gdscript_vm.cpp 134 KB

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  1. /**************************************************************************/
  2. /* gdscript_vm.cpp */
  3. /**************************************************************************/
  4. /* This file is part of: */
  5. /* GODOT ENGINE */
  6. /* https://godotengine.org */
  7. /**************************************************************************/
  8. /* Copyright (c) 2014-present Godot Engine contributors (see AUTHORS.md). */
  9. /* Copyright (c) 2007-2014 Juan Linietsky, Ariel Manzur. */
  10. /* */
  11. /* Permission is hereby granted, free of charge, to any person obtaining */
  12. /* a copy of this software and associated documentation files (the */
  13. /* "Software"), to deal in the Software without restriction, including */
  14. /* without limitation the rights to use, copy, modify, merge, publish, */
  15. /* distribute, sublicense, and/or sell copies of the Software, and to */
  16. /* permit persons to whom the Software is furnished to do so, subject to */
  17. /* the following conditions: */
  18. /* */
  19. /* The above copyright notice and this permission notice shall be */
  20. /* included in all copies or substantial portions of the Software. */
  21. /* */
  22. /* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
  23. /* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
  24. /* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. */
  25. /* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
  26. /* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
  27. /* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
  28. /* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
  29. /**************************************************************************/
  30. #include "gdscript.h"
  31. #include "gdscript_function.h"
  32. #include "gdscript_lambda_callable.h"
  33. #include "core/os/os.h"
  34. #ifdef DEBUG_ENABLED
  35. static bool _profile_count_as_native(const Object *p_base_obj, const StringName &p_methodname) {
  36. if (!p_base_obj) {
  37. return false;
  38. }
  39. StringName cname = p_base_obj->get_class_name();
  40. if ((p_methodname == "new" && cname == "GDScript") || p_methodname == "call") {
  41. return false;
  42. }
  43. return ClassDB::class_exists(cname) && ClassDB::has_method(cname, p_methodname, false);
  44. }
  45. static String _get_element_type(Variant::Type builtin_type, const StringName &native_type, const Ref<Script> &script_type) {
  46. if (script_type.is_valid() && script_type->is_valid()) {
  47. return GDScript::debug_get_script_name(script_type);
  48. } else if (native_type != StringName()) {
  49. return native_type.operator String();
  50. } else {
  51. return Variant::get_type_name(builtin_type);
  52. }
  53. }
  54. static String _get_var_type(const Variant *p_var) {
  55. String basestr;
  56. if (p_var->get_type() == Variant::OBJECT) {
  57. bool was_freed;
  58. Object *bobj = p_var->get_validated_object_with_check(was_freed);
  59. if (!bobj) {
  60. if (was_freed) {
  61. basestr = "previously freed";
  62. } else {
  63. basestr = "null instance";
  64. }
  65. } else {
  66. if (bobj->is_class_ptr(GDScriptNativeClass::get_class_ptr_static())) {
  67. basestr = Object::cast_to<GDScriptNativeClass>(bobj)->get_name();
  68. } else {
  69. basestr = bobj->get_class();
  70. if (bobj->get_script_instance()) {
  71. basestr += " (" + GDScript::debug_get_script_name(bobj->get_script_instance()->get_script()) + ")";
  72. }
  73. }
  74. }
  75. } else {
  76. if (p_var->get_type() == Variant::ARRAY) {
  77. basestr = "Array";
  78. const Array *p_array = VariantInternal::get_array(p_var);
  79. if (p_array->is_typed()) {
  80. basestr += "[" + _get_element_type((Variant::Type)p_array->get_typed_builtin(), p_array->get_typed_class_name(), p_array->get_typed_script()) + "]";
  81. }
  82. } else if (p_var->get_type() == Variant::DICTIONARY) {
  83. basestr = "Dictionary";
  84. const Dictionary *p_dictionary = VariantInternal::get_dictionary(p_var);
  85. if (p_dictionary->is_typed()) {
  86. basestr += "[" + _get_element_type((Variant::Type)p_dictionary->get_typed_key_builtin(), p_dictionary->get_typed_key_class_name(), p_dictionary->get_typed_key_script()) +
  87. ", " + _get_element_type((Variant::Type)p_dictionary->get_typed_value_builtin(), p_dictionary->get_typed_value_class_name(), p_dictionary->get_typed_value_script()) + "]";
  88. }
  89. } else {
  90. basestr = Variant::get_type_name(p_var->get_type());
  91. }
  92. }
  93. return basestr;
  94. }
  95. void GDScriptFunction::_profile_native_call(uint64_t p_t_taken, const String &p_func_name, const String &p_instance_class_name) {
  96. HashMap<String, Profile::NativeProfile>::Iterator inner_prof = profile.native_calls.find(p_func_name);
  97. if (inner_prof) {
  98. inner_prof->value.call_count += 1;
  99. } else {
  100. String sig = vformat("%s::0::%s%s%s", get_script()->get_script_path(), p_instance_class_name, p_instance_class_name.is_empty() ? "" : ".", p_func_name);
  101. inner_prof = profile.native_calls.insert(p_func_name, Profile::NativeProfile{ 1, 0, sig });
  102. }
  103. inner_prof->value.total_time += p_t_taken;
  104. }
  105. #endif // DEBUG_ENABLED
  106. Variant GDScriptFunction::_get_default_variant_for_data_type(const GDScriptDataType &p_data_type) {
  107. if (p_data_type.kind == GDScriptDataType::BUILTIN) {
  108. if (p_data_type.builtin_type == Variant::ARRAY) {
  109. Array array;
  110. // Typed array.
  111. if (p_data_type.has_container_element_type(0)) {
  112. const GDScriptDataType &element_type = p_data_type.get_container_element_type(0);
  113. array.set_typed(element_type.builtin_type, element_type.native_type, element_type.script_type);
  114. }
  115. return array;
  116. } else if (p_data_type.builtin_type == Variant::DICTIONARY) {
  117. Dictionary dict;
  118. // Typed dictionary.
  119. if (p_data_type.has_container_element_types()) {
  120. const GDScriptDataType &key_type = p_data_type.get_container_element_type_or_variant(0);
  121. const GDScriptDataType &value_type = p_data_type.get_container_element_type_or_variant(1);
  122. dict.set_typed(key_type.builtin_type, key_type.native_type, key_type.script_type, value_type.builtin_type, value_type.native_type, value_type.script_type);
  123. }
  124. return dict;
  125. } else {
  126. Callable::CallError ce;
  127. Variant variant;
  128. Variant::construct(p_data_type.builtin_type, variant, nullptr, 0, ce);
  129. ERR_FAIL_COND_V(ce.error != Callable::CallError::CALL_OK, Variant());
  130. return variant;
  131. }
  132. }
  133. return Variant();
  134. }
  135. String GDScriptFunction::_get_call_error(const String &p_where, const Variant **p_argptrs, int p_argcount, const Variant &p_ret, const Callable::CallError &p_err) const {
  136. switch (p_err.error) {
  137. case Callable::CallError::CALL_OK:
  138. return String();
  139. case Callable::CallError::CALL_ERROR_INVALID_METHOD:
  140. if (p_ret.get_type() == Variant::STRING && !p_ret.operator String().is_empty()) {
  141. return "Invalid call " + p_where + ": " + p_ret.operator String();
  142. }
  143. return "Invalid call. Nonexistent " + p_where + ".";
  144. case Callable::CallError::CALL_ERROR_INVALID_ARGUMENT:
  145. ERR_FAIL_INDEX_V_MSG(p_err.argument, p_argcount, "Bug: Invalid call error argument index.", "Bug: Invalid call error argument index.");
  146. ERR_FAIL_NULL_V_MSG(p_argptrs[p_err.argument], "Bug: Argument is null pointer.", "Bug: Argument is null pointer.");
  147. // Handle the Object to Object case separately as we don't have further class details.
  148. #ifdef DEBUG_ENABLED
  149. if (p_err.expected == Variant::OBJECT && p_argptrs[p_err.argument]->get_type() == p_err.expected) {
  150. return "Invalid type in " + p_where + ". The Object-derived class of argument " + itos(p_err.argument + 1) + " (" + _get_var_type(p_argptrs[p_err.argument]) + ") is not a subclass of the expected argument class.";
  151. }
  152. if (p_err.expected == Variant::ARRAY && p_argptrs[p_err.argument]->get_type() == p_err.expected) {
  153. return "Invalid type in " + p_where + ". The array of argument " + itos(p_err.argument + 1) + " (" + _get_var_type(p_argptrs[p_err.argument]) + ") does not have the same element type as the expected typed array argument.";
  154. }
  155. if (p_err.expected == Variant::DICTIONARY && p_argptrs[p_err.argument]->get_type() == p_err.expected) {
  156. return "Invalid type in " + p_where + ". The dictionary of argument " + itos(p_err.argument + 1) + " (" + _get_var_type(p_argptrs[p_err.argument]) + ") does not have the same element type as the expected typed dictionary argument.";
  157. }
  158. #endif // DEBUG_ENABLED
  159. return "Invalid type in " + p_where + ". Cannot convert argument " + itos(p_err.argument + 1) + " from " + Variant::get_type_name(p_argptrs[p_err.argument]->get_type()) + " to " + Variant::get_type_name(Variant::Type(p_err.expected)) + ".";
  160. case Callable::CallError::CALL_ERROR_TOO_MANY_ARGUMENTS:
  161. case Callable::CallError::CALL_ERROR_TOO_FEW_ARGUMENTS:
  162. return "Invalid call to " + p_where + ". Expected " + itos(p_err.expected) + " argument(s).";
  163. case Callable::CallError::CALL_ERROR_INSTANCE_IS_NULL:
  164. return "Attempt to call " + p_where + " on a null instance.";
  165. case Callable::CallError::CALL_ERROR_METHOD_NOT_CONST:
  166. return "Attempt to call " + p_where + " on a const instance.";
  167. }
  168. return "Bug: Invalid call error code " + itos(p_err.error) + ".";
  169. }
  170. String GDScriptFunction::_get_callable_call_error(const String &p_where, const Callable &p_callable, const Variant **p_argptrs, int p_argcount, const Variant &p_ret, const Callable::CallError &p_err) const {
  171. Vector<Variant> binds;
  172. p_callable.get_bound_arguments_ref(binds);
  173. int args_unbound = p_callable.get_unbound_arguments_count();
  174. if (p_argcount - args_unbound < 0) {
  175. return "Callable unbinds " + itos(args_unbound) + " arguments, but called with " + itos(p_argcount);
  176. } else {
  177. Vector<const Variant *> argptrs;
  178. argptrs.resize(p_argcount - args_unbound + binds.size());
  179. for (int i = 0; i < p_argcount - args_unbound; i++) {
  180. argptrs.write[i] = p_argptrs[i];
  181. }
  182. for (int i = 0; i < binds.size(); i++) {
  183. argptrs.write[i + p_argcount - args_unbound] = &binds[i];
  184. }
  185. return _get_call_error(p_where, (const Variant **)argptrs.ptr(), argptrs.size(), p_ret, p_err);
  186. }
  187. }
  188. void (*type_init_function_table[])(Variant *) = {
  189. nullptr, // NIL (shouldn't be called).
