gd_mono_marshal.cpp 25 KB

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  1. /*************************************************************************/
  2. /* gd_mono_marshal.cpp */
  3. /*************************************************************************/
  4. /* This file is part of: */
  5. /* GODOT ENGINE */
  6. /* https://godotengine.org */
  7. /*************************************************************************/
  8. /* Copyright (c) 2007-2018 Juan Linietsky, Ariel Manzur. */
  9. /* Copyright (c) 2014-2018 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 "gd_mono_marshal.h"
  31. #include "gd_mono.h"
  32. #include "gd_mono_class.h"
  33. namespace GDMonoMarshal {
  34. #define RETURN_BOXED_STRUCT(m_t, m_var_in) \
  35. { \
  36. const m_t &m_in = m_var_in->operator ::m_t(); \
  37. MARSHALLED_OUT(m_t, m_in, raw); \
  38. return mono_value_box(mono_domain_get(), CACHED_CLASS_RAW(m_t), raw); \
  39. }
  40. #define RETURN_UNBOXED_STRUCT(m_t, m_var_in) \
  41. { \
  42. float *raw = (float *)mono_object_unbox(m_var_in); \
  43. MARSHALLED_IN(m_t, raw, ret); \
  44. return ret; \
  45. }
  46. Variant::Type managed_to_variant_type(const ManagedType &p_type) {
  47. switch (p_type.type_encoding) {
  48. case MONO_TYPE_BOOLEAN:
  49. return Variant::BOOL;
  50. case MONO_TYPE_I1:
  51. return Variant::INT;
  52. case MONO_TYPE_I2:
  53. return Variant::INT;
  54. case MONO_TYPE_I4:
  55. return Variant::INT;
  56. case MONO_TYPE_I8:
  57. return Variant::INT;
  58. case MONO_TYPE_U1:
  59. return Variant::INT;
  60. case MONO_TYPE_U2:
  61. return Variant::INT;
  62. case MONO_TYPE_U4:
  63. return Variant::INT;
  64. case MONO_TYPE_U8:
  65. return Variant::INT;
  66. case MONO_TYPE_R4:
  67. return Variant::REAL;
  68. case MONO_TYPE_R8:
  69. return Variant::REAL;
  70. case MONO_TYPE_STRING: {
  71. return Variant::STRING;
  72. } break;
  73. case MONO_TYPE_VALUETYPE: {
  74. GDMonoClass *tclass = p_type.type_class;
  75. if (tclass == CACHED_CLASS(Vector2))
  76. return Variant::VECTOR2;
  77. if (tclass == CACHED_CLASS(Rect2))
  78. return Variant::RECT2;
  79. if (tclass == CACHED_CLASS(Transform2D))
  80. return Variant::TRANSFORM2D;
  81. if (tclass == CACHED_CLASS(Vector3))
  82. return Variant::VECTOR3;
  83. if (tclass == CACHED_CLASS(Basis))
  84. return Variant::BASIS;
  85. if (tclass == CACHED_CLASS(Quat))
  86. return Variant::QUAT;
  87. if (tclass == CACHED_CLASS(Transform))
  88. return Variant::TRANSFORM;
  89. if (tclass == CACHED_CLASS(AABB))
  90. return Variant::AABB;
  91. if (tclass == CACHED_CLASS(Color))
  92. return Variant::COLOR;
  93. if (tclass == CACHED_CLASS(Plane))
  94. return Variant::PLANE;
  95. if (mono_class_is_enum(tclass->get_mono_ptr()))
  96. return Variant::INT;
  97. } break;
  98. case MONO_TYPE_ARRAY:
  99. case MONO_TYPE_SZARRAY: {
  100. MonoArrayType *array_type = mono_type_get_array_type(GDMonoClass::get_raw_type(p_type.type_class));
  101. if (array_type->eklass == CACHED_CLASS_RAW(MonoObject))
  102. return Variant::ARRAY;
  103. if (array_type->eklass == CACHED_CLASS_RAW(uint8_t))
  104. return Variant::POOL_BYTE_ARRAY;
  105. if (array_type->eklass == CACHED_CLASS_RAW(int32_t))
  106. return Variant::POOL_INT_ARRAY;
  107. if (array_type->eklass == REAL_T_MONOCLASS)
