variant_setget.cpp 121 KB

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  1. /*************************************************************************/
  2. /* variant_setget.cpp */
  3. /*************************************************************************/
  4. /* This file is part of: */
  5. /* GODOT ENGINE */
  6. /* https://godotengine.org */
  7. /*************************************************************************/
  8. /* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
  9. /* Copyright (c) 2014-2021 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/core_string_names.h"
  32. #include "core/debugger/engine_debugger.h"
  33. #include "core/object/class_db.h"
  34. #include "core/templates/local_vector.h"
  35. #include "core/variant/variant_internal.h"
  36. /**** NAMED SETTERS AND GETTERS ****/
  37. #define SETGET_STRUCT(m_base_type, m_member_type, m_member) \
  38. struct VariantSetGet_##m_base_type##_##m_member { \
  39. static void get(const Variant *base, Variant *member) { \
  40. VariantTypeAdjust<m_member_type>::adjust(member); \
  41. *VariantGetInternalPtr<m_member_type>::get_ptr(member) = VariantGetInternalPtr<m_base_type>::get_ptr(base)->m_member; \
  42. } \
  43. static void ptr_get(const void *base, void *member) { \
  44. PtrToArg<m_member_type>::encode(PtrToArg<m_base_type>::convert(base).m_member, member); \
  45. } \
  46. static void set(Variant *base, const Variant *value, bool &valid) { \
  47. if (value->get_type() == GetTypeInfo<m_member_type>::VARIANT_TYPE) { \
  48. VariantGetInternalPtr<m_base_type>::get_ptr(base)->m_member = *VariantGetInternalPtr<m_member_type>::get_ptr(value); \
  49. valid = true; \
  50. } else { \
  51. valid = false; \
  52. } \
  53. } \
  54. static void validated_set(Variant *base, const Variant *value) { \
  55. VariantGetInternalPtr<m_base_type>::get_ptr(base)->m_member = *VariantGetInternalPtr<m_member_type>::get_ptr(value); \
  56. } \
  57. static void ptr_set(void *base, const void *member) { \
  58. m_base_type b = PtrToArg<m_base_type>::convert(base); \
  59. b.m_member = PtrToArg<m_member_type>::convert(member); \
  60. PtrToArg<m_base_type>::encode(b, base); \
  61. } \
  62. static Variant::Type get_type() { return GetTypeInfo<m_member_type>::VARIANT_TYPE; } \
  63. };
  64. #define SETGET_NUMBER_STRUCT(m_base_type, m_member_type, m_member) \
  65. struct VariantSetGet_##m_base_type##_##m_member { \
  66. static void get(const Variant *base, Variant *member) { \
  67. VariantTypeAdjust<m_member_type>::adjust(member); \
  68. *VariantGetInternalPtr<m_member_type>::get_ptr(member) = VariantGetInternalPtr<m_base_type>::get_ptr(base)->m_member; \
  69. } \
  70. static void ptr_get(const void *base, void *member) { \
  71. PtrToArg<m_member_type>::encode(PtrToArg<m_base_type>::convert(base).m_member, member); \
  72. } \
  73. static void set(Variant *base, const Variant *value, bool &valid) { \
  74. if (value->get_type() == Variant::FLOAT) { \
  75. VariantGetInternalPtr<m_base_type>::get_ptr(base)->m_member = *VariantGetInternalPtr<double>::get_ptr(value); \
  76. valid = true; \
  77. } else if (value->get_type() == Variant::INT) { \
  78. VariantGetInternalPtr<m_base_type>::get_ptr(base)->m_member = *VariantGetInternalPtr<int64_t>::get_ptr(value); \
  79. valid = true; \
  80. } else { \
  81. valid = false; \
  82. } \
  83. } \
  84. static void validated_set(Variant *base, const Variant *value) { \
  85. VariantGetInternalPtr<m_base_type>::get_ptr(base)->m_member = *VariantGetInternalPtr<m_member_type>::get_ptr(value); \
  86. } \
  87. static void ptr_set(void *base, const void *member) { \
  88. m_base_type b = PtrToArg<m_base_type>::convert(base); \
  89. b.m_member = PtrToArg<m_member_type>::convert(member); \
  90. PtrToArg<m_base_type>::encode(b, base); \
  91. } \
  92. static Variant::Type get_type() { return GetTypeInfo<m_member_type>::VARIANT_TYPE; } \
  93. };
  94. #define SETGET_STRUCT_CUSTOM(m_base_type, m_member_type, m_member, m_custom) \
  95. struct VariantSetGet_##m_base_type##_##m_member { \
  96. static void get(const Variant *base, Variant *member) { \
  97. VariantTypeAdjust<m_member_type>::adjust(member); \
  98. *VariantGetInternalPtr<m_member_type>::get_ptr(member) = VariantGetInternalPtr<m_base_type>::get_ptr(base)->m_custom; \
  99. } \
  100. static void ptr_get(const void *base, void *member) { \
  101. PtrToArg<m_member_type>::encode(PtrToArg<m_base_type>::convert(base).m_custom, member); \
  102. } \
  103. static void set(Variant *base, const Variant *value, bool &valid) { \
  104. if (value->get_type() == GetTypeInfo<m_member_type>::VARIANT_TYPE) { \
  105. VariantGetInternalPtr<m_base_type>::get_ptr(base)->m_custom = *VariantGetInternalPtr<m_member_type>::get_ptr(value); \
  106. valid = true; \
  107. } else { \
  108. valid = false; \
  109. } \
  110. } \
  111. static void validated_set(Variant *base, const Variant *value) { \
  112. VariantGetInternalPtr<m_base_type>::get_ptr(base)->m_custom = *VariantGetInternalPtr<m_member_type>::get_ptr(value); \
  113. } \
  114. static void ptr_set(void *base, const void *member) { \
  115. m_base_type b = PtrToArg<m_base_type>::convert(base); \
  116. b.m_custom = PtrToArg<m_member_type>::convert(member); \
  117. PtrToArg<m_base_type>::encode(b, base); \
  118. } \
  119. static Variant::Type get_type() { return GetTypeInfo<m_member_type>::VARIANT_TYPE; } \
  120. };
  121. #define SETGET_NUMBER_STRUCT_CUSTOM(m_base_type, m_member_type, m_member, m_custom) \
  122. struct VariantSetGet_##m_base_type##_##m_member { \
  123. static void get(const Variant *base, Variant *member) { \
  124. VariantTypeAdjust<m_member_type>::adjust(member); \
  125. *VariantGetInternalPtr<m_member_type>::get_ptr(member) = VariantGetInternalPtr<m_base_type>::get_ptr(base)->m_custom; \
  126. } \
  127. static void ptr_get(const void *base, void *member) { \
  128. PtrToArg<m_member_type>::encode(PtrToArg<m_base_type>::convert(base).m_custom, member); \
  129. } \
  130. static void set(Variant *base, const Variant *value, bool &valid) { \
  131. if (value->get_type() == Variant::FLOAT) { \
  132. VariantGetInternalPtr<m_base_type>::get_ptr(base)->m_custom = *VariantGetInternalPtr<double>::get_ptr(value); \
  133. valid = true; \
  134. } else if (value->get_type() == Variant::INT) { \
  135. VariantGetInternalPtr<m_base_type>::get_ptr(base)->m_custom = *VariantGetInternalPtr<int64_t>::get_ptr(value); \
  136. valid = true; \
  137. } else { \
  138. valid = false; \
  139. } \
  140. } \
  141. static void validated_set(Variant *base, const Variant *value) { \
  142. VariantGetInternalPtr<m_base_type>::get_ptr(base)->m_custom = *VariantGetInternalPtr<m_member_type>::get_ptr(value); \
  143. } \
  144. static void ptr_set(void *base, const void *member) { \
  145. m_base_type b = PtrToArg<m_base_type>::convert(base); \
  146. b.m_custom = PtrToArg<m_member_type>::convert(member); \
  147. PtrToArg<m_base_type>::encode(b, base); \
  148. } \
  149. static Variant::Type get_type() { return GetTypeInfo<m_member_type>::VARIANT_TYPE; } \
  150. };
  151. #define SETGET_STRUCT_FUNC(m_base_type, m_member_type, m_member, m_setter, m_getter) \
  152. struct VariantSetGet_##m_base_type##_##m_member { \
  153. static void get(const Variant *base, Variant *member) { \
  154. VariantTypeAdjust<m_member_type>::adjust(member); \
  155. *VariantGetInternalPtr<m_member_type>::get_ptr(member) = VariantGetInternalPtr<m_base_type>::get_ptr(base)->m_getter(); \
  156. } \
  157. static void ptr_get(const void *base, void *member) { \
  158. PtrToArg<m_member_type>::encode(PtrToArg<m_base_type>::convert(base).m_getter(), member); \
  159. } \
  160. static void set(Variant *base, const Variant *value, bool &valid) { \
  161. if (value->get_type() == GetTypeInfo<m_member_type>::VARIANT_TYPE) { \
  162. VariantGetInternalPtr<m_base_type>::get_ptr(base)->m_setter(*VariantGetInternalPtr<m_member_type>::get_ptr(value)); \
  163. valid = true; \
  164. } else { \
  165. valid = false; \
  166. } \
  167. } \
  168. static void validated_set(Variant *base, const Variant *value) { \
  169. VariantGetInternalPtr<m_base_type>::get_ptr(base)->m_setter(*VariantGetInternalPtr<m_member_type>::get_ptr(value)); \
  170. } \
  171. static void ptr_set(void *base, const void *member) { \
  172. m_base_type b = PtrToArg<m_base_type>::convert(base); \
  173. b.m_setter(PtrToArg<m_member_type>::convert(member)); \
  174. PtrToArg<m_base_type>::encode(b, base); \
  175. } \
  176. static Variant::Type get_type() { return GetTypeInfo<m_member_type>::VARIANT_TYPE; } \
  177. };
  178. #define SETGET_NUMBER_STRUCT_FUNC(m_base_type, m_member_type, m_member, m_setter, m_getter) \
  179. struct VariantSetGet_##m_base_type##_##m_member { \
  180. static void get(const Variant *base, Variant *member) { \
  181. VariantTypeAdjust<m_member_type>::adjust(member); \
  182. *VariantGetInternalPtr<m_member_type>::get_ptr(member) = VariantGetInternalPtr<m_base_type>::get_ptr(base)->m_getter(); \
  183. } \
  184. static void ptr_get(const void *base, void *member) { \
  185. PtrToArg<m_member_type>::encode(PtrToArg<m_base_type>::convert(base).m_getter(), member); \
  186. } \
  187. static void set(Variant *base, const Variant *value, bool &valid) { \
  188. if (value->get_type() == Variant::FLOAT) { \
  189. VariantGetInternalPtr<m_base_type>::get_ptr(base)->m_setter(*VariantGetInternalPtr<double>::get_ptr(value)); \
  190. valid = true; \
  191. } else if (value->get_type() == Variant::INT) { \
  192. VariantGetInternalPtr<m_base_type>::get_ptr(base)->m_setter(*VariantGetInternalPtr<int64_t>::get_ptr(value)); \
  193. valid = true; \
  194. } else { \
  195. valid = false; \
  196. } \
  197. } \
  198. static void validated_set(Variant *base, const Variant *value) { \
  199. VariantGetInternalPtr<m_base_type>::get_ptr(base)->m_setter(*VariantGetInternalPtr<m_member_type>::get_ptr(value)); \
  200. } \
  201. static void ptr_set(void *base, const void *member) { \
  202. m_base_type b = PtrToArg<m_base_type>::convert(base); \
  203. b.m_setter(PtrToArg<m_member_type>::convert(member)); \
  204. PtrToArg<m_base_type>::encode(b, base); \
  205. } \
  206. static Variant::Type get_type() { return GetTypeInfo<m_member_type>::VARIANT_TYPE; } \
  207. };
  208. #define SETGET_STRUCT_FUNC_INDEX(m_base_type, m_member_type, m_member, m_setter, m_getter, m_index) \
  209. struct VariantSetGet_##m_base_type##_##m_member { \
  210. static void get(const Variant *base, Variant *member) { \
  211. VariantTypeAdjust<m_member_type>::adjust(member); \
  212. *VariantGetInternalPtr<m_member_type>::get_ptr(member) = VariantGetInternalPtr<m_base_type>::get_ptr(base)->m_getter(m_index); \
  213. } \
  214. static void ptr_get(const void *base, void *member) { \
  215. PtrToArg<m_member_type>::encode(PtrToArg<m_base_type>::convert(base).m_getter(m_index), member); \
  216. } \
  217. static void set(Variant *base, const Variant *value, bool &valid) { \
  218. if (value->get_type() == GetTypeInfo<m_member_type>::VARIANT_TYPE) { \
  219. VariantGetInternalPtr<m_base_type>::get_ptr(base)->m_setter(m_index, *VariantGetInternalPtr<m_member_type>::get_ptr(value)); \
  220. valid = true; \
  221. } else { \
