) {
  1011. r_error.error = Callable::CallError::CALL_ERROR_INVALID_ARGUMENT;
  1012. r_error.argument = 0;
  1013. r_error.expected = Variant::OBJECT;
  1014. r_ret = RTR("Invalid instance dictionary format (missing @path)");
  1015. return;
  1016. }
  1017. Ref<Script> scr = ResourceLoader::load(d["@path"]);
  1018. if (!scr.is_valid()) {
  1019. r_error.error = Callable::CallError::CALL_ERROR_INVALID_ARGUMENT;
  1020. r_error.argument = 0;
  1021. r_error.expected = Variant::OBJECT;
  1022. r_ret = RTR("Invalid instance dictionary format (can't load script at @path)");
  1023. return;
  1024. }
  1025. Ref<GDScript> gdscr = scr;
  1026. if (!gdscr.is_valid()) {
  1027. r_error.error = Callable::CallError::CALL_ERROR_INVALID_ARGUMENT;
  1028. r_error.argument = 0;
  1029. r_error.expected = Variant::OBJECT;
  1030. r_ret = Variant();
  1031. r_ret = RTR("Invalid instance dictionary format (invalid script at @path)");
  1032. return;
  1033. }
  1034. NodePath sub;
  1035. if (d.has("@subpath")) {
  1036. sub = d["@subpath"];
  1037. }
  1038. for (int i = 0; i < sub.get_name_count(); i++) {
  1039. gdscr = gdscr->subclasses[sub.get_name(i)];
  1040. if (!gdscr.is_valid()) {
  1041. r_error.error = Callable::CallError::CALL_ERROR_INVALID_ARGUMENT;
  1042. r_error.argument = 0;
  1043. r_error.expected = Variant::OBJECT;
  1044. r_ret = Variant();
  1045. r_ret = RTR("Invalid instance dictionary (invalid subclasses)");
  1046. return;
  1047. }
  1048. }
  1049. r_ret = gdscr->_new(nullptr, -1 /*skip initializer*/, r_error);
  1050. GDScriptInstance *ins = static_cast<GDScriptInstance *>(static_cast<Object *>(r_ret)->get_script_instance());
  1051. Ref<GDScript> gd_ref = ins->get_script();
  1052. for (Map<StringName, GDScript::MemberInfo>::Element *E = gd_ref->member_indices.front(); E; E = E->next()) {
  1053. if (d.has(E->key())) {
  1054. ins->members.write[E->get().index] = d[E->key()];
  1055. }
  1056. }
  1057. } break;
  1058. case VALIDATE_JSON: {
  1059. VALIDATE_ARG_COUNT(1);
  1060. if (p_args[0]->get_type() != Variant::STRING) {
  1061. r_error.error = Callable::CallError::CALL_ERROR_INVALID_ARGUMENT;
  1062. r_error.argument = 0;
  1063. r_error.expected = Variant::STRING;
  1064. r_ret = Variant();
  1065. return;
  1066. }
  1067. String errs;
  1068. int errl;
  1069. Error err = JSON::parse(*p_args[0], r_ret, errs, errl);
  1070. if (err != OK) {
  1071. r_ret = itos(errl) + ":" + errs;
  1072. } else {
  1073. r_ret = "";
  1074. }
  1075. } break;
  1076. case PARSE_JSON: {
  1077. VALIDATE_ARG_COUNT(1);
  1078. if (p_args[0]->get_type() != Variant::STRING) {
  1079. r_error.error = Callable::CallError::CALL_ERROR_INVALID_ARGUMENT;
  1080. r_error.argument = 0;
  1081. r_error.expected = Variant::STRING;
  1082. r_ret = Variant();
  1083. return;
  1084. }
  1085. String errs;
  1086. int errl;
  1087. Error err = JSON::parse(*p_args[0], r_ret, errs, errl);
  1088. if (err != OK) {
  1089. r_ret = Variant();
  1090. ERR_PRINT(vformat("Error parsing JSON at line %s: %s", errl, errs));
  1091. }
  1092. } break;
  1093. case TO_JSON: {
  1094. VALIDATE_ARG_COUNT(1);
  1095. r_ret = JSON::print(*p_args[0]);
  1096. } break;
  1097. case HASH: {
  1098. VALIDATE_ARG_COUNT(1);
  1099. r_ret = p_args[0]->hash();
  1100. } break;
  1101. case COLOR8: {
  1102. if (p_arg_count < 3) {
  1103. r_error.error = Callable::CallError::CALL_ERROR_TOO_FEW_ARGUMENTS;
  1104. r_error.argument = 3;
  1105. r_ret = Variant();
  1106. return;
  1107. }
  1108. if (p_arg_count > 4) {
  1109. r_error.error = Callable::CallError::CALL_ERROR_TOO_MANY_ARGUMENTS;
  1110. r_error.argument = 4;
  1111. r_ret = Variant();
  1112. return;
  1113. }
  1114. VALIDATE_ARG_NUM(0);
  1115. VALIDATE_ARG_NUM(1);
  1116. VALIDATE_ARG_NUM(2);
  1117. Color color((float)*p_args[0] / 255.0f, (float)*p_args[1] / 255.0f, (float)*p_args[2] / 255.0f);
  1118. if (p_arg_count == 4) {
  1119. VALIDATE_ARG_NUM(3);
  1120. color.a = (float)*p_args[3] / 255.0f;
  1121. }
  1122. r_ret = color;
  1123. } break;
  1124. case COLORN: {
  1125. if (p_arg_count < 1) {
  1126. r_error.error = Callable::CallError::CALL_ERROR_TOO_FEW_ARGUMENTS;
  1127. r_error.argument = 1;
  1128. r_ret = Variant();
  1129. return;
  1130. }
  1131. if (p_arg_count > 2) {