  190. &VariantInitializer<bool>::init, // BOOL.
  191. &VariantInitializer<int64_t>::init, // INT.
  192. &VariantInitializer<double>::init, // FLOAT.
  193. &VariantInitializer<String>::init, // STRING.
  194. &VariantInitializer<Vector2>::init, // VECTOR2.
  195. &VariantInitializer<Vector2i>::init, // VECTOR2I.
  196. &VariantInitializer<Rect2>::init, // RECT2.
  197. &VariantInitializer<Rect2i>::init, // RECT2I.
  198. &VariantInitializer<Vector3>::init, // VECTOR3.
  199. &VariantInitializer<Vector3i>::init, // VECTOR3I.
  200. &VariantInitializer<Transform2D>::init, // TRANSFORM2D.
  201. &VariantInitializer<Vector4>::init, // VECTOR4.
  202. &VariantInitializer<Vector4i>::init, // VECTOR4I.
  203. &VariantInitializer<Plane>::init, // PLANE.
  204. &VariantInitializer<Quaternion>::init, // QUATERNION.
  205. &VariantInitializer<AABB>::init, // AABB.
  206. &VariantInitializer<Basis>::init, // BASIS.
  207. &VariantInitializer<Transform3D>::init, // TRANSFORM3D.
  208. &VariantInitializer<Projection>::init, // PROJECTION.
  209. &VariantInitializer<Color>::init, // COLOR.
  210. &VariantInitializer<StringName>::init, // STRING_NAME.
  211. &VariantInitializer<NodePath>::init, // NODE_PATH.
  212. &VariantInitializer<RID>::init, // RID.
  213. &VariantInitializer<Object *>::init, // OBJECT.
  214. &VariantInitializer<Callable>::init, // CALLABLE.
  215. &VariantInitializer<Signal>::init, // SIGNAL.
  216. &VariantInitializer<Dictionary>::init, // DICTIONARY.
  217. &VariantInitializer<Array>::init, // ARRAY.
  218. &VariantInitializer<PackedByteArray>::init, // PACKED_BYTE_ARRAY.
  219. &VariantInitializer<PackedInt32Array>::init, // PACKED_INT32_ARRAY.
  220. &VariantInitializer<PackedInt64Array>::init, // PACKED_INT64_ARRAY.
  221. &VariantInitializer<PackedFloat32Array>::init, // PACKED_FLOAT32_ARRAY.
  222. &VariantInitializer<PackedFloat64Array>::init, // PACKED_FLOAT64_ARRAY.
  223. &VariantInitializer<PackedStringArray>::init, // PACKED_STRING_ARRAY.
  224. &VariantInitializer<PackedVector2Array>::init, // PACKED_VECTOR2_ARRAY.
  225. &VariantInitializer<PackedVector3Array>::init, // PACKED_VECTOR3_ARRAY.
  226. &VariantInitializer<PackedColorArray>::init, // PACKED_COLOR_ARRAY.
  227. &VariantInitializer<PackedVector4Array>::init, // PACKED_VECTOR4_ARRAY.
  228. };
  229. #if defined(__GNUC__) || defined(__clang__)
  230. #define OPCODES_TABLE \
  231. static const void *switch_table_ops[] = { \
  232. &&OPCODE_OPERATOR, \
  233. &&OPCODE_OPERATOR_VALIDATED, \
  234. &&OPCODE_TYPE_TEST_BUILTIN, \
  235. &&OPCODE_TYPE_TEST_ARRAY, \
  236. &&OPCODE_TYPE_TEST_DICTIONARY, \
  237. &&OPCODE_TYPE_TEST_NATIVE, \
  238. &&OPCODE_TYPE_TEST_SCRIPT, \
  239. &&OPCODE_SET_KEYED, \
  240. &&OPCODE_SET_KEYED_VALIDATED, \
  241. &&OPCODE_SET_INDEXED_VALIDATED, \
  242. &&OPCODE_GET_KEYED, \
  243. &&OPCODE_GET_KEYED_VALIDATED, \
  244. &&OPCODE_GET_INDEXED_VALIDATED, \
  245. &&OPCODE_SET_NAMED, \
  246. &&OPCODE_SET_NAMED_VALIDATED, \
  247. &&OPCODE_GET_NAMED, \
  248. &&OPCODE_GET_NAMED_VALIDATED, \
  249. &&OPCODE_SET_MEMBER, \
  250. &&OPCODE_GET_MEMBER, \
  251. &&OPCODE_SET_STATIC_VARIABLE, \
  252. &&OPCODE_GET_STATIC_VARIABLE, \
  253. &&OPCODE_ASSIGN, \
  254. &&OPCODE_ASSIGN_NULL, \
  255. &&OPCODE_ASSIGN_TRUE, \
  256. &&OPCODE_ASSIGN_FALSE, \
  257. &&OPCODE_ASSIGN_TYPED_BUILTIN, \
  258. &&OPCODE_ASSIGN_TYPED_ARRAY, \
  259. &&OPCODE_ASSIGN_TYPED_DICTIONARY, \
  260. &&OPCODE_ASSIGN_TYPED_NATIVE, \
  261. &&OPCODE_ASSIGN_TYPED_SCRIPT, \
  262. &&OPCODE_CAST_TO_BUILTIN, \
  263. &&OPCODE_CAST_TO_NATIVE, \
  264. &&OPCODE_CAST_TO_SCRIPT, \
  265. &&OPCODE_CONSTRUCT, \
  266. &&OPCODE_CONSTRUCT_VALIDATED, \
  267. &&OPCODE_CONSTRUCT_ARRAY, \
  268. &&OPCODE_CONSTRUCT_TYPED_ARRAY, \
  269. &&OPCODE_CONSTRUCT_DICTIONARY, \
  270. &&OPCODE_CONSTRUCT_TYPED_DICTIONARY, \
  271. &&OPCODE_CALL, \
  272. &&OPCODE_CALL_RETURN, \
  273. &&OPCODE_CALL_ASYNC, \
  274. &&OPCODE_CALL_UTILITY, \
  275. &&OPCODE_CALL_UTILITY_VALIDATED, \
  276. &&OPCODE_CALL_GDSCRIPT_UTILITY, \
  277. &&OPCODE_CALL_BUILTIN_TYPE_VALIDATED, \
  278. &&OPCODE_CALL_SELF_BASE, \
  279. &&OPCODE_CALL_METHOD_BIND, \
  280. &&OPCODE_CALL_METHOD_BIND_RET, \
  281. &&OPCODE_CALL_BUILTIN_STATIC, \
  282. &&OPCODE_CALL_NATIVE_STATIC, \
  283. &&OPCODE_CALL_NATIVE_STATIC_VALIDATED_RETURN, \
  284. &&OPCODE_CALL_NATIVE_STATIC_VALIDATED_NO_RETURN, \
  285. &&OPCODE_CALL_METHOD_BIND_VALIDATED_RETURN, \
  286. &&OPCODE_CALL_METHOD_BIND_VALIDATED_NO_RETURN, \
  287. &&OPCODE_AWAIT, \
  288. &&OPCODE_AWAIT_RESUME, \
  289. &&OPCODE_CREATE_LAMBDA, \
  290. &&OPCODE_CREATE_SELF_LAMBDA, \
  291. &&OPCODE_JUMP, \
  292. &&OPCODE_JUMP_IF, \
  293. &&OPCODE_JUMP_IF_NOT, \
  294. &&OPCODE_JUMP_TO_DEF_ARGUMENT, \
  295. &&OPCODE_JUMP_IF_SHARED, \
  296. &&OPCODE_RETURN, \
  297. &&OPCODE_RETURN_TYPED_BUILTIN, \
  298. &&OPCODE_RETURN_TYPED_ARRAY, \
  299. &&OPCODE_RETURN_TYPED_DICTIONARY, \
  300. &&OPCODE_RETURN_TYPED_NATIVE, \
  301. &&OPCODE_RETURN_TYPED_SCRIPT, \
  302. &&OPCODE_ITERATE_BEGIN, \
  303. &&OPCODE_ITERATE_BEGIN_INT, \
  304. &&OPCODE_ITERATE_BEGIN_FLOAT, \
  305. &&OPCODE_ITERATE_BEGIN_VECTOR2, \
  306. &&OPCODE_ITERATE_BEGIN_VECTOR2I, \
  307. &&OPCODE_ITERATE_BEGIN_VECTOR3, \
  308. &&OPCODE_ITERATE_BEGIN_VECTOR3I, \
  309. &&OPCODE_ITERATE_BEGIN_STRING, \
  310. &&OPCODE_ITERATE_BEGIN_DICTIONARY, \
  311. &&OPCODE_ITERATE_BEGIN_ARRAY, \
  312. &&OPCODE_ITERATE_BEGIN_PACKED_BYTE_ARRAY, \
  313. &&OPCODE_ITERATE_BEGIN_PACKED_INT32_ARRAY, \
  314. &&OPCODE_ITERATE_BEGIN_PACKED_INT64_ARRAY, \
  315. &&OPCODE_ITERATE_BEGIN_PACKED_FLOAT32_ARRAY, \
  316. &&OPCODE_ITERATE_BEGIN_PACKED_FLOAT64_ARRAY, \
  317. &&OPCODE_ITERATE_BEGIN_PACKED_STRING_ARRAY, \
  318. &&OPCODE_ITERATE_BEGIN_PACKED_VECTOR2_ARRAY, \
  319. &&OPCODE_ITERATE_BEGIN_PACKED_VECTOR3_ARRAY, \
  320. &&OPCODE_ITERATE_BEGIN_PACKED_COLOR_ARRAY, \
  321. &&OPCODE_ITERATE_BEGIN_PACKED_VECTOR4_ARRAY, \
  322. &&OPCODE_ITERATE_BEGIN_OBJECT, \
  323. &&OPCODE_ITERATE_BEGIN_RANGE, \
  324. &&OPCODE_ITERATE, \