  222. valid = false; \
  223. } \
  224. } \
  225. static void validated_set(Variant *base, const Variant *value) { \
  226. VariantGetInternalPtr<m_base_type>::get_ptr(base)->m_setter(m_index, *VariantGetInternalPtr<m_member_type>::get_ptr(value)); \
  227. } \
  228. static void ptr_set(void *base, const void *member) { \
  229. m_base_type b = PtrToArg<m_base_type>::convert(base); \
  230. b.m_setter(m_index, PtrToArg<m_member_type>::convert(member)); \
  231. PtrToArg<m_base_type>::encode(b, base); \
  232. } \
  233. static Variant::Type get_type() { return GetTypeInfo<m_member_type>::VARIANT_TYPE; } \
  234. };
  235. SETGET_NUMBER_STRUCT(Vector2, double, x)
  236. SETGET_NUMBER_STRUCT(Vector2, double, y)
  237. SETGET_NUMBER_STRUCT(Vector2i, int64_t, x)
  238. SETGET_NUMBER_STRUCT(Vector2i, int64_t, y)
  239. SETGET_NUMBER_STRUCT(Vector3, double, x)
  240. SETGET_NUMBER_STRUCT(Vector3, double, y)
  241. SETGET_NUMBER_STRUCT(Vector3, double, z)
  242. SETGET_NUMBER_STRUCT(Vector3i, int64_t, x)
  243. SETGET_NUMBER_STRUCT(Vector3i, int64_t, y)
  244. SETGET_NUMBER_STRUCT(Vector3i, int64_t, z)
  245. SETGET_STRUCT(Rect2, Vector2, position)
  246. SETGET_STRUCT(Rect2, Vector2, size)
  247. SETGET_STRUCT_FUNC(Rect2, Vector2, end, set_end, get_end)
  248. SETGET_STRUCT(Rect2i, Vector2i, position)
  249. SETGET_STRUCT(Rect2i, Vector2i, size)
  250. SETGET_STRUCT_FUNC(Rect2i, Vector2i, end, set_end, get_end)
  251. SETGET_STRUCT(AABB, Vector3, position)
  252. SETGET_STRUCT(AABB, Vector3, size)
  253. SETGET_STRUCT_FUNC(AABB, Vector3, end, set_end, get_end)
  254. SETGET_STRUCT_CUSTOM(Transform2D, Vector2, x, elements[0])
  255. SETGET_STRUCT_CUSTOM(Transform2D, Vector2, y, elements[1])
  256. SETGET_STRUCT_CUSTOM(Transform2D, Vector2, origin, elements[2])
  257. SETGET_NUMBER_STRUCT_CUSTOM(Plane, double, x, normal.x)
  258. SETGET_NUMBER_STRUCT_CUSTOM(Plane, double, y, normal.y)
  259. SETGET_NUMBER_STRUCT_CUSTOM(Plane, double, z, normal.z)
  260. SETGET_STRUCT(Plane, Vector3, normal)
  261. SETGET_NUMBER_STRUCT(Plane, double, d)
  262. SETGET_NUMBER_STRUCT(Quat, double, x)
  263. SETGET_NUMBER_STRUCT(Quat, double, y)
  264. SETGET_NUMBER_STRUCT(Quat, double, z)
  265. SETGET_NUMBER_STRUCT(Quat, double, w)
  266. SETGET_STRUCT_FUNC_INDEX(Basis, Vector3, x, set_axis, get_axis, 0)
  267. SETGET_STRUCT_FUNC_INDEX(Basis, Vector3, y, set_axis, get_axis, 1)
  268. SETGET_STRUCT_FUNC_INDEX(Basis, Vector3, z, set_axis, get_axis, 2)
  269. SETGET_STRUCT(Transform, Basis, basis)
  270. SETGET_STRUCT(Transform, Vector3, origin)
  271. SETGET_NUMBER_STRUCT(Color, double, r)
  272. SETGET_NUMBER_STRUCT(Color, double, g)
  273. SETGET_NUMBER_STRUCT(Color, double, b)
  274. SETGET_NUMBER_STRUCT(Color, double, a)
  275. SETGET_NUMBER_STRUCT_FUNC(Color, int64_t, r8, set_r8, get_r8)
  276. SETGET_NUMBER_STRUCT_FUNC(Color, int64_t, g8, set_g8, get_g8)
  277. SETGET_NUMBER_STRUCT_FUNC(Color, int64_t, b8, set_b8, get_b8)
  278. SETGET_NUMBER_STRUCT_FUNC(Color, int64_t, a8, set_a8, get_a8)
  279. SETGET_NUMBER_STRUCT_FUNC(Color, double, h, set_h, get_h)
  280. SETGET_NUMBER_STRUCT_FUNC(Color, double, s, set_s, get_s)
  281. SETGET_NUMBER_STRUCT_FUNC(Color, double, v, set_v, get_v)
  282. struct VariantSetterGetterInfo {
  283. void (*setter)(Variant *base, const Variant *value, bool &valid);
  284. void (*getter)(const Variant *base, Variant *value);
  285. Variant::ValidatedSetter validated_setter;
  286. Variant::ValidatedGetter validated_getter;
  287. Variant::PTRSetter ptr_setter;
  288. Variant::PTRGetter ptr_getter;
  289. Variant::Type member_type;
  290. };
  291. static LocalVector<VariantSetterGetterInfo> variant_setters_getters[Variant::VARIANT_MAX];
  292. static LocalVector<StringName> variant_setters_getters_names[Variant::VARIANT_MAX]; //one next to another to make it cache friendly
  293. template <class T>
  294. static void register_member(Variant::Type p_type, const StringName &p_member) {
  295. VariantSetterGetterInfo sgi;
  296. sgi.setter = T::set;
  297. sgi.validated_setter = T::validated_set;
  298. sgi.ptr_setter = T::ptr_set;
  299. sgi.getter = T::get;
  300. sgi.validated_getter = T::get;
  301. sgi.ptr_getter = T::ptr_get;
  302. sgi.member_type = T::get_type();
  303. variant_setters_getters[p_type].push_back(sgi);
  304. variant_setters_getters_names[p_type].push_back(p_member);
  305. }
  306. void register_named_setters_getters() {
  307. #define REGISTER_MEMBER(m_base_type, m_member) register_member<VariantSetGet_##m_base_type##_##m_member>(GetTypeInfo<m_base_type>::VARIANT_TYPE, #m_member)
  308. REGISTER_MEMBER(Vector2, x);
  309. REGISTER_MEMBER(Vector2, y);
  310. REGISTER_MEMBER(Vector2i, x);
  311. REGISTER_MEMBER(Vector2i, y);
  312. REGISTER_MEMBER(Vector3, x);
  313. REGISTER_MEMBER(Vector3, y);
  314. REGISTER_MEMBER(Vector3, z);
  315. REGISTER_MEMBER(Vector3i, x);
  316. REGISTER_MEMBER(Vector3i, y);
  317. REGISTER_MEMBER(Vector3i, z);
  318. REGISTER_MEMBER(Rect2, position);
  319. REGISTER_MEMBER(Rect2, size);
  320. REGISTER_MEMBER(Rect2, end);
  321. REGISTER_MEMBER(Rect2i, position);
  322. REGISTER_MEMBER(Rect2i, size);
  323. REGISTER_MEMBER(Rect2i, end);
  324. REGISTER_MEMBER(AABB, position);
  325. REGISTER_MEMBER(AABB, size);
  326. REGISTER_MEMBER(AABB, end);
  327. REGISTER_MEMBER(Transform2D, x);
  328. REGISTER_MEMBER(Transform2D, y);
  329. REGISTER_MEMBER(Transform2D, origin);
  330. REGISTER_MEMBER(Plane, x);
  331. REGISTER_MEMBER(Plane, y);
  332. REGISTER_MEMBER(Plane, z);
  333. REGISTER_MEMBER(Plane, d);
  334. REGISTER_MEMBER(Plane, normal);
  335. REGISTER_MEMBER(Quat, x);
  336. REGISTER_MEMBER(Quat, y);
  337. REGISTER_MEMBER(Quat, z);
  338. REGISTER_MEMBER(Quat, w);
  339. REGISTER_MEMBER(Basis, x);
  340. REGISTER_MEMBER(Basis, y);
  341. REGISTER_MEMBER(Basis, z);
  342. REGISTER_MEMBER(Transform, basis);
  343. REGISTER_MEMBER(Transform, origin);
  344. REGISTER_MEMBER(Color, r);
  345. REGISTER_MEMBER(Color, g);
  346. REGISTER_MEMBER(Color, b);
  347. REGISTER_MEMBER(Color, a);
  348. REGISTER_MEMBER(Color, r8);
  349. REGISTER_MEMBER(Color, g8);
  350. REGISTER_MEMBER(Color, b8);
  351. REGISTER_MEMBER(Color, a8);
  352. REGISTER_MEMBER(Color, h);
  353. REGISTER_MEMBER(Color, s);
  354. REGISTER_MEMBER(Color, v);
  355. }
  356. void unregister_named_setters_getters() {
  357. for (int i = 0; i < Variant::VARIANT_MAX; i++) {
  358. variant_setters_getters[i].clear();
  359. variant_setters_getters_names[i].clear();
  360. }
  361. }
  362. bool Variant::has_member(Variant::Type p_type, const StringName &p_member) {
  363. ERR_FAIL_INDEX_V(p_type, Variant::VARIANT_MAX, false);
  364. for (uint32_t i = 0; i < variant_setters_getters_names[p_type].size(); i++) {
  365. if (variant_setters_getters_names[p_type][i] == p_member) {
  366. return true;
  367. }
  368. }
  369. return false;
  370. }
  371. Variant::Type Variant::get_member_type(Variant::Type p_type, const StringName &p_member) {
  372. ERR_FAIL_INDEX_V(p_type, Variant::VARIANT_MAX, Variant::VARIANT_MAX);
  373. for (uint32_t i = 0; i < variant_setters_getters_names[p_type].size(); i++) {
  374. if (variant_setters_getters_names[p_type][i] == p_member) {
  375. return variant_setters_getters[p_type][i].member_type;
  376. }
  377. }
  378. return Variant::NIL;
  379. }
  380. void Variant::get_member_list(Variant::Type p_type, List<StringName> *r_members) {
  381. for (uint32_t i = 0; i < variant_setters_getters_names[p_type].size(); i++) {
  382. r_members->push_back(variant_setters_getters_names[p_type][i]);
  383. }
  384. }
  385. int Variant::get_member_count(Type p_type) {
  386. ERR_FAIL_INDEX_V(p_type, Variant::VARIANT_MAX, -1);
  387. return variant_setters_getters_names[p_type].size();
  388. }
  389. Variant::ValidatedSetter Variant::get_member_validated_setter(Variant::Type p_type, const StringName &p_member) {
  390. ERR_FAIL_INDEX_V(p_type, Variant::VARIANT_MAX, nullptr);
  391. for (uint32_t i = 0; i < variant_setters_getters_names[p_type].size(); i++) {
  392. if (variant_setters_getters_names[p_type][i] == p_member) {
  393. return variant_setters_getters[p_type][i].validated_setter;
  394. }
  395. }
  396. return nullptr;
  397. }
  398. Variant::ValidatedGetter Variant::get_member_validated_getter(Variant::Type p_type, const StringName &p_member) {
  399. ERR_FAIL_INDEX_V(p_type, Variant::VARIANT_MAX, nullptr);
  400. for (uint32_t i = 0; i < variant_setters_getters_names[p_type].size(); i++) {
  401. if (variant_setters_getters_names[p_type][i] == p_member) {
  402. return variant_setters_getters[p_type][i].validated_getter;
  403. }
  404. }
  405. return nullptr;
  406. }
  407. Variant::PTRSetter Variant::get_member_ptr_setter(Variant::Type p_type, const StringName &p_member) {
  408. ERR_FAIL_INDEX_V(p_type, Variant::VARIANT_MAX, nullptr);
  409. for (uint32_t i = 0; i < variant_setters_getters_names[p_type].size(); i++) {
  410. if (variant_setters_getters_names[p_type][i] == p_member) {
  411. return variant_setters_getters[p_type][i].ptr_setter;
  412. }
  413. }
  414. return nullptr;
  415. }
  416. Variant::PTRGetter Variant::get_member_ptr_getter(Variant::Type p_type, const StringName &p_member) {
  417. ERR_FAIL_INDEX_V(p_type, Variant::VARIANT_MAX, nullptr);
  418. for (uint32_t i = 0; i < variant_setters_getters_names[p_type].size(); i++) {
  419. if (variant_setters_getters_names[p_type][i] == p_member) {
  420. return variant_setters_getters[p_type][i].ptr_getter;
  421. }
  422. }
  423. return nullptr;
  424. }
  425. void Variant::set_named(const StringName &p_member, const Variant &p_value, bool &r_valid) {
  426. uint32_t s = variant_setters_getters[type].size();
  427. if (s) {
  428. for (uint32_t i = 0; i < s; i++) {
  429. if (variant_setters_getters_names[type][i] == p_member) {
  430. variant_setters_getters[type][i].setter(this, &p_value, r_valid);
  431. return;
  432. }
  433. }
  434. r_valid = false;
  435. } else if (type == Variant::OBJECT) {
  436. Object *obj = get_validated_object();
  437. if (!obj) {
  438. r_valid = false;
  439. } else {
  440. obj->set(p_member, p_value, &r_valid);
  441. return;
  442. }
  443. } else if (type == Variant::DICTIONARY) {
  444. Variant *v = VariantGetInternalPtr<Dictionary>::get_ptr(this)->getptr(p_member);
  445. if (v) {
  446. *v = p_value;
  447. r_valid = true;
  448. } else {
  449. r_valid = false;
  450. }
  451. } else {
  452. r_valid = false;
  453. }
  454. }
  455. Variant Variant::get_named(const StringName &p_member, bool &r_valid) const {
  456. Variant ret;
  457. uint32_t s = variant_setters_getters[type].size();
  458. if (s) {
  459. for (uint32_t i = 0; i < s; i++) {
  460. if (variant_setters_getters_names[type][i] == p_member) {
  461. variant_setters_getters[type][i].getter(this, &ret);
  462. r_valid = true;
  463. return ret;
  464. }
  465. }
  466. r_valid = false;
  467. } else if (type == Variant::OBJECT) {
  468. Object *obj = get_validated_object();
  469. if (!obj) {
  470. r_valid = false;
  471. return "Instance base is null.";
  472. } else {
  473. return obj->get(p_member, &r_valid);
  474. }
  475. } else if (type == Variant::DICTIONARY) {
  476. const Variant *v = VariantGetInternalPtr<Dictionary>::get_ptr(this)->getptr(p_member);
  477. if (v) {