  108. return Variant::POOL_REAL_ARRAY;
  109. if (array_type->eklass == CACHED_CLASS_RAW(String))
  110. return Variant::POOL_STRING_ARRAY;
  111. if (array_type->eklass == CACHED_CLASS_RAW(Vector2))
  112. return Variant::POOL_VECTOR2_ARRAY;
  113. if (array_type->eklass == CACHED_CLASS_RAW(Vector3))
  114. return Variant::POOL_VECTOR3_ARRAY;
  115. if (array_type->eklass == CACHED_CLASS_RAW(Color))
  116. return Variant::POOL_COLOR_ARRAY;
  117. } break;
  118. case MONO_TYPE_CLASS: {
  119. GDMonoClass *type_class = p_type.type_class;
  120. // GodotObject
  121. if (CACHED_CLASS(GodotObject)->is_assignable_from(type_class)) {
  122. return Variant::OBJECT;
  123. }
  124. if (CACHED_CLASS(NodePath) == type_class) {
  125. return Variant::NODE_PATH;
  126. }
  127. if (CACHED_CLASS(RID) == type_class) {
  128. return Variant::_RID;
  129. }
  130. } break;
  131. case MONO_TYPE_GENERICINST: {
  132. if (CACHED_RAW_MONO_CLASS(Dictionary) == p_type.type_class->get_mono_ptr()) {
  133. return Variant::DICTIONARY;
  134. }
  135. } break;
  136. default: {
  137. } break;
  138. }
  139. // Unknown
  140. return Variant::NIL;
  141. }
  142. String mono_to_utf8_string(MonoString *p_mono_string) {
  143. MonoError error;
  144. char *utf8 = mono_string_to_utf8_checked(p_mono_string, &error);
  145. ERR_EXPLAIN("Conversion of MonoString to UTF8 failed.");
  146. ERR_FAIL_COND_V(!mono_error_ok(&error), String());
  147. String ret = String::utf8(utf8);
  148. mono_free(utf8);
  149. return ret;
  150. }
  151. String mono_to_utf16_string(MonoString *p_mono_string) {
  152. int len = mono_string_length(p_mono_string);
  153. String ret;
  154. if (len == 0)
  155. return ret;
  156. ret.resize(len + 1);
  157. ret.set(len, 0);
  158. CharType *src = (CharType *)mono_string_chars(p_mono_string);
  159. CharType *dst = &(ret.operator[](0));
  160. for (int i = 0; i < len; i++) {
  161. dst[i] = src[i];
  162. }
  163. return ret;
  164. }
  165. MonoObject *variant_to_mono_object(const Variant *p_var) {
  166. ManagedType type;
  167. type.type_encoding = MONO_TYPE_OBJECT;
  168. return variant_to_mono_object(p_var, type);
  169. }
  170. MonoObject *variant_to_mono_object(const Variant *p_var, const ManagedType &p_type) {
  171. switch (p_type.type_encoding) {
  172. case MONO_TYPE_BOOLEAN: {
  173. MonoBoolean val = p_var->operator bool();
  174. return BOX_BOOLEAN(val);
  175. }
  176. case MONO_TYPE_I1: {
  177. char val = p_var->operator signed char();
  178. return BOX_INT8(val);
  179. }
  180. case MONO_TYPE_I2: {
  181. short val = p_var->operator signed short();
  182. return BOX_INT16(val);
  183. }
  184. case MONO_TYPE_I4: {
  185. int val = p_var->operator signed int();
  186. return BOX_INT32(val);
  187. }
  188. case MONO_TYPE_I8: {
  189. int64_t val = p_var->operator int64_t();
  190. return BOX_INT64(val);
  191. }
  192. case MONO_TYPE_U1: {
  193. char val = p_var->operator unsigned char();
  194. return BOX_UINT8(val);
  195. }
  196. case MONO_TYPE_U2: {
  197. short val = p_var->operator unsigned short();
  198. return BOX_UINT16(val);
  199. }
  200. case MONO_TYPE_U4: {
  201. int val = p_var->operator unsigned int();
  202. return BOX_UINT32(val);
  203. }
  204. case MONO_TYPE_U8: {
  205. uint64_t val = p_var->operator uint64_t();
  206. return BOX_UINT64(val);