  1132. r_error.error = Callable::CallError::CALL_ERROR_TOO_MANY_ARGUMENTS;
  1133. r_error.argument = 2;
  1134. r_ret = Variant();
  1135. return;
  1136. }
  1137. if (p_args[0]->get_type() != Variant::STRING) {
  1138. r_error.error = Callable::CallError::CALL_ERROR_INVALID_ARGUMENT;
  1139. r_error.argument = 0;
  1140. r_ret = Variant();
  1141. } else {
  1142. Color color = Color::named(*p_args[0]);
  1143. if (p_arg_count == 2) {
  1144. VALIDATE_ARG_NUM(1);
  1145. color.a = *p_args[1];
  1146. }
  1147. r_ret = color;
  1148. }
  1149. } break;
  1150. case PRINT_STACK: {
  1151. VALIDATE_ARG_COUNT(0);
  1152. ScriptLanguage *script = GDScriptLanguage::get_singleton();
  1153. for (int i = 0; i < script->debug_get_stack_level_count(); i++) {
  1154. print_line("Frame " + itos(i) + " - " + script->debug_get_stack_level_source(i) + ":" + itos(script->debug_get_stack_level_line(i)) + " in function '" + script->debug_get_stack_level_function(i) + "'");
  1155. };
  1156. } break;
  1157. case GET_STACK: {
  1158. VALIDATE_ARG_COUNT(0);
  1159. ScriptLanguage *script = GDScriptLanguage::get_singleton();
  1160. Array ret;
  1161. for (int i = 0; i < script->debug_get_stack_level_count(); i++) {
  1162. Dictionary frame;
  1163. frame["source"] = script->debug_get_stack_level_source(i);
  1164. frame["function"] = script->debug_get_stack_level_function(i);
  1165. frame["line"] = script->debug_get_stack_level_line(i);
  1166. ret.push_back(frame);
  1167. };
  1168. r_ret = ret;
  1169. } break;
  1170. case INSTANCE_FROM_ID: {
  1171. VALIDATE_ARG_COUNT(1);
  1172. if (p_args[0]->get_type() != Variant::INT && p_args[0]->get_type() != Variant::FLOAT) {
  1173. r_error.error = Callable::CallError::CALL_ERROR_INVALID_ARGUMENT;
  1174. r_error.argument = 0;
  1175. r_error.expected = Variant::INT;
  1176. r_ret = Variant();
  1177. break;
  1178. }
  1179. ObjectID id = *p_args[0];
  1180. r_ret = ObjectDB::get_instance(id);
  1181. } break;
  1182. case LEN: {
  1183. VALIDATE_ARG_COUNT(1);
  1184. switch (p_args[0]->get_type()) {
  1185. case Variant::STRING: {
  1186. String d = *p_args[0];
  1187. r_ret = d.length();
  1188. } break;
  1189. case Variant::DICTIONARY: {
  1190. Dictionary d = *p_args[0];
  1191. r_ret = d.size();
  1192. } break;
  1193. case Variant::ARRAY: {
  1194. Array d = *p_args[0];
  1195. r_ret = d.size();
  1196. } break;
  1197. case Variant::PACKED_BYTE_ARRAY: {
  1198. Vector<uint8_t> d = *p_args[0];
  1199. r_ret = d.size();
  1200. } break;
  1201. case Variant::PACKED_INT32_ARRAY: {
  1202. Vector<int32_t> d = *p_args[0];
  1203. r_ret = d.size();
  1204. } break;
  1205. case Variant::PACKED_INT64_ARRAY: {
  1206. Vector<int64_t> d = *p_args[0];
  1207. r_ret = d.size();
  1208. } break;
  1209. case Variant::PACKED_FLOAT32_ARRAY: {
  1210. Vector<float> d = *p_args[0];
  1211. r_ret = d.size();
  1212. } break;
  1213. case Variant::PACKED_FLOAT64_ARRAY: {
  1214. Vector<double> d = *p_args[0];
  1215. r_ret = d.size();
  1216. } break;
  1217. case Variant::PACKED_STRING_ARRAY: {
  1218. Vector<String> d = *p_args[0];
  1219. r_ret = d.size();
  1220. } break;
  1221. case Variant::PACKED_VECTOR2_ARRAY: {
  1222. Vector<Vector2> d = *p_args[0];
  1223. r_ret = d.size();
  1224. } break;
  1225. case Variant::PACKED_VECTOR3_ARRAY: {
  1226. Vector<Vector3> d = *p_args[0];
  1227. r_ret = d.size();
  1228. } break;
  1229. case Variant::PACKED_COLOR_ARRAY: {
  1230. Vector<Color> d = *p_args[0];
  1231. r_ret = d.size();
  1232. } break;
  1233. default: {
  1234. r_error.error = Callable::CallError::CALL_ERROR_INVALID_ARGUMENT;
  1235. r_error.argument = 0;
  1236. r_error.expected = Variant::OBJECT;
  1237. r_ret = Variant();
  1238. r_ret = RTR("Object can't provide a length.");
  1239. }
  1240. }
  1241. } break;
  1242. case IS_INSTANCE_VALID: {
  1243. VALIDATE_ARG_COUNT(1);
  1244. if (p_args[0]->get_type() != Variant::OBJECT) {
  1245. r_ret = false;
  1246. } else {
  1247. Object *obj = p_args[0]->get_validated_object();
  1248. r_ret = obj != nullptr;
  1249. }
  1250. } break;
  1251. case FUNC_MAX: {
  1252. ERR_FAIL();
  1253. } break;
  1254. }
  1255. }
  1256. bool GDScriptFunctions::is_deterministic(Function p_func) {
  1257. //man i couldn't have chosen a worse function name,
  1258. //way too controversial..
