variant_call.cpp 112 KB

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  1. /*************************************************************************/
  2. /* variant_call.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 "variant.h"
  31. #include "core/color_names.inc"
  32. #include "core/core_string_names.h"
  33. #include "core/crypto/crypto_core.h"
  34. #include "core/debugger/engine_debugger.h"
  35. #include "core/io/compression.h"
  36. #include "core/object.h"
  37. #include "core/os/os.h"
  38. typedef void (*VariantFunc)(Variant &r_ret, Variant &p_self, const Variant **p_args);
  39. typedef void (*VariantConstructFunc)(Variant &r_ret, const Variant **p_args);
  40. struct _VariantCall {
  41. static void Vector3_dot(Variant &r_ret, Variant &p_self, const Variant **p_args) {
  42. r_ret = reinterpret_cast<Vector3 *>(p_self._data._mem)->dot(*reinterpret_cast<const Vector3 *>(p_args[0]->_data._mem));
  43. }
  44. struct FuncData {
  45. int arg_count;
  46. Vector<Variant> default_args;
  47. Vector<Variant::Type> arg_types;
  48. Vector<StringName> arg_names;
  49. Variant::Type return_type;
  50. bool _const;
  51. bool returns;
  52. VariantFunc func;
  53. _FORCE_INLINE_ bool verify_arguments(const Variant **p_args, Callable::CallError &r_error) {
  54. if (arg_count == 0) {
  55. return true;
  56. }
  57. const Variant::Type *tptr = &arg_types[0];
  58. for (int i = 0; i < arg_count; i++) {
  59. if (tptr[i] == Variant::NIL || tptr[i] == p_args[i]->type) {
  60. continue; // all good
  61. }
  62. if (!Variant::can_convert(p_args[i]->type, tptr[i])) {
  63. r_error.error = Callable::CallError::CALL_ERROR_INVALID_ARGUMENT;
  64. r_error.argument = i;
  65. r_error.expected = tptr[i];
  66. return false;
  67. }
  68. }
  69. return true;
  70. }
  71. _FORCE_INLINE_ void call(Variant &r_ret, Variant &p_self, const Variant **p_args, int p_argcount, Callable::CallError &r_error) {
  72. #ifdef DEBUG_ENABLED
  73. if (p_argcount > arg_count) {
  74. r_error.error = Callable::CallError::CALL_ERROR_TOO_MANY_ARGUMENTS;
  75. r_error.argument = arg_count;
  76. return;
  77. } else
  78. #endif
  79. if (p_argcount < arg_count) {
  80. int def_argcount = default_args.size();
  81. #ifdef DEBUG_ENABLED
  82. if (p_argcount < (arg_count - def_argcount)) {
  83. r_error.error = Callable::CallError::CALL_ERROR_TOO_FEW_ARGUMENTS;
  84. r_error.argument = arg_count - def_argcount;
  85. return;
  86. }
  87. #endif
  88. ERR_FAIL_COND(p_argcount > VARIANT_ARG_MAX);
  89. const Variant *newargs[VARIANT_ARG_MAX];
  90. for (int i = 0; i < p_argcount; i++) {
  91. newargs[i] = p_args[i];
  92. }
  93. // fill in any remaining parameters with defaults
  94. int first_default_arg = arg_count - def_argcount;
  95. for (int i = p_argcount; i < arg_count; i++) {
  96. newargs[i] = &default_args[i - first_default_arg];
  97. }
  98. #ifdef DEBUG_ENABLED
  99. if (!verify_arguments(newargs, r_error)) {
  100. return;
  101. }
  102. #endif
  103. func(r_ret, p_self, newargs);
  104. } else {
  105. #ifdef DEBUG_ENABLED
  106. if (!verify_arguments(p_args, r_error)) {
  107. return;
  108. }
  109. #endif
  110. func(r_ret, p_self, p_args);
  111. }
  112. }
  113. };
  114. struct TypeFunc {
  115. Map<StringName, FuncData> functions;
  116. };
  117. static TypeFunc *type_funcs;
  118. struct Arg {
  119. StringName name;
  120. Variant::Type type;
  121. Arg() { type = Variant::NIL; }
  122. Arg(Variant::Type p_type, const StringName &p_name) :
  123. name(p_name),
  124. type(p_type) {
  125. }
  126. };
  127. //void addfunc(Variant::Type p_type, const StringName& p_name,VariantFunc p_func);
  128. static void make_func_return_variant(Variant::Type p_type, const StringName &p_name) {
  129. #ifdef DEBUG_ENABLED
  130. type_funcs[p_type].functions[p_name].returns = true;
  131. #endif
  132. }
  133. static void addfunc(bool p_const, Variant::Type p_type, Variant::Type p_return, bool p_has_return, const StringName &p_name, VariantFunc p_func, const Vector<Variant> &p_defaultarg, const Arg &p_argtype1 = Arg(), const Arg &p_argtype2 = Arg(), const Arg &p_argtype3 = Arg(), const Arg &p_argtype4 = Arg(), const Arg &p_argtype5 = Arg()) {
  134. FuncData funcdata;
  135. funcdata.func = p_func;
  136. funcdata.default_args = p_defaultarg;
  137. funcdata._const = p_const;
  138. funcdata.returns = p_has_return;
  139. funcdata.return_type = p_return;
  140. if (p_argtype1.name) {
  141. funcdata.arg_types.push_back(p_argtype1.type);
  142. #ifdef DEBUG_ENABLED
  143. funcdata.arg_names.push_back(p_argtype1.name);
  144. #endif
  145. } else {
  146. goto end;
  147. }
  148. if (p_argtype2.name) {
  149. funcdata.arg_types.push_back(p_argtype2.type);
  150. #ifdef DEBUG_ENABLED
  151. funcdata.arg_names.push_back(p_argtype2.name);
  152. #endif
  153. } else {
  154. goto end;
  155. }
  156. if (p_argtype3.name) {
  157. funcdata.arg_types.push_back(p_argtype3.type);
  158. #ifdef DEBUG_ENABLED
  159. funcdata.arg_names.push_back(p_argtype3.name);
  160. #endif
  161. } else {
  162. goto end;
  163. }
  164. if (p_argtype4.name) {
  165. funcdata.arg_types.push_back(p_argtype4.type);
  166. #ifdef DEBUG_ENABLED
  167. funcdata.arg_names.push_back(p_argtype4.name);
  168. #endif
  169. } else {
  170. goto end;
  171. }
  172. if (p_argtype5.name) {
  173. funcdata.arg_types.push_back(p_argtype5.type);
  174. #ifdef DEBUG_ENABLED
  175. funcdata.arg_names.push_back(p_argtype5.name);
  176. #endif
  177. } else {
  178. goto end;
  179. }
  180. end:
  181. funcdata.arg_count = funcdata.arg_types.size();
  182. type_funcs[p_type].functions[p_name] = funcdata;
  183. }
  184. #define VCALL_LOCALMEM0(m_type, m_method) \
  185. static void _call_##m_type##_##m_method(Variant &r_ret, Variant &p_self, const Variant **p_args) { reinterpret_cast<m_type *>(p_self._data._mem)->m_method(); }
  186. #define VCALL_LOCALMEM0R(m_type, m_method) \
  187. static void _call_##m_type##_##m_method(Variant &r_ret, Variant &p_self, const Variant **p_args) { r_ret = reinterpret_cast<m_type *>(p_self._data._mem)->m_method(); }
  188. #define VCALL_LOCALMEM1(m_type, m_method) \
  189. static void _call_##m_type##_##m_method(Variant &r_ret, Variant &p_self, const Variant **p_args) { reinterpret_cast<m_type *>(p_self._data._mem)->m_method(*p_args[0]); }
  190. #define VCALL_LOCALMEM1R(m_type, m_method) \
  191. static void _call_##m_type##_##m_method(Variant &r_ret, Variant &p_self, const Variant **p_args) { r_ret = reinterpret_cast<m_type *>(p_self._data._mem)->m_method(*p_args[0]); }
  192. #define VCALL_LOCALMEM2(m_type, m_method) \
  193. static void _call_##m_type##_##m_method(Variant &r_ret, Variant &p_self, const Variant **p_args) { reinterpret_cast<m_type *>(p_self._data._mem)->m_method(*p_args[0], *p_args[1]); }
  194. #define VCALL_LOCALMEM2R(m_type, m_method) \
  195. static void _call_##m_type##_##m_method(Variant &r_ret, Variant &p_self, const Variant **p_args) { r_ret = reinterpret_cast<m_type *>(p_self._data._mem)->m_method(*p_args[0], *p_args[1]); }
  196. #define VCALL_LOCALMEM3(m_type, m_method) \
  197. static void _call_##m_type##_##m_method(Variant &r_ret, Variant &p_self, const Variant **p_args) { reinterpret_cast<m_type *>(p_self._data._mem)->m_method(*p_args[0], *p_args[1], *p_args[2]); }
  198. #define VCALL_LOCALMEM3R(m_type, m_method) \
  199. static void _call_##m_type##_##m_method(Variant &r_ret, Variant &p_self, const Variant **p_args) { r_ret = reinterpret_cast<m_type *>(p_self._data._mem)->m_method(*p_args[0], *p_args[1], *p_args[2]); }
  200. #define VCALL_LOCALMEM4(m_type, m_method) \
  201. static void _call_##m_type##_##m_method(Variant &r_ret, Variant &p_self, const Variant **p_args) { reinterpret_cast<m_type *>(p_self._data._mem)->m_method(*p_args[0], *p_args[1], *p_args[2], *p_args[3]); }
  202. #define VCALL_LOCALMEM4R(m_type, m_method) \
  203. static void _call_##m_type##_##m_method(Variant &r_ret, Variant &p_self, const Variant **p_args) { r_ret = reinterpret_cast<m_type *>(p_self._data._mem)->m_method(*p_args[0], *p_args[1], *p_args[2], *p_args[3]); }
  204. #define VCALL_LOCALMEM5(m_type, m_method) \
  205. static void _call_##m_type##_##m_method(Variant &r_ret, Variant &p_self, const Variant **p_args) { reinterpret_cast<m_type *>(p_self._data._mem)->m_method(*p_args[0], *p_args[1], *p_args[2], *p_args[3], *p_args[4]); }
  206. #define VCALL_LOCALMEM5R(m_type, m_method) \
  207. static void _call_##m_type##_##m_method(Variant &r_ret, Variant &p_self, const Variant **p_args) { r_ret = reinterpret_cast<m_type *>(p_self._data._mem)->m_method(*p_args[0], *p_args[1], *p_args[2], *p_args[3], *p_args[4]); }
  208. // built-in functions of localmem based types
  209. VCALL_LOCALMEM1R(String, casecmp_to);
  210. VCALL_LOCALMEM1R(String, nocasecmp_to);
  211. VCALL_LOCALMEM0R(String, length);
  212. VCALL_LOCALMEM3R(String, count);
  213. VCALL_LOCALMEM3R(String, countn);
  214. VCALL_LOCALMEM2R(String, substr);
  215. VCALL_LOCALMEM2R(String, find);
  216. VCALL_LOCALMEM2R(String, findn);
  217. VCALL_LOCALMEM2R(String, rfind);
  218. VCALL_LOCALMEM2R(String, rfindn);
  219. VCALL_LOCALMEM1R(String, match);
  220. VCALL_LOCALMEM1R(String, matchn);
  221. VCALL_LOCALMEM1R(String, begins_with);
  222. VCALL_LOCALMEM1R(String, ends_with);
  223. VCALL_LOCALMEM1R(String, is_subsequence_of);
  224. VCALL_LOCALMEM1R(String, is_subsequence_ofi);
  225. VCALL_LOCALMEM0R(String, bigrams);
  226. VCALL_LOCALMEM1R(String, similarity);
  227. VCALL_LOCALMEM2R(String, format);
  228. VCALL_LOCALMEM2R(String, replace);
  229. VCALL_LOCALMEM2R(String, replacen);
  230. VCALL_LOCALMEM1R(String, repeat);
  231. VCALL_LOCALMEM2R(String, insert);
  232. VCALL_LOCALMEM0R(String, capitalize);
  233. VCALL_LOCALMEM3R(String, split);
  234. VCALL_LOCALMEM3R(String, rsplit);
  235. VCALL_LOCALMEM2R(String, split_floats);
  236. VCALL_LOCALMEM1R(String, join);
  237. VCALL_LOCALMEM0R(String, to_upper);
  238. VCALL_LOCALMEM0R(String, to_lower);
  239. VCALL_LOCALMEM1R(String, left);
  240. VCALL_LOCALMEM1R(String, right);
  241. VCALL_LOCALMEM0R(String, dedent);
  242. VCALL_LOCALMEM2R(String, strip_edges);
  243. VCALL_LOCALMEM0R(String, strip_escapes);
  244. VCALL_LOCALMEM1R(String, lstrip);
  245. VCALL_LOCALMEM1R(String, rstrip);
  246. VCALL_LOCALMEM0R(String, get_extension);
  247. VCALL_LOCALMEM0R(String, get_basename);
  248. VCALL_LOCALMEM1R(String, plus_file);
  249. VCALL_LOCALMEM1R(String, ord_at);
  250. VCALL_LOCALMEM2(String, erase);
  251. VCALL_LOCALMEM0R(String, hash);
  252. VCALL_LOCALMEM0R(String, md5_text);
  253. VCALL_LOCALMEM0R(String, sha1_text);
  254. VCALL_LOCALMEM0R(String, sha256_text);
  255. VCALL_LOCALMEM0R(String, md5_buffer);
  256. VCALL_LOCALMEM0R(String, sha1_buffer);
  257. VCALL_LOCALMEM0R(String, sha256_buffer);
  258. VCALL_LOCALMEM0R(String, empty);
  259. VCALL_LOCALMEM1R(String, humanize_size);
  260. VCALL_LOCALMEM0R(String, is_abs_path);
  261. VCALL_LOCALMEM0R(String, is_rel_path);
  262. VCALL_LOCALMEM0R(String, get_base_dir);
  263. VCALL_LOCALMEM0R(String, get_file);
  264. VCALL_LOCALMEM0R(String, xml_escape);
  265. VCALL_LOCALMEM0R(String, xml_unescape);
  266. VCALL_LOCALMEM0R(String, http_escape);
  267. VCALL_LOCALMEM0R(String, http_unescape);
  268. VCALL_LOCALMEM0R(String, c_escape);
  269. VCALL_LOCALMEM0R(String, c_unescape);
  270. VCALL_LOCALMEM0R(String, json_escape);
  271. VCALL_LOCALMEM0R(String, percent_encode);
  272. VCALL_LOCALMEM0R(String, percent_decode);
  273. VCALL_LOCALMEM0R(String, is_valid_identifier);
  274. VCALL_LOCALMEM0R(String, is_valid_integer);
  275. VCALL_LOCALMEM0R(String, is_valid_float);
  276. VCALL_LOCALMEM1R(String, is_valid_hex_number);
  277. VCALL_LOCALMEM0R(String, is_valid_html_color);
  278. VCALL_LOCALMEM0R(String, is_valid_ip_address);
  279. VCALL_LOCALMEM0R(String, is_valid_filename);
  280. VCALL_LOCALMEM0R(String, to_int);
  281. VCALL_LOCALMEM0R(String, to_float);
  282. VCALL_LOCALMEM0R(String, hex_to_int);
  283. VCALL_LOCALMEM1R(String, pad_decimals);
  284. VCALL_LOCALMEM1R(String, pad_zeros);
  285. VCALL_LOCALMEM1R(String, trim_prefix);
  286. VCALL_LOCALMEM1R(String, trim_suffix);
  287. static void _call_String_to_ascii(Variant &r_ret, Variant &p_self, const Variant **p_args) {
  288. String *s = reinterpret_cast<String *>(p_self._data._mem);
  289. if (s->empty()) {
  290. r_ret = PackedByteArray();
  291. return;
  292. }
  293. CharString charstr = s->ascii();
  294. PackedByteArray retval;
  295. size_t len = charstr.length();
  296. retval.resize(len);
  297. uint8_t *w = retval.ptrw();
  298. copymem(w, charstr.ptr(), len);
  299. r_ret = retval;
  300. }
  301. static void _call_String_to_utf8(Variant &r_ret, Variant &p_self, const Variant **p_args) {
  302. String *s = reinterpret_cast<String *>(p_self._data._mem);
  303. if (s->empty()) {
  304. r_ret = PackedByteArray();
  305. return;
  306. }
  307. CharString charstr = s->utf8();
  308. PackedByteArray retval;
  309. size_t len = charstr.length();
  310. retval.resize(len);
  311. uint8_t *w = retval.ptrw();
  312. copymem(w, charstr.ptr(), len);
  313. r_ret = retval;
  314. }
  315. VCALL_LOCALMEM1R(Vector2, distance_to);
  316. VCALL_LOCALMEM1R(Vector2, distance_squared_to);
  317. VCALL_LOCALMEM0R(Vector2, length);
  318. VCALL_LOCALMEM0R(Vector2, length_squared);
  319. VCALL_LOCALMEM0R(Vector2, normalized);
  320. VCALL_LOCALMEM0R(Vector2, is_normalized);
  321. VCALL_LOCALMEM1R(Vector2, is_equal_approx);
  322. VCALL_LOCALMEM1R(Vector2, posmod);
  323. VCALL_LOCALMEM1R(Vector2, posmodv);
  324. VCALL_LOCALMEM1R(Vector2, project);
  325. VCALL_LOCALMEM1R(Vector2, angle_to);
  326. VCALL_LOCALMEM1R(Vector2, angle_to_point);
  327. VCALL_LOCALMEM1R(Vector2, direction_to);
  328. VCALL_LOCALMEM2R(Vector2, lerp);
  329. VCALL_LOCALMEM2R(Vector2, slerp);
  330. VCALL_LOCALMEM4R(Vector2, cubic_interpolate);
  331. VCALL_LOCALMEM2R(Vector2, move_toward);
  332. VCALL_LOCALMEM1R(Vector2, rotated);
  333. VCALL_LOCALMEM0R(Vector2, tangent);
  334. VCALL_LOCALMEM0R(Vector2, floor);
  335. VCALL_LOCALMEM0R(Vector2, ceil);
  336. VCALL_LOCALMEM0R(Vector2, round);
  337. VCALL_LOCALMEM1R(Vector2, snapped);
  338. VCALL_LOCALMEM0R(Vector2, aspect);
  339. VCALL_LOCALMEM1R(Vector2, dot);
  340. VCALL_LOCALMEM1R(Vector2, slide);
  341. VCALL_LOCALMEM1R(Vector2, bounce);
  342. VCALL_LOCALMEM1R(Vector2, reflect);
  343. VCALL_LOCALMEM0R(Vector2, angle);
  344. VCALL_LOCALMEM1R(Vector2, cross);
  345. VCALL_LOCALMEM0R(Vector2, abs);
  346. VCALL_LOCALMEM1R(Vector2, clamped);
  347. VCALL_LOCALMEM0R(Vector2, sign);
  348. VCALL_LOCALMEM0R(Vector2i, aspect);