  325. &&OPCODE_ITERATE_INT, \
  326. &&OPCODE_ITERATE_FLOAT, \
  327. &&OPCODE_ITERATE_VECTOR2, \
  328. &&OPCODE_ITERATE_VECTOR2I, \
  329. &&OPCODE_ITERATE_VECTOR3, \
  330. &&OPCODE_ITERATE_VECTOR3I, \
  331. &&OPCODE_ITERATE_STRING, \
  332. &&OPCODE_ITERATE_DICTIONARY, \
  333. &&OPCODE_ITERATE_ARRAY, \
  334. &&OPCODE_ITERATE_PACKED_BYTE_ARRAY, \
  335. &&OPCODE_ITERATE_PACKED_INT32_ARRAY, \
  336. &&OPCODE_ITERATE_PACKED_INT64_ARRAY, \
  337. &&OPCODE_ITERATE_PACKED_FLOAT32_ARRAY, \
  338. &&OPCODE_ITERATE_PACKED_FLOAT64_ARRAY, \
  339. &&OPCODE_ITERATE_PACKED_STRING_ARRAY, \
  340. &&OPCODE_ITERATE_PACKED_VECTOR2_ARRAY, \
  341. &&OPCODE_ITERATE_PACKED_VECTOR3_ARRAY, \
  342. &&OPCODE_ITERATE_PACKED_COLOR_ARRAY, \
  343. &&OPCODE_ITERATE_PACKED_VECTOR4_ARRAY, \
  344. &&OPCODE_ITERATE_OBJECT, \
  345. &&OPCODE_ITERATE_RANGE, \
  346. &&OPCODE_STORE_GLOBAL, \
  347. &&OPCODE_STORE_NAMED_GLOBAL, \
  348. &&OPCODE_TYPE_ADJUST_BOOL, \
  349. &&OPCODE_TYPE_ADJUST_INT, \
  350. &&OPCODE_TYPE_ADJUST_FLOAT, \
  351. &&OPCODE_TYPE_ADJUST_STRING, \
  352. &&OPCODE_TYPE_ADJUST_VECTOR2, \
  353. &&OPCODE_TYPE_ADJUST_VECTOR2I, \
  354. &&OPCODE_TYPE_ADJUST_RECT2, \
  355. &&OPCODE_TYPE_ADJUST_RECT2I, \
  356. &&OPCODE_TYPE_ADJUST_VECTOR3, \
  357. &&OPCODE_TYPE_ADJUST_VECTOR3I, \
  358. &&OPCODE_TYPE_ADJUST_TRANSFORM2D, \
  359. &&OPCODE_TYPE_ADJUST_VECTOR4, \
  360. &&OPCODE_TYPE_ADJUST_VECTOR4I, \
  361. &&OPCODE_TYPE_ADJUST_PLANE, \
  362. &&OPCODE_TYPE_ADJUST_QUATERNION, \
  363. &&OPCODE_TYPE_ADJUST_AABB, \
  364. &&OPCODE_TYPE_ADJUST_BASIS, \
  365. &&OPCODE_TYPE_ADJUST_TRANSFORM3D, \
  366. &&OPCODE_TYPE_ADJUST_PROJECTION, \
  367. &&OPCODE_TYPE_ADJUST_COLOR, \
  368. &&OPCODE_TYPE_ADJUST_STRING_NAME, \
  369. &&OPCODE_TYPE_ADJUST_NODE_PATH, \
  370. &&OPCODE_TYPE_ADJUST_RID, \
  371. &&OPCODE_TYPE_ADJUST_OBJECT, \
  372. &&OPCODE_TYPE_ADJUST_CALLABLE, \
  373. &&OPCODE_TYPE_ADJUST_SIGNAL, \
  374. &&OPCODE_TYPE_ADJUST_DICTIONARY, \
  375. &&OPCODE_TYPE_ADJUST_ARRAY, \
  376. &&OPCODE_TYPE_ADJUST_PACKED_BYTE_ARRAY, \
  377. &&OPCODE_TYPE_ADJUST_PACKED_INT32_ARRAY, \
  378. &&OPCODE_TYPE_ADJUST_PACKED_INT64_ARRAY, \
  379. &&OPCODE_TYPE_ADJUST_PACKED_FLOAT32_ARRAY, \
  380. &&OPCODE_TYPE_ADJUST_PACKED_FLOAT64_ARRAY, \
  381. &&OPCODE_TYPE_ADJUST_PACKED_STRING_ARRAY, \
  382. &&OPCODE_TYPE_ADJUST_PACKED_VECTOR2_ARRAY, \
  383. &&OPCODE_TYPE_ADJUST_PACKED_VECTOR3_ARRAY, \
  384. &&OPCODE_TYPE_ADJUST_PACKED_COLOR_ARRAY, \
  385. &&OPCODE_TYPE_ADJUST_PACKED_VECTOR4_ARRAY, \
  386. &&OPCODE_ASSERT, \
  387. &&OPCODE_BREAKPOINT, \
  388. &&OPCODE_LINE, \
  389. &&OPCODE_END \
  390. }; \
  391. static_assert(std::size(switch_table_ops) == (OPCODE_END + 1), "Opcodes in jump table aren't the same as opcodes in enum.");
  392. #define OPCODE(m_op) \
  393. m_op:
  394. #define OPCODE_WHILE(m_test)
  395. #define OPCODES_END \
  396. OPSEXIT:
  397. #define OPCODES_OUT \
  398. OPSOUT:
  399. #define OPCODE_SWITCH(m_test) goto *switch_table_ops[m_test];
  400. #ifdef DEBUG_ENABLED
  401. #define DISPATCH_OPCODE \
  402. last_opcode = _code_ptr[ip]; \
  403. goto *switch_table_ops[last_opcode]
  404. #else // !DEBUG_ENABLED
  405. #define DISPATCH_OPCODE goto *switch_table_ops[_code_ptr[ip]]
  406. #endif // DEBUG_ENABLED
  407. #define OPCODE_BREAK goto OPSEXIT
  408. #define OPCODE_OUT goto OPSOUT
  409. #else // !(defined(__GNUC__) || defined(__clang__))
  410. #define OPCODES_TABLE
  411. #define OPCODE(m_op) case m_op:
  412. #define OPCODE_WHILE(m_test) while (m_test)
  413. #define OPCODES_END
  414. #define OPCODES_OUT
  415. #define DISPATCH_OPCODE continue
  416. #ifdef _MSC_VER
  417. #define OPCODE_SWITCH(m_test) \
  418. __assume(m_test <= OPCODE_END); \
  419. switch (m_test)
  420. #else // !_MSC_VER
  421. #define OPCODE_SWITCH(m_test) switch (m_test)
  422. #endif // _MSC_VER
  423. #define OPCODE_BREAK break
  424. #define OPCODE_OUT break
  425. #endif // defined(__GNUC__) || defined(__clang__)
  426. // Helpers for VariantInternal methods in macros.
  427. #define OP_GET_BOOL get_bool
  428. #define OP_GET_INT get_int
  429. #define OP_GET_FLOAT get_float
  430. #define OP_GET_VECTOR2 get_vector2
  431. #define OP_GET_VECTOR2I get_vector2i
  432. #define OP_GET_VECTOR3 get_vector3
  433. #define OP_GET_VECTOR3I get_vector3i
  434. #define OP_GET_RECT2 get_rect2
  435. #define OP_GET_VECTOR4 get_vector4
  436. #define OP_GET_VECTOR4I get_vector4i
  437. #define OP_GET_RECT2I get_rect2i
  438. #define OP_GET_QUATERNION get_quaternion
  439. #define OP_GET_COLOR get_color
  440. #define OP_GET_STRING get_string
  441. #define OP_GET_STRING_NAME get_string_name
  442. #define OP_GET_NODE_PATH get_node_path
  443. #define OP_GET_CALLABLE get_callable
  444. #define OP_GET_SIGNAL get_signal
  445. #define OP_GET_ARRAY get_array
  446. #define OP_GET_DICTIONARY get_dictionary
  447. #define OP_GET_PACKED_BYTE_ARRAY get_byte_array
  448. #define OP_GET_PACKED_INT32_ARRAY get_int32_array
  449. #define OP_GET_PACKED_INT64_ARRAY get_int64_array
  450. #define OP_GET_PACKED_FLOAT32_ARRAY get_float32_array
  451. #define OP_GET_PACKED_FLOAT64_ARRAY get_float64_array
  452. #define OP_GET_PACKED_STRING_ARRAY get_string_array
  453. #define OP_GET_PACKED_VECTOR2_ARRAY get_vector2_array
  454. #define OP_GET_PACKED_VECTOR3_ARRAY get_vector3_array
  455. #define OP_GET_PACKED_COLOR_ARRAY get_color_array
  456. #define OP_GET_PACKED_VECTOR4_ARRAY get_vector4_array
  457. #define OP_GET_TRANSFORM3D get_transform
  458. #define OP_GET_TRANSFORM2D get_transform2d
  459. #define OP_GET_PROJECTION get_projection
  460. #define OP_GET_PLANE get_plane
  461. #define OP_GET_AABB get_aabb
  462. #define OP_GET_BASIS get_basis
  463. #define OP_GET_RID get_rid
  464. #define METHOD_CALL_ON_NULL_VALUE_ERROR(method_pointer) "Cannot call method '" + (method_pointer)->get_name() + "' on a null value."
  465. #define METHOD_CALL_ON_FREED_INSTANCE_ERROR(method_pointer) "Cannot call method '" + (method_pointer)->get_name() + "' on a previously freed instance."