  478. r_valid = true;
  479. return *v;
  480. } else {
  481. r_valid = false;
  482. }
  483. } else {
  484. r_valid = false;
  485. }
  486. return ret;
  487. }
  488. /**** INDEXED SETTERS AND GETTERS ****/
  489. #ifdef DEBUG_ENABLED
  490. #define OOB_TEST(m_idx, m_v) \
  491. ERR_FAIL_INDEX(m_idx, m_v)
  492. #else
  493. #define OOB_TEST(m_idx, m_v)
  494. #endif
  495. #ifdef DEBUG_ENABLED
  496. #define NULL_TEST(m_key) \
  497. ERR_FAIL_COND(!m_key)
  498. #else
  499. #define NULL_TEST(m_key)
  500. #endif
  501. #define INDEXED_SETGET_STRUCT_TYPED(m_base_type, m_elem_type) \
  502. struct VariantIndexedSetGet_##m_base_type { \
  503. static void get(const Variant *base, int64_t index, Variant *value, bool *oob) { \
  504. int64_t size = VariantGetInternalPtr<m_base_type>::get_ptr(base)->size(); \
  505. if (index < 0) { \
  506. index += size; \
  507. } \
  508. if (index < 0 || index >= size) { \
  509. *oob = true; \
  510. return; \
  511. } \
  512. VariantTypeAdjust<m_elem_type>::adjust(value); \
  513. *VariantGetInternalPtr<m_elem_type>::get_ptr(value) = (*VariantGetInternalPtr<m_base_type>::get_ptr(base))[index]; \
  514. *oob = false; \
  515. } \
  516. static void ptr_get(const void *base, int64_t index, void *member) { \
  517. /* avoid ptrconvert for performance*/ \
  518. const m_base_type &v = *reinterpret_cast<const m_base_type *>(base); \
  519. if (index < 0) \
  520. index += v.size(); \
  521. OOB_TEST(index, v.size()); \
  522. PtrToArg<m_elem_type>::encode(v[index], member); \
  523. } \
  524. static void set(Variant *base, int64_t index, const Variant *value, bool *valid, bool *oob) { \
  525. if (value->get_type() != GetTypeInfo<m_elem_type>::VARIANT_TYPE) { \
  526. *oob = false; \
  527. *valid = false; \
  528. return; \
  529. } \
  530. int64_t size = VariantGetInternalPtr<m_base_type>::get_ptr(base)->size(); \
  531. if (index < 0) { \
  532. index += size; \
  533. } \
  534. if (index < 0 || index >= size) { \
  535. *oob = true; \
  536. *valid = false; \
  537. return; \
  538. } \
  539. (*VariantGetInternalPtr<m_base_type>::get_ptr(base)).write[index] = *VariantGetInternalPtr<m_elem_type>::get_ptr(value); \
  540. *oob = false; \
  541. *valid = true; \
  542. } \
  543. static void validated_set(Variant *base, int64_t index, const Variant *value, bool *oob) { \
  544. int64_t size = VariantGetInternalPtr<m_base_type>::get_ptr(base)->size(); \
  545. if (index < 0) { \
  546. index += size; \
  547. } \
  548. if (index < 0 || index >= size) { \
  549. *oob = true; \
  550. return; \
  551. } \
  552. (*VariantGetInternalPtr<m_base_type>::get_ptr(base)).write[index] = *VariantGetInternalPtr<m_elem_type>::get_ptr(value); \
  553. *oob = false; \
  554. } \
  555. static void ptr_set(void *base, int64_t index, const void *member) { \
  556. /* avoid ptrconvert for performance*/ \
  557. m_base_type &v = *reinterpret_cast<m_base_type *>(base); \
  558. if (index < 0) \
  559. index += v.size(); \
  560. OOB_TEST(index, v.size()); \
  561. v.write[index] = PtrToArg<m_elem_type>::convert(member); \
  562. } \
  563. static Variant::Type get_index_type() { return GetTypeInfo<m_elem_type>::VARIANT_TYPE; } \
  564. static uint64_t get_indexed_size(const Variant *base) { return VariantGetInternalPtr<m_base_type>::get_ptr(base)->size(); } \
  565. };
  566. #define INDEXED_SETGET_STRUCT_TYPED_NUMERIC(m_base_type, m_elem_type, m_assign_type) \
  567. struct VariantIndexedSetGet_##m_base_type { \
  568. static void get(const Variant *base, int64_t index, Variant *value, bool *oob) { \
  569. int64_t size = VariantGetInternalPtr<m_base_type>::get_ptr(base)->size(); \
  570. if (index < 0) { \
  571. index += size; \
  572. } \
  573. if (index < 0 || index >= size) { \
  574. *oob = true; \
  575. return; \
  576. } \
  577. VariantTypeAdjust<m_elem_type>::adjust(value); \
  578. *VariantGetInternalPtr<m_elem_type>::get_ptr(value) = (*VariantGetInternalPtr<m_base_type>::get_ptr(base))[index]; \
  579. *oob = false; \
  580. } \
  581. static void ptr_get(const void *base, int64_t index, void *member) { \
  582. /* avoid ptrconvert for performance*/ \
  583. const m_base_type &v = *reinterpret_cast<const m_base_type *>(base); \
  584. if (index < 0) \
  585. index += v.size(); \
  586. OOB_TEST(index, v.size()); \
  587. PtrToArg<m_elem_type>::encode(v[index], member); \
  588. } \
  589. static void set(Variant *base, int64_t index, const Variant *value, bool *valid, bool *oob) { \
  590. int64_t size = VariantGetInternalPtr<m_base_type>::get_ptr(base)->size(); \
  591. if (index < 0) { \
  592. index += size; \
  593. } \
  594. if (index < 0 || index >= size) { \
  595. *oob = true; \
  596. *valid = false; \
  597. return; \
  598. } \
  599. m_assign_type num; \
  600. if (value->get_type() == Variant::INT) { \
  601. num = (m_assign_type)*VariantGetInternalPtr<int64_t>::get_ptr(value); \
  602. } else if (value->get_type() == Variant::FLOAT) { \
  603. num = (m_assign_type)*VariantGetInternalPtr<double>::get_ptr(value); \
  604. } else { \
  605. *oob = false; \
  606. *valid = false; \
  607. return; \
  608. } \
  609. (*VariantGetInternalPtr<m_base_type>::get_ptr(base)).write[index] = num; \
  610. *oob = false; \
  611. *valid = true; \
  612. } \
  613. static void validated_set(Variant *base, int64_t index, const Variant *value, bool *oob) { \
  614. int64_t size = VariantGetInternalPtr<m_base_type>::get_ptr(base)->size(); \
  615. if (index < 0) { \
  616. index += size; \
  617. } \
  618. if (index < 0 || index >= size) { \
  619. *oob = true; \
  620. return; \
  621. } \
  622. (*VariantGetInternalPtr<m_base_type>::get_ptr(base)).write[index] = *VariantGetInternalPtr<m_elem_type>::get_ptr(value); \
  623. *oob = false; \
  624. } \
  625. static void ptr_set(void *base, int64_t index, const void *member) { \
  626. /* avoid ptrconvert for performance*/ \
  627. m_base_type &v = *reinterpret_cast<m_base_type *>(base); \
  628. if (index < 0) \
  629. index += v.size(); \
  630. OOB_TEST(index, v.size()); \
  631. v.write[index] = PtrToArg<m_elem_type>::convert(member); \
  632. } \
  633. static Variant::Type get_index_type() { return GetTypeInfo<m_elem_type>::VARIANT_TYPE; } \
  634. static uint64_t get_indexed_size(const Variant *base) { return VariantGetInternalPtr<m_base_type>::get_ptr(base)->size(); } \
  635. };
  636. #define INDEXED_SETGET_STRUCT_BULTIN_NUMERIC(m_base_type, m_elem_type, m_assign_type, m_max) \
  637. struct VariantIndexedSetGet_##m_base_type { \
  638. static void get(const Variant *base, int64_t index, Variant *value, bool *oob) { \
  639. if (index < 0 || index >= m_max) { \
  640. *oob = true; \
  641. return; \
  642. } \
  643. VariantTypeAdjust<m_elem_type>::adjust(value); \
  644. *VariantGetInternalPtr<m_elem_type>::get_ptr(value) = (*VariantGetInternalPtr<m_base_type>::get_ptr(base))[index]; \
  645. *oob = false; \
  646. } \
  647. static void ptr_get(const void *base, int64_t index, void *member) { \
  648. /* avoid ptrconvert for performance*/ \
  649. const m_base_type &v = *reinterpret_cast<const m_base_type *>(base); \
  650. OOB_TEST(index, m_max); \
  651. PtrToArg<m_elem_type>::encode(v[index], member); \
  652. } \
  653. static void set(Variant *base, int64_t index, const Variant *value, bool *valid, bool *oob) { \
  654. if (index < 0 || index >= m_max) { \
  655. *oob = true; \
  656. *valid = false; \
  657. return; \
  658. } \
  659. m_assign_type num; \
  660. if (value->get_type() == Variant::INT) { \
  661. num = (m_assign_type)*VariantGetInternalPtr<int64_t>::get_ptr(value); \
  662. } else if (value->get_type() == Variant::FLOAT) { \
  663. num = (m_assign_type)*VariantGetInternalPtr<double>::get_ptr(value); \
  664. } else { \
  665. *oob = false; \
  666. *valid = false; \
  667. return; \
  668. } \
  669. (*VariantGetInternalPtr<m_base_type>::get_ptr(base))[index] = num; \
  670. *oob = false; \
  671. *valid = true; \
  672. } \
  673. static void validated_set(Variant *base, int64_t index, const Variant *value, bool *oob) { \
  674. if (index < 0 || index >= m_max) { \
  675. *oob = true; \
  676. return; \
  677. } \
  678. (*VariantGetInternalPtr<m_base_type>::get_ptr(base))[index] = *VariantGetInternalPtr<m_elem_type>::get_ptr(value); \
  679. *oob = false; \
  680. } \
  681. static void ptr_set(void *base, int64_t index, const void *member) { \
  682. /* avoid ptrconvert for performance*/ \
  683. m_base_type &v = *reinterpret_cast<m_base_type *>(base); \
  684. OOB_TEST(index, m_max); \
  685. v[index] = PtrToArg<m_elem_type>::convert(member); \
  686. } \
  687. static Variant::Type get_index_type() { return GetTypeInfo<m_elem_type>::VARIANT_TYPE; } \
  688. static uint64_t get_indexed_size(const Variant *base) { return m_max; } \
  689. };
  690. #define INDEXED_SETGET_STRUCT_BULTIN_ACCESSOR(m_base_type, m_elem_type, m_accessor, m_max) \
  691. struct VariantIndexedSetGet_##m_base_type { \
  692. static void get(const Variant *base, int64_t index, Variant *value, bool *oob) { \
  693. if (index < 0 || index >= m_max) { \
  694. *oob = true; \
  695. return; \
  696. } \
  697. VariantTypeAdjust<m_elem_type>::adjust(value); \
  698. *VariantGetInternalPtr<m_elem_type>::get_ptr(value) = (*VariantGetInternalPtr<m_base_type>::get_ptr(base))m_accessor[index]; \
  699. *oob = false; \
  700. } \
  701. static void ptr_get(const void *base, int64_t index, void *member) { \
  702. /* avoid ptrconvert for performance*/ \
  703. const m_base_type &v = *reinterpret_cast<const m_base_type *>(base); \
  704. OOB_TEST(index, m_max); \
  705. PtrToArg<m_elem_type>::encode(v m_accessor[index], member); \
  706. } \
  707. static void set(Variant *base, int64_t index, const Variant *value, bool *valid, bool *oob) { \
  708. if (value->get_type() != GetTypeInfo<m_elem_type>::VARIANT_TYPE) { \
  709. *oob = false; \
  710. *valid = false; \
  711. } \
  712. if (index < 0 || index >= m_max) { \
  713. *oob = true; \
  714. *valid = false; \
  715. return; \
  716. } \
  717. (*VariantGetInternalPtr<m_base_type>::get_ptr(base)) m_accessor[index] = *VariantGetInternalPtr<m_elem_type>::get_ptr(value); \
  718. *oob = false; \
  719. *valid = true; \
  720. } \
  721. static void validated_set(Variant *base, int64_t index, const Variant *value, bool *oob) { \
  722. if (index < 0 || index >= m_max) { \
  723. *oob = true; \
  724. return; \
  725. } \
  726. (*VariantGetInternalPtr<m_base_type>::get_ptr(base)) m_accessor[index] = *VariantGetInternalPtr<m_elem_type>::get_ptr(value); \
  727. *oob = false; \
  728. } \
  729. static void ptr_set(void *base, int64_t index, const void *member) { \
  730. /* avoid ptrconvert for performance*/ \
  731. m_base_type &v = *reinterpret_cast<m_base_type *>(base); \
  732. OOB_TEST(index, m_max); \
  733. v m_accessor[index] = PtrToArg<m_elem_type>::convert(member); \
  734. } \
  735. static Variant::Type get_index_type() { return GetTypeInfo<m_elem_type>::VARIANT_TYPE; } \
  736. static uint64_t get_indexed_size(const Variant *base) { return m_max; } \
  737. };
  738. #define INDEXED_SETGET_STRUCT_BULTIN_FUNC(m_base_type, m_elem_type, m_set, m_get, m_max) \
  739. struct VariantIndexedSetGet_##m_base_type { \