  349. VCALL_LOCALMEM0R(Vector2i, sign);
  350. VCALL_LOCALMEM0R(Vector2i, abs);
  351. VCALL_LOCALMEM0R(Rect2, get_area);
  352. VCALL_LOCALMEM0R(Rect2, has_no_area);
  353. VCALL_LOCALMEM1R(Rect2, has_point);
  354. VCALL_LOCALMEM1R(Rect2, is_equal_approx);
  355. VCALL_LOCALMEM2R(Rect2, intersects);
  356. VCALL_LOCALMEM1R(Rect2, encloses);
  357. VCALL_LOCALMEM1R(Rect2, clip);
  358. VCALL_LOCALMEM1R(Rect2, merge);
  359. VCALL_LOCALMEM1R(Rect2, expand);
  360. VCALL_LOCALMEM1R(Rect2, grow);
  361. VCALL_LOCALMEM2R(Rect2, grow_margin);
  362. VCALL_LOCALMEM4R(Rect2, grow_individual);
  363. VCALL_LOCALMEM0R(Rect2, abs);
  364. VCALL_LOCALMEM0R(Rect2i, get_area);
  365. VCALL_LOCALMEM0R(Rect2i, has_no_area);
  366. VCALL_LOCALMEM1R(Rect2i, has_point);
  367. VCALL_LOCALMEM1R(Rect2i, intersects);
  368. VCALL_LOCALMEM1R(Rect2i, encloses);
  369. VCALL_LOCALMEM1R(Rect2i, clip);
  370. VCALL_LOCALMEM1R(Rect2i, merge);
  371. VCALL_LOCALMEM1R(Rect2i, expand);
  372. VCALL_LOCALMEM1R(Rect2i, grow);
  373. VCALL_LOCALMEM2R(Rect2i, grow_margin);
  374. VCALL_LOCALMEM4R(Rect2i, grow_individual);
  375. VCALL_LOCALMEM0R(Rect2i, abs);
  376. VCALL_LOCALMEM0R(Vector3, min_axis);
  377. VCALL_LOCALMEM0R(Vector3, max_axis);
  378. VCALL_LOCALMEM1R(Vector3, distance_to);
  379. VCALL_LOCALMEM1R(Vector3, distance_squared_to);
  380. VCALL_LOCALMEM0R(Vector3, length);
  381. VCALL_LOCALMEM0R(Vector3, length_squared);
  382. VCALL_LOCALMEM0R(Vector3, normalized);
  383. VCALL_LOCALMEM0R(Vector3, is_normalized);
  384. VCALL_LOCALMEM1R(Vector3, is_equal_approx);
  385. VCALL_LOCALMEM0R(Vector3, inverse);
  386. VCALL_LOCALMEM1R(Vector3, snapped);
  387. VCALL_LOCALMEM2R(Vector3, rotated);
  388. VCALL_LOCALMEM2R(Vector3, lerp);
  389. VCALL_LOCALMEM2R(Vector3, slerp);
  390. VCALL_LOCALMEM4R(Vector3, cubic_interpolate);
  391. VCALL_LOCALMEM2R(Vector3, move_toward);
  392. VCALL_LOCALMEM1R(Vector3, dot);
  393. VCALL_LOCALMEM1R(Vector3, cross);
  394. VCALL_LOCALMEM1R(Vector3, outer);
  395. VCALL_LOCALMEM0R(Vector3, to_diagonal_matrix);
  396. VCALL_LOCALMEM0R(Vector3, abs);
  397. VCALL_LOCALMEM0R(Vector3, floor);
  398. VCALL_LOCALMEM0R(Vector3, ceil);
  399. VCALL_LOCALMEM0R(Vector3, round);
  400. VCALL_LOCALMEM1R(Vector3, posmod);
  401. VCALL_LOCALMEM1R(Vector3, posmodv);
  402. VCALL_LOCALMEM1R(Vector3, project);
  403. VCALL_LOCALMEM1R(Vector3, angle_to);
  404. VCALL_LOCALMEM1R(Vector3, direction_to);
  405. VCALL_LOCALMEM1R(Vector3, slide);
  406. VCALL_LOCALMEM1R(Vector3, bounce);
  407. VCALL_LOCALMEM1R(Vector3, reflect);
  408. VCALL_LOCALMEM0R(Vector3, sign);
  409. VCALL_LOCALMEM0R(Vector3i, min_axis);
  410. VCALL_LOCALMEM0R(Vector3i, max_axis);
  411. VCALL_LOCALMEM0R(Vector3i, sign);
  412. VCALL_LOCALMEM0R(Plane, normalized);
  413. VCALL_LOCALMEM0R(Plane, center);
  414. VCALL_LOCALMEM0R(Plane, get_any_point);
  415. VCALL_LOCALMEM1R(Plane, is_equal_approx);
  416. VCALL_LOCALMEM1R(Plane, is_point_over);
  417. VCALL_LOCALMEM1R(Plane, distance_to);
  418. VCALL_LOCALMEM2R(Plane, has_point);
  419. VCALL_LOCALMEM1R(Plane, project);
  420. //return vector3 if intersected, nil if not
  421. static void _call_Plane_intersect_3(Variant &r_ret, Variant &p_self, const Variant **p_args) {
  422. Vector3 result;
  423. if (reinterpret_cast<Plane *>(p_self._data._mem)->intersect_3(*p_args[0], *p_args[1], &result)) {
  424. r_ret = result;
  425. } else {
  426. r_ret = Variant();
  427. }
  428. }
  429. static void _call_Plane_intersects_ray(Variant &r_ret, Variant &p_self, const Variant **p_args) {
  430. Vector3 result;
  431. if (reinterpret_cast<Plane *>(p_self._data._mem)->intersects_ray(*p_args[0], *p_args[1], &result)) {
  432. r_ret = result;
  433. } else {
  434. r_ret = Variant();
  435. }
  436. }
  437. static void _call_Plane_intersects_segment(Variant &r_ret, Variant &p_self, const Variant **p_args) {
  438. Vector3 result;
  439. if (reinterpret_cast<Plane *>(p_self._data._mem)->intersects_segment(*p_args[0], *p_args[1], &result)) {
  440. r_ret = result;
  441. } else {
  442. r_ret = Variant();
  443. }
  444. }
  445. VCALL_LOCALMEM0R(Quat, length);
  446. VCALL_LOCALMEM0R(Quat, length_squared);
  447. VCALL_LOCALMEM0R(Quat, normalized);
  448. VCALL_LOCALMEM0R(Quat, is_normalized);
  449. VCALL_LOCALMEM1R(Quat, is_equal_approx);
  450. VCALL_LOCALMEM0R(Quat, inverse);
  451. VCALL_LOCALMEM1R(Quat, dot);
  452. VCALL_LOCALMEM1R(Quat, xform);
  453. VCALL_LOCALMEM2R(Quat, slerp);
  454. VCALL_LOCALMEM2R(Quat, slerpni);
  455. VCALL_LOCALMEM4R(Quat, cubic_slerp);
  456. VCALL_LOCALMEM0R(Quat, get_euler);
  457. VCALL_LOCALMEM1(Quat, set_euler);
  458. VCALL_LOCALMEM2(Quat, set_axis_angle);
  459. VCALL_LOCALMEM0R(Color, to_argb32);
  460. VCALL_LOCALMEM0R(Color, to_abgr32);
  461. VCALL_LOCALMEM0R(Color, to_rgba32);
  462. VCALL_LOCALMEM0R(Color, to_argb64);
  463. VCALL_LOCALMEM0R(Color, to_abgr64);
  464. VCALL_LOCALMEM0R(Color, to_rgba64);
  465. VCALL_LOCALMEM0R(Color, inverted);
  466. VCALL_LOCALMEM0R(Color, contrasted);
  467. VCALL_LOCALMEM2R(Color, lerp);
  468. VCALL_LOCALMEM1R(Color, blend);
  469. VCALL_LOCALMEM1R(Color, lightened);
  470. VCALL_LOCALMEM1R(Color, darkened);
  471. VCALL_LOCALMEM1R(Color, to_html);
  472. VCALL_LOCALMEM4R(Color, from_hsv);
  473. VCALL_LOCALMEM1R(Color, is_equal_approx);
  474. VCALL_LOCALMEM0R(RID, get_id);
  475. VCALL_LOCALMEM0R(NodePath, is_absolute);
  476. VCALL_LOCALMEM0R(NodePath, get_name_count);
  477. VCALL_LOCALMEM1R(NodePath, get_name);
  478. VCALL_LOCALMEM0R(NodePath, get_subname_count);
  479. VCALL_LOCALMEM1R(NodePath, get_subname);
  480. VCALL_LOCALMEM0R(NodePath, get_concatenated_subnames);
  481. VCALL_LOCALMEM0R(NodePath, get_as_property_path);
  482. VCALL_LOCALMEM0R(NodePath, is_empty);
  483. VCALL_LOCALMEM0R(Dictionary, size);
  484. VCALL_LOCALMEM0R(Dictionary, empty);
  485. VCALL_LOCALMEM0(Dictionary, clear);
  486. VCALL_LOCALMEM1R(Dictionary, has);
  487. VCALL_LOCALMEM1R(Dictionary, has_all);
  488. VCALL_LOCALMEM1R(Dictionary, erase);
  489. VCALL_LOCALMEM0R(Dictionary, hash);
  490. VCALL_LOCALMEM0R(Dictionary, keys);
  491. VCALL_LOCALMEM0R(Dictionary, values);
  492. VCALL_LOCALMEM1R(Dictionary, duplicate);
  493. VCALL_LOCALMEM2R(Dictionary, get);
  494. VCALL_LOCALMEM0R(Callable, is_null);
  495. VCALL_LOCALMEM0R(Callable, is_custom);
  496. VCALL_LOCALMEM0(Callable, is_standard);
  497. VCALL_LOCALMEM0(Callable, get_object);
  498. VCALL_LOCALMEM0(Callable, get_object_id);
  499. VCALL_LOCALMEM0(Callable, get_method);
  500. VCALL_LOCALMEM0(Callable, hash);
  501. VCALL_LOCALMEM0R(Signal, is_null);
  502. VCALL_LOCALMEM0R(Signal, get_object);
  503. VCALL_LOCALMEM0R(Signal, get_object_id);
  504. VCALL_LOCALMEM0R(Signal, get_name);
  505. VCALL_LOCALMEM3R(Signal, connect);
  506. VCALL_LOCALMEM1(Signal, disconnect);
  507. VCALL_LOCALMEM1R(Signal, is_connected);
  508. VCALL_LOCALMEM0R(Signal, get_connections);
  509. VCALL_LOCALMEM2(Array, set);
  510. VCALL_LOCALMEM1R(Array, get);
  511. VCALL_LOCALMEM0R(Array, size);
  512. VCALL_LOCALMEM0R(Array, empty);
  513. VCALL_LOCALMEM0(Array, clear);
  514. VCALL_LOCALMEM0R(Array, hash);
  515. VCALL_LOCALMEM1(Array, push_back);
  516. VCALL_LOCALMEM1(Array, push_front);
  517. VCALL_LOCALMEM0R(Array, pop_back);
  518. VCALL_LOCALMEM0R(Array, pop_front);
  519. VCALL_LOCALMEM1(Array, append);
  520. VCALL_LOCALMEM1(Array, resize);
  521. VCALL_LOCALMEM2(Array, insert);
  522. VCALL_LOCALMEM1(Array, remove);
  523. VCALL_LOCALMEM0R(Array, front);
  524. VCALL_LOCALMEM0R(Array, back);
  525. VCALL_LOCALMEM2R(Array, find);
  526. VCALL_LOCALMEM2R(Array, rfind);
  527. VCALL_LOCALMEM1R(Array, find_last);
  528. VCALL_LOCALMEM1R(Array, count);
  529. VCALL_LOCALMEM1R(Array, has);
  530. VCALL_LOCALMEM1(Array, erase);
  531. VCALL_LOCALMEM0(Array, sort);
  532. VCALL_LOCALMEM2(Array, sort_custom);
  533. VCALL_LOCALMEM0(Array, shuffle);
  534. VCALL_LOCALMEM2R(Array, bsearch);
  535. VCALL_LOCALMEM4R(Array, bsearch_custom);
  536. VCALL_LOCALMEM1R(Array, duplicate);
  537. VCALL_LOCALMEM4R(Array, slice);
  538. VCALL_LOCALMEM0(Array, invert);
  539. VCALL_LOCALMEM0R(Array, max);
  540. VCALL_LOCALMEM0R(Array, min);
  541. static void _call_PackedByteArray_get_string_from_ascii(Variant &r_ret, Variant &p_self, const Variant **p_args) {
  542. PackedByteArray *ba = reinterpret_cast<PackedByteArray *>(p_self._data._mem);
  543. String s;
  544. if (ba->size() > 0) {
  545. const uint8_t *r = ba->ptr();
  546. CharString cs;
  547. cs.resize(ba->size() + 1);
  548. copymem(cs.ptrw(), r, ba->size());
  549. cs[ba->size()] = 0;
  550. s = cs.get_data();
  551. }
  552. r_ret = s;
  553. }
  554. static void _call_PackedByteArray_get_string_from_utf8(Variant &r_ret, Variant &p_self, const Variant **p_args) {
  555. PackedByteArray *ba = reinterpret_cast<PackedByteArray *>(p_self._data._mem);
  556. String s;
  557. if (ba->size() > 0) {
  558. const uint8_t *r = ba->ptr();
  559. s.parse_utf8((const char *)r, ba->size());
  560. }
  561. r_ret = s;
  562. }
  563. static void _call_PackedByteArray_compress(Variant &r_ret, Variant &p_self, const Variant **p_args) {
  564. PackedByteArray *ba = reinterpret_cast<PackedByteArray *>(p_self._data._mem);
  565. PackedByteArray compressed;
  566. if (ba->size() > 0) {
  567. Compression::Mode mode = (Compression::Mode)(int)(*p_args[0]);
  568. compressed.resize(Compression::get_max_compressed_buffer_size(ba->size(), mode));
  569. int result = Compression::compress(compressed.ptrw(), ba->ptr(), ba->size(), mode);
  570. result = result >= 0 ? result : 0;
  571. compressed.resize(result);
  572. }
  573. r_ret = compressed;
  574. }
  575. static void _call_PackedByteArray_decompress(Variant &r_ret, Variant &p_self, const Variant **p_args) {
  576. PackedByteArray *ba = reinterpret_cast<PackedByteArray *>(p_self._data._mem);
  577. PackedByteArray decompressed;
  578. Compression::Mode mode = (Compression::Mode)(int)(*p_args[1]);
  579. int buffer_size = (int)(*p_args[0]);
  580. if (buffer_size <= 0) {
  581. r_ret = decompressed;
  582. ERR_FAIL_MSG("Decompression buffer size must be greater than zero.");
  583. }
  584. decompressed.resize(buffer_size);
  585. int result = Compression::decompress(decompressed.ptrw(), buffer_size, ba->ptr(), ba->size(), mode);
  586. result = result >= 0 ? result : 0;
  587. decompressed.resize(result);
  588. r_ret = decompressed;
  589. }
  590. static void _call_PackedByteArray_hex_encode(Variant &r_ret, Variant &p_self, const Variant **p_args) {
  591. PackedByteArray *ba = reinterpret_cast<PackedByteArray *>(p_self._data._mem);
  592. if (ba->size() == 0) {
  593. r_ret = String();
  594. return;
  595. }
  596. const uint8_t *r = ba->ptr();
  597. String s = String::hex_encode_buffer(&r[0], ba->size());
  598. r_ret = s;
  599. }
  600. #define VCALL_PARRMEM0(m_type, m_elemtype, m_method) \
  601. static void _call_##m_type##_##m_method(Variant &r_ret, Variant &p_self, const Variant **p_args) { Variant::PackedArrayRef<m_elemtype>::get_array_ptr(p_self._data.packed_array)->m_method(); }
  602. #define VCALL_PARRMEM0R(m_type, m_elemtype, m_method) \
  603. static void _call_##m_type##_##m_method(Variant &r_ret, Variant &p_self, const Variant **p_args) { r_ret = Variant::PackedArrayRef<m_elemtype>::get_array_ptr(p_self._data.packed_array)->m_method(); }
  604. #define VCALL_PARRMEM1(m_type, m_elemtype, m_method) \
  605. static void _call_##m_type##_##m_method(Variant &r_ret, Variant &p_self, const Variant **p_args) { Variant::PackedArrayRef<m_elemtype>::get_array_ptr(p_self._data.packed_array)->m_method(*p_args[0]); }
  606. #define VCALL_PARRMEM1R(m_type, m_elemtype, m_method) \
  607. static void _call_##m_type##_##m_method(Variant &r_ret, Variant &p_self, const Variant **p_args) { r_ret = Variant::PackedArrayRef<m_elemtype>::get_array_ptr(p_self._data.packed_array)->m_method(*p_args[0]); }
  608. #define VCALL_PARRMEM2(m_type, m_elemtype, m_method) \
  609. static void _call_##m_type##_##m_method(Variant &r_ret, Variant &p_self, const Variant **p_args) { Variant::PackedArrayRef<m_elemtype>::get_array_ptr(p_self._data.packed_array)->m_method(*p_args[0], *p_args[1]); }
  610. #define VCALL_PARRMEM2R(m_type, m_elemtype, m_method) \
  611. static void _call_##m_type##_##m_method(Variant &r_ret, Variant &p_self, const Variant **p_args) { r_ret = Variant::PackedArrayRef<m_elemtype>::get_array_ptr(p_self._data.packed_array)->m_method(*p_args[0], *p_args[1]); }
  612. #define VCALL_PARRMEM3(m_type, m_elemtype, m_method) \
  613. static void _call_##m_type##_##m_method(Variant &r_ret, Variant &p_self, const Variant **p_args) { Variant::PackedArrayRef<m_elemtype>::get_array_ptr(p_self._data.packed_array)->m_method(*p_args[0], *p_args[1], *p_args[2]); }
  614. #define VCALL_PARRMEM3R(m_type, m_elemtype, m_method) \
  615. static void _call_##m_type##_##m_method(Variant &r_ret, Variant &p_self, const Variant **p_args) { r_ret = Variant::PackedArrayRef<m_elemtype>::get_array_ptr(p_self._data.packed_array)->m_method(*p_args[0], *p_args[1], *p_args[2]); }
  616. #define VCALL_PARRMEM4(m_type, m_elemtype, m_method) \
  617. static void _call_##m_type##_##m_method(Variant &r_ret, Variant &p_self, const Variant **p_args) { Variant::PackedArrayRef<m_elemtype>::get_array_ptr(p_self._data.packed_array)->m_method(*p_args[0], *p_args[1], *p_args[2], *p_args[3]); }
  618. #define VCALL_PARRMEM4R(m_type, m_elemtype, m_method) \
  619. static void _call_##m_type##_##m_method(Variant &r_ret, Variant &p_self, const Variant **p_args) { r_ret = Variant::PackedArrayRef<m_elemtype>::get_array_ptr(p_self._data.packed_array)->m_method(*p_args[0], *p_args[1], *p_args[2], *p_args[3]); }
  620. #define VCALL_PARRMEM5(m_type, m_elemtype, m_method) \
  621. static void _call_##m_type##_##m_method(Variant &r_ret, Variant &p_self, const Variant **p_args) { Variant::PackedArrayRef<m_elemtype>::get_array_ptr(p_self._data.packed_array)->m_method(*p_args[0], *p_args[1], *p_args[2], *p_args[3], *p_args[4]); }
  622. #define VCALL_PARRMEM5R(m_type, m_elemtype, m_method) \
  623. static void _call_##m_type##_##m_method(Variant &r_ret, Variant &p_self, const Variant **p_args) { r_ret = Variant::PackedArrayRef<m_elemtype>::get_array_ptr(p_self._data.packed_array)->m_method(*p_args[0], *p_args[1], *p_args[2], *p_args[3], *p_args[4]); }
  624. VCALL_PARRMEM0R(PackedByteArray, uint8_t, size);
  625. VCALL_PARRMEM0R(PackedByteArray, uint8_t, empty);
  626. VCALL_PARRMEM2(PackedByteArray, uint8_t, set);
  627. VCALL_PARRMEM1R(PackedByteArray, uint8_t, get);
  628. VCALL_PARRMEM1(PackedByteArray, uint8_t, push_back);