  466. Variant GDScriptFunction::call(GDScriptInstance *p_instance, const Variant **p_args, int p_argcount, Callable::CallError &r_err, CallState *p_state) {
  467. OPCODES_TABLE;
  468. if (!_code_ptr) {
  469. return _get_default_variant_for_data_type(return_type);
  470. }
  471. r_err.error = Callable::CallError::CALL_OK;
  472. static thread_local int call_depth = 0;
  473. if (unlikely(++call_depth > MAX_CALL_DEPTH)) {
  474. call_depth--;
  475. #ifdef DEBUG_ENABLED
  476. String err_file;
  477. if (p_instance && ObjectDB::get_instance(p_instance->owner_id) != nullptr && p_instance->script->is_valid() && !p_instance->script->path.is_empty()) {
  478. err_file = p_instance->script->path;
  479. } else if (_script) {
  480. err_file = _script->path;
  481. }
  482. if (err_file.is_empty()) {
  483. err_file = "<built-in>";
  484. }
  485. String err_func = name;
  486. if (p_instance && ObjectDB::get_instance(p_instance->owner_id) != nullptr && p_instance->script->is_valid() && p_instance->script->local_name != StringName()) {
  487. err_func = p_instance->script->local_name.operator String() + "." + err_func;
  488. }
  489. int err_line = _initial_line;
  490. const char *err_text = "Stack overflow. Check for infinite recursion in your script.";
  491. _err_print_error(err_func.utf8().get_data(), err_file.utf8().get_data(), err_line, err_text, false, ERR_HANDLER_SCRIPT);
  492. GDScriptLanguage::get_singleton()->debug_break(err_text, false);
  493. #endif
  494. return _get_default_variant_for_data_type(return_type);
  495. }
  496. Variant retvalue;
  497. Variant *stack = nullptr;
  498. Variant **instruction_args = nullptr;
  499. int defarg = 0;
  500. uint32_t alloca_size = 0;
  501. GDScript *script;
  502. int ip = 0;
  503. int line = _initial_line;
  504. if (p_state) {
  505. //use existing (supplied) state (awaited)
  506. stack = (Variant *)p_state->stack.ptr();
  507. instruction_args = (Variant **)&p_state->stack.ptr()[sizeof(Variant) * p_state->stack_size]; //ptr() to avoid bounds check
  508. line = p_state->line;
  509. ip = p_state->ip;
  510. alloca_size = p_state->stack.size();
  511. script = p_state->script;
  512. p_instance = p_state->instance;
  513. defarg = p_state->defarg;
  514. } else {
  515. if (p_argcount != _argument_count) {
  516. if (p_argcount > _argument_count) {
  517. if (!is_vararg()) {
  518. r_err.error = Callable::CallError::CALL_ERROR_TOO_MANY_ARGUMENTS;
  519. r_err.expected = _argument_count;
  520. call_depth--;
  521. return _get_default_variant_for_data_type(return_type);
  522. }
  523. } else if (p_argcount < _argument_count - _default_arg_count) {
  524. r_err.error = Callable::CallError::CALL_ERROR_TOO_FEW_ARGUMENTS;
  525. r_err.expected = _argument_count - _default_arg_count;
  526. call_depth--;
  527. return _get_default_variant_for_data_type(return_type);
  528. } else {
  529. defarg = _argument_count - p_argcount;
  530. }
  531. }
  532. alloca_size = sizeof(Variant *) * FIXED_ADDRESSES_MAX + sizeof(Variant *) * _instruction_args_size + sizeof(Variant) * _stack_size;
  533. uint8_t *aptr = (uint8_t *)alloca(alloca_size);
  534. stack = (Variant *)aptr;
  535. const int non_vararg_arg_count = MIN(p_argcount, _argument_count);
  536. for (int i = 0; i < non_vararg_arg_count; i++) {
  537. if (!argument_types[i].has_type()) {
  538. memnew_placement(&stack[i + FIXED_ADDRESSES_MAX], Variant(*p_args[i]));
  539. continue;
  540. }
  541. // If types already match, don't call Variant::construct(). Constructors of some types
  542. // (e.g. packed arrays) do copies, whereas they pass by reference when inside a Variant.
  543. if (argument_types[i].is_type(*p_args[i], false)) {
  544. memnew_placement(&stack[i + FIXED_ADDRESSES_MAX], Variant(*p_args[i]));
  545. continue;
  546. }
  547. if (!argument_types[i].is_type(*p_args[i], true)) {
  548. r_err.error = Callable::CallError::CALL_ERROR_INVALID_ARGUMENT;
  549. r_err.argument = i;
  550. r_err.expected = argument_types[i].builtin_type;
  551. call_depth--;
  552. return _get_default_variant_for_data_type(return_type);
  553. }
  554. if (argument_types[i].kind == GDScriptDataType::BUILTIN) {
  555. if (argument_types[i].builtin_type == Variant::DICTIONARY && argument_types[i].has_container_element_types()) {
  556. const GDScriptDataType &arg_key_type = argument_types[i].get_container_element_type_or_variant(0);
  557. const GDScriptDataType &arg_value_type = argument_types[i].get_container_element_type_or_variant(1);
  558. Dictionary dict(p_args[i]->operator Dictionary(), arg_key_type.builtin_type, arg_key_type.native_type, arg_key_type.script_type, arg_value_type.builtin_type, arg_value_type.native_type, arg_value_type.script_type);
  559. memnew_placement(&stack[i + FIXED_ADDRESSES_MAX], Variant(dict));
  560. } else if (argument_types[i].builtin_type == Variant::ARRAY && argument_types[i].has_container_element_type(0)) {
  561. const GDScriptDataType &arg_type = argument_types[i].container_element_types[0];
  562. Array array(p_args[i]->operator Array(), arg_type.builtin_type, arg_type.native_type, arg_type.script_type);
  563. memnew_placement(&stack[i + FIXED_ADDRESSES_MAX], Variant(array));
  564. } else {
  565. Variant variant;
  566. Variant::construct(argument_types[i].builtin_type, variant, &p_args[i], 1, r_err);
  567. if (unlikely(r_err.error)) {
  568. r_err.error = Callable::CallError::CALL_ERROR_INVALID_ARGUMENT;
  569. r_err.argument = i;
  570. r_err.expected = argument_types[i].builtin_type;
  571. call_depth--;
  572. return _get_default_variant_for_data_type(return_type);
  573. }
  574. memnew_placement(&stack[i + FIXED_ADDRESSES_MAX], Variant(variant));
  575. }
  576. } else {
  577. memnew_placement(&stack[i + FIXED_ADDRESSES_MAX], Variant(*p_args[i]));
  578. }
  579. }
  580. for (int i = non_vararg_arg_count + FIXED_ADDRESSES_MAX; i < _stack_size; i++) {
  581. memnew_placement(&stack[i], Variant);
  582. }
  583. if (is_vararg()) {
  584. Array vararg;
  585. stack[_vararg_index] = vararg;
  586. if (p_argcount > _argument_count) {
  587. vararg.resize(p_argcount - _argument_count);
  588. for (int i = 0; i < p_argcount - _argument_count; i++) {
  589. vararg[i] = *p_args[i + _argument_count];
  590. }
  591. }
  592. }
  593. if (_instruction_args_size) {
  594. instruction_args = (Variant **)&aptr[sizeof(Variant) * _stack_size];
  595. } else {
  596. instruction_args = nullptr;
  597. }
  598. for (const KeyValue<int, Variant::Type> &E : temporary_slots) {
  599. type_init_function_table[E.value](&stack[E.key]);
  600. }
  601. }
  602. if (p_instance) {
  603. memnew_placement(&stack[ADDR_STACK_SELF], Variant(p_instance->owner));
  604. script = p_instance->script.ptr();
  605. } else {
  606. memnew_placement(&stack[ADDR_STACK_SELF], Variant);
  607. script = _script;
  608. }
  609. memnew_placement(&stack[ADDR_STACK_CLASS], Variant(script));
  610. memnew_placement(&stack[ADDR_STACK_NIL], Variant);
  611. String err_text;
  612. GDScriptLanguage::CallLevel call_level;
  613. GDScriptLanguage::get_singleton()->enter_function(&call_level, p_instance, this, stack, &ip, &line);
  614. #ifdef DEBUG_ENABLED
  615. #define GD_ERR_BREAK(m_cond) \
  616. { \
  617. if (unlikely(m_cond)) { \
  618. _err_print_error(FUNCTION_STR, __FILE__, __LINE__, "Condition ' " _STR(m_cond) " ' is true. Breaking..:"); \
  619. OPCODE_BREAK; \
  620. } \
  621. }
  622. #define CHECK_SPACE(m_space) \
  623. GD_ERR_BREAK((ip + m_space) > _code_size)
  624. #define GET_VARIANT_PTR(m_v, m_code_ofs) \
  625. Variant *m_v; \
  626. { \
  627. int address = _code_ptr[ip + 1 + (m_code_ofs)]; \
  628. int address_type = (address & ADDR_TYPE_MASK) >> ADDR_BITS; \
  629. if (unlikely(address_type < 0 || address_type >= ADDR_TYPE_MAX)) { \
  630. err_text = "Bad address type."; \
  631. OPCODE_BREAK; \
  632. } \
  633. int address_index = address & ADDR_MASK; \
  634. if (unlikely(address_index < 0 || address_index >= variant_address_limits[address_type])) { \
  635. if (address_type == ADDR_TYPE_MEMBER && !p_instance) { \
  636. err_text = "Cannot access member without instance."; \
  637. } else { \
  638. err_text = "Bad address index."; \
  639. } \
  640. OPCODE_BREAK; \
  641. } \
  642. m_v = &variant_addresses[address_type][address_index]; \
  643. if (unlikely(!m_v)) \
  644. OPCODE_BREAK; \
  645. }
  646. #else // !DEBUG_ENABLED
  647. #define GD_ERR_BREAK(m_cond)
  648. #define CHECK_SPACE(m_space)
  649. #define GET_VARIANT_PTR(m_v, m_code_ofs) \
  650. Variant *m_v; \
  651. { \
  652. int address = _code_ptr[ip + 1 + (m_code_ofs)]; \
  653. m_v = &variant_addresses[(address & ADDR_TYPE_MASK) >> ADDR_BITS][address & ADDR_MASK]; \
  654. if (unlikely(!m_v)) \
  655. OPCODE_BREAK; \
  656. }
  657. #endif // DEBUG_ENABLED
  658. #define LOAD_INSTRUCTION_ARGS \
  659. int instr_arg_count = _code_ptr[ip + 1]; \
  660. for (int i = 0; i < instr_arg_count; i++) { \
  661. GET_VARIANT_PTR(v, i + 1); \
  662. instruction_args[i] = v; \
  663. } \
  664. ip += 1; // Offset to skip instruction argcount.