  207. }
  208. case MONO_TYPE_R4: {
  209. float val = p_var->operator float();
  210. return BOX_FLOAT(val);
  211. }
  212. case MONO_TYPE_R8: {
  213. double val = p_var->operator double();
  214. return BOX_DOUBLE(val);
  215. }
  216. case MONO_TYPE_STRING: {
  217. return (MonoObject *)mono_string_from_godot(p_var->operator String());
  218. } break;
  219. case MONO_TYPE_VALUETYPE: {
  220. GDMonoClass *tclass = p_type.type_class;
  221. if (tclass == CACHED_CLASS(Vector2))
  222. RETURN_BOXED_STRUCT(Vector2, p_var);
  223. if (tclass == CACHED_CLASS(Rect2))
  224. RETURN_BOXED_STRUCT(Rect2, p_var);
  225. if (tclass == CACHED_CLASS(Transform2D))
  226. RETURN_BOXED_STRUCT(Transform2D, p_var);
  227. if (tclass == CACHED_CLASS(Vector3))
  228. RETURN_BOXED_STRUCT(Vector3, p_var);
  229. if (tclass == CACHED_CLASS(Basis))
  230. RETURN_BOXED_STRUCT(Basis, p_var);
  231. if (tclass == CACHED_CLASS(Quat))
  232. RETURN_BOXED_STRUCT(Quat, p_var);
  233. if (tclass == CACHED_CLASS(Transform))
  234. RETURN_BOXED_STRUCT(Transform, p_var);
  235. if (tclass == CACHED_CLASS(AABB))
  236. RETURN_BOXED_STRUCT(AABB, p_var);
  237. if (tclass == CACHED_CLASS(Color))
  238. RETURN_BOXED_STRUCT(Color, p_var);
  239. if (tclass == CACHED_CLASS(Plane))
  240. RETURN_BOXED_STRUCT(Plane, p_var);
  241. if (mono_class_is_enum(tclass->get_mono_ptr())) {
  242. int val = p_var->operator signed int();
  243. return BOX_ENUM(tclass->get_mono_ptr(), val);
  244. }
  245. } break;
  246. case MONO_TYPE_ARRAY:
  247. case MONO_TYPE_SZARRAY: {
  248. MonoArrayType *array_type = mono_type_get_array_type(GDMonoClass::get_raw_type(p_type.type_class));
  249. if (array_type->eklass == CACHED_CLASS_RAW(MonoObject))
  250. return (MonoObject *)Array_to_mono_array(p_var->operator Array());
  251. if (array_type->eklass == CACHED_CLASS_RAW(uint8_t))
  252. return (MonoObject *)PoolByteArray_to_mono_array(p_var->operator PoolByteArray());
  253. if (array_type->eklass == CACHED_CLASS_RAW(int32_t))
  254. return (MonoObject *)PoolIntArray_to_mono_array(p_var->operator PoolIntArray());
  255. if (array_type->eklass == REAL_T_MONOCLASS)
  256. return (MonoObject *)PoolRealArray_to_mono_array(p_var->operator PoolRealArray());
  257. if (array_type->eklass == CACHED_CLASS_RAW(String))
  258. return (MonoObject *)PoolStringArray_to_mono_array(p_var->operator PoolStringArray());
  259. if (array_type->eklass == CACHED_CLASS_RAW(Vector2))
  260. return (MonoObject *)PoolVector2Array_to_mono_array(p_var->operator PoolVector2Array());
  261. if (array_type->eklass == CACHED_CLASS_RAW(Vector3))
  262. return (MonoObject *)PoolVector3Array_to_mono_array(p_var->operator PoolVector3Array());
  263. if (array_type->eklass == CACHED_CLASS_RAW(Color))
  264. return (MonoObject *)PoolColorArray_to_mono_array(p_var->operator PoolColorArray());
  265. ERR_EXPLAIN(String() + "Attempted to convert Variant to a managed array of unmarshallable element type.");
  266. ERR_FAIL_V(NULL);
  267. } break;
  268. case MONO_TYPE_CLASS: {
  269. GDMonoClass *type_class = p_type.type_class;
  270. // GodotObject
  271. if (CACHED_CLASS(GodotObject)->is_assignable_from(type_class)) {
  272. return GDMonoUtils::unmanaged_get_managed(p_var->operator Object *());
  273. }
  274. if (CACHED_CLASS(NodePath) == type_class) {