  629. VCALL_PARRMEM1(PackedByteArray, uint8_t, resize);
  630. VCALL_PARRMEM2R(PackedByteArray, uint8_t, insert);
  631. VCALL_PARRMEM1(PackedByteArray, uint8_t, remove);
  632. VCALL_PARRMEM1(PackedByteArray, uint8_t, append);
  633. VCALL_PARRMEM1(PackedByteArray, uint8_t, append_array);
  634. VCALL_PARRMEM1R(PackedByteArray, uint8_t, has);
  635. VCALL_PARRMEM0(PackedByteArray, uint8_t, sort);
  636. VCALL_PARRMEM0(PackedByteArray, uint8_t, invert);
  637. VCALL_PARRMEM2R(PackedByteArray, uint8_t, subarray);
  638. VCALL_PARRMEM0R(PackedInt32Array, int32_t, size);
  639. VCALL_PARRMEM0R(PackedInt32Array, int32_t, empty);
  640. VCALL_PARRMEM2(PackedInt32Array, int32_t, set);
  641. VCALL_PARRMEM1R(PackedInt32Array, int32_t, get);
  642. VCALL_PARRMEM1(PackedInt32Array, int32_t, push_back);
  643. VCALL_PARRMEM1(PackedInt32Array, int32_t, resize);
  644. VCALL_PARRMEM2R(PackedInt32Array, int32_t, insert);
  645. VCALL_PARRMEM1(PackedInt32Array, int32_t, remove);
  646. VCALL_PARRMEM1(PackedInt32Array, int32_t, append);
  647. VCALL_PARRMEM1(PackedInt32Array, int32_t, append_array);
  648. VCALL_PARRMEM1R(PackedInt32Array, int32_t, has);
  649. VCALL_PARRMEM0(PackedInt32Array, int32_t, sort);
  650. VCALL_PARRMEM0(PackedInt32Array, int32_t, invert);
  651. VCALL_PARRMEM0R(PackedInt64Array, int64_t, size);
  652. VCALL_PARRMEM0R(PackedInt64Array, int64_t, empty);
  653. VCALL_PARRMEM2(PackedInt64Array, int64_t, set);
  654. VCALL_PARRMEM1R(PackedInt64Array, int64_t, get);
  655. VCALL_PARRMEM1(PackedInt64Array, int64_t, push_back);
  656. VCALL_PARRMEM1(PackedInt64Array, int64_t, resize);
  657. VCALL_PARRMEM2R(PackedInt64Array, int64_t, insert);
  658. VCALL_PARRMEM1(PackedInt64Array, int64_t, remove);
  659. VCALL_PARRMEM1(PackedInt64Array, int64_t, append);
  660. VCALL_PARRMEM1(PackedInt64Array, int64_t, append_array);
  661. VCALL_PARRMEM1R(PackedInt64Array, int64_t, has);
  662. VCALL_PARRMEM0(PackedInt64Array, int64_t, sort);
  663. VCALL_PARRMEM0(PackedInt64Array, int64_t, invert);
  664. VCALL_PARRMEM0R(PackedFloat32Array, float, size);
  665. VCALL_PARRMEM0R(PackedFloat32Array, float, empty);
  666. VCALL_PARRMEM2(PackedFloat32Array, float, set);
  667. VCALL_PARRMEM1R(PackedFloat32Array, float, get);
  668. VCALL_PARRMEM1(PackedFloat32Array, float, push_back);
  669. VCALL_PARRMEM1(PackedFloat32Array, float, resize);
  670. VCALL_PARRMEM2R(PackedFloat32Array, float, insert);
  671. VCALL_PARRMEM1(PackedFloat32Array, float, remove);
  672. VCALL_PARRMEM1(PackedFloat32Array, float, append);
  673. VCALL_PARRMEM1(PackedFloat32Array, float, append_array);
  674. VCALL_PARRMEM1R(PackedFloat32Array, float, has);
  675. VCALL_PARRMEM0(PackedFloat32Array, float, sort);
  676. VCALL_PARRMEM0(PackedFloat32Array, float, invert);
  677. VCALL_PARRMEM0R(PackedFloat64Array, double, size);
  678. VCALL_PARRMEM0R(PackedFloat64Array, double, empty);
  679. VCALL_PARRMEM2(PackedFloat64Array, double, set);
  680. VCALL_PARRMEM1R(PackedFloat64Array, double, get);
  681. VCALL_PARRMEM1(PackedFloat64Array, double, push_back);
  682. VCALL_PARRMEM1(PackedFloat64Array, double, resize);
  683. VCALL_PARRMEM2R(PackedFloat64Array, double, insert);
  684. VCALL_PARRMEM1(PackedFloat64Array, double, remove);
  685. VCALL_PARRMEM1(PackedFloat64Array, double, append);
  686. VCALL_PARRMEM1(PackedFloat64Array, double, append_array);
  687. VCALL_PARRMEM1R(PackedFloat64Array, double, has);
  688. VCALL_PARRMEM0(PackedFloat64Array, double, sort);
  689. VCALL_PARRMEM0(PackedFloat64Array, double, invert);
  690. VCALL_PARRMEM0R(PackedStringArray, String, size);
  691. VCALL_PARRMEM0R(PackedStringArray, String, empty);
  692. VCALL_PARRMEM2(PackedStringArray, String, set);
  693. VCALL_PARRMEM1R(PackedStringArray, String, get);
  694. VCALL_PARRMEM1(PackedStringArray, String, push_back);
  695. VCALL_PARRMEM1(PackedStringArray, String, resize);
  696. VCALL_PARRMEM2R(PackedStringArray, String, insert);
  697. VCALL_PARRMEM1(PackedStringArray, String, remove);
  698. VCALL_PARRMEM1(PackedStringArray, String, append);
  699. VCALL_PARRMEM1(PackedStringArray, String, append_array);
  700. VCALL_PARRMEM1R(PackedStringArray, String, has);
  701. VCALL_PARRMEM0(PackedStringArray, String, sort);
  702. VCALL_PARRMEM0(PackedStringArray, String, invert);
  703. VCALL_PARRMEM0R(PackedVector2Array, Vector2, size);
  704. VCALL_PARRMEM0R(PackedVector2Array, Vector2, empty);
  705. VCALL_PARRMEM2(PackedVector2Array, Vector2, set);
  706. VCALL_PARRMEM1R(PackedVector2Array, Vector2, get);
  707. VCALL_PARRMEM1(PackedVector2Array, Vector2, push_back);
  708. VCALL_PARRMEM1(PackedVector2Array, Vector2, resize);
  709. VCALL_PARRMEM2R(PackedVector2Array, Vector2, insert);
  710. VCALL_PARRMEM1(PackedVector2Array, Vector2, remove);
  711. VCALL_PARRMEM1(PackedVector2Array, Vector2, append);
  712. VCALL_PARRMEM1(PackedVector2Array, Vector2, append_array);
  713. VCALL_PARRMEM1R(PackedVector2Array, Vector2, has);
  714. VCALL_PARRMEM0(PackedVector2Array, Vector2, sort);
  715. VCALL_PARRMEM0(PackedVector2Array, Vector2, invert);
  716. VCALL_PARRMEM0R(PackedVector3Array, Vector3, size);
  717. VCALL_PARRMEM0R(PackedVector3Array, Vector3, empty);
  718. VCALL_PARRMEM2(PackedVector3Array, Vector3, set);
  719. VCALL_PARRMEM1R(PackedVector3Array, Vector3, get);
  720. VCALL_PARRMEM1(PackedVector3Array, Vector3, push_back);
  721. VCALL_PARRMEM1(PackedVector3Array, Vector3, resize);
  722. VCALL_PARRMEM2R(PackedVector3Array, Vector3, insert);
  723. VCALL_PARRMEM1(PackedVector3Array, Vector3, remove);
  724. VCALL_PARRMEM1(PackedVector3Array, Vector3, append);
  725. VCALL_PARRMEM1(PackedVector3Array, Vector3, append_array);
  726. VCALL_PARRMEM1R(PackedVector3Array, Vector3, has);
  727. VCALL_PARRMEM0(PackedVector3Array, Vector3, sort);
  728. VCALL_PARRMEM0(PackedVector3Array, Vector3, invert);
  729. VCALL_PARRMEM0R(PackedColorArray, Color, size);
  730. VCALL_PARRMEM0R(PackedColorArray, Color, empty);
  731. VCALL_PARRMEM2(PackedColorArray, Color, set);
  732. VCALL_PARRMEM1R(PackedColorArray, Color, get);
  733. VCALL_PARRMEM1(PackedColorArray, Color, push_back);
  734. VCALL_PARRMEM1(PackedColorArray, Color, resize);
  735. VCALL_PARRMEM2R(PackedColorArray, Color, insert);
  736. VCALL_PARRMEM1(PackedColorArray, Color, remove);
  737. VCALL_PARRMEM1(PackedColorArray, Color, append);
  738. VCALL_PARRMEM1(PackedColorArray, Color, append_array);
  739. VCALL_PARRMEM1R(PackedColorArray, Color, has);
  740. VCALL_PARRMEM0(PackedColorArray, Color, sort);
  741. VCALL_PARRMEM0(PackedColorArray, Color, invert);
  742. #define VCALL_PTR0(m_type, m_method) \
  743. static void _call_##m_type##_##m_method(Variant &r_ret, Variant &p_self, const Variant **p_args) { reinterpret_cast<m_type *>(p_self._data._ptr)->m_method(); }
  744. #define VCALL_PTR0R(m_type, m_method) \
  745. static void _call_##m_type##_##m_method(Variant &r_ret, Variant &p_self, const Variant **p_args) { r_ret = reinterpret_cast<m_type *>(p_self._data._ptr)->m_method(); }
  746. #define VCALL_PTR1(m_type, m_method) \
  747. static void _call_##m_type##_##m_method(Variant &r_ret, Variant &p_self, const Variant **p_args) { reinterpret_cast<m_type *>(p_self._data._ptr)->m_method(*p_args[0]); }
  748. #define VCALL_PTR1R(m_type, m_method) \
  749. static void _call_##m_type##_##m_method(Variant &r_ret, Variant &p_self, const Variant **p_args) { r_ret = reinterpret_cast<m_type *>(p_self._data._ptr)->m_method(*p_args[0]); }
  750. #define VCALL_PTR2(m_type, m_method) \
  751. static void _call_##m_type##_##m_method(Variant &r_ret, Variant &p_self, const Variant **p_args) { reinterpret_cast<m_type *>(p_self._data._ptr)->m_method(*p_args[0], *p_args[1]); }
  752. #define VCALL_PTR2R(m_type, m_method) \
  753. static void _call_##m_type##_##m_method(Variant &r_ret, Variant &p_self, const Variant **p_args) { r_ret = reinterpret_cast<m_type *>(p_self._data._ptr)->m_method(*p_args[0], *p_args[1]); }
  754. #define VCALL_PTR3(m_type, m_method) \
  755. static void _call_##m_type##_##m_method(Variant &r_ret, Variant &p_self, const Variant **p_args) { reinterpret_cast<m_type *>(p_self._data._ptr)->m_method(*p_args[0], *p_args[1], *p_args[2]); }
  756. #define VCALL_PTR3R(m_type, m_method) \
  757. static void _call_##m_type##_##m_method(Variant &r_ret, Variant &p_self, const Variant **p_args) { r_ret = reinterpret_cast<m_type *>(p_self._data._ptr)->m_method(*p_args[0], *p_args[1], *p_args[2]); }
  758. #define VCALL_PTR4(m_type, m_method) \
  759. static void _call_##m_type##_##m_method(Variant &r_ret, Variant &p_self, const Variant **p_args) { reinterpret_cast<m_type *>(p_self._data._ptr)->m_method(*p_args[0], *p_args[1], *p_args[2], *p_args[3]); }
  760. #define VCALL_PTR4R(m_type, m_method) \
  761. static void _call_##m_type##_##m_method(Variant &r_ret, Variant &p_self, const Variant **p_args) { r_ret = reinterpret_cast<m_type *>(p_self._data._ptr)->m_method(*p_args[0], *p_args[1], *p_args[2], *p_args[3]); }
  762. #define VCALL_PTR5(m_type, m_method) \
  763. static void _call_##m_type##_##m_method(Variant &r_ret, Variant &p_self, const Variant **p_args) { reinterpret_cast<m_type *>(p_self._data._ptr)->m_method(*p_args[0], *p_args[1], *p_args[2], *p_args[3], *p_args[4]); }
  764. #define VCALL_PTR5R(m_type, m_method) \
  765. static void _call_##m_type##_##m_method(Variant &r_ret, Variant &p_self, const Variant **p_args) { r_ret = reinterpret_cast<m_type *>(p_self._data._ptr)->m_method(*p_args[0], *p_args[1], *p_args[2], *p_args[3], *p_args[4]); }
  766. VCALL_PTR0R(AABB, get_area);
  767. VCALL_PTR0R(AABB, has_no_area);
  768. VCALL_PTR0R(AABB, has_no_surface);
  769. VCALL_PTR1R(AABB, has_point);
  770. VCALL_PTR1R(AABB, is_equal_approx);
  771. VCALL_PTR1R(AABB, intersects);
  772. VCALL_PTR1R(AABB, encloses);
  773. VCALL_PTR1R(AABB, intersects_plane);
  774. VCALL_PTR2R(AABB, intersects_segment);
  775. VCALL_PTR1R(AABB, intersection);
  776. VCALL_PTR1R(AABB, merge);
  777. VCALL_PTR1R(AABB, expand);
  778. VCALL_PTR1R(AABB, grow);
  779. VCALL_PTR1R(AABB, get_support);
  780. VCALL_PTR0R(AABB, get_longest_axis);
  781. VCALL_PTR0R(AABB, get_longest_axis_index);
  782. VCALL_PTR0R(AABB, get_longest_axis_size);
  783. VCALL_PTR0R(AABB, get_shortest_axis);
  784. VCALL_PTR0R(AABB, get_shortest_axis_index);
  785. VCALL_PTR0R(AABB, get_shortest_axis_size);
  786. VCALL_PTR1R(AABB, get_endpoint);
  787. VCALL_PTR0R(Transform2D, inverse);
  788. VCALL_PTR0R(Transform2D, affine_inverse);
  789. VCALL_PTR0R(Transform2D, get_rotation);
  790. VCALL_PTR0R(Transform2D, get_origin);
  791. VCALL_PTR0R(Transform2D, get_scale);
  792. VCALL_PTR0R(Transform2D, orthonormalized);
  793. VCALL_PTR1R(Transform2D, rotated);
  794. VCALL_PTR1R(Transform2D, scaled);
  795. VCALL_PTR1R(Transform2D, translated);
  796. VCALL_PTR2R(Transform2D, interpolate_with);
  797. VCALL_PTR1R(Transform2D, is_equal_approx);
  798. static void _call_Transform2D_xform(Variant &r_ret, Variant &p_self, const Variant **p_args) {
  799. switch (p_args[0]->type) {
  800. case Variant::VECTOR2:
  801. r_ret = reinterpret_cast<Transform2D *>(p_self._data._ptr)->xform(p_args[0]->operator Vector2());
  802. return;
  803. case Variant::RECT2:
  804. r_ret = reinterpret_cast<Transform2D *>(p_self._data._ptr)->xform(p_args[0]->operator Rect2());
  805. return;
  806. case Variant::PACKED_VECTOR2_ARRAY:
  807. r_ret = reinterpret_cast<Transform2D *>(p_self._data._ptr)->xform(p_args[0]->operator PackedVector2Array());
  808. return;
  809. default:
  810. r_ret = Variant();
  811. ERR_PRINT("Invalid type in function 'xform' in base 'Transform2D'. Valid types are Vector2, Rect2, and PackedVector2Array.");
  812. }
  813. }
  814. static void _call_Transform2D_xform_inv(Variant &r_ret, Variant &p_self, const Variant **p_args) {
  815. switch (p_args[0]->type) {
  816. case Variant::VECTOR2:
  817. r_ret = reinterpret_cast<Transform2D *>(p_self._data._ptr)->xform_inv(p_args[0]->operator Vector2());
  818. return;
  819. case Variant::RECT2:
  820. r_ret = reinterpret_cast<Transform2D *>(p_self._data._ptr)->xform_inv(p_args[0]->operator Rect2());
  821. return;
  822. case Variant::PACKED_VECTOR2_ARRAY:
  823. r_ret = reinterpret_cast<Transform2D *>(p_self._data._ptr)->xform_inv(p_args[0]->operator PackedVector2Array());
  824. return;
  825. default:
  826. r_ret = Variant();
  827. ERR_PRINT("Invalid type in function 'xform_inv' in base 'Transform2D'. Valid types are Vector2, Rect2, and PackedVector2Array.");
  828. }
  829. }
  830. static void _call_Transform2D_basis_xform(Variant &r_ret, Variant &p_self, const Variant **p_args) {
  831. switch (p_args[0]->type) {
  832. case Variant::VECTOR2:
  833. r_ret = reinterpret_cast<Transform2D *>(p_self._data._ptr)->basis_xform(p_args[0]->operator Vector2());
  834. return;
  835. default:
  836. r_ret = Variant();
  837. ERR_PRINT("Invalid type in function 'basis_xform' in base 'Transform2D'. Only Vector2 is valid.");
  838. }
  839. }
  840. static void _call_Transform2D_basis_xform_inv(Variant &r_ret, Variant &p_self, const Variant **p_args) {
  841. switch (p_args[0]->type) {
  842. case Variant::VECTOR2:
  843. r_ret = reinterpret_cast<Transform2D *>(p_self._data._ptr)->basis_xform_inv(p_args[0]->operator Vector2());
  844. return;
  845. default:
  846. r_ret = Variant();
  847. ERR_PRINT("Invalid type in function 'basis_xform_inv' in base 'Transform2D'. Only Vector2 is valid.");
  848. }
  849. }
  850. VCALL_PTR0R(Basis, inverse);
  851. VCALL_PTR0R(Basis, transposed);
  852. VCALL_PTR0R(Basis, determinant);
  853. VCALL_PTR2R(Basis, rotated);
  854. VCALL_PTR1R(Basis, scaled);
  855. VCALL_PTR0R(Basis, get_scale);
  856. VCALL_PTR0R(Basis, get_euler);
  857. VCALL_PTR0R(Basis, get_euler_xyz);
  858. VCALL_PTR1(Basis, set_euler_xyz);
  859. VCALL_PTR0R(Basis, get_euler_xzy);
  860. VCALL_PTR1(Basis, set_euler_xzy);
  861. VCALL_PTR0R(Basis, get_euler_yzx);
  862. VCALL_PTR1(Basis, set_euler_yzx);
  863. VCALL_PTR0R(Basis, get_euler_yxz);
  864. VCALL_PTR1(Basis, set_euler_yxz);
  865. VCALL_PTR0R(Basis, get_euler_zxy);
  866. VCALL_PTR1(Basis, set_euler_zxy);
  867. VCALL_PTR0R(Basis, get_euler_zyx);
  868. VCALL_PTR1(Basis, set_euler_zyx);
  869. VCALL_PTR1R(Basis, tdotx);
  870. VCALL_PTR1R(Basis, tdoty);
  871. VCALL_PTR1R(Basis, tdotz);
  872. VCALL_PTR1R(Basis, xform);
  873. VCALL_PTR1R(Basis, xform_inv);
  874. VCALL_PTR0R(Basis, get_orthogonal_index);
  875. VCALL_PTR0R(Basis, orthonormalized);
  876. VCALL_PTR2R(Basis, slerp);
  877. VCALL_PTR2R(Basis, is_equal_approx); // TODO: Break compatibility in 4.0 to change this to an instance method (a.is_equal_approx(b) as VCALL_PTR1R) for consistency.