  665. #define GET_INSTRUCTION_ARG(m_v, m_idx) \
  666. Variant *m_v = instruction_args[m_idx]
  667. #ifdef DEBUG_ENABLED
  668. uint64_t function_start_time = 0;
  669. uint64_t function_call_time = 0;
  670. if (GDScriptLanguage::get_singleton()->profiling) {
  671. function_start_time = OS::get_singleton()->get_ticks_usec();
  672. function_call_time = 0;
  673. profile.call_count.increment();
  674. profile.frame_call_count.increment();
  675. }
  676. bool exit_ok = false;
  677. int variant_address_limits[ADDR_TYPE_MAX] = { _stack_size, _constant_count, p_instance ? (int)p_instance->members.size() : 0 };
  678. #endif
  679. bool awaited = false;
  680. Variant *variant_addresses[ADDR_TYPE_MAX] = { stack, _constants_ptr, p_instance ? p_instance->members.ptrw() : nullptr };
  681. #ifdef DEBUG_ENABLED
  682. OPCODE_WHILE(ip < _code_size) {
  683. int last_opcode = _code_ptr[ip];
  684. #else
  685. OPCODE_WHILE(true) {
  686. #endif
  687. OPCODE_SWITCH(_code_ptr[ip]) {
  688. OPCODE(OPCODE_OPERATOR) {
  689. constexpr int _pointer_size = sizeof(Variant::ValidatedOperatorEvaluator) / sizeof(*_code_ptr);
  690. CHECK_SPACE(7 + _pointer_size);
  691. bool valid;
  692. Variant::Operator op = (Variant::Operator)_code_ptr[ip + 4];
  693. GD_ERR_BREAK(op >= Variant::OP_MAX);
  694. GET_VARIANT_PTR(a, 0);
  695. GET_VARIANT_PTR(b, 1);
  696. GET_VARIANT_PTR(dst, 2);
  697. // Compute signatures (types of operands) so it can be optimized when matching.
  698. uint32_t op_signature = _code_ptr[ip + 5];
  699. uint32_t actual_signature = (a->get_type() << 8) | (b->get_type());
  700. #ifdef DEBUG_ENABLED
  701. if (op == Variant::OP_DIVIDE || op == Variant::OP_MODULE) {
  702. // Don't optimize division and modulo since there's not check for division by zero with validated calls.
  703. op_signature = 0xFFFF;
  704. _code_ptr[ip + 5] = op_signature;
  705. }
  706. #endif
  707. // Check if this is the first run. If so, store the current signature for the optimized path.
  708. if (unlikely(op_signature == 0)) {
  709. static Mutex initializer_mutex;
  710. initializer_mutex.lock();
  711. Variant::Type a_type = (Variant::Type)((actual_signature >> 8) & 0xFF);
  712. Variant::Type b_type = (Variant::Type)(actual_signature & 0xFF);
  713. Variant::ValidatedOperatorEvaluator op_func = Variant::get_validated_operator_evaluator(op, a_type, b_type);
  714. if (unlikely(!op_func)) {
  715. #ifdef DEBUG_ENABLED
  716. err_text = "Invalid operands '" + Variant::get_type_name(a->get_type()) + "' and '" + Variant::get_type_name(b->get_type()) + "' in operator '" + Variant::get_operator_name(op) + "'.";
  717. #endif
  718. initializer_mutex.unlock();
  719. OPCODE_BREAK;
  720. } else {
  721. Variant::Type ret_type = Variant::get_operator_return_type(op, a_type, b_type);
  722. VariantInternal::initialize(dst, ret_type);
  723. op_func(a, b, dst);
  724. // Check again in case another thread already set it.
  725. if (_code_ptr[ip + 5] == 0) {
  726. _code_ptr[ip + 5] = actual_signature;
  727. _code_ptr[ip + 6] = static_cast<int>(ret_type);
  728. Variant::ValidatedOperatorEvaluator *tmp = reinterpret_cast<Variant::ValidatedOperatorEvaluator *>(&_code_ptr[ip + 7]);
  729. *tmp = op_func;
  730. }
  731. }
  732. initializer_mutex.unlock();
  733. } else if (likely(op_signature == actual_signature)) {
  734. // If the signature matches, we can use the optimized path.
  735. Variant::Type ret_type = static_cast<Variant::Type>(_code_ptr[ip + 6]);
  736. Variant::ValidatedOperatorEvaluator op_func = *reinterpret_cast<Variant::ValidatedOperatorEvaluator *>(&_code_ptr[ip + 7]);
  737. // Make sure the return value has the correct type.
  738. VariantInternal::initialize(dst, ret_type);
  739. op_func(a, b, dst);
  740. } else {
  741. // If the signature doesn't match, we have to use the slow path.
  742. #ifdef DEBUG_ENABLED
  743. Variant ret;
  744. Variant::evaluate(op, *a, *b, ret, valid);
  745. #else
  746. Variant::evaluate(op, *a, *b, *dst, valid);
  747. #endif
  748. #ifdef DEBUG_ENABLED
  749. if (!valid) {
  750. if (ret.get_type() == Variant::STRING) {
  751. //return a string when invalid with the error
  752. err_text = ret;
  753. err_text += " in operator '" + Variant::get_operator_name(op) + "'.";
  754. } else {
  755. err_text = "Invalid operands '" + Variant::get_type_name(a->get_type()) + "' and '" + Variant::get_type_name(b->get_type()) + "' in operator '" + Variant::get_operator_name(op) + "'.";
  756. }
  757. OPCODE_BREAK;
  758. }
  759. *dst = ret;
  760. #endif
  761. }
  762. ip += 7 + _pointer_size;
  763. }
  764. DISPATCH_OPCODE;
  765. OPCODE(OPCODE_OPERATOR_VALIDATED) {
  766. CHECK_SPACE(5);
  767. int operator_idx = _code_ptr[ip + 4];
  768. GD_ERR_BREAK(operator_idx < 0 || operator_idx >= _operator_funcs_count);
  769. Variant::ValidatedOperatorEvaluator operator_func = _operator_funcs_ptr[operator_idx];
  770. GET_VARIANT_PTR(a, 0);
  771. GET_VARIANT_PTR(b, 1);
  772. GET_VARIANT_PTR(dst, 2);
  773. operator_func(a, b, dst);
  774. ip += 5;
  775. }
  776. DISPATCH_OPCODE;
  777. OPCODE(OPCODE_TYPE_TEST_BUILTIN) {
  778. CHECK_SPACE(4);
  779. GET_VARIANT_PTR(dst, 0);
  780. GET_VARIANT_PTR(value, 1);
  781. Variant::Type builtin_type = (Variant::Type)_code_ptr[ip + 3];
  782. GD_ERR_BREAK(builtin_type < 0 || builtin_type >= Variant::VARIANT_MAX);
  783. *dst = value->get_type() == builtin_type;
  784. ip += 4;
  785. }
  786. DISPATCH_OPCODE;
  787. OPCODE(OPCODE_TYPE_TEST_ARRAY) {
  788. CHECK_SPACE(6);
  789. GET_VARIANT_PTR(dst, 0);
  790. GET_VARIANT_PTR(value, 1);
  791. GET_VARIANT_PTR(script_type, 2);
  792. Variant::Type builtin_type = (Variant::Type)_code_ptr[ip + 4];
  793. int native_type_idx = _code_ptr[ip + 5];
  794. GD_ERR_BREAK(native_type_idx < 0 || native_type_idx >= _global_names_count);
  795. const StringName native_type = _global_names_ptr[native_type_idx];
  796. bool result = false;
  797. if (value->get_type() == Variant::ARRAY) {
  798. Array *array = VariantInternal::get_array(value);
  799. result = array->get_typed_builtin() == ((uint32_t)builtin_type) && array->get_typed_class_name() == native_type && array->get_typed_script() == *script_type;
  800. }
  801. *dst = result;
  802. ip += 6;
  803. }
  804. DISPATCH_OPCODE;
  805. OPCODE(OPCODE_TYPE_TEST_DICTIONARY) {
  806. CHECK_SPACE(9);
  807. GET_VARIANT_PTR(dst, 0);
  808. GET_VARIANT_PTR(value, 1);
  809. GET_VARIANT_PTR(key_script_type, 2);
  810. Variant::Type key_builtin_type = (Variant::Type)_code_ptr[ip + 5];
  811. int key_native_type_idx = _code_ptr[ip + 6];
  812. GD_ERR_BREAK(key_native_type_idx < 0 || key_native_type_idx >= _global_names_count);
  813. const StringName key_native_type = _global_names_ptr[key_native_type_idx];
  814. GET_VARIANT_PTR(value_script_type, 3);
  815. Variant::Type value_builtin_type = (Variant::Type)_code_ptr[ip + 7];
  816. int value_native_type_idx = _code_ptr[ip + 8];
  817. GD_ERR_BREAK(value_native_type_idx < 0 || value_native_type_idx >= _global_names_count);
  818. const StringName value_native_type = _global_names_ptr[value_native_type_idx];
  819. bool result = false;
  820. if (value->get_type() == Variant::DICTIONARY) {
  821. Dictionary *dictionary = VariantInternal::get_dictionary(value);
  822. result = dictionary->get_typed_key_builtin() == ((uint32_t)key_builtin_type) && dictionary->get_typed_key_class_name() == key_native_type && dictionary->get_typed_key_script() == *key_script_type &&