  275. return GDMonoUtils::create_managed_from(p_var->operator NodePath());
  276. }
  277. if (CACHED_CLASS(RID) == type_class) {
  278. return GDMonoUtils::create_managed_from(p_var->operator RID());
  279. }
  280. } break;
  281. case MONO_TYPE_OBJECT: {
  282. // Variant
  283. switch (p_var->get_type()) {
  284. case Variant::BOOL: {
  285. MonoBoolean val = p_var->operator bool();
  286. return BOX_BOOLEAN(val);
  287. }
  288. case Variant::INT: {
  289. int val = p_var->operator signed int();
  290. return BOX_INT32(val);
  291. }
  292. case Variant::REAL: {
  293. #ifdef REAL_T_IS_DOUBLE
  294. double val = p_var->operator double();
  295. return BOX_DOUBLE(val);
  296. #else
  297. float val = p_var->operator float();
  298. return BOX_FLOAT(val);
  299. #endif
  300. }
  301. case Variant::STRING:
  302. return (MonoObject *)mono_string_from_godot(p_var->operator String());
  303. case Variant::VECTOR2:
  304. RETURN_BOXED_STRUCT(Vector2, p_var);
  305. case Variant::RECT2:
  306. RETURN_BOXED_STRUCT(Rect2, p_var);
  307. case Variant::VECTOR3:
  308. RETURN_BOXED_STRUCT(Vector3, p_var);
  309. case Variant::TRANSFORM2D:
  310. RETURN_BOXED_STRUCT(Transform2D, p_var);
  311. case Variant::PLANE:
  312. RETURN_BOXED_STRUCT(Plane, p_var);
  313. case Variant::QUAT:
  314. RETURN_BOXED_STRUCT(Quat, p_var);
  315. case Variant::AABB:
  316. RETURN_BOXED_STRUCT(AABB, p_var);
  317. case Variant::BASIS:
  318. RETURN_BOXED_STRUCT(Basis, p_var);
  319. case Variant::TRANSFORM:
  320. RETURN_BOXED_STRUCT(Transform, p_var);
  321. case Variant::COLOR:
  322. RETURN_BOXED_STRUCT(Color, p_var);
  323. case Variant::NODE_PATH:
  324. return GDMonoUtils::create_managed_from(p_var->operator NodePath());
  325. case Variant::_RID:
  326. return GDMonoUtils::create_managed_from(p_var->operator RID());
  327. case Variant::OBJECT: {
  328. return GDMonoUtils::unmanaged_get_managed(p_var->operator Object *());
  329. }
  330. case Variant::DICTIONARY:
  331. return Dictionary_to_mono_object(p_var->operator Dictionary());
  332. case Variant::ARRAY:
  333. return (MonoObject *)Array_to_mono_array(p_var->operator Array());
  334. case Variant::POOL_BYTE_ARRAY:
  335. return (MonoObject *)PoolByteArray_to_mono_array(p_var->operator PoolByteArray());
  336. case Variant::POOL_INT_ARRAY:
  337. return (MonoObject *)PoolIntArray_to_mono_array(p_var->operator PoolIntArray());
  338. case Variant::POOL_REAL_ARRAY:
  339. return (MonoObject *)PoolRealArray_to_mono_array(p_var->operator PoolRealArray());
  340. case Variant::POOL_STRING_ARRAY:
  341. return (MonoObject *)PoolStringArray_to_mono_array(p_var->operator PoolStringArray());
  342. case Variant::POOL_VECTOR2_ARRAY:
  343. return (MonoObject *)PoolVector2Array_to_mono_array(p_var->operator PoolVector2Array());
  344. case Variant::POOL_VECTOR3_ARRAY:
  345. return (MonoObject *)PoolVector3Array_to_mono_array(p_var->operator PoolVector3Array());
  346. case Variant::POOL_COLOR_ARRAY:
  347. return (MonoObject *)PoolColorArray_to_mono_array(p_var->operator PoolColorArray());
  348. default:
  349. return NULL;
  350. }
  351. break;
  352. case MONO_TYPE_GENERICINST: {
  353. if (CACHED_RAW_MONO_CLASS(Dictionary) == p_type.type_class->get_mono_ptr()) {
  354. return Dictionary_to_mono_object(p_var->operator Dictionary());
  355. }
  356. } break;