  1259. switch (p_func) {
  1260. case MATH_SIN:
  1261. case MATH_COS:
  1262. case MATH_TAN:
  1263. case MATH_SINH:
  1264. case MATH_COSH:
  1265. case MATH_TANH:
  1266. case MATH_ASIN:
  1267. case MATH_ACOS:
  1268. case MATH_ATAN:
  1269. case MATH_ATAN2:
  1270. case MATH_SQRT:
  1271. case MATH_FMOD:
  1272. case MATH_FPOSMOD:
  1273. case MATH_POSMOD:
  1274. case MATH_FLOOR:
  1275. case MATH_CEIL:
  1276. case MATH_ROUND:
  1277. case MATH_ABS:
  1278. case MATH_SIGN:
  1279. case MATH_POW:
  1280. case MATH_LOG:
  1281. case MATH_EXP:
  1282. case MATH_ISNAN:
  1283. case MATH_ISINF:
  1284. case MATH_EASE:
  1285. case MATH_STEP_DECIMALS:
  1286. case MATH_STEPIFY:
  1287. case MATH_LERP:
  1288. case MATH_INVERSE_LERP:
  1289. case MATH_RANGE_LERP:
  1290. case MATH_SMOOTHSTEP:
  1291. case MATH_MOVE_TOWARD:
  1292. case MATH_DECTIME:
  1293. case MATH_DEG2RAD:
  1294. case MATH_RAD2DEG:
  1295. case MATH_LINEAR2DB:
  1296. case MATH_DB2LINEAR:
  1297. case MATH_POLAR2CARTESIAN:
  1298. case MATH_CARTESIAN2POLAR:
  1299. case MATH_WRAP:
  1300. case MATH_WRAPF:
  1301. case LOGIC_MAX:
  1302. case LOGIC_MIN:
  1303. case LOGIC_CLAMP:
  1304. case LOGIC_NEAREST_PO2:
  1305. case TYPE_CONVERT:
  1306. case TYPE_OF:
  1307. case TYPE_EXISTS:
  1308. case TEXT_CHAR:
  1309. case TEXT_ORD:
  1310. case TEXT_STR:
  1311. case COLOR8:
  1312. case LEN:
  1313. // enable for debug only, otherwise not desirable - case GEN_RANGE:
  1314. return true;
  1315. default:
  1316. return false;
  1317. }
  1318. return false;
  1319. }
  1320. MethodInfo GDScriptFunctions::get_info(Function p_func) {
  1321. #ifdef DEBUG_ENABLED
  1322. //using a switch, so the compiler generates a jumptable
  1323. switch (p_func) {
  1324. case MATH_SIN: {
  1325. MethodInfo mi("sin", PropertyInfo(Variant::FLOAT, "s"));
  1326. mi.return_val.type = Variant::FLOAT;
  1327. return mi;
  1328. } break;
  1329. case MATH_COS: {
  1330. MethodInfo mi("cos", PropertyInfo(Variant::FLOAT, "s"));
  1331. mi.return_val.type = Variant::FLOAT;
  1332. return mi;
  1333. } break;
  1334. case MATH_TAN: {
  1335. MethodInfo mi("tan", PropertyInfo(Variant::FLOAT, "s"));
  1336. mi.return_val.type = Variant::FLOAT;
  1337. return mi;
  1338. } break;
  1339. case MATH_SINH: {
  1340. MethodInfo mi("sinh", PropertyInfo(Variant::FLOAT, "s"));
  1341. mi.return_val.type = Variant::FLOAT;
  1342. return mi;
  1343. } break;
  1344. case MATH_COSH: {
  1345. MethodInfo mi("cosh", PropertyInfo(Variant::FLOAT, "s"));
  1346. mi.return_val.type = Variant::FLOAT;
  1347. return mi;
  1348. } break;
  1349. case MATH_TANH: {
  1350. MethodInfo mi("tanh", PropertyInfo(Variant::FLOAT, "s"));
  1351. mi.return_val.type = Variant::FLOAT;
  1352. return mi;
  1353. } break;
  1354. case MATH_ASIN: {
  1355. MethodInfo mi("asin", PropertyInfo(Variant::FLOAT, "s"));
  1356. mi.return_val.type = Variant::FLOAT;
  1357. return mi;
  1358. } break;
  1359. case MATH_ACOS: {
  1360. MethodInfo mi("acos", PropertyInfo(Variant::FLOAT, "s"));
  1361. mi.return_val.type = Variant::FLOAT;
  1362. return mi;
  1363. } break;
  1364. case MATH_ATAN: {
  1365. MethodInfo mi("atan", PropertyInfo(Variant::FLOAT, "s"));
  1366. mi.return_val.type = Variant::FLOAT;
  1367. return mi;
  1368. } break;
  1369. case MATH_ATAN2: {
  1370. MethodInfo mi("atan2", PropertyInfo(Variant::FLOAT, "y"), PropertyInfo(Variant::FLOAT, "x"));