  823. dictionary->get_typed_value_builtin() == ((uint32_t)value_builtin_type) && dictionary->get_typed_value_class_name() == value_native_type && dictionary->get_typed_value_script() == *value_script_type;
  824. }
  825. *dst = result;
  826. ip += 9;
  827. }
  828. DISPATCH_OPCODE;
  829. OPCODE(OPCODE_TYPE_TEST_NATIVE) {
  830. CHECK_SPACE(4);
  831. GET_VARIANT_PTR(dst, 0);
  832. GET_VARIANT_PTR(value, 1);
  833. int native_type_idx = _code_ptr[ip + 3];
  834. GD_ERR_BREAK(native_type_idx < 0 || native_type_idx >= _global_names_count);
  835. const StringName native_type = _global_names_ptr[native_type_idx];
  836. bool was_freed = false;
  837. Object *object = value->get_validated_object_with_check(was_freed);
  838. if (was_freed) {
  839. err_text = "Left operand of 'is' is a previously freed instance.";
  840. OPCODE_BREAK;
  841. }
  842. *dst = object && ClassDB::is_parent_class(object->get_class_name(), native_type);
  843. ip += 4;
  844. }
  845. DISPATCH_OPCODE;
  846. OPCODE(OPCODE_TYPE_TEST_SCRIPT) {
  847. CHECK_SPACE(4);
  848. GET_VARIANT_PTR(dst, 0);
  849. GET_VARIANT_PTR(value, 1);
  850. GET_VARIANT_PTR(type, 2);
  851. Script *script_type = Object::cast_to<Script>(type->operator Object *());
  852. GD_ERR_BREAK(!script_type);
  853. bool was_freed = false;
  854. Object *object = value->get_validated_object_with_check(was_freed);
  855. if (was_freed) {
  856. err_text = "Left operand of 'is' is a previously freed instance.";
  857. OPCODE_BREAK;
  858. }
  859. bool result = false;
  860. if (object && object->get_script_instance()) {
  861. Script *script_ptr = object->get_script_instance()->get_script().ptr();
  862. while (script_ptr) {
  863. if (script_ptr == script_type) {
  864. result = true;
  865. break;
  866. }
  867. script_ptr = script_ptr->get_base_script().ptr();
  868. }
  869. }
  870. *dst = result;
  871. ip += 4;
  872. }
  873. DISPATCH_OPCODE;
  874. OPCODE(OPCODE_SET_KEYED) {
  875. CHECK_SPACE(3);
  876. GET_VARIANT_PTR(dst, 0);
  877. GET_VARIANT_PTR(index, 1);
  878. GET_VARIANT_PTR(value, 2);
  879. bool valid;
  880. #ifdef DEBUG_ENABLED
  881. Variant::VariantSetError err_code;
  882. dst->set(*index, *value, &valid, &err_code);
  883. #else
  884. dst->set(*index, *value, &valid);
  885. #endif
  886. #ifdef DEBUG_ENABLED
  887. if (!valid) {
  888. if (dst->is_read_only()) {
  889. err_text = "Invalid assignment on read-only value (on base: '" + _get_var_type(dst) + "').";
  890. } else {
  891. Object *obj = dst->get_validated_object();
  892. String v = index->operator String();
  893. bool read_only_property = false;
  894. if (obj) {
  895. read_only_property = ClassDB::has_property(obj->get_class_name(), v) && (ClassDB::get_property_setter(obj->get_class_name(), v) == StringName());
  896. }
  897. if (read_only_property) {
  898. err_text = vformat(R"(Cannot set value into property "%s" (on base "%s") because it is read-only.)", v, _get_var_type(dst));
  899. } else {
  900. if (!v.is_empty()) {
  901. v = "'" + v + "'";
  902. } else {
  903. v = "of type '" + _get_var_type(index) + "'";
  904. }
  905. err_text = "Invalid assignment of property or key " + v + " with value of type '" + _get_var_type(value) + "' on a base object of type '" + _get_var_type(dst) + "'.";
  906. if (err_code == Variant::VariantSetError::SET_INDEXED_ERR) {
  907. err_text = "Invalid assignment of index " + v + " (on base: '" + _get_var_type(dst) + "') with value of type '" + _get_var_type(value) + "'.";
  908. }
  909. }
  910. }
  911. OPCODE_BREAK;
  912. }
  913. #endif
  914. ip += 4;
  915. }
  916. DISPATCH_OPCODE;
  917. OPCODE(OPCODE_SET_KEYED_VALIDATED) {
  918. CHECK_SPACE(4);
  919. GET_VARIANT_PTR(dst, 0);
  920. GET_VARIANT_PTR(index, 1);
  921. GET_VARIANT_PTR(value, 2);
  922. int index_setter = _code_ptr[ip + 4];
  923. GD_ERR_BREAK(index_setter < 0 || index_setter >= _keyed_setters_count);
  924. const Variant::ValidatedKeyedSetter setter = _keyed_setters_ptr[index_setter];
  925. bool valid;
  926. setter(dst, index, value, &valid);
  927. #ifdef DEBUG_ENABLED
  928. if (!valid) {
  929. if (dst->is_read_only()) {
  930. err_text = "Invalid assignment on read-only value (on base: '" + _get_var_type(dst) + "').";
  931. } else {
  932. String v = index->operator String();
  933. if (!v.is_empty()) {
  934. v = "'" + v + "'";
  935. } else {
  936. v = "of type '" + _get_var_type(index) + "'";
  937. }
  938. err_text = "Invalid assignment of property or key " + v + " with value of type '" + _get_var_type(value) + "' on a base object of type '" + _get_var_type(dst) + "'.";
  939. }
  940. OPCODE_BREAK;
  941. }
  942. #endif
  943. ip += 5;
  944. }
  945. DISPATCH_OPCODE;
  946. OPCODE(OPCODE_SET_INDEXED_VALIDATED) {
  947. CHECK_SPACE(4);
  948. GET_VARIANT_PTR(dst, 0);
  949. GET_VARIANT_PTR(index, 1);
  950. GET_VARIANT_PTR(value, 2);
  951. int index_setter = _code_ptr[ip + 4];
  952. GD_ERR_BREAK(index_setter < 0 || index_setter >= _indexed_setters_count);
  953. const Variant::ValidatedIndexedSetter setter = _indexed_setters_ptr[index_setter];
  954. int64_t int_index = *VariantInternal::get_int(index);
  955. bool oob;
  956. setter(dst, int_index, value, &oob);
  957. #ifdef DEBUG_ENABLED
  958. if (oob) {
  959. if (dst->is_read_only()) {
  960. err_text = "Invalid assignment on read-only value (on base: '" + _get_var_type(dst) + "').";
  961. } else {
  962. String v = index->operator String();
  963. if (!v.is_empty()) {
  964. v = "'" + v + "'";
  965. } else {
  966. v = "of type '" + _get_var_type(index) + "'";
  967. }
  968. err_text = "Out of bounds set index " + v + " (on base: '" + _get_var_type(dst) + "')";
  969. }
  970. OPCODE_BREAK;
  971. }
  972. #endif
  973. ip += 5;
  974. }
  975. DISPATCH_OPCODE;
  976. OPCODE(OPCODE_GET_KEYED) {
  977. CHECK_SPACE(3);
  978. GET_VARIANT_PTR(src, 0);
  979. GET_VARIANT_PTR(index, 1);
  980. GET_VARIANT_PTR(dst, 2);
  981. bool valid;
  982. #ifdef DEBUG_ENABLED
  983. // Allow better error message in cases where src and dst are the same stack position.
  984. Variant::VariantGetError err_code;
  985. Variant ret = src->get(*index, &valid, &err_code);
  986. #else
  987. *dst = src->get(*index, &valid);
  988. #endif
  989. #ifdef DEBUG_ENABLED
  990. if (!valid) {
  991. String v = index->operator String();
  992. if (!v.is_empty()) {
  993. v = "'" + v + "'";
  994. } else {
  995. v = "of type '" + _get_var_type(index) + "'";
  996. }
  997. err_text = "Invalid access to property or key " + v + " on a base object of type '" + _get_var_type(src) + "'.";
  998. if (err_code == Variant::VariantGetError::GET_INDEXED_ERR) {
  999. err_text = "Invalid access of index " + v + " on a base object of type: '" + _get_var_type(src) + "'.";
  1000. }
  1001. OPCODE_BREAK;
  1002. }
  1003. *dst = ret;
  1004. #endif
  1005. ip += 4;
  1006. }
  1007. DISPATCH_OPCODE;
  1008. OPCODE(OPCODE_GET_KEYED_VALIDATED) {
  1009. CHECK_SPACE(4);
  1010. GET_VARIANT_PTR(src, 0);
  1011. GET_VARIANT_PTR(key, 1);
  1012. GET_VARIANT_PTR(dst, 2);
  1013. int index_getter = _code_ptr[ip + 4];
  1014. GD_ERR_BREAK(index_getter < 0 || index_getter >= _keyed_getters_count);
  1015. const Variant::ValidatedKeyedGetter getter = _keyed_getters_ptr[index_getter];
  1016. bool valid;
  1017. #ifdef DEBUG_ENABLED
  1018. // Allow better error message in cases where src and dst are the same stack position.