  357. } break;
  358. }
  359. ERR_EXPLAIN(String() + "Attempted to convert Variant to an unmarshallable managed type. Name: \'" +
  360. p_type.type_class->get_name() + "\' Encoding: " + itos(p_type.type_encoding));
  361. ERR_FAIL_V(NULL);
  362. }
  363. Variant mono_object_to_variant(MonoObject *p_obj) {
  364. if (!p_obj)
  365. return Variant();
  366. GDMonoClass *tclass = GDMono::get_singleton()->get_class(mono_object_get_class(p_obj));
  367. ERR_FAIL_COND_V(!tclass, Variant());
  368. MonoType *raw_type = tclass->get_raw_type(tclass);
  369. ManagedType type;
  370. type.type_encoding = mono_type_get_type(raw_type);
  371. type.type_class = tclass;
  372. return mono_object_to_variant(p_obj, type);
  373. }
  374. Variant mono_object_to_variant(MonoObject *p_obj, const ManagedType &p_type) {
  375. switch (p_type.type_encoding) {
  376. case MONO_TYPE_BOOLEAN:
  377. return (bool)unbox<MonoBoolean>(p_obj);
  378. case MONO_TYPE_I1:
  379. return unbox<int8_t>(p_obj);
  380. case MONO_TYPE_I2:
  381. return unbox<int16_t>(p_obj);
  382. case MONO_TYPE_I4:
  383. return unbox<int32_t>(p_obj);
  384. case MONO_TYPE_I8:
  385. return unbox<int64_t>(p_obj);
  386. case MONO_TYPE_U1:
  387. return unbox<uint8_t>(p_obj);
  388. case MONO_TYPE_U2:
  389. return unbox<uint16_t>(p_obj);
  390. case MONO_TYPE_U4:
  391. return unbox<uint32_t>(p_obj);
  392. case MONO_TYPE_U8:
  393. return unbox<uint64_t>(p_obj);
  394. case MONO_TYPE_R4:
  395. return unbox<float>(p_obj);
  396. case MONO_TYPE_R8:
  397. return unbox<double>(p_obj);
  398. case MONO_TYPE_STRING: {
  399. if (p_obj == NULL)
  400. return Variant(); // NIL
  401. return mono_string_to_godot_not_null((MonoString *)p_obj);
  402. } break;
  403. case MONO_TYPE_VALUETYPE: {
  404. GDMonoClass *tclass = p_type.type_class;
  405. if (tclass == CACHED_CLASS(Vector2))
  406. RETURN_UNBOXED_STRUCT(Vector2, p_obj);
  407. if (tclass == CACHED_CLASS(Rect2))
  408. RETURN_UNBOXED_STRUCT(Rect2, p_obj);
  409. if (tclass == CACHED_CLASS(Transform2D))
  410. RETURN_UNBOXED_STRUCT(Transform2D, p_obj);
  411. if (tclass == CACHED_CLASS(Vector3))
  412. RETURN_UNBOXED_STRUCT(Vector3, p_obj);
  413. if (tclass == CACHED_CLASS(Basis))
  414. RETURN_UNBOXED_STRUCT(Basis, p_obj);
  415. if (tclass == CACHED_CLASS(Quat))
  416. RETURN_UNBOXED_STRUCT(Quat, p_obj);
  417. if (tclass == CACHED_CLASS(Transform))
  418. RETURN_UNBOXED_STRUCT(Transform, p_obj);
  419. if (tclass == CACHED_CLASS(AABB))
  420. RETURN_UNBOXED_STRUCT(AABB, p_obj);
  421. if (tclass == CACHED_CLASS(Color))
  422. RETURN_UNBOXED_STRUCT(Color, p_obj);
  423. if (tclass == CACHED_CLASS(Plane))
  424. RETURN_UNBOXED_STRUCT(Plane, p_obj);
  425. if (mono_class_is_enum(tclass->get_mono_ptr()))
  426. return unbox<int32_t>(p_obj);
  427. } break;
  428. case MONO_TYPE_ARRAY:
  429. case MONO_TYPE_SZARRAY: {
  430. MonoArrayType *array_type = mono_type_get_array_type(GDMonoClass::get_raw_type(p_type.type_class));
  431. if (array_type->eklass == CACHED_CLASS_RAW(MonoObject))
  432. return mono_array_to_Array((MonoArray *)p_obj);
  433. if (array_type->eklass == CACHED_CLASS_RAW(uint8_t))
  434. return mono_array_to_PoolByteArray((MonoArray *)p_obj);
  435. if (array_type->eklass == CACHED_CLASS_RAW(int32_t))
  436. return mono_array_to_PoolIntArray((MonoArray *)p_obj);