  878. VCALL_PTR0R(Basis, get_rotation_quat);
  879. VCALL_PTR0R(Transform, inverse);
  880. VCALL_PTR0R(Transform, affine_inverse);
  881. VCALL_PTR2R(Transform, rotated);
  882. VCALL_PTR1R(Transform, scaled);
  883. VCALL_PTR1R(Transform, translated);
  884. VCALL_PTR0R(Transform, orthonormalized);
  885. VCALL_PTR2R(Transform, looking_at);
  886. VCALL_PTR2R(Transform, interpolate_with);
  887. VCALL_PTR1R(Transform, is_equal_approx);
  888. static void _call_Transform_xform(Variant &r_ret, Variant &p_self, const Variant **p_args) {
  889. switch (p_args[0]->type) {
  890. case Variant::VECTOR3:
  891. r_ret = reinterpret_cast<Transform *>(p_self._data._ptr)->xform(p_args[0]->operator Vector3());
  892. return;
  893. case Variant::PLANE:
  894. r_ret = reinterpret_cast<Transform *>(p_self._data._ptr)->xform(p_args[0]->operator Plane());
  895. return;
  896. case Variant::AABB:
  897. r_ret = reinterpret_cast<Transform *>(p_self._data._ptr)->xform(p_args[0]->operator ::AABB());
  898. return;
  899. case Variant::PACKED_VECTOR3_ARRAY:
  900. r_ret = reinterpret_cast<Transform *>(p_self._data._ptr)->xform(p_args[0]->operator ::PackedVector3Array());
  901. return;
  902. default:
  903. r_ret = Variant();
  904. ERR_PRINT("Invalid type in function 'xform' in base 'Transform'. Valid types are Vector3, Plane, AABB, and PackedVector3Array.");
  905. }
  906. }
  907. static void _call_Transform_xform_inv(Variant &r_ret, Variant &p_self, const Variant **p_args) {
  908. switch (p_args[0]->type) {
  909. case Variant::VECTOR3:
  910. r_ret = reinterpret_cast<Transform *>(p_self._data._ptr)->xform_inv(p_args[0]->operator Vector3());
  911. return;
  912. case Variant::PLANE:
  913. r_ret = reinterpret_cast<Transform *>(p_self._data._ptr)->xform_inv(p_args[0]->operator Plane());
  914. return;
  915. case Variant::AABB:
  916. r_ret = reinterpret_cast<Transform *>(p_self._data._ptr)->xform_inv(p_args[0]->operator ::AABB());
  917. return;
  918. case Variant::PACKED_VECTOR3_ARRAY:
  919. r_ret = reinterpret_cast<Transform *>(p_self._data._ptr)->xform_inv(p_args[0]->operator ::PackedVector3Array());
  920. return;
  921. default:
  922. r_ret = Variant();
  923. ERR_PRINT("Invalid type in function 'xform_inv' in base 'Transform'. Valid types are Vector3, Plane, AABB, and PackedVector3Array.");
  924. }
  925. }
  926. struct ConstructData {
  927. int arg_count;
  928. Vector<Variant::Type> arg_types;
  929. Vector<String> arg_names;
  930. VariantConstructFunc func;
  931. };
  932. struct ConstructFunc {
  933. List<ConstructData> constructors;
  934. };
  935. static ConstructFunc *construct_funcs;
  936. static void Vector2_init1(Variant &r_ret, const Variant **p_args) {
  937. r_ret = Vector2(*p_args[0], *p_args[1]);
  938. }
  939. static void Vector2i_init1(Variant &r_ret, const Variant **p_args) {
  940. r_ret = Vector2i(*p_args[0], *p_args[1]);
  941. }
  942. static void Rect2_init1(Variant &r_ret, const Variant **p_args) {
  943. r_ret = Rect2(*p_args[0], *p_args[1]);
  944. }
  945. static void Rect2_init2(Variant &r_ret, const Variant **p_args) {
  946. r_ret = Rect2(*p_args[0], *p_args[1], *p_args[2], *p_args[3]);
  947. }
  948. static void Rect2i_init1(Variant &r_ret, const Variant **p_args) {
  949. r_ret = Rect2i(*p_args[0], *p_args[1]);
  950. }
  951. static void Rect2i_init2(Variant &r_ret, const Variant **p_args) {
  952. r_ret = Rect2i(*p_args[0], *p_args[1], *p_args[2], *p_args[3]);
  953. }
  954. static void Transform2D_init2(Variant &r_ret, const Variant **p_args) {
  955. Transform2D m(*p_args[0], *p_args[1]);
  956. r_ret = m;
  957. }
  958. static void Transform2D_init3(Variant &r_ret, const Variant **p_args) {
  959. Transform2D m;
  960. m[0] = *p_args[0];
  961. m[1] = *p_args[1];
  962. m[2] = *p_args[2];
  963. r_ret = m;
  964. }
  965. static void Vector3_init1(Variant &r_ret, const Variant **p_args) {
  966. r_ret = Vector3(*p_args[0], *p_args[1], *p_args[2]);
  967. }
  968. static void Vector3i_init1(Variant &r_ret, const Variant **p_args) {
  969. r_ret = Vector3i(*p_args[0], *p_args[1], *p_args[2]);
  970. }
  971. static void Plane_init1(Variant &r_ret, const Variant **p_args) {
  972. r_ret = Plane(*p_args[0], *p_args[1], *p_args[2], *p_args[3]);
  973. }
  974. static void Plane_init2(Variant &r_ret, const Variant **p_args) {
  975. r_ret = Plane(*p_args[0], *p_args[1], *p_args[2]);
  976. }
  977. static void Plane_init3(Variant &r_ret, const Variant **p_args) {
  978. r_ret = Plane(p_args[0]->operator Vector3(), p_args[1]->operator real_t());
  979. }
  980. static void Plane_init4(Variant &r_ret, const Variant **p_args) {
  981. r_ret = Plane(p_args[0]->operator Vector3(), p_args[1]->operator Vector3());
  982. }
  983. static void Quat_init1(Variant &r_ret, const Variant **p_args) {
  984. r_ret = Quat(*p_args[0], *p_args[1], *p_args[2], *p_args[3]);
  985. }
  986. static void Quat_init2(Variant &r_ret, const Variant **p_args) {
  987. r_ret = Quat(((Vector3)(*p_args[0])), ((real_t)(*p_args[1])));
  988. }
  989. static void Quat_init3(Variant &r_ret, const Variant **p_args) {
  990. r_ret = Quat(((Vector3)(*p_args[0])));
  991. }
  992. static void Color_init1(Variant &r_ret, const Variant **p_args) {
  993. r_ret = Color(*p_args[0], *p_args[1], *p_args[2], *p_args[3]);
  994. }
  995. static void Color_init2(Variant &r_ret, const Variant **p_args) {
  996. r_ret = Color(*p_args[0], *p_args[1], *p_args[2]);
  997. }
  998. static void Color_init3(Variant &r_ret, const Variant **p_args) {
  999. r_ret = Color::html(*p_args[0]);
  1000. }
  1001. static void Color_init4(Variant &r_ret, const Variant **p_args) {
  1002. r_ret = Color::hex(*p_args[0]);
  1003. }
  1004. static void Color_init5(Variant &r_ret, const Variant **p_args) {
  1005. r_ret = Color(((Color)(*p_args[0])), *p_args[1]);
  1006. }
  1007. static void AABB_init1(Variant &r_ret, const Variant **p_args) {
  1008. r_ret = ::AABB(*p_args[0], *p_args[1]);
  1009. }
  1010. static void Basis_init1(Variant &r_ret, const Variant **p_args) {
  1011. Basis m;
  1012. m.set_axis(0, *p_args[0]);
  1013. m.set_axis(1, *p_args[1]);
  1014. m.set_axis(2, *p_args[2]);
  1015. r_ret = m;
  1016. }
  1017. static void Basis_init2(Variant &r_ret, const Variant **p_args) {
  1018. r_ret = Basis(p_args[0]->operator Vector3(), p_args[1]->operator real_t());
  1019. }
  1020. static void Transform_init1(Variant &r_ret, const Variant **p_args) {
  1021. Transform t;
  1022. t.basis.set_axis(0, *p_args[0]);
  1023. t.basis.set_axis(1, *p_args[1]);
  1024. t.basis.set_axis(2, *p_args[2]);
  1025. t.origin = *p_args[3];
  1026. r_ret = t;
  1027. }
  1028. static void Transform_init2(Variant &r_ret, const Variant **p_args) {
  1029. r_ret = Transform(p_args[0]->operator Basis(), p_args[1]->operator Vector3());
  1030. }
  1031. static void Callable_init2(Variant &r_ret, const Variant **p_args) {
  1032. r_ret = Callable(p_args[0]->operator ObjectID(), p_args[1]->operator String());
  1033. }
  1034. static void Signal_init2(Variant &r_ret, const Variant **p_args) {
  1035. r_ret = Signal(p_args[0]->operator ObjectID(), p_args[1]->operator String());
  1036. }
  1037. static void add_constructor(VariantConstructFunc p_func, const Variant::Type p_type,
  1038. const String &p_name1 = "", const Variant::Type p_type1 = Variant::NIL,
  1039. const String &p_name2 = "", const Variant::Type p_type2 = Variant::NIL,
  1040. const String &p_name3 = "", const Variant::Type p_type3 = Variant::NIL,
  1041. const String &p_name4 = "", const Variant::Type p_type4 = Variant::NIL) {
  1042. ConstructData cd;
  1043. cd.func = p_func;
  1044. cd.arg_count = 0;
  1045. if (p_name1 == "") {
  1046. goto end;
  1047. }
  1048. cd.arg_count++;
  1049. cd.arg_names.push_back(p_name1);
  1050. cd.arg_types.push_back(p_type1);
  1051. if (p_name2 == "") {
  1052. goto end;
  1053. }
  1054. cd.arg_count++;
  1055. cd.arg_names.push_back(p_name2);
  1056. cd.arg_types.push_back(p_type2);
  1057. if (p_name3 == "") {
  1058. goto end;
  1059. }
  1060. cd.arg_count++;
  1061. cd.arg_names.push_back(p_name3);
  1062. cd.arg_types.push_back(p_type3);
  1063. if (p_name4 == "") {
  1064. goto end;
  1065. }
  1066. cd.arg_count++;
  1067. cd.arg_names.push_back(p_name4);
  1068. cd.arg_types.push_back(p_type4);
  1069. end:
  1070. construct_funcs[p_type].constructors.push_back(cd);
  1071. }
  1072. struct ConstantData {
  1073. Map<StringName, int> value;
  1074. #ifdef DEBUG_ENABLED
  1075. List<StringName> value_ordered;
  1076. #endif
  1077. Map<StringName, Variant> variant_value;
  1078. #ifdef DEBUG_ENABLED
  1079. List<StringName> variant_value_ordered;
  1080. #endif
  1081. };
  1082. static ConstantData *constant_data;
  1083. static void add_constant(int p_type, StringName p_constant_name, int p_constant_value) {
  1084. constant_data[p_type].value[p_constant_name] = p_constant_value;
  1085. #ifdef DEBUG_ENABLED
  1086. constant_data[p_type].value_ordered.push_back(p_constant_name);
  1087. #endif
  1088. }
  1089. static void add_variant_constant(int p_type, StringName p_constant_name, const Variant &p_constant_value) {
  1090. constant_data[p_type].variant_value[p_constant_name] = p_constant_value;
  1091. #ifdef DEBUG_ENABLED
  1092. constant_data[p_type].variant_value_ordered.push_back(p_constant_name);
  1093. #endif
  1094. }
  1095. };
  1096. _VariantCall::TypeFunc *_VariantCall::type_funcs = nullptr;
  1097. _VariantCall::ConstructFunc *_VariantCall::construct_funcs = nullptr;
  1098. _VariantCall::ConstantData *_VariantCall::constant_data = nullptr;
  1099. Variant Variant::call(const StringName &p_method, const Variant **p_args, int p_argcount, Callable::CallError &r_error) {
  1100. Variant ret;
  1101. call_ptr(p_method, p_args, p_argcount, &ret, r_error);
  1102. return ret;
  1103. }
  1104. void Variant::call_ptr(const StringName &p_method, const Variant **p_args, int p_argcount, Variant *r_ret, Callable::CallError &r_error) {
  1105. Variant ret;
  1106. if (type == Variant::OBJECT) {
  1107. //call object
  1108. Object *obj = _get_obj().obj;
  1109. if (!obj) {
  1110. r_error.error = Callable::CallError::CALL_ERROR_INSTANCE_IS_NULL;
  1111. return;
  1112. }
  1113. #ifdef DEBUG_ENABLED
  1114. if (EngineDebugger::is_active() && !_get_obj().id.is_reference() && ObjectDB::get_instance(_get_obj().id) == nullptr) {
  1115. r_error.error = Callable::CallError::CALL_ERROR_INSTANCE_IS_NULL;
  1116. return;
  1117. }
  1118. #endif
  1119. ret = _get_obj().obj->call(p_method, p_args, p_argcount, r_error);
  1120. //else if (type==Variant::METHOD) {
  1121. } else {
  1122. r_error.error = Callable::CallError::CALL_OK;
  1123. Map<StringName, _VariantCall::FuncData>::Element *E = _VariantCall::type_funcs[type].functions.find(p_method);
  1124. if (E) {
  1125. _VariantCall::FuncData &funcdata = E->get();
  1126. funcdata.call(ret, *this, p_args, p_argcount, r_error);
  1127. } else {
  1128. //handle vararg functions manually
  1129. bool valid = false;
  1130. if (type == CALLABLE) {
  1131. if (p_method == CoreStringNames::get_singleton()->call) {
  1132. reinterpret_cast<const Callable *>(_data._mem)->call(p_args, p_argcount, ret, r_error);
  1133. valid = true;
  1134. }
  1135. if (p_method == CoreStringNames::get_singleton()->call_deferred) {
  1136. reinterpret_cast<const Callable *>(_data._mem)->call_deferred(p_args, p_argcount);
  1137. valid = true;
  1138. }
  1139. } else if (type == SIGNAL) {
  1140. if (p_method == CoreStringNames::get_singleton()->emit) {
  1141. if (r_ret) {
  1142. *r_ret = Variant();
  1143. }
  1144. reinterpret_cast<const Signal *>(_data._mem)->emit(p_args, p_argcount);
  1145. valid = true;
  1146. }
  1147. }
  1148. if (!valid) {
  1149. //ok fail because not found
  1150. r_error.error = Callable::CallError::CALL_ERROR_INVALID_METHOD;
  1151. return;
  1152. }
  1153. }
  1154. }
  1155. if (r_error.error == Callable::CallError::CALL_OK && r_ret) {
  1156. *r_ret = ret;
  1157. }
  1158. }
  1159. #define VCALL(m_type, m_method) _VariantCall::_call_##m_type##_##m_method
  1160. Variant Variant::construct(const Variant::Type p_type, const Variant **p_args, int p_argcount, Callable::CallError &r_error, bool p_strict) {
  1161. r_error.error = Callable::CallError::CALL_ERROR_INVALID_METHOD;
  1162. ERR_FAIL_INDEX_V(p_type, VARIANT_MAX, Variant());
  1163. r_error.error = Callable::CallError::CALL_OK;
  1164. if (p_argcount == 0) { //generic construct
  1165. switch (p_type) {
  1166. case NIL:
  1167. return Variant();
  1168. // atomic types
  1169. case BOOL:
  1170. return Variant(false);
  1171. case INT:
  1172. return 0;
  1173. case FLOAT:
  1174. return 0.0f;
  1175. case STRING:
  1176. return String();
  1177. // math types
  1178. case VECTOR2:
  1179. return Vector2();
  1180. case VECTOR2I:
  1181. return Vector2i();
  1182. case RECT2:
  1183. return Rect2();
  1184. case RECT2I:
  1185. return Rect2i();
  1186. case VECTOR3:
  1187. return Vector3();
  1188. case VECTOR3I:
  1189. return Vector3i();
  1190. case TRANSFORM2D:
  1191. return Transform2D();
  1192. case PLANE:
  1193. return Plane();
  1194. case QUAT:
  1195. return Quat();
  1196. case AABB:
  1197. return ::AABB();
  1198. case BASIS:
  1199. return Basis();
  1200. case TRANSFORM:
  1201. return Transform();
  1202. // misc types
  1203. case COLOR:
  1204. return Color();
  1205. case STRING_NAME:
  1206. return StringName();
  1207. case NODE_PATH:
  1208. return NodePath();
  1209. case _RID:
  1210. return RID();
  1211. case OBJECT:
  1212. return (Object *)nullptr;
  1213. case CALLABLE:
  1214. return Callable();
  1215. case SIGNAL:
  1216. return Signal();
  1217. case DICTIONARY:
  1218. return Dictionary();
  1219. case ARRAY:
  1220. return Array();
  1221. case PACKED_BYTE_ARRAY:
  1222. return PackedByteArray();
  1223. case PACKED_INT32_ARRAY:
  1224. return PackedInt32Array();
  1225. case PACKED_INT64_ARRAY:
  1226. return PackedInt64Array();
  1227. case PACKED_FLOAT32_ARRAY:
  1228. return PackedFloat32Array();
  1229. case PACKED_FLOAT64_ARRAY:
  1230. return PackedFloat64Array();
  1231. case PACKED_STRING_ARRAY:
  1232. return PackedStringArray();
  1233. case PACKED_VECTOR2_ARRAY:
  1234. return PackedVector2Array();
  1235. case PACKED_VECTOR3_ARRAY:
  1236. return PackedVector3Array();
  1237. case PACKED_COLOR_ARRAY:
  1238. return PackedColorArray();
  1239. default:
  1240. return Variant();
  1241. }
  1242. } else if (p_argcount == 1 && p_args[0]->type == p_type) {
  1243. return *p_args[0]; //copy construct
  1244. } else if (p_argcount == 1 && (!p_strict || Variant::can_convert(p_args[0]->type, p_type))) {
  1245. //near match construct
  1246. switch (p_type) {
  1247. case NIL: {
  1248. return Variant();
  1249. } break;
  1250. case BOOL: {
  1251. return Variant(bool(*p_args[0]));
  1252. }
  1253. case INT: {
  1254. return (int64_t(*p_args[0]));
  1255. }
  1256. case FLOAT: {
  1257. return real_t(*p_args[0]);
  1258. }
  1259. case STRING: {
  1260. return String(*p_args[0]);
  1261. }
  1262. case VECTOR2: {
  1263. return Vector2(*p_args[0]);
  1264. }
  1265. case VECTOR2I: {
  1266. return Vector2i(*p_args[0]);
  1267. }
  1268. case RECT2:
  1269. return (Rect2(*p_args[0]));
  1270. case RECT2I:
  1271. return (Rect2i(*p_args[0]));
  1272. case VECTOR3:
  1273. return (Vector3(*p_args[0]));
  1274. case VECTOR3I:
  1275. return (Vector3i(*p_args[0]));
  1276. case TRANSFORM2D:
  1277. return (Transform2D(p_args[0]->operator Transform2D()));
  1278. case PLANE:
  1279. return (Plane(*p_args[0]));
  1280. case QUAT:
  1281. return (p_args[0]->operator Quat());
  1282. case AABB:
  1283. return (::AABB(*p_args[0]));
  1284. case BASIS:
  1285. return (Basis(p_args[0]->operator Basis()));
  1286. case TRANSFORM:
  1287. return (Transform(p_args[0]->operator Transform()));
  1288. // misc types
  1289. case COLOR:
  1290. return p_args[0]->type == Variant::STRING ? Color::html(*p_args[0]) : Color::hex(*p_args[0]);
  1291. case STRING_NAME:
  1292. return (StringName(p_args[0]->operator StringName()));
  1293. case NODE_PATH:
  1294. return (NodePath(p_args[0]->operator NodePath()));
  1295. case _RID:
  1296. return (RID(*p_args[0]));
  1297. case OBJECT:
  1298. return ((Object *)(p_args[0]->operator Object *()));
  1299. case CALLABLE:
  1300. return ((Callable)(p_args[0]->operator Callable()));
  1301. case SIGNAL:
  1302. return ((Signal)(p_args[0]->operator Signal()));
  1303. case DICTIONARY:
  1304. return p_args[0]->operator Dictionary();
  1305. case ARRAY:
  1306. return p_args[0]->operator Array();
  1307. // arrays
  1308. case PACKED_BYTE_ARRAY:
  1309. return (PackedByteArray(*p_args[0]));
  1310. case PACKED_INT32_ARRAY:
  1311. return (PackedInt32Array(*p_args[0]));
  1312. case PACKED_INT64_ARRAY:
  1313. return (PackedInt64Array(*p_args[0]));
  1314. case PACKED_FLOAT32_ARRAY:
  1315. return (PackedFloat32Array(*p_args[0]));
  1316. case PACKED_FLOAT64_ARRAY:
  1317. return (PackedFloat64Array(*p_args[0]));
  1318. case PACKED_STRING_ARRAY:
  1319. return (PackedStringArray(*p_args[0]));
  1320. case PACKED_VECTOR2_ARRAY:
  1321. return (PackedVector2Array(*p_args[0]));
  1322. case PACKED_VECTOR3_ARRAY:
  1323. return (PackedVector3Array(*p_args[0]));
  1324. case PACKED_COLOR_ARRAY:
  1325. return (PackedColorArray(*p_args[0]));