  1019. Variant ret;
  1020. getter(src, key, &ret, &valid);
  1021. #else
  1022. getter(src, key, dst, &valid);
  1023. #endif
  1024. #ifdef DEBUG_ENABLED
  1025. if (!valid) {
  1026. String v = key->operator String();
  1027. if (!v.is_empty()) {
  1028. v = "'" + v + "'";
  1029. } else {
  1030. v = "of type '" + _get_var_type(key) + "'";
  1031. }
  1032. err_text = "Invalid access to property or key " + v + " on a base object of type '" + _get_var_type(src) + "'.";
  1033. OPCODE_BREAK;
  1034. }
  1035. *dst = ret;
  1036. #endif
  1037. ip += 5;
  1038. }
  1039. DISPATCH_OPCODE;
  1040. OPCODE(OPCODE_GET_INDEXED_VALIDATED) {
  1041. CHECK_SPACE(4);
  1042. GET_VARIANT_PTR(src, 0);
  1043. GET_VARIANT_PTR(index, 1);
  1044. GET_VARIANT_PTR(dst, 2);
  1045. int index_getter = _code_ptr[ip + 4];
  1046. GD_ERR_BREAK(index_getter < 0 || index_getter >= _indexed_getters_count);
  1047. const Variant::ValidatedIndexedGetter getter = _indexed_getters_ptr[index_getter];
  1048. int64_t int_index = *VariantInternal::get_int(index);
  1049. bool oob;
  1050. getter(src, int_index, dst, &oob);
  1051. #ifdef DEBUG_ENABLED
  1052. if (oob) {
  1053. String v = index->operator String();
  1054. if (!v.is_empty()) {
  1055. v = "'" + v + "'";
  1056. } else {
  1057. v = "of type '" + _get_var_type(index) + "'";
  1058. }
  1059. err_text = "Out of bounds get index " + v + " (on base: '" + _get_var_type(src) + "')";
  1060. OPCODE_BREAK;
  1061. }
  1062. #endif
  1063. ip += 5;
  1064. }
  1065. DISPATCH_OPCODE;
  1066. OPCODE(OPCODE_SET_NAMED) {
  1067. CHECK_SPACE(3);
  1068. GET_VARIANT_PTR(dst, 0);
  1069. GET_VARIANT_PTR(value, 1);
  1070. int indexname = _code_ptr[ip + 3];
  1071. GD_ERR_BREAK(indexname < 0 || indexname >= _global_names_count);
  1072. const StringName *index = &_global_names_ptr[indexname];
  1073. bool valid;
  1074. dst->set_named(*index, *value, valid);
  1075. #ifdef DEBUG_ENABLED
  1076. if (!valid) {
  1077. if (dst->is_read_only()) {
  1078. err_text = "Invalid assignment on read-only value (on base: '" + _get_var_type(dst) + "').";
  1079. } else {
  1080. Object *obj = dst->get_validated_object();
  1081. bool read_only_property = false;
  1082. if (obj) {
  1083. read_only_property = ClassDB::has_property(obj->get_class_name(), *index) && (ClassDB::get_property_setter(obj->get_class_name(), *index) == StringName());
  1084. }
  1085. if (read_only_property) {
  1086. err_text = vformat(R"(Cannot set value into property "%s" (on base "%s") because it is read-only.)", String(*index), _get_var_type(dst));
  1087. } else {
  1088. err_text = "Invalid assignment of property or key '" + String(*index) + "' with value of type '" + _get_var_type(value) + "' on a base object of type '" + _get_var_type(dst) + "'.";
  1089. }
  1090. }
  1091. OPCODE_BREAK;
  1092. }
  1093. #endif
  1094. ip += 4;
  1095. }
  1096. DISPATCH_OPCODE;
  1097. OPCODE(OPCODE_SET_NAMED_VALIDATED) {
  1098. CHECK_SPACE(3);
  1099. GET_VARIANT_PTR(dst, 0);
  1100. GET_VARIANT_PTR(value, 1);
  1101. int index_setter = _code_ptr[ip + 3];
  1102. GD_ERR_BREAK(index_setter < 0 || index_setter >= _setters_count);
  1103. const Variant::ValidatedSetter setter = _setters_ptr[index_setter];
  1104. setter(dst, value);
  1105. ip += 4;
  1106. }
  1107. DISPATCH_OPCODE;
  1108. OPCODE(OPCODE_GET_NAMED) {
  1109. CHECK_SPACE(4);
  1110. GET_VARIANT_PTR(src, 0);
  1111. GET_VARIANT_PTR(dst, 1);
  1112. int indexname = _code_ptr[ip + 3];
  1113. GD_ERR_BREAK(indexname < 0 || indexname >= _global_names_count);
  1114. const StringName *index = &_global_names_ptr[indexname];
  1115. bool valid;
  1116. #ifdef DEBUG_ENABLED
  1117. //allow better error message in cases where src and dst are the same stack position
  1118. Variant ret = src->get_named(*index, valid);
  1119. #else
  1120. *dst = src->get_named(*index, valid);
  1121. #endif
  1122. #ifdef DEBUG_ENABLED
  1123. if (!valid) {
  1124. err_text = "Invalid access to property or key '" + index->operator String() + "' on a base object of type '" + _get_var_type(src) + "'.";
  1125. OPCODE_BREAK;
  1126. }
  1127. *dst = ret;
  1128. #endif
  1129. ip += 4;
  1130. }
  1131. DISPATCH_OPCODE;
  1132. OPCODE(OPCODE_GET_NAMED_VALIDATED) {
  1133. CHECK_SPACE(3);
  1134. GET_VARIANT_PTR(src, 0);
  1135. GET_VARIANT_PTR(dst, 1);
  1136. int index_getter = _code_ptr[ip + 3];
  1137. GD_ERR_BREAK(index_getter < 0 || index_getter >= _getters_count);
  1138. const Variant::ValidatedGetter getter = _getters_ptr[index_getter];
  1139. getter(src, dst);
  1140. ip += 4;
  1141. }
  1142. DISPATCH_OPCODE;
  1143. OPCODE(OPCODE_SET_MEMBER) {
  1144. CHECK_SPACE(3);
  1145. GET_VARIANT_PTR(src, 0);
  1146. int indexname = _code_ptr[ip + 2];
  1147. GD_ERR_BREAK(indexname < 0 || indexname >= _global_names_count);
  1148. const StringName *index = &_global_names_ptr[indexname];
  1149. bool valid;
  1150. #ifndef DEBUG_ENABLED
  1151. ClassDB::set_property(p_instance->owner, *index, *src, &valid);
  1152. #else
  1153. bool ok = ClassDB::set_property(p_instance->owner, *index, *src, &valid);
  1154. if (!ok) {
  1155. err_text = "Internal error setting property: " + String(*index);
  1156. OPCODE_BREAK;
  1157. } else if (!valid) {
  1158. err_text = "Error setting property '" + String(*index) + "' with value of type " + Variant::get_type_name(src->get_type()) + ".";
  1159. OPCODE_BREAK;
  1160. }
  1161. #endif
  1162. ip += 3;
  1163. }
  1164. DISPATCH_OPCODE;
  1165. OPCODE(OPCODE_GET_MEMBER) {
  1166. CHECK_SPACE(3);
  1167. GET_VARIANT_PTR(dst, 0);
  1168. int indexname = _code_ptr[ip + 2];
  1169. GD_ERR_BREAK(indexname < 0 || indexname >= _global_names_count);
  1170. const StringName *index = &_global_names_ptr[indexname];
  1171. #ifndef DEBUG_ENABLED
  1172. ClassDB::get_property(p_instance->owner, *index, *dst);
  1173. #else
  1174. bool ok = ClassDB::get_property(p_instance->owner, *index, *dst);
  1175. if (!ok) {
  1176. err_text = "Internal error getting property: " + String(*index);
  1177. OPCODE_BREAK;
  1178. }
  1179. #endif
  1180. ip += 3;
  1181. }
  1182. DISPATCH_OPCODE;
  1183. OPCODE(OPCODE_SET_STATIC_VARIABLE) {
  1184. CHECK_SPACE(4);
  1185. GET_VARIANT_PTR(value, 0);
  1186. GET_VARIANT_PTR(_class, 1);
  1187. GDScript *gdscript = Object::cast_to<GDScript>(_class->operator Object *());
  1188. GD_ERR_BREAK(!gdscript);
  1189. int index = _code_ptr[ip + 3];
  1190. GD_ERR_BREAK(index < 0 || index >= gdscript->static_variables.size());
  1191. gdscript->static_variables.write[index] = *value;
  1192. ip += 4;
  1193. }
  1194. DISPATCH_OPCODE;
  1195. OPCODE(OPCODE_GET_STATIC_VARIABLE) {
  1196. CHECK_SPACE(4);
  1197. GET_VARIANT_PTR(target, 0);
  1198. GET_VARIANT_PTR(_class, 1);
  1199. GDScript *gdscript = Object::cast_to<GDScript>(_class->operator Object *());
  1200. GD_ERR_BREAK(!gdscript);
  1201. int index = _code_ptr[ip + 3];
  1202. GD_ERR_BREAK(index < 0 || index >= gdscript->static_variables.size());
  1203. *target = gdscript->static_variables[index];
  1204. ip += 4;
  1205. }
  1206. DISPATCH_OPCODE;
  1207. OPCODE(OPCODE_ASSIGN) {
  1208. CHECK_SPACE(3);
  1209. GET_VARIANT_PTR(dst, 0);
  1210. GET_VARIANT_PTR(src, 1);
  1211. *dst = *src;
  1212. ip += 3;
  1213. }
  1214. DISPATCH_OPCODE;
  1215. OPCODE(OPCODE_ASSIGN_NULL) {
  1216. CHECK_SPACE(2);
  1217. GET_VARIANT_PTR(dst, 0);
  1218. *dst = Variant();
  1219. ip += 2;
  1220. }
  1221. DISPATCH_OPCODE;
  1222. OPCODE(OPCODE_ASSIGN_TRUE) {
  1223. CHECK_SPACE(2);
  1224. GET_VARIANT_PTR(dst, 0);
  1225. *dst = true;
  1226. ip += 2;
  1227. }
  1228. DISPATCH_OPCODE;
  1229. OPCODE(OPCODE_ASSIGN_FALSE) {
  1230. CHECK_SPACE(2);
  1231. GET_VARIANT_PTR(dst, 0);
  1232. *dst = false;
  1233. ip += 2;
  1234. }
  1235. DISPATCH_OPCODE;
  1236. OPCODE(OPCODE_ASSIGN_TYPED_BUILTIN) {
  1237. CHECK_SPACE(4);
  1238. GET_VARIANT_PTR(dst, 0);
  1239. GET_VARIANT_PTR(src, 1);
  1240. Variant::Type var_type = (Variant::Type)_code_ptr[ip + 3];
  1241. GD_ERR_BREAK(var_type < 0 || var_type >= Variant::VARIANT_MAX);
  1242. if (src->get_type() != var_type) {
  1243. #ifdef DEBUG_ENABLED
  1244. if (Variant::can_convert_strict(src->get_type(), var_type)) {
  1245. #endif // DEBUG_ENABLED
  1246. Callable::CallError ce;
  1247. Variant::construct(var_type, *dst, const_cast<const Variant **>(&src), 1, ce);
  1248. } else {
  1249. #ifdef DEBUG_ENABLED
  1250. err_text = "Trying to assign value of type '" + Variant::get_type_name(src->get_type()) +
  1251. "' to a variable of type '" + Variant::get_type_name(var_type) + "'.";
  1252. OPCODE_BREAK;
  1253. }
  1254. } else {
  1255. #endif // DEBUG_ENABLED
  1256. *dst = *src;
  1257. }
  1258. ip += 4;
  1259. }
  1260. DISPATCH_OPCODE;
  1261. OPCODE(OPCODE_ASSIGN_TYPED_ARRAY) {
  1262. CHECK_SPACE(6);
  1263. GET_VARIANT_PTR(dst, 0);
  1264. GET_VARIANT_PTR(src, 1);