  437. if (array_type->eklass == REAL_T_MONOCLASS)
  438. return mono_array_to_PoolRealArray((MonoArray *)p_obj);
  439. if (array_type->eklass == CACHED_CLASS_RAW(String))
  440. return mono_array_to_PoolStringArray((MonoArray *)p_obj);
  441. if (array_type->eklass == CACHED_CLASS_RAW(Vector2))
  442. return mono_array_to_PoolVector2Array((MonoArray *)p_obj);
  443. if (array_type->eklass == CACHED_CLASS_RAW(Vector3))
  444. return mono_array_to_PoolVector3Array((MonoArray *)p_obj);
  445. if (array_type->eklass == CACHED_CLASS_RAW(Color))
  446. return mono_array_to_PoolColorArray((MonoArray *)p_obj);
  447. ERR_EXPLAIN(String() + "Attempted to convert a managed array of unmarshallable element type to Variant.");
  448. ERR_FAIL_V(Variant());
  449. } break;
  450. case MONO_TYPE_CLASS: {
  451. GDMonoClass *type_class = p_type.type_class;
  452. // GodotObject
  453. if (CACHED_CLASS(GodotObject)->is_assignable_from(type_class)) {
  454. Object *ptr = unbox<Object *>(CACHED_FIELD(GodotObject, ptr)->get_value(p_obj));
  455. return ptr ? Variant(ptr) : Variant();
  456. }
  457. if (CACHED_CLASS(NodePath) == type_class) {
  458. NodePath *ptr = unbox<NodePath *>(CACHED_FIELD(NodePath, ptr)->get_value(p_obj));
  459. return ptr ? Variant(*ptr) : Variant();
  460. }
  461. if (CACHED_CLASS(RID) == type_class) {
  462. RID *ptr = unbox<RID *>(CACHED_FIELD(RID, ptr)->get_value(p_obj));
  463. return ptr ? Variant(*ptr) : Variant();
  464. }
  465. } break;
  466. case MONO_TYPE_GENERICINST: {
  467. if (CACHED_RAW_MONO_CLASS(Dictionary) == p_type.type_class->get_mono_ptr()) {
  468. return mono_object_to_Dictionary(p_obj);
  469. }
  470. } break;
  471. }
  472. ERR_EXPLAIN(String() + "Attempted to convert an unmarshallable managed type to Variant. Name: \'" +
  473. p_type.type_class->get_name() + "\' Encoding: " + itos(p_type.type_encoding));
  474. ERR_FAIL_V(Variant());
  475. }
  476. MonoArray *Array_to_mono_array(const Array &p_array) {
  477. MonoArray *ret = mono_array_new(mono_domain_get(), CACHED_CLASS_RAW(MonoObject), p_array.size());
  478. for (int i = 0; i < p_array.size(); i++) {
  479. MonoObject *boxed = variant_to_mono_object(p_array[i]);
  480. mono_array_setref(ret, i, boxed);
  481. }
  482. return ret;
  483. }
  484. Array mono_array_to_Array(MonoArray *p_array) {
  485. Array ret;
  486. int length = mono_array_length(p_array);
  487. for (int i = 0; i < length; i++) {
  488. MonoObject *elem = mono_array_get(p_array, MonoObject *, i);
  489. ret.push_back(mono_object_to_variant(elem));
  490. }
  491. return ret;
  492. }
  493. // TODO Optimize reading/writing from/to PoolArrays
  494. MonoArray *PoolIntArray_to_mono_array(const PoolIntArray &p_array) {
  495. MonoArray *ret = mono_array_new(mono_domain_get(), CACHED_CLASS_RAW(int32_t), p_array.size());
  496. for (int i = 0; i < p_array.size(); i++) {
  497. mono_array_set(ret, int32_t, i, p_array[i]);
  498. }
  499. return ret;
  500. }
  501. PoolIntArray mono_array_to_PoolIntArray(MonoArray *p_array) {
  502. PoolIntArray ret;
  503. int length = mono_array_length(p_array);
  504. for (int i = 0; i < length; i++) {
  505. int32_t elem = mono_array_get(p_array, int32_t, i);
  506. ret.push_back(elem);
  507. }
  508. return ret;
  509. }