  740. static void get(const Variant *base, int64_t index, Variant *value, bool *oob) { \
  741. if (index < 0 || index >= m_max) { \
  742. *oob = true; \
  743. return; \
  744. } \
  745. VariantTypeAdjust<m_elem_type>::adjust(value); \
  746. *VariantGetInternalPtr<m_elem_type>::get_ptr(value) = VariantGetInternalPtr<m_base_type>::get_ptr(base)->m_get(index); \
  747. *oob = false; \
  748. } \
  749. static void ptr_get(const void *base, int64_t index, void *member) { \
  750. /* avoid ptrconvert for performance*/ \
  751. const m_base_type &v = *reinterpret_cast<const m_base_type *>(base); \
  752. OOB_TEST(index, m_max); \
  753. PtrToArg<m_elem_type>::encode(v.m_get(index), member); \
  754. } \
  755. static void set(Variant *base, int64_t index, const Variant *value, bool *valid, bool *oob) { \
  756. if (value->get_type() != GetTypeInfo<m_elem_type>::VARIANT_TYPE) { \
  757. *oob = false; \
  758. *valid = false; \
  759. } \
  760. if (index < 0 || index >= m_max) { \
  761. *oob = true; \
  762. *valid = false; \
  763. return; \
  764. } \
  765. VariantGetInternalPtr<m_base_type>::get_ptr(base)->m_set(index, *VariantGetInternalPtr<m_elem_type>::get_ptr(value)); \
  766. *oob = false; \
  767. *valid = true; \
  768. } \
  769. static void validated_set(Variant *base, int64_t index, const Variant *value, bool *oob) { \
  770. if (index < 0 || index >= m_max) { \
  771. *oob = true; \
  772. return; \
  773. } \
  774. VariantGetInternalPtr<m_base_type>::get_ptr(base)->m_set(index, *VariantGetInternalPtr<m_elem_type>::get_ptr(value)); \
  775. *oob = false; \
  776. } \
  777. static void ptr_set(void *base, int64_t index, const void *member) { \
  778. /* avoid ptrconvert for performance*/ \
  779. m_base_type &v = *reinterpret_cast<m_base_type *>(base); \
  780. OOB_TEST(index, m_max); \
  781. v.m_set(index, PtrToArg<m_elem_type>::convert(member)); \
  782. } \
  783. static Variant::Type get_index_type() { return GetTypeInfo<m_elem_type>::VARIANT_TYPE; } \
  784. static uint64_t get_indexed_size(const Variant *base) { return m_max; } \
  785. };
  786. #define INDEXED_SETGET_STRUCT_VARIANT(m_base_type) \
  787. struct VariantIndexedSetGet_##m_base_type { \
  788. static void get(const Variant *base, int64_t index, Variant *value, bool *oob) { \
  789. int64_t size = VariantGetInternalPtr<m_base_type>::get_ptr(base)->size(); \
  790. if (index < 0) { \
  791. index += size; \
  792. } \
  793. if (index < 0 || index >= size) { \
  794. *oob = true; \
  795. return; \
  796. } \
  797. *value = (*VariantGetInternalPtr<m_base_type>::get_ptr(base))[index]; \
  798. *oob = false; \
  799. } \
  800. static void ptr_get(const void *base, int64_t index, void *member) { \
  801. /* avoid ptrconvert for performance*/ \
  802. const m_base_type &v = *reinterpret_cast<const m_base_type *>(base); \
  803. if (index < 0) \
  804. index += v.size(); \
  805. OOB_TEST(index, v.size()); \
  806. PtrToArg<Variant>::encode(v[index], member); \
  807. } \
  808. static void set(Variant *base, int64_t index, const Variant *value, bool *valid, bool *oob) { \
  809. int64_t size = VariantGetInternalPtr<m_base_type>::get_ptr(base)->size(); \
  810. if (index < 0) { \
  811. index += size; \
  812. } \
  813. if (index < 0 || index >= size) { \
  814. *oob = true; \
  815. *valid = false; \
  816. return; \
  817. } \
  818. (*VariantGetInternalPtr<m_base_type>::get_ptr(base))[index] = *value; \
  819. *oob = false; \
  820. *valid = true; \
  821. } \
  822. static void validated_set(Variant *base, int64_t index, const Variant *value, bool *oob) { \
  823. int64_t size = VariantGetInternalPtr<m_base_type>::get_ptr(base)->size(); \
  824. if (index < 0) { \
  825. index += size; \
  826. } \
  827. if (index < 0 || index >= size) { \
  828. *oob = true; \
  829. return; \
  830. } \
  831. (*VariantGetInternalPtr<m_base_type>::get_ptr(base))[index] = *value; \
  832. *oob = false; \
  833. } \
  834. static void ptr_set(void *base, int64_t index, const void *member) { \
  835. /* avoid ptrconvert for performance*/ \
  836. m_base_type &v = *reinterpret_cast<m_base_type *>(base); \
  837. if (index < 0) \
  838. index += v.size(); \
  839. OOB_TEST(index, v.size()); \
  840. v[index] = PtrToArg<Variant>::convert(member); \
  841. } \
  842. static Variant::Type get_index_type() { return Variant::NIL; } \
  843. static uint64_t get_indexed_size(const Variant *base) { return 0; } \
  844. };
  845. #define INDEXED_SETGET_STRUCT_DICT(m_base_type) \
  846. struct VariantIndexedSetGet_##m_base_type { \
  847. static void get(const Variant *base, int64_t index, Variant *value, bool *oob) { \
  848. const Variant *ptr = VariantGetInternalPtr<m_base_type>::get_ptr(base)->getptr(index); \
  849. if (!ptr) { \
  850. *oob = true; \
  851. return; \
  852. } \
  853. *value = *ptr; \
  854. *oob = false; \
  855. } \
  856. static void ptr_get(const void *base, int64_t index, void *member) { \
  857. /* avoid ptrconvert for performance*/ \
  858. const m_base_type &v = *reinterpret_cast<const m_base_type *>(base); \
  859. const Variant *ptr = v.getptr(index); \
  860. NULL_TEST(ptr); \
  861. PtrToArg<Variant>::encode(*ptr, member); \
  862. } \
  863. static void set(Variant *base, int64_t index, const Variant *value, bool *valid, bool *oob) { \
  864. (*VariantGetInternalPtr<m_base_type>::get_ptr(base))[index] = *value; \
  865. *oob = false; \
  866. *valid = true; \
  867. } \
  868. static void validated_set(Variant *base, int64_t index, const Variant *value, bool *oob) { \
  869. (*VariantGetInternalPtr<m_base_type>::get_ptr(base))[index] = *value; \
  870. *oob = false; \
  871. } \
  872. static void ptr_set(void *base, int64_t index, const void *member) { \
  873. m_base_type &v = *reinterpret_cast<m_base_type *>(base); \
  874. v[index] = PtrToArg<Variant>::convert(member); \
  875. } \
  876. static Variant::Type get_index_type() { return Variant::NIL; } \
  877. static uint64_t get_indexed_size(const Variant *base) { return VariantGetInternalPtr<m_base_type>::get_ptr(base)->size(); } \
  878. };
  879. INDEXED_SETGET_STRUCT_BULTIN_NUMERIC(Vector2, double, real_t, 2)
  880. INDEXED_SETGET_STRUCT_BULTIN_NUMERIC(Vector2i, int64_t, int32_t, 2)
  881. INDEXED_SETGET_STRUCT_BULTIN_NUMERIC(Vector3, double, real_t, 3)
  882. INDEXED_SETGET_STRUCT_BULTIN_NUMERIC(Vector3i, int64_t, int32_t, 3)
  883. INDEXED_SETGET_STRUCT_BULTIN_NUMERIC(Quat, double, real_t, 4)
  884. INDEXED_SETGET_STRUCT_BULTIN_NUMERIC(Color, double, float, 4)
  885. INDEXED_SETGET_STRUCT_BULTIN_ACCESSOR(Transform2D, Vector2, .elements, 3)
  886. INDEXED_SETGET_STRUCT_BULTIN_FUNC(Basis, Vector3, set_axis, get_axis, 3)
  887. INDEXED_SETGET_STRUCT_TYPED_NUMERIC(PackedByteArray, int64_t, uint8_t)
  888. INDEXED_SETGET_STRUCT_TYPED_NUMERIC(PackedInt32Array, int64_t, int32_t)
  889. INDEXED_SETGET_STRUCT_TYPED_NUMERIC(PackedInt64Array, int64_t, int64_t)
  890. INDEXED_SETGET_STRUCT_TYPED_NUMERIC(PackedFloat32Array, double, float)
  891. INDEXED_SETGET_STRUCT_TYPED_NUMERIC(PackedFloat64Array, double, double)
  892. INDEXED_SETGET_STRUCT_TYPED(PackedVector2Array, Vector2)
  893. INDEXED_SETGET_STRUCT_TYPED(PackedVector3Array, Vector3)
  894. INDEXED_SETGET_STRUCT_TYPED(PackedStringArray, String)
  895. INDEXED_SETGET_STRUCT_TYPED(PackedColorArray, Color)
  896. INDEXED_SETGET_STRUCT_VARIANT(Array)
  897. INDEXED_SETGET_STRUCT_DICT(Dictionary)
  898. struct VariantIndexedSetterGetterInfo {
  899. void (*setter)(Variant *base, int64_t index, const Variant *value, bool *valid, bool *oob);
  900. void (*getter)(const Variant *base, int64_t index, Variant *value, bool *oob);
  901. Variant::ValidatedIndexedSetter validated_setter;
  902. Variant::ValidatedIndexedGetter validated_getter;
  903. Variant::PTRIndexedSetter ptr_setter;
  904. Variant::PTRIndexedGetter ptr_getter;
  905. uint64_t (*get_indexed_size)(const Variant *base);
  906. Variant::Type index_type;
  907. bool valid = false;
  908. };
  909. static VariantIndexedSetterGetterInfo variant_indexed_setters_getters[Variant::VARIANT_MAX];
  910. template <class T>
  911. static void register_indexed_member(Variant::Type p_type) {
  912. VariantIndexedSetterGetterInfo &sgi = variant_indexed_setters_getters[p_type];
  913. sgi.setter = T::set;
  914. sgi.validated_setter = T::validated_set;
  915. sgi.ptr_setter = T::ptr_set;
  916. sgi.getter = T::get;
  917. sgi.validated_getter = T::get;
  918. sgi.ptr_getter = T::ptr_get;
  919. sgi.index_type = T::get_index_type();
  920. sgi.get_indexed_size = T::get_indexed_size;
  921. sgi.valid = true;
  922. }
  923. void register_indexed_setters_getters() {
  924. #define REGISTER_INDEXED_MEMBER(m_base_type) register_indexed_member<VariantIndexedSetGet_##m_base_type>(GetTypeInfo<m_base_type>::VARIANT_TYPE)
  925. REGISTER_INDEXED_MEMBER(Vector2);
  926. REGISTER_INDEXED_MEMBER(Vector2i);
  927. REGISTER_INDEXED_MEMBER(Vector3);
  928. REGISTER_INDEXED_MEMBER(Vector3i);
  929. REGISTER_INDEXED_MEMBER(Quat);
  930. REGISTER_INDEXED_MEMBER(Color);
  931. REGISTER_INDEXED_MEMBER(Transform2D);
  932. REGISTER_INDEXED_MEMBER(Basis);
  933. REGISTER_INDEXED_MEMBER(PackedByteArray);
  934. REGISTER_INDEXED_MEMBER(PackedInt32Array);
  935. REGISTER_INDEXED_MEMBER(PackedInt64Array);
  936. REGISTER_INDEXED_MEMBER(PackedFloat64Array);
  937. REGISTER_INDEXED_MEMBER(PackedVector2Array);
  938. REGISTER_INDEXED_MEMBER(PackedVector3Array);
  939. REGISTER_INDEXED_MEMBER(PackedStringArray);
  940. REGISTER_INDEXED_MEMBER(PackedColorArray);
  941. REGISTER_INDEXED_MEMBER(Array);
  942. REGISTER_INDEXED_MEMBER(Dictionary);
  943. }
  944. static void unregister_indexed_setters_getters() {
  945. }
  946. bool Variant::has_indexing(Variant::Type p_type) {
  947. ERR_FAIL_INDEX_V(p_type, Variant::VARIANT_MAX, false);
  948. return variant_indexed_setters_getters[p_type].valid;
  949. }
  950. Variant::Type Variant::get_indexed_element_type(Variant::Type p_type) {
  951. ERR_FAIL_INDEX_V(p_type, Variant::VARIANT_MAX, Variant::VARIANT_MAX);
  952. return variant_indexed_setters_getters[p_type].index_type;
  953. }
  954. Variant::ValidatedIndexedSetter Variant::get_member_validated_indexed_setter(Variant::Type p_type) {
  955. ERR_FAIL_INDEX_V(p_type, Variant::VARIANT_MAX, nullptr);
  956. return variant_indexed_setters_getters[p_type].validated_setter;
  957. }
  958. Variant::ValidatedIndexedGetter Variant::get_member_validated_indexed_getter(Variant::Type p_type) {
  959. ERR_FAIL_INDEX_V(p_type, Variant::VARIANT_MAX, nullptr);
  960. return variant_indexed_setters_getters[p_type].validated_getter;
  961. }
  962. Variant::PTRIndexedSetter Variant::get_member_ptr_indexed_setter(Variant::Type p_type) {
  963. ERR_FAIL_INDEX_V(p_type, Variant::VARIANT_MAX, nullptr);
  964. return variant_indexed_setters_getters[p_type].ptr_setter;
  965. }
  966. Variant::PTRIndexedGetter Variant::get_member_ptr_indexed_getter(Variant::Type p_type) {
  967. ERR_FAIL_INDEX_V(p_type, Variant::VARIANT_MAX, nullptr);
  968. return variant_indexed_setters_getters[p_type].ptr_getter;
  969. }
  970. void Variant::set_indexed(int64_t p_index, const Variant &p_value, bool &r_valid, bool &r_oob) {
  971. if (likely(variant_indexed_setters_getters[type].valid)) {
  972. variant_indexed_setters_getters[type].setter(this, p_index, &p_value, &r_valid, &r_oob);