  1326. default:
  1327. return Variant();
  1328. }
  1329. } else if (p_argcount >= 1) {
  1330. _VariantCall::ConstructFunc &c = _VariantCall::construct_funcs[p_type];
  1331. for (List<_VariantCall::ConstructData>::Element *E = c.constructors.front(); E; E = E->next()) {
  1332. const _VariantCall::ConstructData &cd = E->get();
  1333. if (cd.arg_count != p_argcount) {
  1334. continue;
  1335. }
  1336. //validate parameters
  1337. for (int i = 0; i < cd.arg_count; i++) {
  1338. if (!Variant::can_convert(p_args[i]->type, cd.arg_types[i])) {
  1339. r_error.error = Callable::CallError::CALL_ERROR_INVALID_ARGUMENT; //no such constructor
  1340. r_error.argument = i;
  1341. r_error.expected = cd.arg_types[i];
  1342. return Variant();
  1343. }
  1344. }
  1345. Variant v;
  1346. cd.func(v, p_args);
  1347. return v;
  1348. }
  1349. }
  1350. r_error.error = Callable::CallError::CALL_ERROR_INVALID_METHOD; //no such constructor
  1351. return Variant();
  1352. }
  1353. bool Variant::has_method(const StringName &p_method) const {
  1354. if (type == OBJECT) {
  1355. Object *obj = get_validated_object();
  1356. if (!obj) {
  1357. return false;
  1358. }
  1359. return obj->has_method(p_method);
  1360. }
  1361. const _VariantCall::TypeFunc &tf = _VariantCall::type_funcs[type];
  1362. return tf.functions.has(p_method);
  1363. }
  1364. Vector<Variant::Type> Variant::get_method_argument_types(Variant::Type p_type, const StringName &p_method) {
  1365. const _VariantCall::TypeFunc &tf = _VariantCall::type_funcs[p_type];
  1366. const Map<StringName, _VariantCall::FuncData>::Element *E = tf.functions.find(p_method);
  1367. if (!E) {
  1368. return Vector<Variant::Type>();
  1369. }
  1370. return E->get().arg_types;
  1371. }
  1372. bool Variant::is_method_const(Variant::Type p_type, const StringName &p_method) {
  1373. const _VariantCall::TypeFunc &tf = _VariantCall::type_funcs[p_type];
  1374. const Map<StringName, _VariantCall::FuncData>::Element *E = tf.functions.find(p_method);
  1375. if (!E) {
  1376. return false;
  1377. }
  1378. return E->get()._const;
  1379. }
  1380. Vector<StringName> Variant::get_method_argument_names(Variant::Type p_type, const StringName &p_method) {
  1381. const _VariantCall::TypeFunc &tf = _VariantCall::type_funcs[p_type];
  1382. const Map<StringName, _VariantCall::FuncData>::Element *E = tf.functions.find(p_method);
  1383. if (!E) {
  1384. return Vector<StringName>();
  1385. }
  1386. return E->get().arg_names;
  1387. }
  1388. Variant::Type Variant::get_method_return_type(Variant::Type p_type, const StringName &p_method, bool *r_has_return) {
  1389. const _VariantCall::TypeFunc &tf = _VariantCall::type_funcs[p_type];
  1390. const Map<StringName, _VariantCall::FuncData>::Element *E = tf.functions.find(p_method);
  1391. if (!E) {
  1392. return Variant::NIL;
  1393. }
  1394. if (r_has_return) {
  1395. *r_has_return = E->get().returns;
  1396. }
  1397. return E->get().return_type;
  1398. }
  1399. Vector<Variant> Variant::get_method_default_arguments(Variant::Type p_type, const StringName &p_method) {
  1400. const _VariantCall::TypeFunc &tf = _VariantCall::type_funcs[p_type];
  1401. const Map<StringName, _VariantCall::FuncData>::Element *E = tf.functions.find(p_method);
  1402. if (!E) {
  1403. return Vector<Variant>();
  1404. }
  1405. return E->get().default_args;
  1406. }
  1407. void Variant::get_method_list(List<MethodInfo> *p_list) const {
  1408. const _VariantCall::TypeFunc &tf = _VariantCall::type_funcs[type];
  1409. for (const Map<StringName, _VariantCall::FuncData>::Element *E = tf.functions.front(); E; E = E->next()) {
  1410. const _VariantCall::FuncData &fd = E->get();
  1411. MethodInfo mi;
  1412. mi.name = E->key();
  1413. if (fd._const) {
  1414. mi.flags |= METHOD_FLAG_CONST;
  1415. }
  1416. for (int i = 0; i < fd.arg_types.size(); i++) {
  1417. PropertyInfo pi;
  1418. pi.type = fd.arg_types[i];
  1419. #ifdef DEBUG_ENABLED
  1420. pi.name = fd.arg_names[i];
  1421. #endif
  1422. mi.arguments.push_back(pi);
  1423. }
  1424. mi.default_arguments = fd.default_args;
  1425. PropertyInfo ret;
  1426. #ifdef DEBUG_ENABLED
  1427. ret.type = fd.return_type;
  1428. if (fd.returns) {
  1429. ret.name = "ret";
  1430. if (fd.return_type == Variant::NIL) {
  1431. ret.usage = PROPERTY_USAGE_NIL_IS_VARIANT;
  1432. }
  1433. }
  1434. mi.return_val = ret;
  1435. #endif
  1436. p_list->push_back(mi);
  1437. }
  1438. if (type == CALLABLE) {
  1439. MethodInfo mi;
  1440. mi.name = "call";
  1441. mi.return_val.usage = PROPERTY_USAGE_NIL_IS_VARIANT;
  1442. mi.flags |= METHOD_FLAG_VARARG;
  1443. p_list->push_back(mi);
  1444. mi.name = "call_deferred";
  1445. mi.return_val.usage = 0;
  1446. p_list->push_back(mi);
  1447. }
  1448. if (type == SIGNAL) {
  1449. MethodInfo mi;
  1450. mi.name = "emit";
  1451. mi.flags |= METHOD_FLAG_VARARG;
  1452. p_list->push_back(mi);
  1453. }
  1454. }
  1455. void Variant::get_constructor_list(Variant::Type p_type, List<MethodInfo> *p_list) {
  1456. ERR_FAIL_INDEX(p_type, VARIANT_MAX);
  1457. //custom constructors
  1458. for (const List<_VariantCall::ConstructData>::Element *E = _VariantCall::construct_funcs[p_type].constructors.front(); E; E = E->next()) {
  1459. const _VariantCall::ConstructData &cd = E->get();
  1460. MethodInfo mi;
  1461. mi.name = Variant::get_type_name(p_type);
  1462. mi.return_val.type = p_type;
  1463. for (int i = 0; i < cd.arg_count; i++) {
  1464. PropertyInfo pi;
  1465. pi.name = cd.arg_names[i];
  1466. pi.type = cd.arg_types[i];
  1467. mi.arguments.push_back(pi);
  1468. }
  1469. p_list->push_back(mi);
  1470. }
  1471. //default constructors
  1472. for (int i = 0; i < VARIANT_MAX; i++) {
  1473. if (i == p_type) {
  1474. continue;
  1475. }
  1476. if (!Variant::can_convert(Variant::Type(i), p_type)) {
  1477. continue;
  1478. }
  1479. MethodInfo mi;
  1480. mi.name = Variant::get_type_name(p_type);
  1481. PropertyInfo pi;
  1482. pi.name = "from";
  1483. pi.type = Variant::Type(i);
  1484. mi.arguments.push_back(pi);
  1485. mi.return_val.type = p_type;
  1486. p_list->push_back(mi);
  1487. }
  1488. }
  1489. void Variant::get_constants_for_type(Variant::Type p_type, List<StringName> *p_constants) {
  1490. ERR_FAIL_INDEX(p_type, Variant::VARIANT_MAX);
  1491. _VariantCall::ConstantData &cd = _VariantCall::constant_data[p_type];
  1492. #ifdef DEBUG_ENABLED
  1493. for (List<StringName>::Element *E = cd.value_ordered.front(); E; E = E->next()) {
  1494. p_constants->push_back(E->get());
  1495. #else
  1496. for (Map<StringName, int>::Element *E = cd.value.front(); E; E = E->next()) {
  1497. p_constants->push_back(E->key());
  1498. #endif
  1499. }
  1500. #ifdef DEBUG_ENABLED
  1501. for (List<StringName>::Element *E = cd.variant_value_ordered.front(); E; E = E->next()) {
  1502. p_constants->push_back(E->get());
  1503. #else
  1504. for (Map<StringName, Variant>::Element *E = cd.variant_value.front(); E; E = E->next()) {
  1505. p_constants->push_back(E->key());
  1506. #endif
  1507. }
  1508. }
  1509. bool Variant::has_constant(Variant::Type p_type, const StringName &p_value) {
  1510. ERR_FAIL_INDEX_V(p_type, Variant::VARIANT_MAX, false);
  1511. _VariantCall::ConstantData &cd = _VariantCall::constant_data[p_type];
  1512. return cd.value.has(p_value) || cd.variant_value.has(p_value);
  1513. }
  1514. Variant Variant::get_constant_value(Variant::Type p_type, const StringName &p_value, bool *r_valid) {
  1515. if (r_valid) {
  1516. *r_valid = false;
  1517. }
  1518. ERR_FAIL_INDEX_V(p_type, Variant::VARIANT_MAX, 0);
  1519. _VariantCall::ConstantData &cd = _VariantCall::constant_data[p_type];
  1520. Map<StringName, int>::Element *E = cd.value.find(p_value);
  1521. if (!E) {
  1522. Map<StringName, Variant>::Element *F = cd.variant_value.find(p_value);
  1523. if (F) {
  1524. if (r_valid) {
  1525. *r_valid = true;
  1526. }
  1527. return F->get();
  1528. } else {
  1529. return -1;
  1530. }
  1531. }
  1532. if (r_valid) {
  1533. *r_valid = true;
  1534. }
  1535. return E->get();
  1536. }
  1537. void register_variant_methods() {
  1538. _VariantCall::type_funcs = memnew_arr(_VariantCall::TypeFunc, Variant::VARIANT_MAX);
  1539. _VariantCall::construct_funcs = memnew_arr(_VariantCall::ConstructFunc, Variant::VARIANT_MAX);
  1540. _VariantCall::constant_data = memnew_arr(_VariantCall::ConstantData, Variant::VARIANT_MAX);
  1541. #define ADDFUNC0R(m_vtype, m_ret, m_class, m_method, m_defarg) \
  1542. _VariantCall::addfunc(true, Variant::m_vtype, Variant::m_ret, true, _scs_create(#m_method), VCALL(m_class, m_method), m_defarg);
  1543. #define ADDFUNC1R(m_vtype, m_ret, m_class, m_method, m_arg1, m_argname1, m_defarg) \
  1544. _VariantCall::addfunc(true, Variant::m_vtype, Variant::m_ret, true, _scs_create(#m_method), VCALL(m_class, m_method), m_defarg, _VariantCall::Arg(Variant::m_arg1, _scs_create(m_argname1)));
  1545. #define ADDFUNC2R(m_vtype, m_ret, m_class, m_method, m_arg1, m_argname1, m_arg2, m_argname2, m_defarg) \
  1546. _VariantCall::addfunc(true, Variant::m_vtype, Variant::m_ret, true, _scs_create(#m_method), VCALL(m_class, m_method), m_defarg, _VariantCall::Arg(Variant::m_arg1, _scs_create(m_argname1)), _VariantCall::Arg(Variant::m_arg2, _scs_create(m_argname2)));
  1547. #define ADDFUNC3R(m_vtype, m_ret, m_class, m_method, m_arg1, m_argname1, m_arg2, m_argname2, m_arg3, m_argname3, m_defarg) \
  1548. _VariantCall::addfunc(true, Variant::m_vtype, Variant::m_ret, true, _scs_create(#m_method), VCALL(m_class, m_method), m_defarg, _VariantCall::Arg(Variant::m_arg1, _scs_create(m_argname1)), _VariantCall::Arg(Variant::m_arg2, _scs_create(m_argname2)), _VariantCall::Arg(Variant::m_arg3, _scs_create(m_argname3)));
  1549. #define ADDFUNC4R(m_vtype, m_ret, m_class, m_method, m_arg1, m_argname1, m_arg2, m_argname2, m_arg3, m_argname3, m_arg4, m_argname4, m_defarg) \
  1550. _VariantCall::addfunc(true, Variant::m_vtype, Variant::m_ret, true, _scs_create(#m_method), VCALL(m_class, m_method), m_defarg, _VariantCall::Arg(Variant::m_arg1, _scs_create(m_argname1)), _VariantCall::Arg(Variant::m_arg2, _scs_create(m_argname2)), _VariantCall::Arg(Variant::m_arg3, _scs_create(m_argname3)), _VariantCall::Arg(Variant::m_arg4, _scs_create(m_argname4)));
  1551. #define ADDFUNC0RNC(m_vtype, m_ret, m_class, m_method, m_defarg) \
  1552. _VariantCall::addfunc(false, Variant::m_vtype, Variant::m_ret, true, _scs_create(#m_method), VCALL(m_class, m_method), m_defarg);
  1553. #define ADDFUNC1RNC(m_vtype, m_ret, m_class, m_method, m_arg1, m_argname1, m_defarg) \
  1554. _VariantCall::addfunc(false, Variant::m_vtype, Variant::m_ret, true, _scs_create(#m_method), VCALL(m_class, m_method), m_defarg, _VariantCall::Arg(Variant::m_arg1, _scs_create(m_argname1)));
  1555. #define ADDFUNC2RNC(m_vtype, m_ret, m_class, m_method, m_arg1, m_argname1, m_arg2, m_argname2, m_defarg) \
  1556. _VariantCall::addfunc(false, Variant::m_vtype, Variant::m_ret, true, _scs_create(#m_method), VCALL(m_class, m_method), m_defarg, _VariantCall::Arg(Variant::m_arg1, _scs_create(m_argname1)), _VariantCall::Arg(Variant::m_arg2, _scs_create(m_argname2)));
  1557. #define ADDFUNC3RNC(m_vtype, m_ret, m_class, m_method, m_arg1, m_argname1, m_arg2, m_argname2, m_arg3, m_argname3, m_defarg) \
  1558. _VariantCall::addfunc(false, Variant::m_vtype, Variant::m_ret, true, _scs_create(#m_method), VCALL(m_class, m_method), m_defarg, _VariantCall::Arg(Variant::m_arg1, _scs_create(m_argname1)), _VariantCall::Arg(Variant::m_arg2, _scs_create(m_argname2)), _VariantCall::Arg(Variant::m_arg3, _scs_create(m_argname3)));
  1559. #define ADDFUNC4RNC(m_vtype, m_ret, m_class, m_method, m_arg1, m_argname1, m_arg2, m_argname2, m_arg3, m_argname3, m_arg4, m_argname4, m_defarg) \
  1560. _VariantCall::addfunc(false, Variant::m_vtype, Variant::m_ret, true, _scs_create(#m_method), VCALL(m_class, m_method), m_defarg, _VariantCall::Arg(Variant::m_arg1, _scs_create(m_argname1)), _VariantCall::Arg(Variant::m_arg2, _scs_create(m_argname2)), _VariantCall::Arg(Variant::m_arg3, _scs_create(m_argname3)), _VariantCall::Arg(Variant::m_arg4, _scs_create(m_argname4)));
  1561. #define ADDFUNC0(m_vtype, m_ret, m_class, m_method, m_defarg) \
  1562. _VariantCall::addfunc(true, Variant::m_vtype, Variant::m_ret, false, _scs_create(#m_method), VCALL(m_class, m_method), m_defarg);
  1563. #define ADDFUNC1(m_vtype, m_ret, m_class, m_method, m_arg1, m_argname1, m_defarg) \
  1564. _VariantCall::addfunc(true, Variant::m_vtype, Variant::m_ret, false, _scs_create(#m_method), VCALL(m_class, m_method), m_defarg, _VariantCall::Arg(Variant::m_arg1, _scs_create(m_argname1)));
  1565. #define ADDFUNC2(m_vtype, m_ret, m_class, m_method, m_arg1, m_argname1, m_arg2, m_argname2, m_defarg) \
  1566. _VariantCall::addfunc(true, Variant::m_vtype, Variant::m_ret, false, _scs_create(#m_method), VCALL(m_class, m_method), m_defarg, _VariantCall::Arg(Variant::m_arg1, _scs_create(m_argname1)), _VariantCall::Arg(Variant::m_arg2, _scs_create(m_argname2)));
  1567. #define ADDFUNC3(m_vtype, m_ret, m_class, m_method, m_arg1, m_argname1, m_arg2, m_argname2, m_arg3, m_argname3, m_defarg) \
  1568. _VariantCall::addfunc(true, Variant::m_vtype, Variant::m_ret, false, _scs_create(#m_method), VCALL(m_class, m_method), m_defarg, _VariantCall::Arg(Variant::m_arg1, _scs_create(m_argname1)), _VariantCall::Arg(Variant::m_arg2, _scs_create(m_argname2)), _VariantCall::Arg(Variant::m_arg3, _scs_create(m_argname3)));
  1569. #define ADDFUNC4(m_vtype, m_ret, m_class, m_method, m_arg1, m_argname1, m_arg2, m_argname2, m_arg3, m_argname3, m_arg4, m_argname4, m_defarg) \
  1570. _VariantCall::addfunc(true, Variant::m_vtype, Variant::m_ret, false, _scs_create(#m_method), VCALL(m_class, m_method), m_defarg, _VariantCall::Arg(Variant::m_arg1, _scs_create(m_argname1)), _VariantCall::Arg(Variant::m_arg2, _scs_create(m_argname2)), _VariantCall::Arg(Variant::m_arg3, _scs_create(m_argname3)), _VariantCall::Arg(Variant::m_arg4, _scs_create(m_argname4)));
  1571. #define ADDFUNC0NC(m_vtype, m_ret, m_class, m_method, m_defarg) \
  1572. _VariantCall::addfunc(false, Variant::m_vtype, Variant::m_ret, false, _scs_create(#m_method), VCALL(m_class, m_method), m_defarg);
  1573. #define ADDFUNC1NC(m_vtype, m_ret, m_class, m_method, m_arg1, m_argname1, m_defarg) \
  1574. _VariantCall::addfunc(false, Variant::m_vtype, Variant::m_ret, false, _scs_create(#m_method), VCALL(m_class, m_method), m_defarg, _VariantCall::Arg(Variant::m_arg1, _scs_create(m_argname1)));
  1575. #define ADDFUNC2NC(m_vtype, m_ret, m_class, m_method, m_arg1, m_argname1, m_arg2, m_argname2, m_defarg) \
  1576. _VariantCall::addfunc(false, Variant::m_vtype, Variant::m_ret, false, _scs_create(#m_method), VCALL(m_class, m_method), m_defarg, _VariantCall::Arg(Variant::m_arg1, _scs_create(m_argname1)), _VariantCall::Arg(Variant::m_arg2, _scs_create(m_argname2)));
  1577. #define ADDFUNC3NC(m_vtype, m_ret, m_class, m_method, m_arg1, m_argname1, m_arg2, m_argname2, m_arg3, m_argname3, m_defarg) \
  1578. _VariantCall::addfunc(false, Variant::m_vtype, Variant::m_ret, false, _scs_create(#m_method), VCALL(m_class, m_method), m_defarg, _VariantCall::Arg(Variant::m_arg1, _scs_create(m_argname1)), _VariantCall::Arg(Variant::m_arg2, _scs_create(m_argname2)), _VariantCall::Arg(Variant::m_arg3, _scs_create(m_argname3)));
  1579. #define ADDFUNC4NC(m_vtype, m_ret, m_class, m_method, m_arg1, m_argname1, m_arg2, m_argname2, m_arg3, m_argname3, m_arg4, m_argname4, m_defarg) \
  1580. _VariantCall::addfunc(false, Variant::m_vtype, Variant::m_ret, false, _scs_create(#m_method), VCALL(m_class, m_method), m_defarg, _VariantCall::Arg(Variant::m_arg1, _scs_create(m_argname1)), _VariantCall::Arg(Variant::m_arg2, _scs_create(m_argname2)), _VariantCall::Arg(Variant::m_arg3, _scs_create(m_argname3)), _VariantCall::Arg(Variant::m_arg4, _scs_create(m_argname4)));
  1581. /* STRING */
  1582. ADDFUNC1R(STRING, INT, String, casecmp_to, STRING, "to", varray());
  1583. ADDFUNC1R(STRING, INT, String, nocasecmp_to, STRING, "to", varray());
  1584. ADDFUNC0R(STRING, INT, String, length, varray());
  1585. ADDFUNC2R(STRING, STRING, String, substr, INT, "from", INT, "len", varray(-1));
  1586. ADDFUNC2R(STRING, INT, String, find, STRING, "what", INT, "from", varray(0));
  1587. ADDFUNC3R(STRING, INT, String, count, STRING, "what", INT, "from", INT, "to", varray(0, 0));
  1588. ADDFUNC3R(STRING, INT, String, countn, STRING, "what", INT, "from", INT, "to", varray(0, 0));
  1589. ADDFUNC2R(STRING, INT, String, findn, STRING, "what", INT, "from", varray(0));
  1590. ADDFUNC2R(STRING, INT, String, rfind, STRING, "what", INT, "from", varray(-1));
  1591. ADDFUNC2R(STRING, INT, String, rfindn, STRING, "what", INT, "from", varray(-1));
  1592. ADDFUNC1R(STRING, BOOL, String, match, STRING, "expr", varray());
  1593. ADDFUNC1R(STRING, BOOL, String, matchn, STRING, "expr", varray());
  1594. ADDFUNC1R(STRING, BOOL, String, begins_with, STRING, "text", varray());
  1595. ADDFUNC1R(STRING, BOOL, String, ends_with, STRING, "text", varray());
  1596. ADDFUNC1R(STRING, BOOL, String, is_subsequence_of, STRING, "text", varray());
  1597. ADDFUNC1R(STRING, BOOL, String, is_subsequence_ofi, STRING, "text", varray());
  1598. ADDFUNC0R(STRING, PACKED_STRING_ARRAY, String, bigrams, varray());