  1371. mi.return_val.type = Variant::FLOAT;
  1372. return mi;
  1373. } break;
  1374. case MATH_SQRT: {
  1375. MethodInfo mi("sqrt", PropertyInfo(Variant::FLOAT, "s"));
  1376. mi.return_val.type = Variant::FLOAT;
  1377. return mi;
  1378. } break;
  1379. case MATH_FMOD: {
  1380. MethodInfo mi("fmod", PropertyInfo(Variant::FLOAT, "a"), PropertyInfo(Variant::FLOAT, "b"));
  1381. mi.return_val.type = Variant::FLOAT;
  1382. return mi;
  1383. } break;
  1384. case MATH_FPOSMOD: {
  1385. MethodInfo mi("fposmod", PropertyInfo(Variant::FLOAT, "a"), PropertyInfo(Variant::FLOAT, "b"));
  1386. mi.return_val.type = Variant::FLOAT;
  1387. return mi;
  1388. } break;
  1389. case MATH_POSMOD: {
  1390. MethodInfo mi("posmod", PropertyInfo(Variant::INT, "a"), PropertyInfo(Variant::INT, "b"));
  1391. mi.return_val.type = Variant::INT;
  1392. return mi;
  1393. } break;
  1394. case MATH_FLOOR: {
  1395. MethodInfo mi("floor", PropertyInfo(Variant::FLOAT, "s"));
  1396. mi.return_val.type = Variant::FLOAT;
  1397. return mi;
  1398. } break;
  1399. case MATH_CEIL: {
  1400. MethodInfo mi("ceil", PropertyInfo(Variant::FLOAT, "s"));
  1401. mi.return_val.type = Variant::FLOAT;
  1402. return mi;
  1403. } break;
  1404. case MATH_ROUND: {
  1405. MethodInfo mi("round", PropertyInfo(Variant::FLOAT, "s"));
  1406. mi.return_val.type = Variant::FLOAT;
  1407. return mi;
  1408. } break;
  1409. case MATH_ABS: {
  1410. MethodInfo mi("abs", PropertyInfo(Variant::FLOAT, "s"));
  1411. mi.return_val.type = Variant::FLOAT;
  1412. return mi;
  1413. } break;
  1414. case MATH_SIGN: {
  1415. MethodInfo mi("sign", PropertyInfo(Variant::FLOAT, "s"));
  1416. mi.return_val.type = Variant::FLOAT;
  1417. return mi;
  1418. } break;
  1419. case MATH_POW: {
  1420. MethodInfo mi("pow", PropertyInfo(Variant::FLOAT, "base"), PropertyInfo(Variant::FLOAT, "exp"));
  1421. mi.return_val.type = Variant::FLOAT;
  1422. return mi;
  1423. } break;
  1424. case MATH_LOG: {
  1425. MethodInfo mi("log", PropertyInfo(Variant::FLOAT, "s"));
  1426. mi.return_val.type = Variant::FLOAT;
  1427. return mi;
  1428. } break;
  1429. case MATH_EXP: {
  1430. MethodInfo mi("exp", PropertyInfo(Variant::FLOAT, "s"));
  1431. mi.return_val.type = Variant::FLOAT;
  1432. return mi;
  1433. } break;
  1434. case MATH_ISNAN: {
  1435. MethodInfo mi("is_nan", PropertyInfo(Variant::FLOAT, "s"));
  1436. mi.return_val.type = Variant::BOOL;
  1437. return mi;
  1438. } break;
  1439. case MATH_ISINF: {
  1440. MethodInfo mi("is_inf", PropertyInfo(Variant::FLOAT, "s"));
  1441. mi.return_val.type = Variant::BOOL;
  1442. return mi;
  1443. } break;
  1444. case MATH_ISEQUALAPPROX: {
  1445. MethodInfo mi("is_equal_approx", PropertyInfo(Variant::FLOAT, "a"), PropertyInfo(Variant::FLOAT, "b"));
  1446. mi.return_val.type = Variant::BOOL;
  1447. return mi;
  1448. } break;
  1449. case MATH_ISZEROAPPROX: {
  1450. MethodInfo mi("is_zero_approx", PropertyInfo(Variant::FLOAT, "s"));
  1451. mi.return_val.type = Variant::BOOL;
  1452. return mi;
  1453. } break;
  1454. case MATH_EASE: {
  1455. MethodInfo mi("ease", PropertyInfo(Variant::FLOAT, "s"), PropertyInfo(Variant::FLOAT, "curve"));
  1456. mi.return_val.type = Variant::FLOAT;
  1457. return mi;
  1458. } break;
  1459. case MATH_STEP_DECIMALS: {
  1460. MethodInfo mi("step_decimals", PropertyInfo(Variant::FLOAT, "step"));
  1461. mi.return_val.type = Variant::INT;
  1462. return mi;