  973. } else {
  974. r_valid = false;
  975. r_oob = false;
  976. }
  977. }
  978. Variant Variant::get_indexed(int64_t p_index, bool &r_valid, bool &r_oob) const {
  979. if (likely(variant_indexed_setters_getters[type].valid)) {
  980. Variant ret;
  981. variant_indexed_setters_getters[type].getter(this, p_index, &ret, &r_oob);
  982. r_valid = !r_oob;
  983. return ret;
  984. } else {
  985. r_valid = false;
  986. r_oob = false;
  987. return Variant();
  988. }
  989. }
  990. uint64_t Variant::get_indexed_size() const {
  991. if (likely(variant_indexed_setters_getters[type].valid && variant_indexed_setters_getters[type].get_indexed_size)) {
  992. return variant_indexed_setters_getters[type].get_indexed_size(this);
  993. } else {
  994. return 0;
  995. }
  996. }
  997. struct VariantKeyedSetGetDictionary {
  998. static void get(const Variant *base, const Variant *key, Variant *value, bool *r_valid) {
  999. const Variant *ptr = VariantGetInternalPtr<Dictionary>::get_ptr(base)->getptr(*key);
  1000. if (!ptr) {
  1001. *r_valid = false;
  1002. return;
  1003. }
  1004. *value = *ptr;
  1005. *r_valid = true;
  1006. }
  1007. static void ptr_get(const void *base, const void *key, void *value) {
  1008. /* avoid ptrconvert for performance*/
  1009. const Dictionary &v = *reinterpret_cast<const Dictionary *>(base);
  1010. const Variant *ptr = v.getptr(PtrToArg<Variant>::convert(key));
  1011. NULL_TEST(ptr);
  1012. PtrToArg<Variant>::encode(*ptr, value);
  1013. }
  1014. static void set(Variant *base, const Variant *key, const Variant *value, bool *r_valid) {
  1015. (*VariantGetInternalPtr<Dictionary>::get_ptr(base))[*key] = *value;
  1016. *r_valid = true;
  1017. }
  1018. static void ptr_set(void *base, const void *key, const void *value) {
  1019. Dictionary &v = *reinterpret_cast<Dictionary *>(base);
  1020. v[PtrToArg<Variant>::convert(key)] = PtrToArg<Variant>::convert(value);
  1021. }
  1022. static bool has(const Variant *base, const Variant *key, bool *r_valid) {
  1023. *r_valid = true;
  1024. return VariantGetInternalPtr<Dictionary>::get_ptr(base)->has(*key);
  1025. }
  1026. static bool ptr_has(const void *base, const void *key) {
  1027. /* avoid ptrconvert for performance*/
  1028. const Dictionary &v = *reinterpret_cast<const Dictionary *>(base);
  1029. return v.has(PtrToArg<Variant>::convert(key));
  1030. }
  1031. };
  1032. struct VariantKeyedSetGetObject {
  1033. static void get(const Variant *base, const Variant *key, Variant *value, bool *r_valid) {
  1034. Object *obj = base->get_validated_object();
  1035. if (!obj) {
  1036. *r_valid = false;
  1037. *value = Variant();
  1038. return;
  1039. }
  1040. *value = obj->getvar(*key, r_valid);
  1041. }
  1042. static void ptr_get(const void *base, const void *key, void *value) {
  1043. const Object *obj = PtrToArg<Object *>::convert(base);
  1044. NULL_TEST(obj);
  1045. Variant v = obj->getvar(PtrToArg<Variant>::convert(key));
  1046. PtrToArg<Variant>::encode(v, value);
  1047. }
  1048. static void set(Variant *base, const Variant *key, const Variant *value, bool *r_valid) {
  1049. Object *obj = base->get_validated_object();
  1050. if (!obj) {
  1051. *r_valid = false;
  1052. return;
  1053. }
  1054. obj->setvar(*key, *value, r_valid);
  1055. }
  1056. static void ptr_set(void *base, const void *key, const void *value) {
  1057. Object *obj = PtrToArg<Object *>::convert(base);
  1058. NULL_TEST(obj);
  1059. obj->setvar(PtrToArg<Variant>::convert(key), PtrToArg<Variant>::convert(value));
  1060. }
  1061. static bool has(const Variant *base, const Variant *key, bool *r_valid) {
  1062. Object *obj = base->get_validated_object();
  1063. if (!obj) {
  1064. *r_valid = false;
  1065. return false;
  1066. }
  1067. *r_valid = true;
  1068. bool exists;
  1069. obj->getvar(*key, &exists);
  1070. return exists;
  1071. }
  1072. static bool ptr_has(const void *base, const void *key) {
  1073. const Object *obj = PtrToArg<Object *>::convert(base);
  1074. ERR_FAIL_COND_V(!obj, false);
  1075. bool valid;
  1076. obj->getvar(PtrToArg<Variant>::convert(key), &valid);
  1077. return valid;
  1078. }
  1079. };
  1080. struct VariantKeyedSetterGetterInfo {
  1081. Variant::ValidatedKeyedSetter validated_setter;
  1082. Variant::ValidatedKeyedGetter validated_getter;
  1083. Variant::ValidatedKeyedChecker validated_checker;
  1084. Variant::PTRKeyedSetter ptr_setter;
  1085. Variant::PTRKeyedGetter ptr_getter;
  1086. Variant::PTRKeyedChecker ptr_checker;
  1087. bool valid = false;
  1088. };
  1089. static VariantKeyedSetterGetterInfo variant_keyed_setters_getters[Variant::VARIANT_MAX];
  1090. template <class T>
  1091. static void register_keyed_member(Variant::Type p_type) {
  1092. VariantKeyedSetterGetterInfo &sgi = variant_keyed_setters_getters[p_type];
  1093. sgi.validated_setter = T::set;
  1094. sgi.ptr_setter = T::ptr_set;
  1095. sgi.validated_getter = T::get;
  1096. sgi.ptr_getter = T::ptr_get;
  1097. sgi.validated_checker = T::has;
  1098. sgi.ptr_checker = T::ptr_has;
  1099. sgi.valid = true;
  1100. }
  1101. static void register_keyed_setters_getters() {
  1102. register_keyed_member<VariantKeyedSetGetDictionary>(Variant::DICTIONARY);
  1103. register_keyed_member<VariantKeyedSetGetObject>(Variant::OBJECT);
  1104. }
  1105. bool Variant::is_keyed(Variant::Type p_type) {
  1106. ERR_FAIL_INDEX_V(p_type, VARIANT_MAX, false);
  1107. return variant_keyed_setters_getters[p_type].valid;
  1108. }
  1109. Variant::ValidatedKeyedSetter Variant::get_member_validated_keyed_setter(Variant::Type p_type) {
  1110. ERR_FAIL_INDEX_V(p_type, VARIANT_MAX, nullptr);
  1111. return variant_keyed_setters_getters[p_type].validated_setter;
  1112. }
  1113. Variant::ValidatedKeyedGetter Variant::get_member_validated_keyed_getter(Variant::Type p_type) {
  1114. ERR_FAIL_INDEX_V(p_type, VARIANT_MAX, nullptr);
  1115. return variant_keyed_setters_getters[p_type].validated_getter;
  1116. }
  1117. Variant::ValidatedKeyedChecker Variant::get_member_validated_keyed_checker(Variant::Type p_type) {
  1118. ERR_FAIL_INDEX_V(p_type, VARIANT_MAX, nullptr);
  1119. return variant_keyed_setters_getters[p_type].validated_checker;
  1120. }
  1121. Variant::PTRKeyedSetter Variant::get_member_ptr_keyed_setter(Variant::Type p_type) {
  1122. ERR_FAIL_INDEX_V(p_type, VARIANT_MAX, nullptr);
  1123. return variant_keyed_setters_getters[p_type].ptr_setter;
  1124. }
  1125. Variant::PTRKeyedGetter Variant::get_member_ptr_keyed_getter(Variant::Type p_type) {
  1126. ERR_FAIL_INDEX_V(p_type, VARIANT_MAX, nullptr);
  1127. return variant_keyed_setters_getters[p_type].ptr_getter;
  1128. }
  1129. Variant::PTRKeyedChecker Variant::get_member_ptr_keyed_checker(Variant::Type p_type) {
  1130. ERR_FAIL_INDEX_V(p_type, VARIANT_MAX, nullptr);
  1131. return variant_keyed_setters_getters[p_type].ptr_checker;
  1132. }
  1133. void Variant::set_keyed(const Variant &p_key, const Variant &p_value, bool &r_valid) {
  1134. if (likely(variant_keyed_setters_getters[type].valid)) {
  1135. variant_keyed_setters_getters[type].validated_setter(this, &p_key, &p_value, &r_valid);
  1136. } else {
  1137. r_valid = false;
  1138. }
  1139. }
  1140. Variant Variant::get_keyed(const Variant &p_key, bool &r_valid) const {
  1141. if (likely(variant_keyed_setters_getters[type].valid)) {
  1142. Variant ret;
  1143. variant_keyed_setters_getters[type].validated_getter(this, &p_key, &ret, &r_valid);
  1144. return ret;
  1145. } else {
  1146. r_valid = false;
  1147. return Variant();
  1148. }
  1149. }
  1150. bool Variant::has_key(const Variant &p_key, bool &r_valid) const {
  1151. if (likely(variant_keyed_setters_getters[type].valid)) {
  1152. return variant_keyed_setters_getters[type].validated_checker(this, &p_key, &r_valid);
  1153. } else {
  1154. r_valid = false;
  1155. return false;
  1156. }
  1157. }
  1158. void Variant::set(const Variant &p_index, const Variant &p_value, bool *r_valid) {
  1159. if (type == DICTIONARY || type == OBJECT) {
  1160. bool valid;
  1161. set_keyed(p_index, p_value, valid);
  1162. if (r_valid) {
  1163. *r_valid = valid;
  1164. }
  1165. } else {
  1166. bool valid = false;
  1167. if (p_index.get_type() == STRING_NAME) {
  1168. set_named(*VariantGetInternalPtr<StringName>::get_ptr(&p_index), p_value, valid);
  1169. } else if (p_index.get_type() == INT) {
  1170. bool obb;
  1171. set_indexed(*VariantGetInternalPtr<int64_t>::get_ptr(&p_index), p_value, valid, obb);
  1172. if (obb) {
  1173. valid = false;
  1174. }
  1175. } else if (p_index.get_type() == STRING) { // less efficient version of named
  1176. set_named(*VariantGetInternalPtr<String>::get_ptr(&p_index), p_value, valid);
  1177. } else if (p_index.get_type() == FLOAT) { // less efficient version of indexed
  1178. bool obb;
  1179. set_indexed(*VariantGetInternalPtr<double>::get_ptr(&p_index), p_value, valid, obb);
  1180. if (obb) {
  1181. valid = false;
  1182. }
  1183. }
  1184. if (r_valid) {
  1185. *r_valid = valid;
  1186. }
  1187. }
  1188. }
  1189. Variant Variant::get(const Variant &p_index, bool *r_valid) const {
  1190. Variant ret;
  1191. if (type == DICTIONARY || type == OBJECT) {
  1192. bool valid;
  1193. ret = get_keyed(p_index, valid);
  1194. if (r_valid) {
  1195. *r_valid = valid;
  1196. }
  1197. } else {
  1198. bool valid = false;
  1199. if (p_index.get_type() == STRING_NAME) {
  1200. ret = get_named(*VariantGetInternalPtr<StringName>::get_ptr(&p_index), valid);
  1201. } else if (p_index.get_type() == INT) {
  1202. bool obb;
  1203. ret = get_indexed(*VariantGetInternalPtr<int64_t>::get_ptr(&p_index), valid, obb);
  1204. if (obb) {
  1205. valid = false;
  1206. }
  1207. } else if (p_index.get_type() == STRING) { // less efficient version of named
  1208. ret = get_named(*VariantGetInternalPtr<String>::get_ptr(&p_index), valid);
  1209. } else if (p_index.get_type() == FLOAT) { // less efficient version of indexed
  1210. bool obb;
  1211. ret = get_indexed(*VariantGetInternalPtr<double>::get_ptr(&p_index), valid, obb);
  1212. if (obb) {
  1213. valid = false;
  1214. }
  1215. }
  1216. if (r_valid) {
  1217. *r_valid = valid;
  1218. }
  1219. }
  1220. return ret;
  1221. }
  1222. void Variant::get_property_list(List<PropertyInfo> *p_list) const {
  1223. if (type == DICTIONARY) {
  1224. const Dictionary *dic = reinterpret_cast<const Dictionary *>(_data._mem);
  1225. List<Variant> keys;
  1226. dic->get_key_list(&keys);
  1227. for (List<Variant>::Element *E = keys.front(); E; E = E->next()) {
  1228. if (E->get().get_type() == Variant::STRING) {
  1229. p_list->push_back(PropertyInfo(Variant::STRING, E->get()));
  1230. }
  1231. }
  1232. } else if (type == OBJECT) {
  1233. Object *obj = get_validated_object();
  1234. ERR_FAIL_COND(!obj);
  1235. obj->get_property_list(p_list);
  1236. } else {
  1237. List<StringName> members;
  1238. get_member_list(type, &members);
  1239. for (List<StringName>::Element *E = members.front(); E; E = E->next()) {
  1240. PropertyInfo pi;
  1241. pi.name = E->get();
  1242. pi.type = get_member_type(type, E->get());
  1243. p_list->push_back(pi);
  1244. }
  1245. }
  1246. }
  1247. bool Variant::iter_init(Variant &r_iter, bool &valid) const {