  1599. ADDFUNC1R(STRING, FLOAT, String, similarity, STRING, "text", varray());
  1600. ADDFUNC2R(STRING, STRING, String, format, NIL, "values", STRING, "placeholder", varray("{_}"));
  1601. ADDFUNC2R(STRING, STRING, String, replace, STRING, "what", STRING, "forwhat", varray());
  1602. ADDFUNC2R(STRING, STRING, String, replacen, STRING, "what", STRING, "forwhat", varray());
  1603. ADDFUNC1R(STRING, STRING, String, repeat, INT, "count", varray());
  1604. ADDFUNC2R(STRING, STRING, String, insert, INT, "position", STRING, "what", varray());
  1605. ADDFUNC0R(STRING, STRING, String, capitalize, varray());
  1606. ADDFUNC3R(STRING, PACKED_STRING_ARRAY, String, split, STRING, "delimiter", BOOL, "allow_empty", INT, "maxsplit", varray(true, 0));
  1607. ADDFUNC3R(STRING, PACKED_STRING_ARRAY, String, rsplit, STRING, "delimiter", BOOL, "allow_empty", INT, "maxsplit", varray(true, 0));
  1608. ADDFUNC2R(STRING, PACKED_FLOAT32_ARRAY, String, split_floats, STRING, "delimiter", BOOL, "allow_empty", varray(true));
  1609. ADDFUNC1R(STRING, STRING, String, join, PACKED_STRING_ARRAY, "parts", varray());
  1610. ADDFUNC0R(STRING, STRING, String, to_upper, varray());
  1611. ADDFUNC0R(STRING, STRING, String, to_lower, varray());
  1612. ADDFUNC1R(STRING, STRING, String, left, INT, "position", varray());
  1613. ADDFUNC1R(STRING, STRING, String, right, INT, "position", varray());
  1614. ADDFUNC2R(STRING, STRING, String, strip_edges, BOOL, "left", BOOL, "right", varray(true, true));
  1615. ADDFUNC0R(STRING, STRING, String, strip_escapes, varray());
  1616. ADDFUNC1R(STRING, STRING, String, lstrip, STRING, "chars", varray());
  1617. ADDFUNC1R(STRING, STRING, String, rstrip, STRING, "chars", varray());
  1618. ADDFUNC0R(STRING, STRING, String, get_extension, varray());
  1619. ADDFUNC0R(STRING, STRING, String, get_basename, varray());
  1620. ADDFUNC1R(STRING, STRING, String, plus_file, STRING, "file", varray());
  1621. ADDFUNC1R(STRING, INT, String, ord_at, INT, "at", varray());
  1622. ADDFUNC0R(STRING, STRING, String, dedent, varray());
  1623. ADDFUNC2(STRING, NIL, String, erase, INT, "position", INT, "chars", varray());
  1624. ADDFUNC0R(STRING, INT, String, hash, varray());
  1625. ADDFUNC0R(STRING, STRING, String, md5_text, varray());
  1626. ADDFUNC0R(STRING, STRING, String, sha1_text, varray());
  1627. ADDFUNC0R(STRING, STRING, String, sha256_text, varray());
  1628. ADDFUNC0R(STRING, PACKED_BYTE_ARRAY, String, md5_buffer, varray());
  1629. ADDFUNC0R(STRING, PACKED_BYTE_ARRAY, String, sha1_buffer, varray());
  1630. ADDFUNC0R(STRING, PACKED_BYTE_ARRAY, String, sha256_buffer, varray());
  1631. ADDFUNC0R(STRING, BOOL, String, empty, varray());
  1632. ADDFUNC1R(STRING, STRING, String, humanize_size, INT, "size", varray());
  1633. ADDFUNC0R(STRING, BOOL, String, is_abs_path, varray());
  1634. ADDFUNC0R(STRING, BOOL, String, is_rel_path, varray());
  1635. ADDFUNC0R(STRING, STRING, String, get_base_dir, varray());
  1636. ADDFUNC0R(STRING, STRING, String, get_file, varray());
  1637. ADDFUNC0R(STRING, STRING, String, xml_escape, varray());
  1638. ADDFUNC0R(STRING, STRING, String, xml_unescape, varray());
  1639. ADDFUNC0R(STRING, STRING, String, http_escape, varray());
  1640. ADDFUNC0R(STRING, STRING, String, http_unescape, varray());
  1641. ADDFUNC0R(STRING, STRING, String, c_escape, varray());
  1642. ADDFUNC0R(STRING, STRING, String, c_unescape, varray());
  1643. ADDFUNC0R(STRING, STRING, String, json_escape, varray());
  1644. ADDFUNC0R(STRING, STRING, String, percent_encode, varray());
  1645. ADDFUNC0R(STRING, STRING, String, percent_decode, varray());
  1646. ADDFUNC0R(STRING, BOOL, String, is_valid_identifier, varray());
  1647. ADDFUNC0R(STRING, BOOL, String, is_valid_integer, varray());
  1648. ADDFUNC0R(STRING, BOOL, String, is_valid_float, varray());
  1649. ADDFUNC1R(STRING, BOOL, String, is_valid_hex_number, BOOL, "with_prefix", varray(false));
  1650. ADDFUNC0R(STRING, BOOL, String, is_valid_html_color, varray());
  1651. ADDFUNC0R(STRING, BOOL, String, is_valid_ip_address, varray());
  1652. ADDFUNC0R(STRING, BOOL, String, is_valid_filename, varray());
  1653. ADDFUNC0R(STRING, INT, String, to_int, varray());
  1654. ADDFUNC0R(STRING, FLOAT, String, to_float, varray());
  1655. ADDFUNC0R(STRING, INT, String, hex_to_int, varray());
  1656. ADDFUNC1R(STRING, STRING, String, pad_decimals, INT, "digits", varray());
  1657. ADDFUNC1R(STRING, STRING, String, pad_zeros, INT, "digits", varray());
  1658. ADDFUNC1R(STRING, STRING, String, trim_prefix, STRING, "prefix", varray());
  1659. ADDFUNC1R(STRING, STRING, String, trim_suffix, STRING, "suffix", varray());
  1660. ADDFUNC0R(STRING, PACKED_BYTE_ARRAY, String, to_ascii, varray());
  1661. ADDFUNC0R(STRING, PACKED_BYTE_ARRAY, String, to_utf8, varray());
  1662. ADDFUNC0R(VECTOR2, FLOAT, Vector2, angle, varray());
  1663. ADDFUNC1R(VECTOR2, FLOAT, Vector2, angle_to, VECTOR2, "to", varray());
  1664. ADDFUNC1R(VECTOR2, FLOAT, Vector2, angle_to_point, VECTOR2, "to", varray());
  1665. ADDFUNC1R(VECTOR2, VECTOR2, Vector2, direction_to, VECTOR2, "b", varray());
  1666. ADDFUNC1R(VECTOR2, FLOAT, Vector2, distance_to, VECTOR2, "to", varray());
  1667. ADDFUNC1R(VECTOR2, FLOAT, Vector2, distance_squared_to, VECTOR2, "to", varray());
  1668. ADDFUNC0R(VECTOR2, FLOAT, Vector2, length, varray());
  1669. ADDFUNC0R(VECTOR2, FLOAT, Vector2, length_squared, varray());
  1670. ADDFUNC0R(VECTOR2, VECTOR2, Vector2, normalized, varray());
  1671. ADDFUNC0R(VECTOR2, BOOL, Vector2, is_normalized, varray());
  1672. ADDFUNC1R(VECTOR2, BOOL, Vector2, is_equal_approx, VECTOR2, "v", varray());
  1673. ADDFUNC1R(VECTOR2, VECTOR2, Vector2, posmod, FLOAT, "mod", varray());
  1674. ADDFUNC1R(VECTOR2, VECTOR2, Vector2, posmodv, VECTOR2, "modv", varray());
  1675. ADDFUNC1R(VECTOR2, VECTOR2, Vector2, project, VECTOR2, "b", varray());
  1676. ADDFUNC2R(VECTOR2, VECTOR2, Vector2, lerp, VECTOR2, "b", FLOAT, "t", varray());
  1677. ADDFUNC2R(VECTOR2, VECTOR2, Vector2, slerp, VECTOR2, "b", FLOAT, "t", varray());
  1678. ADDFUNC4R(VECTOR2, VECTOR2, Vector2, cubic_interpolate, VECTOR2, "b", VECTOR2, "pre_a", VECTOR2, "post_b", FLOAT, "t", varray());
  1679. ADDFUNC2R(VECTOR2, VECTOR2, Vector2, move_toward, VECTOR2, "to", FLOAT, "delta", varray());
  1680. ADDFUNC1R(VECTOR2, VECTOR2, Vector2, rotated, FLOAT, "phi", varray());
  1681. ADDFUNC0R(VECTOR2, VECTOR2, Vector2, tangent, varray());
  1682. ADDFUNC0R(VECTOR2, VECTOR2, Vector2, floor, varray());
  1683. ADDFUNC0R(VECTOR2, VECTOR2, Vector2, ceil, varray());
  1684. ADDFUNC0R(VECTOR2, VECTOR2, Vector2, round, varray());
  1685. ADDFUNC1R(VECTOR2, VECTOR2, Vector2, snapped, VECTOR2, "by", varray());
  1686. ADDFUNC0R(VECTOR2, FLOAT, Vector2, aspect, varray());
  1687. ADDFUNC1R(VECTOR2, FLOAT, Vector2, dot, VECTOR2, "with", varray());
  1688. ADDFUNC1R(VECTOR2, VECTOR2, Vector2, slide, VECTOR2, "n", varray());
  1689. ADDFUNC1R(VECTOR2, VECTOR2, Vector2, bounce, VECTOR2, "n", varray());
  1690. ADDFUNC1R(VECTOR2, VECTOR2, Vector2, reflect, VECTOR2, "n", varray());
  1691. ADDFUNC1R(VECTOR2, FLOAT, Vector2, cross, VECTOR2, "with", varray());
  1692. ADDFUNC0R(VECTOR2, VECTOR2, Vector2, abs, varray());
  1693. ADDFUNC1R(VECTOR2, VECTOR2, Vector2, clamped, FLOAT, "length", varray());
  1694. ADDFUNC0R(VECTOR2, VECTOR2, Vector2, sign, varray());
  1695. ADDFUNC0R(VECTOR2I, FLOAT, Vector2i, aspect, varray());
  1696. ADDFUNC0R(VECTOR2I, VECTOR2I, Vector2i, sign, varray());
  1697. ADDFUNC0R(VECTOR2I, VECTOR2I, Vector2i, abs, varray());
  1698. ADDFUNC0R(RECT2, FLOAT, Rect2, get_area, varray());
  1699. ADDFUNC0R(RECT2, BOOL, Rect2, has_no_area, varray());
  1700. ADDFUNC1R(RECT2, BOOL, Rect2, has_point, VECTOR2, "point", varray());
  1701. ADDFUNC1R(RECT2, BOOL, Rect2, is_equal_approx, RECT2, "rect", varray());
  1702. ADDFUNC2R(RECT2, BOOL, Rect2, intersects, RECT2, "b", BOOL, "include_borders", varray(false));
  1703. ADDFUNC1R(RECT2, BOOL, Rect2, encloses, RECT2, "b", varray());
  1704. ADDFUNC1R(RECT2, RECT2, Rect2, clip, RECT2, "b", varray());
  1705. ADDFUNC1R(RECT2, RECT2, Rect2, merge, RECT2, "b", varray());
  1706. ADDFUNC1R(RECT2, RECT2, Rect2, expand, VECTOR2, "to", varray());
  1707. ADDFUNC1R(RECT2, RECT2, Rect2, grow, FLOAT, "by", varray());
  1708. ADDFUNC2R(RECT2, RECT2, Rect2, grow_margin, INT, "margin", FLOAT, "by", varray());
  1709. ADDFUNC4R(RECT2, RECT2, Rect2, grow_individual, FLOAT, "left", FLOAT, "top", FLOAT, "right", FLOAT, " bottom", varray());
  1710. ADDFUNC0R(RECT2, RECT2, Rect2, abs, varray());
  1711. ADDFUNC0R(RECT2I, INT, Rect2i, get_area, varray());
  1712. ADDFUNC0R(RECT2I, BOOL, Rect2i, has_no_area, varray());
  1713. ADDFUNC1R(RECT2I, BOOL, Rect2i, has_point, VECTOR2I, "point", varray());
  1714. ADDFUNC1R(RECT2I, BOOL, Rect2i, intersects, RECT2I, "b", varray());
  1715. ADDFUNC1R(RECT2I, BOOL, Rect2i, encloses, RECT2I, "b", varray());
  1716. ADDFUNC1R(RECT2I, RECT2I, Rect2i, clip, RECT2I, "b", varray());
  1717. ADDFUNC1R(RECT2I, RECT2I, Rect2i, merge, RECT2I, "b", varray());
  1718. ADDFUNC1R(RECT2I, RECT2I, Rect2i, expand, VECTOR2I, "to", varray());
  1719. ADDFUNC1R(RECT2I, RECT2I, Rect2i, grow, INT, "by", varray());
  1720. ADDFUNC2R(RECT2I, RECT2I, Rect2i, grow_margin, INT, "margin", INT, "by", varray());
  1721. ADDFUNC4R(RECT2I, RECT2I, Rect2i, grow_individual, INT, "left", INT, "top", INT, "right", INT, " bottom", varray());
  1722. ADDFUNC0R(RECT2I, RECT2I, Rect2i, abs, varray());
  1723. ADDFUNC0R(VECTOR3, INT, Vector3, min_axis, varray());
  1724. ADDFUNC0R(VECTOR3, INT, Vector3, max_axis, varray());
  1725. ADDFUNC1R(VECTOR3, FLOAT, Vector3, angle_to, VECTOR3, "to", varray());
  1726. ADDFUNC1R(VECTOR3, VECTOR3, Vector3, direction_to, VECTOR3, "b", varray());
  1727. ADDFUNC1R(VECTOR3, FLOAT, Vector3, distance_to, VECTOR3, "b", varray());
  1728. ADDFUNC1R(VECTOR3, FLOAT, Vector3, distance_squared_to, VECTOR3, "b", varray());
  1729. ADDFUNC0R(VECTOR3, FLOAT, Vector3, length, varray());
  1730. ADDFUNC0R(VECTOR3, FLOAT, Vector3, length_squared, varray());
  1731. ADDFUNC0R(VECTOR3, VECTOR3, Vector3, normalized, varray());
  1732. ADDFUNC0R(VECTOR3, BOOL, Vector3, is_normalized, varray());
  1733. ADDFUNC1R(VECTOR3, BOOL, Vector3, is_equal_approx, VECTOR3, "v", varray());
  1734. ADDFUNC0R(VECTOR3, VECTOR3, Vector3, inverse, varray());
  1735. ADDFUNC1R(VECTOR3, VECTOR3, Vector3, snapped, VECTOR3, "by", varray());
  1736. ADDFUNC2R(VECTOR3, VECTOR3, Vector3, rotated, VECTOR3, "axis", FLOAT, "phi", varray());
  1737. ADDFUNC2R(VECTOR3, VECTOR3, Vector3, lerp, VECTOR3, "b", FLOAT, "t", varray());
  1738. ADDFUNC2R(VECTOR3, VECTOR3, Vector3, slerp, VECTOR3, "b", FLOAT, "t", varray());
  1739. ADDFUNC4R(VECTOR3, VECTOR3, Vector3, cubic_interpolate, VECTOR3, "b", VECTOR3, "pre_a", VECTOR3, "post_b", FLOAT, "t", varray());
  1740. ADDFUNC2R(VECTOR3, VECTOR3, Vector3, move_toward, VECTOR3, "to", FLOAT, "delta", varray());
  1741. ADDFUNC1R(VECTOR3, FLOAT, Vector3, dot, VECTOR3, "b", varray());
  1742. ADDFUNC1R(VECTOR3, VECTOR3, Vector3, cross, VECTOR3, "b", varray());
  1743. ADDFUNC1R(VECTOR3, BASIS, Vector3, outer, VECTOR3, "b", varray());
  1744. ADDFUNC0R(VECTOR3, BASIS, Vector3, to_diagonal_matrix, varray());
  1745. ADDFUNC0R(VECTOR3, VECTOR3, Vector3, abs, varray());
  1746. ADDFUNC0R(VECTOR3, VECTOR3, Vector3, floor, varray());
  1747. ADDFUNC0R(VECTOR3, VECTOR3, Vector3, ceil, varray());
  1748. ADDFUNC0R(VECTOR3, VECTOR3, Vector3, round, varray());
  1749. ADDFUNC1R(VECTOR3, VECTOR3, Vector3, posmod, FLOAT, "mod", varray());
  1750. ADDFUNC1R(VECTOR3, VECTOR3, Vector3, posmodv, VECTOR3, "modv", varray());
  1751. ADDFUNC1R(VECTOR3, VECTOR3, Vector3, project, VECTOR3, "b", varray());
  1752. ADDFUNC1R(VECTOR3, VECTOR3, Vector3, slide, VECTOR3, "n", varray());
  1753. ADDFUNC1R(VECTOR3, VECTOR3, Vector3, bounce, VECTOR3, "n", varray());
  1754. ADDFUNC1R(VECTOR3, VECTOR3, Vector3, reflect, VECTOR3, "n", varray());
  1755. ADDFUNC0R(VECTOR3, VECTOR3, Vector3, sign, varray());
  1756. ADDFUNC0R(VECTOR3I, INT, Vector3i, min_axis, varray());
  1757. ADDFUNC0R(VECTOR3I, INT, Vector3i, max_axis, varray());
  1758. ADDFUNC0R(VECTOR3I, VECTOR3I, Vector3i, sign, varray());
  1759. ADDFUNC0R(PLANE, PLANE, Plane, normalized, varray());
  1760. ADDFUNC0R(PLANE, VECTOR3, Plane, center, varray());
  1761. ADDFUNC0R(PLANE, VECTOR3, Plane, get_any_point, varray());
  1762. ADDFUNC1R(PLANE, BOOL, Plane, is_equal_approx, PLANE, "plane", varray());
  1763. ADDFUNC1R(PLANE, BOOL, Plane, is_point_over, VECTOR3, "point", varray());
  1764. ADDFUNC1R(PLANE, FLOAT, Plane, distance_to, VECTOR3, "point", varray());
  1765. ADDFUNC2R(PLANE, BOOL, Plane, has_point, VECTOR3, "point", FLOAT, "epsilon", varray(CMP_EPSILON));
  1766. ADDFUNC1R(PLANE, VECTOR3, Plane, project, VECTOR3, "point", varray());
  1767. ADDFUNC2R(PLANE, VECTOR3, Plane, intersect_3, PLANE, "b", PLANE, "c", varray());
  1768. ADDFUNC2R(PLANE, VECTOR3, Plane, intersects_ray, VECTOR3, "from", VECTOR3, "dir", varray());
  1769. ADDFUNC2R(PLANE, VECTOR3, Plane, intersects_segment, VECTOR3, "begin", VECTOR3, "end", varray());
  1770. ADDFUNC0R(QUAT, FLOAT, Quat, length, varray());
  1771. ADDFUNC0R(QUAT, FLOAT, Quat, length_squared, varray());
  1772. ADDFUNC0R(QUAT, QUAT, Quat, normalized, varray());
  1773. ADDFUNC0R(QUAT, BOOL, Quat, is_normalized, varray());
  1774. ADDFUNC1R(QUAT, BOOL, Quat, is_equal_approx, QUAT, "quat", varray());
  1775. ADDFUNC0R(QUAT, QUAT, Quat, inverse, varray());
  1776. ADDFUNC1R(QUAT, FLOAT, Quat, dot, QUAT, "b", varray());
  1777. ADDFUNC1R(QUAT, VECTOR3, Quat, xform, VECTOR3, "v", varray());
  1778. ADDFUNC2R(QUAT, QUAT, Quat, slerp, QUAT, "b", FLOAT, "t", varray());
  1779. ADDFUNC2R(QUAT, QUAT, Quat, slerpni, QUAT, "b", FLOAT, "t", varray());
  1780. ADDFUNC4R(QUAT, QUAT, Quat, cubic_slerp, QUAT, "b", QUAT, "pre_a", QUAT, "post_b", FLOAT, "t", varray());
  1781. ADDFUNC0R(QUAT, VECTOR3, Quat, get_euler, varray());
  1782. ADDFUNC1(QUAT, NIL, Quat, set_euler, VECTOR3, "euler", varray());
  1783. ADDFUNC2(QUAT, NIL, Quat, set_axis_angle, VECTOR3, "axis", FLOAT, "angle", varray());
  1784. ADDFUNC0R(COLOR, INT, Color, to_argb32, varray());
  1785. ADDFUNC0R(COLOR, INT, Color, to_abgr32, varray());
  1786. ADDFUNC0R(COLOR, INT, Color, to_rgba32, varray());
  1787. ADDFUNC0R(COLOR, INT, Color, to_argb64, varray());
  1788. ADDFUNC0R(COLOR, INT, Color, to_abgr64, varray());
  1789. ADDFUNC0R(COLOR, INT, Color, to_rgba64, varray());
  1790. ADDFUNC0R(COLOR, COLOR, Color, inverted, varray());
  1791. ADDFUNC0R(COLOR, COLOR, Color, contrasted, varray());
  1792. ADDFUNC2R(COLOR, COLOR, Color, lerp, COLOR, "b", FLOAT, "t", varray());
  1793. ADDFUNC1R(COLOR, COLOR, Color, blend, COLOR, "over", varray());
  1794. ADDFUNC1R(COLOR, COLOR, Color, lightened, FLOAT, "amount", varray());
  1795. ADDFUNC1R(COLOR, COLOR, Color, darkened, FLOAT, "amount", varray());
  1796. ADDFUNC1R(COLOR, STRING, Color, to_html, BOOL, "with_alpha", varray(true));
  1797. ADDFUNC4R(COLOR, COLOR, Color, from_hsv, FLOAT, "h", FLOAT, "s", FLOAT, "v", FLOAT, "a", varray(1.0));
  1798. ADDFUNC1R(COLOR, BOOL, Color, is_equal_approx, COLOR, "color", varray());
  1799. ADDFUNC0R(_RID, INT, RID, get_id, varray());
  1800. ADDFUNC0R(NODE_PATH, BOOL, NodePath, is_absolute, varray());
  1801. ADDFUNC0R(NODE_PATH, INT, NodePath, get_name_count, varray());
  1802. ADDFUNC1R(NODE_PATH, STRING, NodePath, get_name, INT, "idx", varray());
  1803. ADDFUNC0R(NODE_PATH, INT, NodePath, get_subname_count, varray());
  1804. ADDFUNC1R(NODE_PATH, STRING, NodePath, get_subname, INT, "idx", varray());
  1805. ADDFUNC0R(NODE_PATH, STRING, NodePath, get_concatenated_subnames, varray());
  1806. ADDFUNC0R(NODE_PATH, NODE_PATH, NodePath, get_as_property_path, varray());
  1807. ADDFUNC0R(NODE_PATH, BOOL, NodePath, is_empty, varray());
  1808. ADDFUNC0R(DICTIONARY, INT, Dictionary, size, varray());
  1809. ADDFUNC0R(DICTIONARY, BOOL, Dictionary, empty, varray());
  1810. ADDFUNC0NC(DICTIONARY, NIL, Dictionary, clear, varray());
  1811. ADDFUNC1R(DICTIONARY, BOOL, Dictionary, has, NIL, "key", varray());
  1812. ADDFUNC1R(DICTIONARY, BOOL, Dictionary, has_all, ARRAY, "keys", varray());
  1813. ADDFUNC1RNC(DICTIONARY, BOOL, Dictionary, erase, NIL, "key", varray());
  1814. ADDFUNC0R(DICTIONARY, INT, Dictionary, hash, varray());
  1815. ADDFUNC0R(DICTIONARY, ARRAY, Dictionary, keys, varray());
  1816. ADDFUNC0R(DICTIONARY, ARRAY, Dictionary, values, varray());
  1817. ADDFUNC1R(DICTIONARY, DICTIONARY, Dictionary, duplicate, BOOL, "deep", varray(false));
  1818. ADDFUNC2R(DICTIONARY, NIL, Dictionary, get, NIL, "key", NIL, "default", varray(Variant()));
  1819. ADDFUNC0R(CALLABLE, BOOL, Callable, is_null, varray());
  1820. ADDFUNC0R(CALLABLE, BOOL, Callable, is_custom, varray());
  1821. ADDFUNC0R(CALLABLE, BOOL, Callable, is_standard, varray());
  1822. ADDFUNC0R(CALLABLE, OBJECT, Callable, get_object, varray());
  1823. ADDFUNC0R(CALLABLE, INT, Callable, get_object_id, varray());
  1824. ADDFUNC0R(CALLABLE, STRING_NAME, Callable, get_method, varray());
  1825. ADDFUNC0R(CALLABLE, INT, Callable, hash, varray());
  1826. ADDFUNC0R(SIGNAL, BOOL, Signal, is_null, varray());
  1827. ADDFUNC0R(SIGNAL, OBJECT, Signal, get_object, varray());
  1828. ADDFUNC0R(SIGNAL, INT, Signal, get_object_id, varray());
  1829. ADDFUNC0R(SIGNAL, STRING_NAME, Signal, get_name, varray());