  510. MonoArray *PoolByteArray_to_mono_array(const PoolByteArray &p_array) {
  511. MonoArray *ret = mono_array_new(mono_domain_get(), CACHED_CLASS_RAW(uint8_t), p_array.size());
  512. for (int i = 0; i < p_array.size(); i++) {
  513. mono_array_set(ret, uint8_t, i, p_array[i]);
  514. }
  515. return ret;
  516. }
  517. PoolByteArray mono_array_to_PoolByteArray(MonoArray *p_array) {
  518. PoolByteArray ret;
  519. int length = mono_array_length(p_array);
  520. for (int i = 0; i < length; i++) {
  521. uint8_t elem = mono_array_get(p_array, uint8_t, i);
  522. ret.push_back(elem);
  523. }
  524. return ret;
  525. }
  526. MonoArray *PoolRealArray_to_mono_array(const PoolRealArray &p_array) {
  527. MonoArray *ret = mono_array_new(mono_domain_get(), REAL_T_MONOCLASS, p_array.size());
  528. for (int i = 0; i < p_array.size(); i++) {
  529. mono_array_set(ret, real_t, i, p_array[i]);
  530. }
  531. return ret;
  532. }
  533. PoolRealArray mono_array_to_PoolRealArray(MonoArray *p_array) {
  534. PoolRealArray ret;
  535. int length = mono_array_length(p_array);
  536. for (int i = 0; i < length; i++) {
  537. real_t elem = mono_array_get(p_array, real_t, i);
  538. ret.push_back(elem);
  539. }
  540. return ret;
  541. }
  542. MonoArray *PoolStringArray_to_mono_array(const PoolStringArray &p_array) {
  543. MonoArray *ret = mono_array_new(mono_domain_get(), CACHED_CLASS_RAW(String), p_array.size());
  544. for (int i = 0; i < p_array.size(); i++) {
  545. MonoString *boxed = mono_string_from_godot(p_array[i]);
  546. mono_array_set(ret, MonoString *, i, boxed);
  547. }
  548. return ret;
  549. }
  550. PoolStringArray mono_array_to_PoolStringArray(MonoArray *p_array) {
  551. PoolStringArray ret;
  552. int length = mono_array_length(p_array);
  553. for (int i = 0; i < length; i++) {
  554. MonoString *elem = mono_array_get(p_array, MonoString *, i);
  555. ret.push_back(mono_string_to_godot(elem));
  556. }
  557. return ret;
  558. }
  559. MonoArray *PoolColorArray_to_mono_array(const PoolColorArray &p_array) {
  560. MonoArray *ret = mono_array_new(mono_domain_get(), CACHED_CLASS_RAW(Color), p_array.size());
  561. for (int i = 0; i < p_array.size(); i++) {
  562. #ifdef YOLOCOPY
  563. mono_array_set(ret, Color, i, p_array[i]);
  564. #else
  565. real_t *raw = (real_t *)mono_array_addr_with_size(ret, sizeof(real_t) * 4, i);
  566. const Color &elem = p_array[i];
  567. raw[0] = elem.r;
  568. raw[1] = elem.g;
  569. raw[2] = elem.b;
  570. raw[3] = elem.a;
  571. #endif
  572. }
  573. return ret;
  574. }
  575. PoolColorArray mono_array_to_PoolColorArray(MonoArray *p_array) {
  576. PoolColorArray ret;
  577. int length = mono_array_length(p_array);
  578. for (int i = 0; i < length; i++) {
  579. real_t *raw_elem = (real_t *)mono_array_addr_with_size(p_array, sizeof(real_t) * 4, i);
  580. MARSHALLED_IN(Color, raw_elem, elem);
  581. ret.push_back(elem);
  582. }
  583. return ret;
  584. }
  585. MonoArray *PoolVector2Array_to_mono_array(const PoolVector2Array &p_array) {
  586. MonoArray *ret = mono_array_new(mono_domain_get(), CACHED_CLASS_RAW(Vector2), p_array.size());
  587. for (int i = 0; i < p_array.size(); i++) {
  588. #ifdef YOLOCOPY
  589. mono_array_set(ret, Vector2, i, p_array[i]);
  590. #else
  591. real_t *raw = (real_t *)mono_array_addr_with_size(ret, sizeof(real_t) * 2, i);