  1248. valid = true;
  1249. switch (type) {
  1250. case INT: {
  1251. r_iter = 0;
  1252. return _data._int > 0;
  1253. } break;
  1254. case FLOAT: {
  1255. r_iter = 0;
  1256. return _data._float > 0.0;
  1257. } break;
  1258. case VECTOR2: {
  1259. double from = reinterpret_cast<const Vector2 *>(_data._mem)->x;
  1260. double to = reinterpret_cast<const Vector2 *>(_data._mem)->y;
  1261. r_iter = from;
  1262. return from < to;
  1263. } break;
  1264. case VECTOR2I: {
  1265. int64_t from = reinterpret_cast<const Vector2i *>(_data._mem)->x;
  1266. int64_t to = reinterpret_cast<const Vector2i *>(_data._mem)->y;
  1267. r_iter = from;
  1268. return from < to;
  1269. } break;
  1270. case VECTOR3: {
  1271. double from = reinterpret_cast<const Vector3 *>(_data._mem)->x;
  1272. double to = reinterpret_cast<const Vector3 *>(_data._mem)->y;
  1273. double step = reinterpret_cast<const Vector3 *>(_data._mem)->z;
  1274. r_iter = from;
  1275. if (from == to) {
  1276. return false;
  1277. } else if (from < to) {
  1278. return step > 0;
  1279. }
  1280. return step < 0;
  1281. } break;
  1282. case VECTOR3I: {
  1283. int64_t from = reinterpret_cast<const Vector3i *>(_data._mem)->x;
  1284. int64_t to = reinterpret_cast<const Vector3i *>(_data._mem)->y;
  1285. int64_t step = reinterpret_cast<const Vector3i *>(_data._mem)->z;
  1286. r_iter = from;
  1287. if (from == to) {
  1288. return false;
  1289. } else if (from < to) {
  1290. return step > 0;
  1291. }
  1292. return step < 0;
  1293. } break;
  1294. case OBJECT: {
  1295. if (!_get_obj().obj) {
  1296. valid = false;
  1297. return false;
  1298. }
  1299. #ifdef DEBUG_ENABLED
  1300. if (EngineDebugger::is_active() && !_get_obj().id.is_reference() && ObjectDB::get_instance(_get_obj().id) == nullptr) {
  1301. valid = false;
  1302. return false;
  1303. }
  1304. #endif
  1305. Callable::CallError ce;
  1306. ce.error = Callable::CallError::CALL_OK;
  1307. Array ref;
  1308. ref.push_back(r_iter);
  1309. Variant vref = ref;
  1310. const Variant *refp[] = { &vref };
  1311. Variant ret = _get_obj().obj->call(CoreStringNames::get_singleton()->_iter_init, refp, 1, ce);
  1312. if (ref.size() != 1 || ce.error != Callable::CallError::CALL_OK) {
  1313. valid = false;
  1314. return false;
  1315. }
  1316. r_iter = ref[0];
  1317. return ret;
  1318. } break;
  1319. case STRING: {
  1320. const String *str = reinterpret_cast<const String *>(_data._mem);
  1321. if (str->is_empty()) {
  1322. return false;
  1323. }
  1324. r_iter = 0;
  1325. return true;
  1326. } break;
  1327. case DICTIONARY: {
  1328. const Dictionary *dic = reinterpret_cast<const Dictionary *>(_data._mem);
  1329. if (dic->is_empty()) {
  1330. return false;
  1331. }
  1332. const Variant *next = dic->next(nullptr);
  1333. r_iter = *next;
  1334. return true;
  1335. } break;
  1336. case ARRAY: {
  1337. const Array *arr = reinterpret_cast<const Array *>(_data._mem);
  1338. if (arr->is_empty()) {
  1339. return false;
  1340. }
  1341. r_iter = 0;
  1342. return true;
  1343. } break;
  1344. case PACKED_BYTE_ARRAY: {
  1345. const Vector<uint8_t> *arr = &PackedArrayRef<uint8_t>::get_array(_data.packed_array);
  1346. if (arr->size() == 0) {
  1347. return false;
  1348. }
  1349. r_iter = 0;
  1350. return true;
  1351. } break;
  1352. case PACKED_INT32_ARRAY: {
  1353. const Vector<int32_t> *arr = &PackedArrayRef<int32_t>::get_array(_data.packed_array);
  1354. if (arr->size() == 0) {
  1355. return false;
  1356. }
  1357. r_iter = 0;
  1358. return true;
  1359. } break;
  1360. case PACKED_INT64_ARRAY: {
  1361. const Vector<int64_t> *arr = &PackedArrayRef<int64_t>::get_array(_data.packed_array);
  1362. if (arr->size() == 0) {
  1363. return false;
  1364. }
  1365. r_iter = 0;
  1366. return true;
  1367. } break;
  1368. case PACKED_FLOAT32_ARRAY: {
  1369. const Vector<float> *arr = &PackedArrayRef<float>::get_array(_data.packed_array);
  1370. if (arr->size() == 0) {
  1371. return false;
  1372. }
  1373. r_iter = 0;
  1374. return true;
  1375. } break;
  1376. case PACKED_FLOAT64_ARRAY: {
  1377. const Vector<double> *arr = &PackedArrayRef<double>::get_array(_data.packed_array);
  1378. if (arr->size() == 0) {
  1379. return false;
  1380. }
  1381. r_iter = 0;
  1382. return true;
  1383. } break;
  1384. case PACKED_STRING_ARRAY: {
  1385. const Vector<String> *arr = &PackedArrayRef<String>::get_array(_data.packed_array);
  1386. if (arr->size() == 0) {
  1387. return false;
  1388. }
  1389. r_iter = 0;
  1390. return true;
  1391. } break;
  1392. case PACKED_VECTOR2_ARRAY: {
  1393. const Vector<Vector2> *arr = &PackedArrayRef<Vector2>::get_array(_data.packed_array);
  1394. if (arr->size() == 0) {
  1395. return false;
  1396. }
  1397. r_iter = 0;
  1398. return true;
  1399. } break;
  1400. case PACKED_VECTOR3_ARRAY: {
  1401. const Vector<Vector3> *arr = &PackedArrayRef<Vector3>::get_array(_data.packed_array);
  1402. if (arr->size() == 0) {
  1403. return false;
  1404. }
  1405. r_iter = 0;
  1406. return true;
  1407. } break;
  1408. case PACKED_COLOR_ARRAY: {
  1409. const Vector<Color> *arr = &PackedArrayRef<Color>::get_array(_data.packed_array);
  1410. if (arr->size() == 0) {
  1411. return false;
  1412. }
  1413. r_iter = 0;
  1414. return true;
  1415. } break;
  1416. default: {
  1417. }
  1418. }
  1419. valid = false;
  1420. return false;
  1421. }
  1422. bool Variant::iter_next(Variant &r_iter, bool &valid) const {
  1423. valid = true;
  1424. switch (type) {
  1425. case INT: {
  1426. int64_t idx = r_iter;
  1427. idx++;
  1428. if (idx >= _data._int) {
  1429. return false;
  1430. }
  1431. r_iter = idx;
  1432. return true;
  1433. } break;
  1434. case FLOAT: {
  1435. int64_t idx = r_iter;
  1436. idx++;
  1437. if (idx >= _data._float) {
  1438. return false;
  1439. }
  1440. r_iter = idx;
  1441. return true;
  1442. } break;
  1443. case VECTOR2: {
  1444. double to = reinterpret_cast<const Vector2 *>(_data._mem)->y;
  1445. double idx = r_iter;
  1446. idx++;
  1447. if (idx >= to) {
  1448. return false;
  1449. }
  1450. r_iter = idx;
  1451. return true;
  1452. } break;
  1453. case VECTOR2I: {
  1454. int64_t to = reinterpret_cast<const Vector2i *>(_data._mem)->y;
  1455. int64_t idx = r_iter;
  1456. idx++;
  1457. if (idx >= to) {
  1458. return false;
  1459. }
  1460. r_iter = idx;
  1461. return true;
  1462. } break;
  1463. case VECTOR3: {
  1464. double to = reinterpret_cast<const Vector3 *>(_data._mem)->y;
  1465. double step = reinterpret_cast<const Vector3 *>(_data._mem)->z;
  1466. double idx = r_iter;
  1467. idx += step;
  1468. if (step < 0 && idx <= to) {
  1469. return false;
  1470. }
  1471. if (step > 0 && idx >= to) {
  1472. return false;
  1473. }
  1474. r_iter = idx;
  1475. return true;
  1476. } break;
  1477. case VECTOR3I: {
  1478. int64_t to = reinterpret_cast<const Vector3i *>(_data._mem)->y;
  1479. int64_t step = reinterpret_cast<const Vector3i *>(_data._mem)->z;
  1480. int64_t idx = r_iter;
  1481. idx += step;
  1482. if (step < 0 && idx <= to) {
  1483. return false;
  1484. }
  1485. if (step > 0 && idx >= to) {
  1486. return false;
  1487. }
  1488. r_iter = idx;
  1489. return true;
  1490. } break;
  1491. case OBJECT: {
  1492. if (!_get_obj().obj) {
  1493. valid = false;
  1494. return false;
  1495. }
  1496. #ifdef DEBUG_ENABLED
  1497. if (EngineDebugger::is_active() && !_get_obj().id.is_reference() && ObjectDB::get_instance(_get_obj().id) == nullptr) {
  1498. valid = false;
  1499. return false;
  1500. }
  1501. #endif
  1502. Callable::CallError ce;
  1503. ce.error = Callable::CallError::CALL_OK;
  1504. Array ref;
  1505. ref.push_back(r_iter);
  1506. Variant vref = ref;
  1507. const Variant *refp[] = { &vref };
  1508. Variant ret = _get_obj().obj->call(CoreStringNames::get_singleton()->_iter_next, refp, 1, ce);
  1509. if (ref.size() != 1 || ce.error != Callable::CallError::CALL_OK) {
  1510. valid = false;
  1511. return false;
  1512. }
  1513. r_iter = ref[0];
  1514. return ret;
  1515. } break;
  1516. case STRING: {
  1517. const String *str = reinterpret_cast<const String *>(_data._mem);
  1518. int idx = r_iter;
  1519. idx++;
  1520. if (idx >= str->length()) {
  1521. return false;
  1522. }
  1523. r_iter = idx;
  1524. return true;
  1525. } break;
  1526. case DICTIONARY: {
  1527. const Dictionary *dic = reinterpret_cast<const Dictionary *>(_data._mem);
  1528. const Variant *next = dic->next(&r_iter);
  1529. if (!next) {
  1530. return false;
  1531. }
  1532. r_iter = *next;
  1533. return true;
  1534. } break;
  1535. case ARRAY: {
  1536. const Array *arr = reinterpret_cast<const Array *>(_data._mem);
  1537. int idx = r_iter;
  1538. idx++;
  1539. if (idx >= arr->size()) {
  1540. return false;
  1541. }
  1542. r_iter = idx;
  1543. return true;
  1544. } break;
  1545. case PACKED_BYTE_ARRAY: {
  1546. const Vector<uint8_t> *arr = &PackedArrayRef<uint8_t>::get_array(_data.packed_array);
  1547. int idx = r_iter;
  1548. idx++;
  1549. if (idx >= arr->size()) {
  1550. return false;
  1551. }
  1552. r_iter = idx;
  1553. return true;
  1554. } break;
  1555. case PACKED_INT32_ARRAY: {
  1556. const Vector<int32_t> *arr = &PackedArrayRef<int32_t>::get_array(_data.packed_array);
  1557. int32_t idx = r_iter;
  1558. idx++;
  1559. if (idx >= arr->size()) {
  1560. return false;
  1561. }
  1562. r_iter = idx;
  1563. return true;
  1564. } break;
  1565. case PACKED_INT64_ARRAY: {
  1566. const Vector<int64_t> *arr = &PackedArrayRef<int64_t>::get_array(_data.packed_array);
  1567. int64_t idx = r_iter;
  1568. idx++;
  1569. if (idx >= arr->size()) {
  1570. return false;
  1571. }
  1572. r_iter = idx;
  1573. return true;
  1574. } break;
  1575. case PACKED_FLOAT32_ARRAY: {
  1576. const Vector<float> *arr = &PackedArrayRef<float>::get_array(_data.packed_array);
  1577. int idx = r_iter;
  1578. idx++;
  1579. if (idx >= arr->size()) {
  1580. return false;
  1581. }
  1582. r_iter = idx;
  1583. return true;
  1584. } break;
  1585. case PACKED_FLOAT64_ARRAY: {
  1586. const Vector<double> *arr = &PackedArrayRef<double>::get_array(_data.packed_array);
  1587. int idx = r_iter;
  1588. idx++;
  1589. if (idx >= arr->size()) {
  1590. return false;
  1591. }
  1592. r_iter = idx;
  1593. return true;
  1594. } break;
  1595. case PACKED_STRING_ARRAY: {
  1596. const Vector<String> *arr = &PackedArrayRef<String>::get_array(_data.packed_array);
  1597. int idx = r_iter;
  1598. idx++;
  1599. if (idx >= arr->size()) {
  1600. return false;
  1601. }
  1602. r_iter = idx;
  1603. return true;
  1604. } break;
  1605. case PACKED_VECTOR2_ARRAY: {
  1606. const Vector<Vector2> *arr = &PackedArrayRef<Vector2>::get_array(_data.packed_array);
  1607. int idx = r_iter;
  1608. idx++;
  1609. if (idx >= arr->size()) {
  1610. return false;
  1611. }
  1612. r_iter = idx;
  1613. return true;
  1614. } break;
  1615. case PACKED_VECTOR3_ARRAY: {
  1616. const Vector<Vector3> *arr = &PackedArrayRef<Vector3>::get_array(_data.packed_array);
  1617. int idx = r_iter;
  1618. idx++;
  1619. if (idx >= arr->size()) {
  1620. return false;
  1621. }
  1622. r_iter = idx;
  1623. return true;
  1624. } break;