  1463. } break;
  1464. case MATH_STEPIFY: {
  1465. MethodInfo mi("stepify", PropertyInfo(Variant::FLOAT, "s"), PropertyInfo(Variant::FLOAT, "step"));
  1466. mi.return_val.type = Variant::FLOAT;
  1467. return mi;
  1468. } break;
  1469. case MATH_LERP: {
  1470. MethodInfo mi("lerp", PropertyInfo(Variant::NIL, "from"), PropertyInfo(Variant::NIL, "to"), PropertyInfo(Variant::FLOAT, "weight"));
  1471. mi.return_val.type = Variant::NIL;
  1472. mi.return_val.usage |= PROPERTY_USAGE_NIL_IS_VARIANT;
  1473. return mi;
  1474. } break;
  1475. case MATH_LERP_ANGLE: {
  1476. MethodInfo mi("lerp_angle", PropertyInfo(Variant::FLOAT, "from"), PropertyInfo(Variant::FLOAT, "to"), PropertyInfo(Variant::FLOAT, "weight"));
  1477. mi.return_val.type = Variant::FLOAT;
  1478. return mi;
  1479. } break;
  1480. case MATH_INVERSE_LERP: {
  1481. MethodInfo mi("inverse_lerp", PropertyInfo(Variant::FLOAT, "from"), PropertyInfo(Variant::FLOAT, "to"), PropertyInfo(Variant::FLOAT, "weight"));
  1482. mi.return_val.type = Variant::FLOAT;
  1483. return mi;
  1484. } break;
  1485. case MATH_RANGE_LERP: {
  1486. MethodInfo mi("range_lerp", PropertyInfo(Variant::FLOAT, "value"), PropertyInfo(Variant::FLOAT, "istart"), PropertyInfo(Variant::FLOAT, "istop"), PropertyInfo(Variant::FLOAT, "ostart"), PropertyInfo(Variant::FLOAT, "ostop"));
  1487. mi.return_val.type = Variant::FLOAT;
  1488. return mi;
  1489. } break;
  1490. case MATH_SMOOTHSTEP: {
  1491. MethodInfo mi("smoothstep", PropertyInfo(Variant::FLOAT, "from"), PropertyInfo(Variant::FLOAT, "to"), PropertyInfo(Variant::FLOAT, "weight"));
  1492. mi.return_val.type = Variant::FLOAT;
  1493. return mi;
  1494. } break;
  1495. case MATH_MOVE_TOWARD: {
  1496. MethodInfo mi("move_toward", PropertyInfo(Variant::FLOAT, "from"), PropertyInfo(Variant::FLOAT, "to"), PropertyInfo(Variant::FLOAT, "delta"));
  1497. mi.return_val.type = Variant::FLOAT;
  1498. return mi;
  1499. } break;
  1500. case MATH_DECTIME: {
  1501. MethodInfo mi("dectime", PropertyInfo(Variant::FLOAT, "value"), PropertyInfo(Variant::FLOAT, "amount"), PropertyInfo(Variant::FLOAT, "step"));
  1502. mi.return_val.type = Variant::FLOAT;
  1503. return mi;
  1504. } break;
  1505. case MATH_RANDOMIZE: {
  1506. MethodInfo mi("randomize");
  1507. mi.return_val.type = Variant::NIL;
  1508. return mi;
  1509. } break;
  1510. case MATH_RAND: {
  1511. MethodInfo mi("randi");
  1512. mi.return_val.type = Variant::INT;
  1513. return mi;
  1514. } break;
  1515. case MATH_RANDF: {
  1516. MethodInfo mi("randf");
  1517. mi.return_val.type = Variant::FLOAT;
  1518. return mi;
  1519. } break;
  1520. case MATH_RANDOM: {
  1521. MethodInfo mi("rand_range", PropertyInfo(Variant::FLOAT, "from"), PropertyInfo(Variant::FLOAT, "to"));
  1522. mi.return_val.type = Variant::FLOAT;
  1523. return mi;
  1524. } break;
  1525. case MATH_SEED: {
  1526. MethodInfo mi("seed", PropertyInfo(Variant::INT, "seed"));
  1527. mi.return_val.type = Variant::NIL;
  1528. return mi;
  1529. } break;
  1530. case MATH_RANDSEED: {
  1531. MethodInfo mi("rand_seed", PropertyInfo(Variant::INT, "seed"));
  1532. mi.return_val.type = Variant::ARRAY;
  1533. return mi;
  1534. } break;
  1535. case MATH_DEG2RAD: {
  1536. MethodInfo mi("deg2rad", PropertyInfo(Variant::FLOAT, "deg"));
  1537. mi.return_val.type = Variant::FLOAT;
  1538. return mi;
  1539. } break;
  1540. case MATH_RAD2DEG: {