  1830. ADDFUNC3R(SIGNAL, INT, Signal, connect, CALLABLE, "callable", ARRAY, "binds", INT, "flags", varray(Array(), 0));
  1831. ADDFUNC1R(SIGNAL, NIL, Signal, disconnect, CALLABLE, "callable", varray());
  1832. ADDFUNC1R(SIGNAL, BOOL, Signal, is_connected, CALLABLE, "callable", varray());
  1833. ADDFUNC0R(SIGNAL, ARRAY, Signal, get_connections, varray());
  1834. ADDFUNC0R(ARRAY, INT, Array, size, varray());
  1835. ADDFUNC0R(ARRAY, BOOL, Array, empty, varray());
  1836. ADDFUNC0NC(ARRAY, NIL, Array, clear, varray());
  1837. ADDFUNC0R(ARRAY, INT, Array, hash, varray());
  1838. ADDFUNC1NC(ARRAY, NIL, Array, push_back, NIL, "value", varray());
  1839. ADDFUNC1NC(ARRAY, NIL, Array, push_front, NIL, "value", varray());
  1840. ADDFUNC1NC(ARRAY, NIL, Array, append, NIL, "value", varray());
  1841. ADDFUNC1NC(ARRAY, NIL, Array, resize, INT, "size", varray());
  1842. ADDFUNC2NC(ARRAY, NIL, Array, insert, INT, "position", NIL, "value", varray());
  1843. ADDFUNC1NC(ARRAY, NIL, Array, remove, INT, "position", varray());
  1844. ADDFUNC1NC(ARRAY, NIL, Array, erase, NIL, "value", varray());
  1845. ADDFUNC0R(ARRAY, NIL, Array, front, varray());
  1846. ADDFUNC0R(ARRAY, NIL, Array, back, varray());
  1847. ADDFUNC2R(ARRAY, INT, Array, find, NIL, "what", INT, "from", varray(0));
  1848. ADDFUNC2R(ARRAY, INT, Array, rfind, NIL, "what", INT, "from", varray(-1));
  1849. ADDFUNC1R(ARRAY, INT, Array, find_last, NIL, "value", varray());
  1850. ADDFUNC1R(ARRAY, INT, Array, count, NIL, "value", varray());
  1851. ADDFUNC1R(ARRAY, BOOL, Array, has, NIL, "value", varray());
  1852. ADDFUNC0RNC(ARRAY, NIL, Array, pop_back, varray());
  1853. ADDFUNC0RNC(ARRAY, NIL, Array, pop_front, varray());
  1854. ADDFUNC0NC(ARRAY, NIL, Array, sort, varray());
  1855. ADDFUNC2NC(ARRAY, NIL, Array, sort_custom, OBJECT, "obj", STRING, "func", varray());
  1856. ADDFUNC0NC(ARRAY, NIL, Array, shuffle, varray());
  1857. ADDFUNC2R(ARRAY, INT, Array, bsearch, NIL, "value", BOOL, "before", varray(true));
  1858. ADDFUNC4R(ARRAY, INT, Array, bsearch_custom, NIL, "value", OBJECT, "obj", STRING, "func", BOOL, "before", varray(true));
  1859. ADDFUNC0NC(ARRAY, NIL, Array, invert, varray());
  1860. ADDFUNC1R(ARRAY, ARRAY, Array, duplicate, BOOL, "deep", varray(false));
  1861. ADDFUNC4R(ARRAY, ARRAY, Array, slice, INT, "begin", INT, "end", INT, "step", BOOL, "deep", varray(1, false));
  1862. ADDFUNC0R(ARRAY, NIL, Array, max, varray());
  1863. ADDFUNC0R(ARRAY, NIL, Array, min, varray());
  1864. ADDFUNC0R(PACKED_BYTE_ARRAY, INT, PackedByteArray, size, varray());
  1865. ADDFUNC0R(PACKED_BYTE_ARRAY, BOOL, PackedByteArray, empty, varray());
  1866. ADDFUNC2(PACKED_BYTE_ARRAY, NIL, PackedByteArray, set, INT, "idx", INT, "byte", varray());
  1867. ADDFUNC1(PACKED_BYTE_ARRAY, NIL, PackedByteArray, push_back, INT, "byte", varray());
  1868. ADDFUNC1(PACKED_BYTE_ARRAY, NIL, PackedByteArray, append, INT, "byte", varray());
  1869. ADDFUNC1(PACKED_BYTE_ARRAY, NIL, PackedByteArray, append_array, PACKED_BYTE_ARRAY, "array", varray());
  1870. ADDFUNC1(PACKED_BYTE_ARRAY, NIL, PackedByteArray, remove, INT, "idx", varray());
  1871. ADDFUNC2R(PACKED_BYTE_ARRAY, INT, PackedByteArray, insert, INT, "idx", INT, "byte", varray());
  1872. ADDFUNC1(PACKED_BYTE_ARRAY, NIL, PackedByteArray, resize, INT, "idx", varray());
  1873. ADDFUNC1R(PACKED_BYTE_ARRAY, BOOL, PackedByteArray, has, INT, "value", varray());
  1874. ADDFUNC0(PACKED_BYTE_ARRAY, NIL, PackedByteArray, sort, varray());
  1875. ADDFUNC0(PACKED_BYTE_ARRAY, NIL, PackedByteArray, invert, varray());
  1876. ADDFUNC2R(PACKED_BYTE_ARRAY, PACKED_BYTE_ARRAY, PackedByteArray, subarray, INT, "from", INT, "to", varray());
  1877. ADDFUNC0R(PACKED_BYTE_ARRAY, STRING, PackedByteArray, get_string_from_ascii, varray());
  1878. ADDFUNC0R(PACKED_BYTE_ARRAY, STRING, PackedByteArray, get_string_from_utf8, varray());
  1879. ADDFUNC0R(PACKED_BYTE_ARRAY, STRING, PackedByteArray, hex_encode, varray());
  1880. ADDFUNC1R(PACKED_BYTE_ARRAY, PACKED_BYTE_ARRAY, PackedByteArray, compress, INT, "compression_mode", varray(0));
  1881. ADDFUNC2R(PACKED_BYTE_ARRAY, PACKED_BYTE_ARRAY, PackedByteArray, decompress, INT, "buffer_size", INT, "compression_mode", varray(0));
  1882. ADDFUNC0R(PACKED_INT32_ARRAY, INT, PackedInt32Array, size, varray());
  1883. ADDFUNC0R(PACKED_INT32_ARRAY, BOOL, PackedInt32Array, empty, varray());
  1884. ADDFUNC2(PACKED_INT32_ARRAY, NIL, PackedInt32Array, set, INT, "idx", INT, "integer", varray());
  1885. ADDFUNC1(PACKED_INT32_ARRAY, NIL, PackedInt32Array, push_back, INT, "integer", varray());
  1886. ADDFUNC1(PACKED_INT32_ARRAY, NIL, PackedInt32Array, append, INT, "integer", varray());
  1887. ADDFUNC1(PACKED_INT32_ARRAY, NIL, PackedInt32Array, append_array, PACKED_INT32_ARRAY, "array", varray());
  1888. ADDFUNC1(PACKED_INT32_ARRAY, NIL, PackedInt32Array, remove, INT, "idx", varray());
  1889. ADDFUNC2R(PACKED_INT32_ARRAY, INT, PackedInt32Array, insert, INT, "idx", INT, "integer", varray());
  1890. ADDFUNC1(PACKED_INT32_ARRAY, NIL, PackedInt32Array, resize, INT, "idx", varray());
  1891. ADDFUNC1R(PACKED_INT32_ARRAY, BOOL, PackedInt32Array, has, INT, "value", varray());
  1892. ADDFUNC0(PACKED_INT32_ARRAY, NIL, PackedInt32Array, sort, varray());
  1893. ADDFUNC0(PACKED_INT32_ARRAY, NIL, PackedInt32Array, invert, varray());
  1894. ADDFUNC0R(PACKED_INT64_ARRAY, INT, PackedInt64Array, size, varray());
  1895. ADDFUNC0R(PACKED_INT64_ARRAY, BOOL, PackedInt64Array, empty, varray());
  1896. ADDFUNC2(PACKED_INT64_ARRAY, NIL, PackedInt64Array, set, INT, "idx", INT, "integer", varray());
  1897. ADDFUNC1(PACKED_INT64_ARRAY, NIL, PackedInt64Array, push_back, INT, "integer", varray());
  1898. ADDFUNC1(PACKED_INT64_ARRAY, NIL, PackedInt64Array, append, INT, "integer", varray());
  1899. ADDFUNC1(PACKED_INT64_ARRAY, NIL, PackedInt64Array, append_array, PACKED_INT64_ARRAY, "array", varray());
  1900. ADDFUNC1(PACKED_INT64_ARRAY, NIL, PackedInt64Array, remove, INT, "idx", varray());
  1901. ADDFUNC2R(PACKED_INT64_ARRAY, INT, PackedInt64Array, insert, INT, "idx", INT, "integer", varray());
  1902. ADDFUNC1(PACKED_INT64_ARRAY, NIL, PackedInt64Array, resize, INT, "idx", varray());
  1903. ADDFUNC1R(PACKED_INT64_ARRAY, BOOL, PackedInt64Array, has, INT, "value", varray());
  1904. ADDFUNC0(PACKED_INT64_ARRAY, NIL, PackedInt64Array, sort, varray());
  1905. ADDFUNC0(PACKED_INT64_ARRAY, NIL, PackedInt64Array, invert, varray());
  1906. ADDFUNC0R(PACKED_FLOAT32_ARRAY, INT, PackedFloat32Array, size, varray());
  1907. ADDFUNC0R(PACKED_FLOAT32_ARRAY, BOOL, PackedFloat32Array, empty, varray());
  1908. ADDFUNC2(PACKED_FLOAT32_ARRAY, NIL, PackedFloat32Array, set, INT, "idx", FLOAT, "value", varray());
  1909. ADDFUNC1(PACKED_FLOAT32_ARRAY, NIL, PackedFloat32Array, push_back, FLOAT, "value", varray());
  1910. ADDFUNC1(PACKED_FLOAT32_ARRAY, NIL, PackedFloat32Array, append, FLOAT, "value", varray());
  1911. ADDFUNC1(PACKED_FLOAT32_ARRAY, NIL, PackedFloat32Array, append_array, PACKED_FLOAT32_ARRAY, "array", varray());
  1912. ADDFUNC1(PACKED_FLOAT32_ARRAY, NIL, PackedFloat32Array, remove, INT, "idx", varray());
  1913. ADDFUNC2R(PACKED_FLOAT32_ARRAY, INT, PackedFloat32Array, insert, INT, "idx", FLOAT, "value", varray());
  1914. ADDFUNC1(PACKED_FLOAT32_ARRAY, NIL, PackedFloat32Array, resize, INT, "idx", varray());
  1915. ADDFUNC1R(PACKED_FLOAT32_ARRAY, BOOL, PackedFloat32Array, has, FLOAT, "value", varray());
  1916. ADDFUNC0(PACKED_FLOAT32_ARRAY, NIL, PackedFloat32Array, sort, varray());
  1917. ADDFUNC0(PACKED_FLOAT32_ARRAY, NIL, PackedFloat32Array, invert, varray());
  1918. ADDFUNC0R(PACKED_FLOAT64_ARRAY, INT, PackedFloat64Array, size, varray());
  1919. ADDFUNC0R(PACKED_FLOAT64_ARRAY, BOOL, PackedFloat64Array, empty, varray());
  1920. ADDFUNC2(PACKED_FLOAT64_ARRAY, NIL, PackedFloat64Array, set, INT, "idx", FLOAT, "value", varray());
  1921. ADDFUNC1(PACKED_FLOAT64_ARRAY, NIL, PackedFloat64Array, push_back, FLOAT, "value", varray());
  1922. ADDFUNC1(PACKED_FLOAT64_ARRAY, NIL, PackedFloat64Array, append, FLOAT, "value", varray());
  1923. ADDFUNC1(PACKED_FLOAT64_ARRAY, NIL, PackedFloat64Array, append_array, PACKED_FLOAT64_ARRAY, "array", varray());
  1924. ADDFUNC1(PACKED_FLOAT64_ARRAY, NIL, PackedFloat64Array, remove, INT, "idx", varray());
  1925. ADDFUNC2R(PACKED_FLOAT64_ARRAY, INT, PackedFloat64Array, insert, INT, "idx", FLOAT, "value", varray());
  1926. ADDFUNC1(PACKED_FLOAT64_ARRAY, NIL, PackedFloat64Array, resize, INT, "idx", varray());
  1927. ADDFUNC1R(PACKED_FLOAT64_ARRAY, BOOL, PackedFloat64Array, has, FLOAT, "value", varray());
  1928. ADDFUNC0(PACKED_FLOAT64_ARRAY, NIL, PackedFloat64Array, sort, varray());
  1929. ADDFUNC0(PACKED_FLOAT64_ARRAY, NIL, PackedFloat64Array, invert, varray());
  1930. ADDFUNC0R(PACKED_STRING_ARRAY, INT, PackedStringArray, size, varray());
  1931. ADDFUNC0R(PACKED_STRING_ARRAY, BOOL, PackedStringArray, empty, varray());
  1932. ADDFUNC2(PACKED_STRING_ARRAY, NIL, PackedStringArray, set, INT, "idx", STRING, "string", varray());
  1933. ADDFUNC1(PACKED_STRING_ARRAY, NIL, PackedStringArray, push_back, STRING, "string", varray());
  1934. ADDFUNC1(PACKED_STRING_ARRAY, NIL, PackedStringArray, append, STRING, "string", varray());
  1935. ADDFUNC1(PACKED_STRING_ARRAY, NIL, PackedStringArray, append_array, PACKED_STRING_ARRAY, "array", varray());
  1936. ADDFUNC1(PACKED_STRING_ARRAY, NIL, PackedStringArray, remove, INT, "idx", varray());
  1937. ADDFUNC2R(PACKED_STRING_ARRAY, INT, PackedStringArray, insert, INT, "idx", STRING, "string", varray());
  1938. ADDFUNC1(PACKED_STRING_ARRAY, NIL, PackedStringArray, resize, INT, "idx", varray());
  1939. ADDFUNC1R(PACKED_STRING_ARRAY, BOOL, PackedStringArray, has, STRING, "value", varray());
  1940. ADDFUNC0(PACKED_STRING_ARRAY, NIL, PackedStringArray, sort, varray());
  1941. ADDFUNC0(PACKED_STRING_ARRAY, NIL, PackedStringArray, invert, varray());
  1942. ADDFUNC0R(PACKED_VECTOR2_ARRAY, INT, PackedVector2Array, size, varray());
  1943. ADDFUNC0R(PACKED_VECTOR2_ARRAY, BOOL, PackedVector2Array, empty, varray());
  1944. ADDFUNC2(PACKED_VECTOR2_ARRAY, NIL, PackedVector2Array, set, INT, "idx", VECTOR2, "vector2", varray());
  1945. ADDFUNC1(PACKED_VECTOR2_ARRAY, NIL, PackedVector2Array, push_back, VECTOR2, "vector2", varray());
  1946. ADDFUNC1(PACKED_VECTOR2_ARRAY, NIL, PackedVector2Array, append, VECTOR2, "vector2", varray());
  1947. ADDFUNC1(PACKED_VECTOR2_ARRAY, NIL, PackedVector2Array, append_array, PACKED_VECTOR2_ARRAY, "array", varray());
  1948. ADDFUNC1(PACKED_VECTOR2_ARRAY, NIL, PackedVector2Array, remove, INT, "idx", varray());
  1949. ADDFUNC2R(PACKED_VECTOR2_ARRAY, INT, PackedVector2Array, insert, INT, "idx", VECTOR2, "vector2", varray());
  1950. ADDFUNC1(PACKED_VECTOR2_ARRAY, NIL, PackedVector2Array, resize, INT, "idx", varray());
  1951. ADDFUNC1R(PACKED_VECTOR2_ARRAY, BOOL, PackedVector2Array, has, VECTOR2, "value", varray());
  1952. ADDFUNC0(PACKED_VECTOR2_ARRAY, NIL, PackedVector2Array, sort, varray());
  1953. ADDFUNC0(PACKED_VECTOR2_ARRAY, NIL, PackedVector2Array, invert, varray());
  1954. ADDFUNC0R(PACKED_VECTOR3_ARRAY, INT, PackedVector3Array, size, varray());
  1955. ADDFUNC0R(PACKED_VECTOR3_ARRAY, BOOL, PackedVector3Array, empty, varray());
  1956. ADDFUNC2(PACKED_VECTOR3_ARRAY, NIL, PackedVector3Array, set, INT, "idx", VECTOR3, "vector3", varray());
  1957. ADDFUNC1(PACKED_VECTOR3_ARRAY, NIL, PackedVector3Array, push_back, VECTOR3, "vector3", varray());
  1958. ADDFUNC1(PACKED_VECTOR3_ARRAY, NIL, PackedVector3Array, append, VECTOR3, "vector3", varray());
  1959. ADDFUNC1(PACKED_VECTOR3_ARRAY, NIL, PackedVector3Array, append_array, PACKED_VECTOR3_ARRAY, "array", varray());
  1960. ADDFUNC1(PACKED_VECTOR3_ARRAY, NIL, PackedVector3Array, remove, INT, "idx", varray());
  1961. ADDFUNC2R(PACKED_VECTOR3_ARRAY, INT, PackedVector3Array, insert, INT, "idx", VECTOR3, "vector3", varray());
  1962. ADDFUNC1(PACKED_VECTOR3_ARRAY, NIL, PackedVector3Array, resize, INT, "idx", varray());
  1963. ADDFUNC1R(PACKED_VECTOR3_ARRAY, BOOL, PackedVector3Array, has, VECTOR3, "value", varray());
  1964. ADDFUNC0(PACKED_VECTOR3_ARRAY, NIL, PackedVector3Array, sort, varray());
  1965. ADDFUNC0(PACKED_VECTOR3_ARRAY, NIL, PackedVector3Array, invert, varray());
  1966. ADDFUNC0R(PACKED_COLOR_ARRAY, INT, PackedColorArray, size, varray());
  1967. ADDFUNC0R(PACKED_COLOR_ARRAY, BOOL, PackedColorArray, empty, varray());
  1968. ADDFUNC2(PACKED_COLOR_ARRAY, NIL, PackedColorArray, set, INT, "idx", COLOR, "color", varray());
  1969. ADDFUNC1(PACKED_COLOR_ARRAY, NIL, PackedColorArray, push_back, COLOR, "color", varray());
  1970. ADDFUNC1(PACKED_COLOR_ARRAY, NIL, PackedColorArray, append, COLOR, "color", varray());
  1971. ADDFUNC1(PACKED_COLOR_ARRAY, NIL, PackedColorArray, append_array, PACKED_COLOR_ARRAY, "array", varray());
  1972. ADDFUNC1(PACKED_COLOR_ARRAY, NIL, PackedColorArray, remove, INT, "idx", varray());
  1973. ADDFUNC2R(PACKED_COLOR_ARRAY, INT, PackedColorArray, insert, INT, "idx", COLOR, "color", varray());
  1974. ADDFUNC1(PACKED_COLOR_ARRAY, NIL, PackedColorArray, resize, INT, "idx", varray());
  1975. ADDFUNC1R(PACKED_COLOR_ARRAY, BOOL, PackedColorArray, has, COLOR, "value", varray());
  1976. ADDFUNC0(PACKED_COLOR_ARRAY, NIL, PackedColorArray, sort, varray());
  1977. ADDFUNC0(PACKED_COLOR_ARRAY, NIL, PackedColorArray, invert, varray());
  1978. //pointerbased
  1979. ADDFUNC0R(AABB, FLOAT, AABB, get_area, varray());
  1980. ADDFUNC0R(AABB, BOOL, AABB, has_no_area, varray());
  1981. ADDFUNC0R(AABB, BOOL, AABB, has_no_surface, varray());
  1982. ADDFUNC1R(AABB, BOOL, AABB, has_point, VECTOR3, "point", varray());
  1983. ADDFUNC1R(AABB, BOOL, AABB, is_equal_approx, AABB, "aabb", varray());
  1984. ADDFUNC1R(AABB, BOOL, AABB, intersects, AABB, "with", varray());
  1985. ADDFUNC1R(AABB, BOOL, AABB, encloses, AABB, "with", varray());
  1986. ADDFUNC1R(AABB, BOOL, AABB, intersects_plane, PLANE, "plane", varray());
  1987. ADDFUNC2R(AABB, BOOL, AABB, intersects_segment, VECTOR3, "from", VECTOR3, "to", varray());
  1988. ADDFUNC1R(AABB, AABB, AABB, intersection, AABB, "with", varray());
  1989. ADDFUNC1R(AABB, AABB, AABB, merge, AABB, "with", varray());
  1990. ADDFUNC1R(AABB, AABB, AABB, expand, VECTOR3, "to_point", varray());
  1991. ADDFUNC1R(AABB, AABB, AABB, grow, FLOAT, "by", varray());
  1992. ADDFUNC1R(AABB, VECTOR3, AABB, get_support, VECTOR3, "dir", varray());
  1993. ADDFUNC0R(AABB, VECTOR3, AABB, get_longest_axis, varray());
  1994. ADDFUNC0R(AABB, INT, AABB, get_longest_axis_index, varray());
  1995. ADDFUNC0R(AABB, FLOAT, AABB, get_longest_axis_size, varray());
  1996. ADDFUNC0R(AABB, VECTOR3, AABB, get_shortest_axis, varray());
  1997. ADDFUNC0R(AABB, INT, AABB, get_shortest_axis_index, varray());
  1998. ADDFUNC0R(AABB, FLOAT, AABB, get_shortest_axis_size, varray());
  1999. ADDFUNC1R(AABB, VECTOR3, AABB, get_endpoint, INT, "idx", varray());
  2000. ADDFUNC0R(TRANSFORM2D, TRANSFORM2D, Transform2D, inverse, varray());
  2001. ADDFUNC0R(TRANSFORM2D, TRANSFORM2D, Transform2D, affine_inverse, varray());
  2002. ADDFUNC0R(TRANSFORM2D, FLOAT, Transform2D, get_rotation, varray());
  2003. ADDFUNC0R(TRANSFORM2D, VECTOR2, Transform2D, get_origin, varray());
  2004. ADDFUNC0R(TRANSFORM2D, VECTOR2, Transform2D, get_scale, varray());
  2005. ADDFUNC0R(TRANSFORM2D, TRANSFORM2D, Transform2D, orthonormalized, varray());
  2006. ADDFUNC1R(TRANSFORM2D, TRANSFORM2D, Transform2D, rotated, FLOAT, "phi", varray());
  2007. ADDFUNC1R(TRANSFORM2D, TRANSFORM2D, Transform2D, scaled, VECTOR2, "scale", varray());
  2008. ADDFUNC1R(TRANSFORM2D, TRANSFORM2D, Transform2D, translated, VECTOR2, "offset", varray());
  2009. ADDFUNC1R(TRANSFORM2D, NIL, Transform2D, xform, NIL, "v", varray());
  2010. ADDFUNC1R(TRANSFORM2D, NIL, Transform2D, xform_inv, NIL, "v", varray());
  2011. ADDFUNC1R(TRANSFORM2D, VECTOR2, Transform2D, basis_xform, VECTOR2, "v", varray());
  2012. ADDFUNC1R(TRANSFORM2D, VECTOR2, Transform2D, basis_xform_inv, VECTOR2, "v", varray());
  2013. ADDFUNC2R(TRANSFORM2D, TRANSFORM2D, Transform2D, interpolate_with, TRANSFORM2D, "transform", FLOAT, "weight", varray());
  2014. ADDFUNC1R(TRANSFORM2D, BOOL, Transform2D, is_equal_approx, TRANSFORM2D, "transform", varray());
  2015. ADDFUNC0R(BASIS, BASIS, Basis, inverse, varray());
  2016. ADDFUNC0R(BASIS, BASIS, Basis, transposed, varray());
  2017. ADDFUNC0R(BASIS, BASIS, Basis, orthonormalized, varray());
  2018. ADDFUNC0R(BASIS, FLOAT, Basis, determinant, varray());
  2019. ADDFUNC2R(BASIS, BASIS, Basis, rotated, VECTOR3, "axis", FLOAT, "phi", varray());
  2020. ADDFUNC1R(BASIS, BASIS, Basis, scaled, VECTOR3, "scale", varray());
  2021. ADDFUNC0R(BASIS, VECTOR3, Basis, get_scale, varray());
  2022. ADDFUNC0R(BASIS, VECTOR3, Basis, get_euler, varray());
  2023. ADDFUNC1R(BASIS, FLOAT, Basis, tdotx, VECTOR3, "with", varray());
  2024. ADDFUNC1R(BASIS, FLOAT, Basis, tdoty, VECTOR3, "with", varray());
  2025. ADDFUNC1R(BASIS, FLOAT, Basis, tdotz, VECTOR3, "with", varray());
  2026. ADDFUNC1R(BASIS, VECTOR3, Basis, xform, VECTOR3, "v", varray());
  2027. ADDFUNC1R(BASIS, VECTOR3, Basis, xform_inv, VECTOR3, "v", varray());
  2028. ADDFUNC0R(BASIS, INT, Basis, get_orthogonal_index, varray());
  2029. ADDFUNC2R(BASIS, BASIS, Basis, slerp, BASIS, "b", FLOAT, "t", varray());
  2030. ADDFUNC2R(BASIS, BOOL, Basis, is_equal_approx, BASIS, "b", FLOAT, "epsilon", varray(CMP_EPSILON)); // TODO: Replace in 4.0, see other TODO.