  592. const Vector2 &elem = p_array[i];
  593. raw[0] = elem.x;
  594. raw[1] = elem.y;
  595. #endif
  596. }
  597. return ret;
  598. }
  599. PoolVector2Array mono_array_to_PoolVector2Array(MonoArray *p_array) {
  600. PoolVector2Array ret;
  601. int length = mono_array_length(p_array);
  602. for (int i = 0; i < length; i++) {
  603. real_t *raw_elem = (real_t *)mono_array_addr_with_size(p_array, sizeof(real_t) * 2, i);
  604. MARSHALLED_IN(Vector2, raw_elem, elem);
  605. ret.push_back(elem);
  606. }
  607. return ret;
  608. }
  609. MonoArray *PoolVector3Array_to_mono_array(const PoolVector3Array &p_array) {
  610. MonoArray *ret = mono_array_new(mono_domain_get(), CACHED_CLASS_RAW(Vector3), p_array.size());
  611. for (int i = 0; i < p_array.size(); i++) {
  612. #ifdef YOLOCOPY
  613. mono_array_set(ret, Vector3, i, p_array[i]);
  614. #else
  615. real_t *raw = (real_t *)mono_array_addr_with_size(ret, sizeof(real_t) * 3, i);
  616. const Vector3 &elem = p_array[i];
  617. raw[0] = elem.x;
  618. raw[1] = elem.y;
  619. raw[2] = elem.z;
  620. #endif
  621. }
  622. return ret;
  623. }
  624. PoolVector3Array mono_array_to_PoolVector3Array(MonoArray *p_array) {
  625. PoolVector3Array ret;
  626. int length = mono_array_length(p_array);
  627. for (int i = 0; i < length; i++) {
  628. real_t *raw_elem = (real_t *)mono_array_addr_with_size(p_array, sizeof(real_t) * 3, i);
  629. MARSHALLED_IN(Vector3, raw_elem, elem);
  630. ret.push_back(elem);
  631. }
  632. return ret;
  633. }
  634. MonoObject *Dictionary_to_mono_object(const Dictionary &p_dict) {
  635. MonoArray *keys = mono_array_new(mono_domain_get(), CACHED_CLASS_RAW(MonoObject), p_dict.size());
  636. MonoArray *values = mono_array_new(mono_domain_get(), CACHED_CLASS_RAW(MonoObject), p_dict.size());
  637. int i = 0;
  638. const Variant *dkey = NULL;
  639. while ((dkey = p_dict.next(dkey))) {
  640. mono_array_set(keys, MonoObject *, i, variant_to_mono_object(dkey));
  641. mono_array_set(values, MonoObject *, i, variant_to_mono_object(p_dict[*dkey]));
  642. i++;
  643. }
  644. GDMonoUtils::MarshalUtils_ArraysToDict arrays_to_dict = CACHED_METHOD_THUNK(MarshalUtils, ArraysToDictionary);
  645. MonoObject *ex = NULL;
  646. MonoObject *ret = arrays_to_dict(keys, values, &ex);
  647. if (ex) {
  648. mono_print_unhandled_exception(ex);
  649. ERR_FAIL_V(NULL);
  650. }
  651. return ret;
  652. }
  653. Dictionary mono_object_to_Dictionary(MonoObject *p_dict) {
  654. Dictionary ret;
  655. GDMonoUtils::MarshalUtils_DictToArrays dict_to_arrays = CACHED_METHOD_THUNK(MarshalUtils, DictionaryToArrays);
  656. MonoArray *keys = NULL;
  657. MonoArray *values = NULL;
  658. MonoObject *ex = NULL;
  659. dict_to_arrays(p_dict, &keys, &values, &ex);
  660. if (ex) {
  661. mono_print_unhandled_exception(ex);
  662. ERR_FAIL_V(Dictionary());
  663. }
  664. int length = mono_array_length(keys);
  665. for (int i = 0; i < length; i++) {
  666. MonoObject *key_obj = mono_array_get(keys, MonoObject *, i);
  667. MonoObject *value_obj = mono_array_get(values, MonoObject *, i);
  668. Variant key = key_obj ? mono_object_to_variant(key_obj) : Variant();
  669. Variant value = value_obj ? mono_object_to_variant(value_obj) : Variant();
  670. ret[key] = value;
  671. }
  672. return ret;
  673. }
  674. }