  1625. case PACKED_COLOR_ARRAY: {
  1626. const Vector<Color> *arr = &PackedArrayRef<Color>::get_array(_data.packed_array);
  1627. int idx = r_iter;
  1628. idx++;
  1629. if (idx >= arr->size()) {
  1630. return false;
  1631. }
  1632. r_iter = idx;
  1633. return true;
  1634. } break;
  1635. default: {
  1636. }
  1637. }
  1638. valid = false;
  1639. return false;
  1640. }
  1641. Variant Variant::iter_get(const Variant &r_iter, bool &r_valid) const {
  1642. r_valid = true;
  1643. switch (type) {
  1644. case INT: {
  1645. return r_iter;
  1646. } break;
  1647. case FLOAT: {
  1648. return r_iter;
  1649. } break;
  1650. case VECTOR2: {
  1651. return r_iter;
  1652. } break;
  1653. case VECTOR2I: {
  1654. return r_iter;
  1655. } break;
  1656. case VECTOR3: {
  1657. return r_iter;
  1658. } break;
  1659. case VECTOR3I: {
  1660. return r_iter;
  1661. } break;
  1662. case OBJECT: {
  1663. if (!_get_obj().obj) {
  1664. r_valid = false;
  1665. return Variant();
  1666. }
  1667. #ifdef DEBUG_ENABLED
  1668. if (EngineDebugger::is_active() && !_get_obj().id.is_reference() && ObjectDB::get_instance(_get_obj().id) == nullptr) {
  1669. r_valid = false;
  1670. return Variant();
  1671. }
  1672. #endif
  1673. Callable::CallError ce;
  1674. ce.error = Callable::CallError::CALL_OK;
  1675. const Variant *refp[] = { &r_iter };
  1676. Variant ret = _get_obj().obj->call(CoreStringNames::get_singleton()->_iter_get, refp, 1, ce);
  1677. if (ce.error != Callable::CallError::CALL_OK) {
  1678. r_valid = false;
  1679. return Variant();
  1680. }
  1681. //r_iter=ref[0];
  1682. return ret;
  1683. } break;
  1684. case STRING: {
  1685. const String *str = reinterpret_cast<const String *>(_data._mem);
  1686. return str->substr(r_iter, 1);
  1687. } break;
  1688. case DICTIONARY: {
  1689. return r_iter; //iterator is the same as the key
  1690. } break;
  1691. case ARRAY: {
  1692. const Array *arr = reinterpret_cast<const Array *>(_data._mem);
  1693. int idx = r_iter;
  1694. #ifdef DEBUG_ENABLED
  1695. if (idx < 0 || idx >= arr->size()) {
  1696. r_valid = false;
  1697. return Variant();
  1698. }
  1699. #endif
  1700. return arr->get(idx);
  1701. } break;
  1702. case PACKED_BYTE_ARRAY: {
  1703. const Vector<uint8_t> *arr = &PackedArrayRef<uint8_t>::get_array(_data.packed_array);
  1704. int idx = r_iter;
  1705. #ifdef DEBUG_ENABLED
  1706. if (idx < 0 || idx >= arr->size()) {
  1707. r_valid = false;
  1708. return Variant();
  1709. }
  1710. #endif
  1711. return arr->get(idx);
  1712. } break;
  1713. case PACKED_INT32_ARRAY: {
  1714. const Vector<int32_t> *arr = &PackedArrayRef<int32_t>::get_array(_data.packed_array);
  1715. int32_t idx = r_iter;
  1716. #ifdef DEBUG_ENABLED
  1717. if (idx < 0 || idx >= arr->size()) {
  1718. r_valid = false;
  1719. return Variant();
  1720. }
  1721. #endif
  1722. return arr->get(idx);
  1723. } break;
  1724. case PACKED_INT64_ARRAY: {
  1725. const Vector<int64_t> *arr = &PackedArrayRef<int64_t>::get_array(_data.packed_array);
  1726. int64_t idx = r_iter;
  1727. #ifdef DEBUG_ENABLED
  1728. if (idx < 0 || idx >= arr->size()) {
  1729. r_valid = false;
  1730. return Variant();
  1731. }
  1732. #endif
  1733. return arr->get(idx);
  1734. } break;
  1735. case PACKED_FLOAT32_ARRAY: {
  1736. const Vector<float> *arr = &PackedArrayRef<float>::get_array(_data.packed_array);
  1737. int idx = r_iter;
  1738. #ifdef DEBUG_ENABLED
  1739. if (idx < 0 || idx >= arr->size()) {
  1740. r_valid = false;
  1741. return Variant();
  1742. }
  1743. #endif
  1744. return arr->get(idx);
  1745. } break;
  1746. case PACKED_FLOAT64_ARRAY: {
  1747. const Vector<double> *arr = &PackedArrayRef<double>::get_array(_data.packed_array);
  1748. int idx = r_iter;
  1749. #ifdef DEBUG_ENABLED
  1750. if (idx < 0 || idx >= arr->size()) {
  1751. r_valid = false;
  1752. return Variant();
  1753. }
  1754. #endif
  1755. return arr->get(idx);
  1756. } break;
  1757. case PACKED_STRING_ARRAY: {
  1758. const Vector<String> *arr = &PackedArrayRef<String>::get_array(_data.packed_array);
  1759. int idx = r_iter;
  1760. #ifdef DEBUG_ENABLED
  1761. if (idx < 0 || idx >= arr->size()) {
  1762. r_valid = false;
  1763. return Variant();
  1764. }
  1765. #endif
  1766. return arr->get(idx);
  1767. } break;
  1768. case PACKED_VECTOR2_ARRAY: {
  1769. const Vector<Vector2> *arr = &PackedArrayRef<Vector2>::get_array(_data.packed_array);
  1770. int idx = r_iter;
  1771. #ifdef DEBUG_ENABLED
  1772. if (idx < 0 || idx >= arr->size()) {
  1773. r_valid = false;
  1774. return Variant();
  1775. }
  1776. #endif
  1777. return arr->get(idx);
  1778. } break;
  1779. case PACKED_VECTOR3_ARRAY: {
  1780. const Vector<Vector3> *arr = &PackedArrayRef<Vector3>::get_array(_data.packed_array);
  1781. int idx = r_iter;
  1782. #ifdef DEBUG_ENABLED
  1783. if (idx < 0 || idx >= arr->size()) {
  1784. r_valid = false;
  1785. return Variant();
  1786. }
  1787. #endif
  1788. return arr->get(idx);
  1789. } break;
  1790. case PACKED_COLOR_ARRAY: {
  1791. const Vector<Color> *arr = &PackedArrayRef<Color>::get_array(_data.packed_array);
  1792. int idx = r_iter;
  1793. #ifdef DEBUG_ENABLED
  1794. if (idx < 0 || idx >= arr->size()) {
  1795. r_valid = false;
  1796. return Variant();
  1797. }
  1798. #endif
  1799. return arr->get(idx);
  1800. } break;
  1801. default: {
  1802. }
  1803. }
  1804. r_valid = false;
  1805. return Variant();
  1806. }
  1807. Variant Variant::duplicate(bool deep) const {
  1808. switch (type) {
  1809. case OBJECT: {
  1810. /* breaks stuff :(
  1811. if (deep && !_get_obj().ref.is_null()) {
  1812. Ref<Resource> resource = _get_obj().ref;
  1813. if (resource.is_valid()) {
  1814. return resource->duplicate(true);
  1815. }
  1816. }
  1817. */
  1818. return *this;
  1819. } break;
  1820. case DICTIONARY:
  1821. return operator Dictionary().duplicate(deep);
  1822. case ARRAY:
  1823. return operator Array().duplicate(deep);
  1824. case PACKED_BYTE_ARRAY:
  1825. return operator Vector<uint8_t>().duplicate();
  1826. case PACKED_INT32_ARRAY:
  1827. return operator Vector<int32_t>().duplicate();
  1828. case PACKED_INT64_ARRAY:
  1829. return operator Vector<int64_t>().duplicate();
  1830. case PACKED_FLOAT32_ARRAY:
  1831. return operator Vector<float>().duplicate();
  1832. case PACKED_FLOAT64_ARRAY:
  1833. return operator Vector<double>().duplicate();
  1834. case PACKED_STRING_ARRAY:
  1835. return operator Vector<String>().duplicate();
  1836. case PACKED_VECTOR2_ARRAY:
  1837. return operator Vector<Vector2>().duplicate();
  1838. case PACKED_VECTOR3_ARRAY:
  1839. return operator Vector<Vector3>().duplicate();
  1840. case PACKED_COLOR_ARRAY:
  1841. return operator Vector<Color>().duplicate();
  1842. default:
  1843. return *this;
  1844. }
  1845. }
  1846. void Variant::blend(const Variant &a, const Variant &b, float c, Variant &r_dst) {
  1847. if (a.type != b.type) {
  1848. if (a.is_num() && b.is_num()) {
  1849. real_t va = a;
  1850. real_t vb = b;
  1851. r_dst = va + vb * c;
  1852. } else {
  1853. r_dst = a;
  1854. }
  1855. return;
  1856. }
  1857. switch (a.type) {
  1858. case NIL: {
  1859. r_dst = Variant();
  1860. }
  1861. return;
  1862. case INT: {
  1863. int64_t va = a._data._int;
  1864. int64_t vb = b._data._int;
  1865. r_dst = int(va + vb * c + 0.5);
  1866. }
  1867. return;
  1868. case FLOAT: {
  1869. double ra = a._data._float;
  1870. double rb = b._data._float;
  1871. r_dst = ra + rb * c;
  1872. }
  1873. return;
  1874. case VECTOR2: {
  1875. r_dst = *reinterpret_cast<const Vector2 *>(a._data._mem) + *reinterpret_cast<const Vector2 *>(b._data._mem) * c;
  1876. }
  1877. return;
  1878. case VECTOR2I: {
  1879. int32_t vax = reinterpret_cast<const Vector2i *>(a._data._mem)->x;
  1880. int32_t vbx = reinterpret_cast<const Vector2i *>(b._data._mem)->x;
  1881. int32_t vay = reinterpret_cast<const Vector2i *>(a._data._mem)->y;
  1882. int32_t vby = reinterpret_cast<const Vector2i *>(b._data._mem)->y;
  1883. r_dst = Vector2i(int32_t(vax + vbx * c + 0.5), int32_t(vay + vby * c + 0.5));
  1884. }
  1885. return;
  1886. case RECT2: {
  1887. const Rect2 *ra = reinterpret_cast<const Rect2 *>(a._data._mem);
  1888. const Rect2 *rb = reinterpret_cast<const Rect2 *>(b._data._mem);
  1889. r_dst = Rect2(ra->position + rb->position * c, ra->size + rb->size * c);
  1890. }
  1891. return;
  1892. case RECT2I: {
  1893. const Rect2i *ra = reinterpret_cast<const Rect2i *>(a._data._mem);
  1894. const Rect2i *rb = reinterpret_cast<const Rect2i *>(b._data._mem);
  1895. int32_t vax = ra->position.x;
  1896. int32_t vay = ra->position.y;
  1897. int32_t vbx = ra->size.x;
  1898. int32_t vby = ra->size.y;
  1899. int32_t vcx = rb->position.x;
  1900. int32_t vcy = rb->position.y;
  1901. int32_t vdx = rb->size.x;
  1902. int32_t vdy = rb->size.y;
  1903. r_dst = Rect2i(int32_t(vax + vbx * c + 0.5), int32_t(vay + vby * c + 0.5), int32_t(vcx + vdx * c + 0.5), int32_t(vcy + vdy * c + 0.5));
  1904. }
  1905. return;
  1906. case VECTOR3: {
  1907. r_dst = *reinterpret_cast<const Vector3 *>(a._data._mem) + *reinterpret_cast<const Vector3 *>(b._data._mem) * c;
  1908. }
  1909. return;
  1910. case VECTOR3I: {
  1911. int32_t vax = reinterpret_cast<const Vector3i *>(a._data._mem)->x;
  1912. int32_t vbx = reinterpret_cast<const Vector3i *>(b._data._mem)->x;
  1913. int32_t vay = reinterpret_cast<const Vector3i *>(a._data._mem)->y;
  1914. int32_t vby = reinterpret_cast<const Vector3i *>(b._data._mem)->y;
  1915. int32_t vaz = reinterpret_cast<const Vector3i *>(a._data._mem)->z;
  1916. int32_t vbz = reinterpret_cast<const Vector3i *>(b._data._mem)->z;
  1917. r_dst = Vector3i(int32_t(vax + vbx * c + 0.5), int32_t(vay + vby * c + 0.5), int32_t(vaz + vbz * c + 0.5));
  1918. }
  1919. return;
  1920. case AABB: {
  1921. const ::AABB *ra = reinterpret_cast<const ::AABB *>(a._data._mem);
  1922. const ::AABB *rb = reinterpret_cast<const ::AABB *>(b._data._mem);
  1923. r_dst = ::AABB(ra->position + rb->position * c, ra->size + rb->size * c);
  1924. }
  1925. return;
  1926. case QUAT: {
  1927. Quat empty_rot;
  1928. const Quat *qa = reinterpret_cast<const Quat *>(a._data._mem);
  1929. const Quat *qb = reinterpret_cast<const Quat *>(b._data._mem);
  1930. r_dst = *qa * empty_rot.slerp(*qb, c);
  1931. }
  1932. return;
  1933. case COLOR: {
  1934. const Color *ca = reinterpret_cast<const Color *>(a._data._mem);
  1935. const Color *cb = reinterpret_cast<const Color *>(b._data._mem);
  1936. float new_r = ca->r + cb->r * c;
  1937. float new_g = ca->g + cb->g * c;
  1938. float new_b = ca->b + cb->b * c;
  1939. float new_a = ca->a + cb->a * c;
  1940. new_r = new_r > 1.0 ? 1.0 : new_r;
  1941. new_g = new_g > 1.0 ? 1.0 : new_g;
  1942. new_b = new_b > 1.0 ? 1.0 : new_b;
  1943. new_a = new_a > 1.0 ? 1.0 : new_a;
  1944. r_dst = Color(new_r, new_g, new_b, new_a);
  1945. }
  1946. return;
  1947. default: {
  1948. r_dst = c < 0.5 ? a : b;
  1949. }
  1950. return;
  1951. }
  1952. }
  1953. void Variant::interpolate(const Variant &a, const Variant &b, float c, Variant &r_dst) {
  1954. if (a.type != b.type) {
  1955. if (a.is_num() && b.is_num()) {
  1956. //not as efficient but..