  1541. MethodInfo mi("rad2deg", PropertyInfo(Variant::FLOAT, "rad"));
  1542. mi.return_val.type = Variant::FLOAT;
  1543. return mi;
  1544. } break;
  1545. case MATH_LINEAR2DB: {
  1546. MethodInfo mi("linear2db", PropertyInfo(Variant::FLOAT, "nrg"));
  1547. mi.return_val.type = Variant::FLOAT;
  1548. return mi;
  1549. } break;
  1550. case MATH_DB2LINEAR: {
  1551. MethodInfo mi("db2linear", PropertyInfo(Variant::FLOAT, "db"));
  1552. mi.return_val.type = Variant::FLOAT;
  1553. return mi;
  1554. } break;
  1555. case MATH_POLAR2CARTESIAN: {
  1556. MethodInfo mi("polar2cartesian", PropertyInfo(Variant::FLOAT, "r"), PropertyInfo(Variant::FLOAT, "th"));
  1557. mi.return_val.type = Variant::VECTOR2;
  1558. return mi;
  1559. } break;
  1560. case MATH_CARTESIAN2POLAR: {
  1561. MethodInfo mi("cartesian2polar", PropertyInfo(Variant::FLOAT, "x"), PropertyInfo(Variant::FLOAT, "y"));
  1562. mi.return_val.type = Variant::VECTOR2;
  1563. return mi;
  1564. } break;
  1565. case MATH_WRAP: {
  1566. MethodInfo mi("wrapi", PropertyInfo(Variant::INT, "value"), PropertyInfo(Variant::INT, "min"), PropertyInfo(Variant::INT, "max"));
  1567. mi.return_val.type = Variant::INT;
  1568. return mi;
  1569. } break;
  1570. case MATH_WRAPF: {
  1571. MethodInfo mi("wrapf", PropertyInfo(Variant::FLOAT, "value"), PropertyInfo(Variant::FLOAT, "min"), PropertyInfo(Variant::FLOAT, "max"));
  1572. mi.return_val.type = Variant::FLOAT;
  1573. return mi;
  1574. } break;
  1575. case LOGIC_MAX: {
  1576. MethodInfo mi("max", PropertyInfo(Variant::FLOAT, "a"), PropertyInfo(Variant::FLOAT, "b"));
  1577. mi.return_val.type = Variant::FLOAT;
  1578. return mi;
  1579. } break;
  1580. case LOGIC_MIN: {
  1581. MethodInfo mi("min", PropertyInfo(Variant::FLOAT, "a"), PropertyInfo(Variant::FLOAT, "b"));
  1582. mi.return_val.type = Variant::FLOAT;
  1583. return mi;
  1584. } break;
  1585. case LOGIC_CLAMP: {
  1586. MethodInfo mi("clamp", PropertyInfo(Variant::FLOAT, "value"), PropertyInfo(Variant::FLOAT, "min"), PropertyInfo(Variant::FLOAT, "max"));
  1587. mi.return_val.type = Variant::FLOAT;
  1588. return mi;
  1589. } break;
  1590. case LOGIC_NEAREST_PO2: {
  1591. MethodInfo mi("nearest_po2", PropertyInfo(Variant::INT, "value"));
  1592. mi.return_val.type = Variant::INT;
  1593. return mi;
  1594. } break;
  1595. case OBJ_WEAKREF: {
  1596. MethodInfo mi("weakref", PropertyInfo(Variant::OBJECT, "obj"));
  1597. mi.return_val.type = Variant::OBJECT;
  1598. mi.return_val.class_name = "WeakRef";
  1599. return mi;
  1600. } break;
  1601. case FUNC_FUNCREF: {
  1602. MethodInfo mi("funcref", PropertyInfo(Variant::OBJECT, "instance"), PropertyInfo(Variant::STRING, "funcname"));
  1603. mi.return_val.type = Variant::OBJECT;
  1604. mi.return_val.class_name = "FuncRef";
  1605. return mi;
  1606. } break;
  1607. case TYPE_CONVERT: {
  1608. MethodInfo mi("convert", PropertyInfo(Variant::NIL, "what", PROPERTY_HINT_NONE, "", PROPERTY_USAGE_DEFAULT | PROPERTY_USAGE_NIL_IS_VARIANT), PropertyInfo(Variant::INT, "type"));
  1609. mi.return_val.type = Variant::NIL;
  1610. mi.return_val.usage |= PROPERTY_USAGE_NIL_IS_VARIANT;
  1611. return mi;
  1612. } break;
  1613. case TYPE_OF: {
  1614. MethodInfo mi("typeof", PropertyInfo(Variant::NIL, "what", PROPERTY_HINT_NONE, "", PROPERTY_USAGE_DEFAULT | PROPERTY_USAGE_NIL_IS_VARIANT));
  1615. mi.return_val.type = Variant::INT;
  1616. return mi;
  1617. } break;
  1618. case TYPE_EXISTS: {