  2031. ADDFUNC0R(BASIS, QUAT, Basis, get_rotation_quat, varray());
  2032. ADDFUNC0R(TRANSFORM, TRANSFORM, Transform, inverse, varray());
  2033. ADDFUNC0R(TRANSFORM, TRANSFORM, Transform, affine_inverse, varray());
  2034. ADDFUNC0R(TRANSFORM, TRANSFORM, Transform, orthonormalized, varray());
  2035. ADDFUNC2R(TRANSFORM, TRANSFORM, Transform, rotated, VECTOR3, "axis", FLOAT, "phi", varray());
  2036. ADDFUNC1R(TRANSFORM, TRANSFORM, Transform, scaled, VECTOR3, "scale", varray());
  2037. ADDFUNC1R(TRANSFORM, TRANSFORM, Transform, translated, VECTOR3, "offset", varray());
  2038. ADDFUNC2R(TRANSFORM, TRANSFORM, Transform, looking_at, VECTOR3, "target", VECTOR3, "up", varray());
  2039. ADDFUNC2R(TRANSFORM, TRANSFORM, Transform, interpolate_with, TRANSFORM, "transform", FLOAT, "weight", varray());
  2040. ADDFUNC1R(TRANSFORM, BOOL, Transform, is_equal_approx, TRANSFORM, "transform", varray());
  2041. ADDFUNC1R(TRANSFORM, NIL, Transform, xform, NIL, "v", varray());
  2042. ADDFUNC1R(TRANSFORM, NIL, Transform, xform_inv, NIL, "v", varray());
  2043. /* REGISTER CONSTRUCTORS */
  2044. _VariantCall::add_constructor(_VariantCall::Vector2_init1, Variant::VECTOR2, "x", Variant::FLOAT, "y", Variant::FLOAT);
  2045. _VariantCall::add_constructor(_VariantCall::Vector2i_init1, Variant::VECTOR2I, "x", Variant::INT, "y", Variant::INT);
  2046. _VariantCall::add_constructor(_VariantCall::Rect2_init1, Variant::RECT2, "position", Variant::VECTOR2, "size", Variant::VECTOR2);
  2047. _VariantCall::add_constructor(_VariantCall::Rect2_init2, Variant::RECT2, "x", Variant::FLOAT, "y", Variant::FLOAT, "width", Variant::FLOAT, "height", Variant::FLOAT);
  2048. _VariantCall::add_constructor(_VariantCall::Rect2i_init1, Variant::RECT2I, "position", Variant::VECTOR2, "size", Variant::VECTOR2);
  2049. _VariantCall::add_constructor(_VariantCall::Rect2i_init2, Variant::RECT2I, "x", Variant::INT, "y", Variant::INT, "width", Variant::INT, "height", Variant::INT);
  2050. _VariantCall::add_constructor(_VariantCall::Transform2D_init2, Variant::TRANSFORM2D, "rotation", Variant::FLOAT, "position", Variant::VECTOR2);
  2051. _VariantCall::add_constructor(_VariantCall::Transform2D_init3, Variant::TRANSFORM2D, "x_axis", Variant::VECTOR2, "y_axis", Variant::VECTOR2, "origin", Variant::VECTOR2);
  2052. _VariantCall::add_constructor(_VariantCall::Vector3_init1, Variant::VECTOR3, "x", Variant::FLOAT, "y", Variant::FLOAT, "z", Variant::FLOAT);
  2053. _VariantCall::add_constructor(_VariantCall::Vector3i_init1, Variant::VECTOR3I, "x", Variant::INT, "y", Variant::INT, "z", Variant::INT);
  2054. _VariantCall::add_constructor(_VariantCall::Plane_init1, Variant::PLANE, "a", Variant::FLOAT, "b", Variant::FLOAT, "c", Variant::FLOAT, "d", Variant::FLOAT);
  2055. _VariantCall::add_constructor(_VariantCall::Plane_init2, Variant::PLANE, "v1", Variant::VECTOR3, "v2", Variant::VECTOR3, "v3", Variant::VECTOR3);
  2056. _VariantCall::add_constructor(_VariantCall::Plane_init3, Variant::PLANE, "normal", Variant::VECTOR3, "d", Variant::FLOAT);
  2057. _VariantCall::add_constructor(_VariantCall::Quat_init1, Variant::QUAT, "x", Variant::FLOAT, "y", Variant::FLOAT, "z", Variant::FLOAT, "w", Variant::FLOAT);
  2058. _VariantCall::add_constructor(_VariantCall::Quat_init2, Variant::QUAT, "axis", Variant::VECTOR3, "angle", Variant::FLOAT);
  2059. _VariantCall::add_constructor(_VariantCall::Quat_init3, Variant::QUAT, "euler", Variant::VECTOR3);
  2060. _VariantCall::add_constructor(_VariantCall::Color_init1, Variant::COLOR, "r", Variant::FLOAT, "g", Variant::FLOAT, "b", Variant::FLOAT, "a", Variant::FLOAT);
  2061. _VariantCall::add_constructor(_VariantCall::Color_init2, Variant::COLOR, "r", Variant::FLOAT, "g", Variant::FLOAT, "b", Variant::FLOAT);
  2062. // init3 and init4 are the constructors for HTML hex strings and integers respectively which don't need binding here, so we skip to init5.
  2063. _VariantCall::add_constructor(_VariantCall::Color_init5, Variant::COLOR, "c", Variant::COLOR, "a", Variant::FLOAT);
  2064. _VariantCall::add_constructor(_VariantCall::AABB_init1, Variant::AABB, "position", Variant::VECTOR3, "size", Variant::VECTOR3);
  2065. _VariantCall::add_constructor(_VariantCall::Basis_init1, Variant::BASIS, "x_axis", Variant::VECTOR3, "y_axis", Variant::VECTOR3, "z_axis", Variant::VECTOR3);
  2066. _VariantCall::add_constructor(_VariantCall::Basis_init2, Variant::BASIS, "axis", Variant::VECTOR3, "phi", Variant::FLOAT);
  2067. _VariantCall::add_constructor(_VariantCall::Transform_init1, Variant::TRANSFORM, "x_axis", Variant::VECTOR3, "y_axis", Variant::VECTOR3, "z_axis", Variant::VECTOR3, "origin", Variant::VECTOR3);
  2068. _VariantCall::add_constructor(_VariantCall::Transform_init2, Variant::TRANSFORM, "basis", Variant::BASIS, "origin", Variant::VECTOR3);
  2069. _VariantCall::add_constructor(_VariantCall::Callable_init2, Variant::CALLABLE, "object", Variant::OBJECT, "method_name", Variant::STRING_NAME);
  2070. _VariantCall::add_constructor(_VariantCall::Signal_init2, Variant::SIGNAL, "object", Variant::OBJECT, "signal_name", Variant::STRING_NAME);
  2071. /* REGISTER CONSTANTS */
  2072. _populate_named_colors();
  2073. for (Map<String, Color>::Element *color = _named_colors.front(); color; color = color->next()) {
  2074. _VariantCall::add_variant_constant(Variant::COLOR, color->key(), color->value());
  2075. }
  2076. _VariantCall::add_constant(Variant::VECTOR3, "AXIS_X", Vector3::AXIS_X);
  2077. _VariantCall::add_constant(Variant::VECTOR3, "AXIS_Y", Vector3::AXIS_Y);
  2078. _VariantCall::add_constant(Variant::VECTOR3, "AXIS_Z", Vector3::AXIS_Z);
  2079. _VariantCall::add_variant_constant(Variant::VECTOR3, "ZERO", Vector3(0, 0, 0));
  2080. _VariantCall::add_variant_constant(Variant::VECTOR3, "ONE", Vector3(1, 1, 1));
  2081. _VariantCall::add_variant_constant(Variant::VECTOR3, "INF", Vector3(Math_INF, Math_INF, Math_INF));
  2082. _VariantCall::add_variant_constant(Variant::VECTOR3, "LEFT", Vector3(-1, 0, 0));
  2083. _VariantCall::add_variant_constant(Variant::VECTOR3, "RIGHT", Vector3(1, 0, 0));
  2084. _VariantCall::add_variant_constant(Variant::VECTOR3, "UP", Vector3(0, 1, 0));
  2085. _VariantCall::add_variant_constant(Variant::VECTOR3, "DOWN", Vector3(0, -1, 0));
  2086. _VariantCall::add_variant_constant(Variant::VECTOR3, "FORWARD", Vector3(0, 0, -1));
  2087. _VariantCall::add_variant_constant(Variant::VECTOR3, "BACK", Vector3(0, 0, 1));
  2088. _VariantCall::add_constant(Variant::VECTOR3I, "AXIS_X", Vector3::AXIS_X);
  2089. _VariantCall::add_constant(Variant::VECTOR3I, "AXIS_Y", Vector3::AXIS_Y);
  2090. _VariantCall::add_constant(Variant::VECTOR3I, "AXIS_Z", Vector3::AXIS_Z);
  2091. _VariantCall::add_variant_constant(Variant::VECTOR3I, "ZERO", Vector3i(0, 0, 0));
  2092. _VariantCall::add_variant_constant(Variant::VECTOR3I, "ONE", Vector3i(1, 1, 1));
  2093. _VariantCall::add_variant_constant(Variant::VECTOR3I, "LEFT", Vector3i(-1, 0, 0));
  2094. _VariantCall::add_variant_constant(Variant::VECTOR3I, "RIGHT", Vector3i(1, 0, 0));
  2095. _VariantCall::add_variant_constant(Variant::VECTOR3I, "UP", Vector3i(0, 1, 0));
  2096. _VariantCall::add_variant_constant(Variant::VECTOR3I, "DOWN", Vector3i(0, -1, 0));
  2097. _VariantCall::add_variant_constant(Variant::VECTOR3I, "FORWARD", Vector3i(0, 0, -1));
  2098. _VariantCall::add_variant_constant(Variant::VECTOR3I, "BACK", Vector3i(0, 0, 1));
  2099. _VariantCall::add_constant(Variant::VECTOR2, "AXIS_X", Vector2::AXIS_X);
  2100. _VariantCall::add_constant(Variant::VECTOR2, "AXIS_Y", Vector2::AXIS_Y);
  2101. _VariantCall::add_constant(Variant::VECTOR2I, "AXIS_X", Vector2::AXIS_X);
  2102. _VariantCall::add_constant(Variant::VECTOR2I, "AXIS_Y", Vector2::AXIS_Y);
  2103. _VariantCall::add_variant_constant(Variant::VECTOR2, "ZERO", Vector2(0, 0));
  2104. _VariantCall::add_variant_constant(Variant::VECTOR2, "ONE", Vector2(1, 1));
  2105. _VariantCall::add_variant_constant(Variant::VECTOR2, "INF", Vector2(Math_INF, Math_INF));
  2106. _VariantCall::add_variant_constant(Variant::VECTOR2, "LEFT", Vector2(-1, 0));
  2107. _VariantCall::add_variant_constant(Variant::VECTOR2, "RIGHT", Vector2(1, 0));
  2108. _VariantCall::add_variant_constant(Variant::VECTOR2, "UP", Vector2(0, -1));
  2109. _VariantCall::add_variant_constant(Variant::VECTOR2, "DOWN", Vector2(0, 1));
  2110. _VariantCall::add_variant_constant(Variant::VECTOR2I, "ZERO", Vector2i(0, 0));
  2111. _VariantCall::add_variant_constant(Variant::VECTOR2I, "ONE", Vector2i(1, 1));
  2112. _VariantCall::add_variant_constant(Variant::VECTOR2I, "LEFT", Vector2i(-1, 0));
  2113. _VariantCall::add_variant_constant(Variant::VECTOR2I, "RIGHT", Vector2i(1, 0));
  2114. _VariantCall::add_variant_constant(Variant::VECTOR2I, "UP", Vector2i(0, -1));
  2115. _VariantCall::add_variant_constant(Variant::VECTOR2I, "DOWN", Vector2i(0, 1));
  2116. _VariantCall::add_variant_constant(Variant::TRANSFORM2D, "IDENTITY", Transform2D());
  2117. _VariantCall::add_variant_constant(Variant::TRANSFORM2D, "FLIP_X", Transform2D(-1, 0, 0, 1, 0, 0));
  2118. _VariantCall::add_variant_constant(Variant::TRANSFORM2D, "FLIP_Y", Transform2D(1, 0, 0, -1, 0, 0));
  2119. Transform identity_transform = Transform();
  2120. Transform flip_x_transform = Transform(-1, 0, 0, 0, 1, 0, 0, 0, 1, 0, 0, 0);
  2121. Transform flip_y_transform = Transform(1, 0, 0, 0, -1, 0, 0, 0, 1, 0, 0, 0);
  2122. Transform flip_z_transform = Transform(1, 0, 0, 0, 1, 0, 0, 0, -1, 0, 0, 0);
  2123. _VariantCall::add_variant_constant(Variant::TRANSFORM, "IDENTITY", identity_transform);
  2124. _VariantCall::add_variant_constant(Variant::TRANSFORM, "FLIP_X", flip_x_transform);
  2125. _VariantCall::add_variant_constant(Variant::TRANSFORM, "FLIP_Y", flip_y_transform);
  2126. _VariantCall::add_variant_constant(Variant::TRANSFORM, "FLIP_Z", flip_z_transform);
  2127. Basis identity_basis = Basis();
  2128. Basis flip_x_basis = Basis(-1, 0, 0, 0, 1, 0, 0, 0, 1);
  2129. Basis flip_y_basis = Basis(1, 0, 0, 0, -1, 0, 0, 0, 1);
  2130. Basis flip_z_basis = Basis(1, 0, 0, 0, 1, 0, 0, 0, -1);
  2131. _VariantCall::add_variant_constant(Variant::BASIS, "IDENTITY", identity_basis);
  2132. _VariantCall::add_variant_constant(Variant::BASIS, "FLIP_X", flip_x_basis);
  2133. _VariantCall::add_variant_constant(Variant::BASIS, "FLIP_Y", flip_y_basis);
  2134. _VariantCall::add_variant_constant(Variant::BASIS, "FLIP_Z", flip_z_basis);
  2135. _VariantCall::add_variant_constant(Variant::PLANE, "PLANE_YZ", Plane(Vector3(1, 0, 0), 0));
  2136. _VariantCall::add_variant_constant(Variant::PLANE, "PLANE_XZ", Plane(Vector3(0, 1, 0), 0));
  2137. _VariantCall::add_variant_constant(Variant::PLANE, "PLANE_XY", Plane(Vector3(0, 0, 1), 0));
  2138. _VariantCall::add_variant_constant(Variant::QUAT, "IDENTITY", Quat(0, 0, 0, 1));
  2139. }
  2140. void unregister_variant_methods() {
  2141. memdelete_arr(_VariantCall::type_funcs);
  2142. memdelete_arr(_VariantCall::construct_funcs);
  2143. memdelete_arr(_VariantCall::constant_data);
  2144. }