  1957. real_t va = a;
  1958. real_t vb = b;
  1959. r_dst = va + (vb - va) * c;
  1960. } else {
  1961. r_dst = a;
  1962. }
  1963. return;
  1964. }
  1965. switch (a.type) {
  1966. case NIL: {
  1967. r_dst = Variant();
  1968. }
  1969. return;
  1970. case BOOL: {
  1971. r_dst = a;
  1972. }
  1973. return;
  1974. case INT: {
  1975. int64_t va = a._data._int;
  1976. int64_t vb = b._data._int;
  1977. r_dst = int(va + (vb - va) * c);
  1978. }
  1979. return;
  1980. case FLOAT: {
  1981. real_t va = a._data._float;
  1982. real_t vb = b._data._float;
  1983. r_dst = va + (vb - va) * c;
  1984. }
  1985. return;
  1986. case STRING: {
  1987. //this is pretty funny and bizarre, but artists like to use it for typewriter effects
  1988. String sa = *reinterpret_cast<const String *>(a._data._mem);
  1989. String sb = *reinterpret_cast<const String *>(b._data._mem);
  1990. String dst;
  1991. int sa_len = sa.length();
  1992. int sb_len = sb.length();
  1993. int csize = sa_len + (sb_len - sa_len) * c;
  1994. if (csize == 0) {
  1995. r_dst = "";
  1996. return;
  1997. }
  1998. dst.resize(csize + 1);
  1999. dst[csize] = 0;
  2000. int split = csize / 2;
  2001. for (int i = 0; i < csize; i++) {
  2002. char32_t chr = ' ';
  2003. if (i < split) {
  2004. if (i < sa.length()) {
  2005. chr = sa[i];
  2006. } else if (i < sb.length()) {
  2007. chr = sb[i];
  2008. }
  2009. } else {
  2010. if (i < sb.length()) {
  2011. chr = sb[i];
  2012. } else if (i < sa.length()) {
  2013. chr = sa[i];
  2014. }
  2015. }
  2016. dst[i] = chr;
  2017. }
  2018. r_dst = dst;
  2019. }
  2020. return;
  2021. case VECTOR2: {
  2022. r_dst = reinterpret_cast<const Vector2 *>(a._data._mem)->lerp(*reinterpret_cast<const Vector2 *>(b._data._mem), c);
  2023. }
  2024. return;
  2025. case VECTOR2I: {
  2026. int32_t vax = reinterpret_cast<const Vector2i *>(a._data._mem)->x;
  2027. int32_t vbx = reinterpret_cast<const Vector2i *>(b._data._mem)->x;
  2028. int32_t vay = reinterpret_cast<const Vector2i *>(a._data._mem)->y;
  2029. int32_t vby = reinterpret_cast<const Vector2i *>(b._data._mem)->y;
  2030. r_dst = Vector2i(int32_t(vax + vbx * c + 0.5), int32_t(vay + vby * c + 0.5));
  2031. }
  2032. return;
  2033. case RECT2: {
  2034. r_dst = Rect2(reinterpret_cast<const Rect2 *>(a._data._mem)->position.lerp(reinterpret_cast<const Rect2 *>(b._data._mem)->position, c), reinterpret_cast<const Rect2 *>(a._data._mem)->size.lerp(reinterpret_cast<const Rect2 *>(b._data._mem)->size, c));
  2035. }
  2036. return;
  2037. case RECT2I: {
  2038. const Rect2i *ra = reinterpret_cast<const Rect2i *>(a._data._mem);
  2039. const Rect2i *rb = reinterpret_cast<const Rect2i *>(b._data._mem);
  2040. int32_t vax = ra->position.x;
  2041. int32_t vay = ra->position.y;
  2042. int32_t vbx = ra->size.x;
  2043. int32_t vby = ra->size.y;
  2044. int32_t vcx = rb->position.x;
  2045. int32_t vcy = rb->position.y;
  2046. int32_t vdx = rb->size.x;
  2047. int32_t vdy = rb->size.y;
  2048. r_dst = Rect2i(int32_t(vax + vbx * c + 0.5), int32_t(vay + vby * c + 0.5), int32_t(vcx + vdx * c + 0.5), int32_t(vcy + vdy * c + 0.5));
  2049. }
  2050. return;
  2051. case VECTOR3: {
  2052. r_dst = reinterpret_cast<const Vector3 *>(a._data._mem)->lerp(*reinterpret_cast<const Vector3 *>(b._data._mem), c);
  2053. }
  2054. return;
  2055. case VECTOR3I: {
  2056. int32_t vax = reinterpret_cast<const Vector3i *>(a._data._mem)->x;
  2057. int32_t vbx = reinterpret_cast<const Vector3i *>(b._data._mem)->x;
  2058. int32_t vay = reinterpret_cast<const Vector3i *>(a._data._mem)->y;
  2059. int32_t vby = reinterpret_cast<const Vector3i *>(b._data._mem)->y;
  2060. int32_t vaz = reinterpret_cast<const Vector3i *>(a._data._mem)->z;
  2061. int32_t vbz = reinterpret_cast<const Vector3i *>(b._data._mem)->z;
  2062. r_dst = Vector3i(int32_t(vax + vbx * c + 0.5), int32_t(vay + vby * c + 0.5), int32_t(vaz + vbz * c + 0.5));
  2063. }
  2064. return;
  2065. case TRANSFORM2D: {
  2066. r_dst = a._data._transform2d->interpolate_with(*b._data._transform2d, c);
  2067. }
  2068. return;
  2069. case PLANE: {
  2070. r_dst = a;
  2071. }
  2072. return;
  2073. case QUAT: {
  2074. r_dst = reinterpret_cast<const Quat *>(a._data._mem)->slerp(*reinterpret_cast<const Quat *>(b._data._mem), c);
  2075. }
  2076. return;
  2077. case AABB: {
  2078. r_dst = ::AABB(a._data._aabb->position.lerp(b._data._aabb->position, c), a._data._aabb->size.lerp(b._data._aabb->size, c));
  2079. }
  2080. return;
  2081. case BASIS: {
  2082. r_dst = Transform(*a._data._basis).interpolate_with(Transform(*b._data._basis), c).basis;
  2083. }
  2084. return;
  2085. case TRANSFORM: {
  2086. r_dst = a._data._transform->interpolate_with(*b._data._transform, c);
  2087. }
  2088. return;
  2089. case COLOR: {
  2090. r_dst = reinterpret_cast<const Color *>(a._data._mem)->lerp(*reinterpret_cast<const Color *>(b._data._mem), c);
  2091. }
  2092. return;
  2093. case STRING_NAME: {
  2094. r_dst = a;
  2095. }
  2096. return;
  2097. case NODE_PATH: {
  2098. r_dst = a;
  2099. }
  2100. return;
  2101. case RID: {
  2102. r_dst = a;
  2103. }
  2104. return;
  2105. case OBJECT: {
  2106. r_dst = a;
  2107. }
  2108. return;
  2109. case DICTIONARY: {
  2110. }
  2111. return;
  2112. case ARRAY: {
  2113. r_dst = a;
  2114. }
  2115. return;
  2116. case PACKED_BYTE_ARRAY: {
  2117. r_dst = a;
  2118. }
  2119. return;
  2120. case PACKED_INT32_ARRAY: {
  2121. const Vector<int32_t> *arr_a = &PackedArrayRef<int32_t>::get_array(a._data.packed_array);
  2122. const Vector<int32_t> *arr_b = &PackedArrayRef<int32_t>::get_array(b._data.packed_array);
  2123. int32_t sz = arr_a->size();
  2124. if (sz == 0 || arr_b->size() != sz) {
  2125. r_dst = a;
  2126. } else {
  2127. Vector<int32_t> v;
  2128. v.resize(sz);
  2129. {
  2130. int32_t *vw = v.ptrw();
  2131. const int32_t *ar = arr_a->ptr();
  2132. const int32_t *br = arr_b->ptr();
  2133. Variant va;
  2134. for (int32_t i = 0; i < sz; i++) {
  2135. Variant::interpolate(ar[i], br[i], c, va);
  2136. vw[i] = va;
  2137. }
  2138. }
  2139. r_dst = v;
  2140. }
  2141. }
  2142. return;
  2143. case PACKED_INT64_ARRAY: {
  2144. const Vector<int64_t> *arr_a = &PackedArrayRef<int64_t>::get_array(a._data.packed_array);
  2145. const Vector<int64_t> *arr_b = &PackedArrayRef<int64_t>::get_array(b._data.packed_array);
  2146. int64_t sz = arr_a->size();
  2147. if (sz == 0 || arr_b->size() != sz) {
  2148. r_dst = a;
  2149. } else {
  2150. Vector<int64_t> v;
  2151. v.resize(sz);
  2152. {
  2153. int64_t *vw = v.ptrw();
  2154. const int64_t *ar = arr_a->ptr();
  2155. const int64_t *br = arr_b->ptr();
  2156. Variant va;
  2157. for (int64_t i = 0; i < sz; i++) {
  2158. Variant::interpolate(ar[i], br[i], c, va);
  2159. vw[i] = va;
  2160. }
  2161. }
  2162. r_dst = v;
  2163. }
  2164. }
  2165. return;
  2166. case PACKED_FLOAT32_ARRAY: {
  2167. const Vector<float> *arr_a = &PackedArrayRef<float>::get_array(a._data.packed_array);
  2168. const Vector<float> *arr_b = &PackedArrayRef<float>::get_array(b._data.packed_array);
  2169. int sz = arr_a->size();
  2170. if (sz == 0 || arr_b->size() != sz) {
  2171. r_dst = a;
  2172. } else {
  2173. Vector<float> v;
  2174. v.resize(sz);
  2175. {
  2176. float *vw = v.ptrw();
  2177. const float *ar = arr_a->ptr();
  2178. const float *br = arr_b->ptr();
  2179. Variant va;
  2180. for (int i = 0; i < sz; i++) {
  2181. Variant::interpolate(ar[i], br[i], c, va);
  2182. vw[i] = va;
  2183. }
  2184. }
  2185. r_dst = v;
  2186. }
  2187. }
  2188. return;
  2189. case PACKED_FLOAT64_ARRAY: {
  2190. const Vector<double> *arr_a = &PackedArrayRef<double>::get_array(a._data.packed_array);
  2191. const Vector<double> *arr_b = &PackedArrayRef<double>::get_array(b._data.packed_array);
  2192. int sz = arr_a->size();
  2193. if (sz == 0 || arr_b->size() != sz) {
  2194. r_dst = a;
  2195. } else {
  2196. Vector<double> v;
  2197. v.resize(sz);
  2198. {
  2199. double *vw = v.ptrw();
  2200. const double *ar = arr_a->ptr();
  2201. const double *br = arr_b->ptr();
  2202. Variant va;
  2203. for (int i = 0; i < sz; i++) {
  2204. Variant::interpolate(ar[i], br[i], c, va);
  2205. vw[i] = va;
  2206. }
  2207. }
  2208. r_dst = v;
  2209. }
  2210. }
  2211. return;
  2212. case PACKED_STRING_ARRAY: {
  2213. r_dst = a;
  2214. }
  2215. return;
  2216. case PACKED_VECTOR2_ARRAY: {
  2217. const Vector<Vector2> *arr_a = &PackedArrayRef<Vector2>::get_array(a._data.packed_array);
  2218. const Vector<Vector2> *arr_b = &PackedArrayRef<Vector2>::get_array(b._data.packed_array);
  2219. int sz = arr_a->size();
  2220. if (sz == 0 || arr_b->size() != sz) {
  2221. r_dst = a;
  2222. } else {
  2223. Vector<Vector2> v;
  2224. v.resize(sz);
  2225. {
  2226. Vector2 *vw = v.ptrw();
  2227. const Vector2 *ar = arr_a->ptr();
  2228. const Vector2 *br = arr_b->ptr();
  2229. for (int i = 0; i < sz; i++) {
  2230. vw[i] = ar[i].lerp(br[i], c);
  2231. }
  2232. }
  2233. r_dst = v;
  2234. }
  2235. }
  2236. return;
  2237. case PACKED_VECTOR3_ARRAY: {
  2238. const Vector<Vector3> *arr_a = &PackedArrayRef<Vector3>::get_array(a._data.packed_array);
  2239. const Vector<Vector3> *arr_b = &PackedArrayRef<Vector3>::get_array(b._data.packed_array);
  2240. int sz = arr_a->size();
  2241. if (sz == 0 || arr_b->size() != sz) {
  2242. r_dst = a;
  2243. } else {
  2244. Vector<Vector3> v;
  2245. v.resize(sz);
  2246. {
  2247. Vector3 *vw = v.ptrw();
  2248. const Vector3 *ar = arr_a->ptr();
  2249. const Vector3 *br = arr_b->ptr();
  2250. for (int i = 0; i < sz; i++) {
  2251. vw[i] = ar[i].lerp(br[i], c);
  2252. }
  2253. }
  2254. r_dst = v;
  2255. }
  2256. }
  2257. return;
  2258. case PACKED_COLOR_ARRAY: {
  2259. const Vector<Color> *arr_a = &PackedArrayRef<Color>::get_array(a._data.packed_array);
  2260. const Vector<Color> *arr_b = &PackedArrayRef<Color>::get_array(b._data.packed_array);
  2261. int sz = arr_a->size();
  2262. if (sz == 0 || arr_b->size() != sz) {
  2263. r_dst = a;
  2264. } else {
  2265. Vector<Color> v;
  2266. v.resize(sz);
  2267. {
  2268. Color *vw = v.ptrw();
  2269. const Color *ar = arr_a->ptr();
  2270. const Color *br = arr_b->ptr();
  2271. for (int i = 0; i < sz; i++) {
  2272. vw[i] = ar[i].lerp(br[i], c);
  2273. }
  2274. }
  2275. r_dst = v;
  2276. }
  2277. }
  2278. return;
  2279. default: {
  2280. r_dst = a;
  2281. }
  2282. }
  2283. }
  2284. void Variant::_register_variant_setters_getters() {
  2285. register_named_setters_getters();
  2286. register_indexed_setters_getters();
  2287. register_keyed_setters_getters();
  2288. }
  2289. void Variant::_unregister_variant_setters_getters() {
  2290. unregister_named_setters_getters();
  2291. unregister_indexed_setters_getters();
  2292. }