  1619. MethodInfo mi("type_exists", PropertyInfo(Variant::STRING, "type"));
  1620. mi.return_val.type = Variant::BOOL;
  1621. return mi;
  1622. } break;
  1623. case TEXT_CHAR: {
  1624. MethodInfo mi("char", PropertyInfo(Variant::INT, "code"));
  1625. mi.return_val.type = Variant::STRING;
  1626. return mi;
  1627. } break;
  1628. case TEXT_ORD: {
  1629. MethodInfo mi("ord", PropertyInfo(Variant::STRING, "char"));
  1630. mi.return_val.type = Variant::INT;
  1631. return mi;
  1632. } break;
  1633. case TEXT_STR: {
  1634. MethodInfo mi("str");
  1635. mi.return_val.type = Variant::STRING;
  1636. mi.flags |= METHOD_FLAG_VARARG;
  1637. return mi;
  1638. } break;
  1639. case TEXT_PRINT: {
  1640. MethodInfo mi("print");
  1641. mi.return_val.type = Variant::NIL;
  1642. mi.flags |= METHOD_FLAG_VARARG;
  1643. return mi;
  1644. } break;
  1645. case TEXT_PRINT_TABBED: {
  1646. MethodInfo mi("printt");
  1647. mi.return_val.type = Variant::NIL;
  1648. mi.flags |= METHOD_FLAG_VARARG;
  1649. return mi;
  1650. } break;
  1651. case TEXT_PRINT_SPACED: {
  1652. MethodInfo mi("prints");
  1653. mi.return_val.type = Variant::NIL;
  1654. mi.flags |= METHOD_FLAG_VARARG;
  1655. return mi;
  1656. } break;
  1657. case TEXT_PRINTERR: {
  1658. MethodInfo mi("printerr");
  1659. mi.return_val.type = Variant::NIL;
  1660. mi.flags |= METHOD_FLAG_VARARG;
  1661. return mi;
  1662. } break;
  1663. case TEXT_PRINTRAW: {
  1664. MethodInfo mi("printraw");
  1665. mi.return_val.type = Variant::NIL;
  1666. mi.flags |= METHOD_FLAG_VARARG;
  1667. return mi;
  1668. } break;
  1669. case TEXT_PRINT_DEBUG: {
  1670. MethodInfo mi("print_debug");
  1671. mi.return_val.type = Variant::NIL;
  1672. mi.flags |= METHOD_FLAG_VARARG;
  1673. return mi;
  1674. } break;
  1675. case PUSH_ERROR: {
  1676. MethodInfo mi(Variant::NIL, "push_error", PropertyInfo(Variant::STRING, "message"));
  1677. mi.return_val.type = Variant::NIL;
  1678. return mi;
  1679. } break;
  1680. case PUSH_WARNING: {
  1681. MethodInfo mi(Variant::NIL, "push_warning", PropertyInfo(Variant::STRING, "message"));
  1682. mi.return_val.type = Variant::NIL;
  1683. return mi;
  1684. } break;
  1685. case VAR_TO_STR: {
  1686. MethodInfo mi("var2str", PropertyInfo(Variant::NIL, "var", PROPERTY_HINT_NONE, "", PROPERTY_USAGE_DEFAULT | PROPERTY_USAGE_NIL_IS_VARIANT));
  1687. mi.return_val.type = Variant::STRING;
  1688. return mi;
  1689. } break;
  1690. case STR_TO_VAR: {
  1691. MethodInfo mi(Variant::NIL, "str2var", PropertyInfo(Variant::STRING, "string"));
  1692. mi.return_val.type = Variant::NIL;
  1693. mi.return_val.usage |= PROPERTY_USAGE_NIL_IS_VARIANT;
  1694. return mi;
  1695. } break;
  1696. case VAR_TO_BYTES: {
  1697. MethodInfo mi("var2bytes", PropertyInfo(Variant::NIL, "var", PROPERTY_HINT_NONE, "", PROPERTY_USAGE_DEFAULT | PROPERTY_USAGE_NIL_IS_VARIANT), PropertyInfo(Variant::BOOL, "full_objects"));
  1698. mi.default_arguments.push_back(false);
  1699. mi.return_val.type = Variant::PACKED_BYTE_ARRAY;
  1700. return mi;
  1701. } break;
  1702. case BYTES_TO_VAR: {
  1703. MethodInfo mi(Variant::NIL, "bytes2var", PropertyInfo(Variant::PACKED_BYTE_ARRAY, "bytes"), PropertyInfo(Variant::BOOL, "allow_objects"));
  1704. mi.default_arguments.push_back(false);
  1705. mi.return_val.type = Variant::NIL;
  1706. mi.return_val.usage |= PROPERTY_USAGE_NIL_IS_VARIANT;
  1707. return mi;
  1708. } break;
  1709. case GEN_RANGE: {
  1710. MethodInfo mi("range");
  1711. mi.return_val.type = Variant::ARRAY;
  1712. mi.flags |= METHOD_FLAG_VARARG;
  1713. return mi;
  1714. } break;
  1715. case RESOURCE_LOAD: {
  1716. MethodInfo mi("load", PropertyInfo(Variant::STRING, "path"));
  1717. mi.return_val.type = Variant::OBJECT;
  1718. mi.return_val.class_name = "Resource";
  1719. return mi;
  1720. } break;
  1721. case INST2DICT: {
  1722. MethodInfo mi("inst2dict", PropertyInfo(Variant::OBJECT, "inst"));
  1723. mi.return_val.type = Variant::DICTIONARY;
  1724. return mi;
  1725. } break;
  1726. case DICT2INST: {
  1727. MethodInfo mi("dict2inst", PropertyInfo(Variant::DICTIONARY, "dict"));
  1728. mi.return_val.type = Variant::OBJECT;
  1729. return mi;
  1730. } break;
  1731. case VALIDATE_JSON: {
  1732. MethodInfo mi("validate_json", PropertyInfo(Variant::STRING, "json"));
  1733. mi.return_val.type = Variant::STRING;
  1734. return mi;
  1735. } break;
  1736. case PARSE_JSON: {
  1737. MethodInfo mi(Variant::NIL, "parse_json", PropertyInfo(Variant::STRING, "json"));
  1738. mi.return_val.type = Variant::NIL;
  1739. mi.return_val.usage |= PROPERTY_USAGE_NIL_IS_VARIANT;
  1740. return mi;
  1741. } break;
  1742. case TO_JSON: {
  1743. MethodInfo mi("to_json", PropertyInfo(Variant::NIL, "var", PROPERTY_HINT_NONE, "", PROPERTY_USAGE_DEFAULT | PROPERTY_USAGE_NIL_IS_VARIANT));
  1744. mi.return_val.type = Variant::STRING;
  1745. return mi;
  1746. } break;
  1747. case HASH: {
  1748. MethodInfo mi("hash", PropertyInfo(Variant::NIL, "var", PROPERTY_HINT_NONE, "", PROPERTY_USAGE_DEFAULT | PROPERTY_USAGE_NIL_IS_VARIANT));
  1749. mi.return_val.type = Variant::INT;
  1750. return mi;
  1751. } break;
  1752. case COLOR8: {
  1753. MethodInfo mi("Color8", PropertyInfo(Variant::INT, "r8"), PropertyInfo(Variant::INT, "g8"), PropertyInfo(Variant::INT, "b8"), PropertyInfo(Variant::INT, "a8"));
  1754. mi.default_arguments.push_back(255);
  1755. mi.return_val.type = Variant::COLOR;
  1756. return mi;
  1757. } break;
  1758. case COLORN: {
  1759. MethodInfo mi("ColorN", PropertyInfo(Variant::STRING, "name"), PropertyInfo(Variant::FLOAT, "alpha"));
  1760. mi.default_arguments.push_back(1.0f);
  1761. mi.return_val.type = Variant::COLOR;
  1762. return mi;
  1763. } break;
  1764. case PRINT_STACK: {
  1765. MethodInfo mi("print_stack");
  1766. mi.return_val.type = Variant::NIL;
  1767. return mi;
  1768. } break;
  1769. case GET_STACK: {
  1770. MethodInfo mi("get_stack");
  1771. mi.return_val.type = Variant::ARRAY;
  1772. return mi;
  1773. } break;
  1774. case INSTANCE_FROM_ID: {
  1775. MethodInfo mi("instance_from_id", PropertyInfo(Variant::INT, "instance_id"));
  1776. mi.return_val.type = Variant::OBJECT;
  1777. return mi;
  1778. } break;
  1779. case LEN: {
  1780. MethodInfo mi("len", PropertyInfo(Variant::NIL, "var", PROPERTY_HINT_NONE, "", PROPERTY_USAGE_DEFAULT | PROPERTY_USAGE_NIL_IS_VARIANT));
  1781. mi.return_val.type = Variant::INT;
  1782. return mi;
  1783. } break;
  1784. case IS_INSTANCE_VALID: {
  1785. MethodInfo mi("is_instance_valid", PropertyInfo(Variant::OBJECT, "instance"));
  1786. mi.return_val.type = Variant::BOOL;
  1787. return mi;
  1788. } break;
  1789. default: {
  1790. ERR_FAIL_V(MethodInfo());
  1791. } break;
  1792. }
  1793. #endif
  1794. MethodInfo mi;
  1795. mi.return_val.usage |= PROPERTY_USAGE_NIL_IS_VARIANT;
  1796. return mi;
  1797. }