  1265. GET_VARIANT_PTR(script_type, 2);
  1266. Variant::Type builtin_type = (Variant::Type)_code_ptr[ip + 4];
  1267. int native_type_idx = _code_ptr[ip + 5];
  1268. GD_ERR_BREAK(native_type_idx < 0 || native_type_idx >= _global_names_count);
  1269. const StringName native_type = _global_names_ptr[native_type_idx];
  1270. if (src->get_type() != Variant::ARRAY) {
  1271. #ifdef DEBUG_ENABLED
  1272. err_text = vformat(R"(Trying to assign a value of type "%s" to a variable of type "Array[%s]".)",
  1273. _get_var_type(src), _get_element_type(builtin_type, native_type, *script_type));
  1274. #endif // DEBUG_ENABLED
  1275. OPCODE_BREAK;
  1276. }
  1277. Array *array = VariantInternal::get_array(src);
  1278. if (array->get_typed_builtin() != ((uint32_t)builtin_type) || array->get_typed_class_name() != native_type || array->get_typed_script() != *script_type) {
  1279. #ifdef DEBUG_ENABLED
  1280. err_text = vformat(R"(Trying to assign an array of type "%s" to a variable of type "Array[%s]".)",
  1281. _get_var_type(src), _get_element_type(builtin_type, native_type, *script_type));
  1282. #endif // DEBUG_ENABLED
  1283. OPCODE_BREAK;
  1284. }
  1285. *dst = *src;
  1286. ip += 6;
  1287. }
  1288. DISPATCH_OPCODE;
  1289. OPCODE(OPCODE_ASSIGN_TYPED_DICTIONARY) {
  1290. CHECK_SPACE(9);
  1291. GET_VARIANT_PTR(dst, 0);
  1292. GET_VARIANT_PTR(src, 1);
  1293. GET_VARIANT_PTR(key_script_type, 2);
  1294. Variant::Type key_builtin_type = (Variant::Type)_code_ptr[ip + 5];
  1295. int key_native_type_idx = _code_ptr[ip + 6];
  1296. GD_ERR_BREAK(key_native_type_idx < 0 || key_native_type_idx >= _global_names_count);
  1297. const StringName key_native_type = _global_names_ptr[key_native_type_idx];
  1298. GET_VARIANT_PTR(value_script_type, 3);
  1299. Variant::Type value_builtin_type = (Variant::Type)_code_ptr[ip + 7];
  1300. int value_native_type_idx = _code_ptr[ip + 8];
  1301. GD_ERR_BREAK(value_native_type_idx < 0 || value_native_type_idx >= _global_names_count);
  1302. const StringName value_native_type = _global_names_ptr[value_native_type_idx];
  1303. if (src->get_type() != Variant::DICTIONARY) {
  1304. #ifdef DEBUG_ENABLED
  1305. err_text = vformat(R"(Trying to assign a value of type "%s" to a variable of type "Dictionary[%s, %s]".)",
  1306. _get_var_type(src), _get_element_type(key_builtin_type, key_native_type, *key_script_type),
  1307. _get_element_type(value_builtin_type, value_native_type, *value_script_type));
  1308. #endif // DEBUG_ENABLED
  1309. OPCODE_BREAK;
  1310. }
  1311. Dictionary *dictionary = VariantInternal::get_dictionary(src);
  1312. if (dictionary->get_typed_key_builtin() != ((uint32_t)key_builtin_type) || dictionary->get_typed_key_class_name() != key_native_type || dictionary->get_typed_key_script() != *key_script_type ||
  1313. dictionary->get_typed_value_builtin() != ((uint32_t)value_builtin_type) || dictionary->get_typed_value_class_name() != value_native_type || dictionary->get_typed_value_script() != *value_script_type) {
  1314. #ifdef DEBUG_ENABLED
  1315. err_text = vformat(R"(Trying to assign a dictionary of type "%s" to a variable of type "Dictionary[%s, %s]".)",
  1316. _get_var_type(src), _get_element_type(key_builtin_type, key_native_type, *key_script_type),
  1317. _get_element_type(value_builtin_type, value_native_type, *value_script_type));
  1318. #endif // DEBUG_ENABLED
  1319. OPCODE_BREAK;
  1320. }
  1321. *dst = *src;
  1322. ip += 9;
  1323. }
  1324. DISPATCH_OPCODE;
  1325. OPCODE(OPCODE_ASSIGN_TYPED_NATIVE) {
  1326. CHECK_SPACE(4);
  1327. GET_VARIANT_PTR(dst, 0);
  1328. GET_VARIANT_PTR(src, 1);
  1329. #ifdef DEBUG_ENABLED
  1330. GET_VARIANT_PTR(type, 2);
  1331. GDScriptNativeClass *nc = Object::cast_to<GDScriptNativeClass>(type->operator Object *());
  1332. GD_ERR_BREAK(!nc);
  1333. if (src->get_type() != Variant::OBJECT && src->get_type() != Variant::NIL) {
  1334. err_text = "Trying to assign value of type '" + Variant::get_type_name(src->get_type()) +
  1335. "' to a variable of type '" + nc->get_name() + "'.";
  1336. OPCODE_BREAK;
  1337. }
  1338. if (src->get_type() == Variant::OBJECT) {
  1339. bool was_freed = false;
  1340. Object *src_obj = src->get_validated_object_with_check(was_freed);
  1341. if (!src_obj && was_freed) {
  1342. err_text = "Trying to assign invalid previously freed instance.";
  1343. OPCODE_BREAK;
  1344. }
  1345. if (src_obj && !ClassDB::is_parent_class(src_obj->get_class_name(), nc->get_name())) {
  1346. err_text = "Trying to assign value of type '" + src_obj->get_class_name() +
  1347. "' to a variable of type '" + nc->get_name() + "'.";
  1348. OPCODE_BREAK;
  1349. }
  1350. }
  1351. #endif // DEBUG_ENABLED
  1352. *dst = *src;
  1353. ip += 4;
  1354. }
  1355. DISPATCH_OPCODE;
  1356. OPCODE(OPCODE_ASSIGN_TYPED_SCRIPT) {
  1357. CHECK_SPACE(4);
  1358. GET_VARIANT_PTR(dst, 0);
  1359. GET_VARIANT_PTR(src, 1);
  1360. #ifdef DEBUG_ENABLED
  1361. GET_VARIANT_PTR(type, 2);
  1362. Script *base_type = Object::cast_to<Script>(type->operator Object *());
  1363. GD_ERR_BREAK(!base_type);
  1364. if (src->get_type() != Variant::OBJECT && src->get_type() != Variant::NIL) {
  1365. err_text = "Trying to assign a non-object value to a variable of type '" + base_type->get_path().get_file() + "'.";
  1366. OPCODE_BREAK;
  1367. }
  1368. if (src->get_type() == Variant::OBJECT) {
  1369. bool was_freed = false;
  1370. Object *val_obj = src->get_validated_object_with_check(was_freed);
  1371. if (!val_obj && was_freed) {
  1372. err_text = "Trying to assign invalid previously freed instance.";
  1373. OPCODE_BREAK;
  1374. }
  1375. if (val_obj) { // src is not null
  1376. ScriptInstance *scr_inst = val_obj->get_script_instance();
  1377. if (!scr_inst) {
  1378. err_text = "Trying to assign value of type '" + val_obj->get_class_name() +
  1379. "' to a variable of type '" + base_type->get_path().get_file() + "'.";
  1380. OPCODE_BREAK;
  1381. }
  1382. Script *src_type = scr_inst->get_script().ptr();
  1383. bool valid = false;
  1384. while (src_type) {
  1385. if (src_type == base_type) {
  1386. valid = true;
  1387. break;
  1388. }
  1389. src_type = src_type->get_base_script().ptr();
  1390. }
  1391. if (!valid) {
  1392. err_text = "Trying to assign value of type '" + val_obj->get_script_instance()->get_script()->get_path().get_file() +
  1393. "' to a variable of type '" + base_type->get_path().get_file() + "'.";
  1394. OPCODE_BREAK;
  1395. }
  1396. }
  1397. }
  1398. #endif // DEBUG_ENABLED
  1399. *dst = *src;
  1400. ip += 4;
  1401. }
  1402. DISPATCH_OPCODE;
  1403. OPCODE(OPCODE_CAST_TO_BUILTIN) {
  1404. CHECK_SPACE(4);
  1405. GET_VARIANT_PTR(src, 0);
  1406. GET_VARIANT_PTR(dst, 1);
  1407. Variant::Type to_type = (Variant::Type)_code_ptr[ip + 3];
  1408. GD_ERR_BREAK(to_type < 0 || to_type >= Variant::VARIANT_MAX);
  1409. #ifdef DEBUG_ENABLED
  1410. if (src->operator Object *() && !src->get_validated_object()) {
  1411. err_text = "Trying to cast a freed object.";
  1412. OPCODE_BREAK;
  1413. }
  1414. #endif
  1415. Callable::CallError err;
  1416. Variant::construct(to_type, *dst, (const Variant **)&src, 1, err);
  1417. #ifdef DEBUG_ENABLED
  1418. if (err.error != Callable::CallError::CALL_OK) {
  1419. err_text = "Invalid cast: could not convert value to '" + Variant::get_type_name(to_type) + "'.";
  1420. OPCODE_BREAK;
  1421. }
  1422. #endif
  1423. ip += 4;
  1424. }
  1425. DISPATCH_OPCODE;
  1426. OPCODE(OPCODE_CAST_TO_NATIVE) {
  1427. CHECK_SPACE(4);
  1428. GET_VARIANT_PTR(src, 0);
  1429. GET_VARIANT_PTR(dst, 1);
  1430. GET_VARIANT_PTR(to_type, 2);
  1431. GDScriptNativeClass *nc = Object::cast_to<GDScriptNativeClass>(to_type->operator Object *());
  1432. GD_ERR_BREAK(!nc);
  1433. #ifdef DEBUG_ENABLED
  1434. if (src->operator Object *() && !src->get_validated_object()) {
  1435. err_text = "Trying to cast a freed object.";
  1436. OPCODE_BREAK;
  1437. }
  1438. if (src->get_type() != Variant::OBJECT && src->get_type() != Variant::NIL) {
  1439. err_text = "Invalid cast: can't convert a non-object value to an object type.";
  1440. OPCODE_BREAK;
  1441. }
  1442. #endif
  1443. Object *src_obj = src->operator Object *();
  1444. if (src_obj && !ClassDB::is_parent_class(src_obj->get_class_name(), nc->get_name())) {
  1445. *dst = Variant(); // invalid cast, assign NULL
  1446. } else {
  1447. *dst = *src;
  1448. }
  1449. ip += 4;
  1450. }
  1451. DISPATCH_OPCODE;
  1452. OPCODE(OPCODE_CAST_TO_SCRIPT) {
  1453. CHECK_SPACE(4);
  1454. GET_VARIANT_PTR(src, 0);
  1455. GET_VARIANT_PTR(dst, 1);
  1456. GET_VARIANT_PTR(to_type, 2);
  1457. Script *base_type = Object::cast_to<Script>(to_type->operator Object *());
  1458. GD_ERR_BREAK(!base_type);
  1459. #ifdef DEBUG_ENABLED
  1460. if (src->operator Object *() && !src->get_validated_object()) {
  1461. err_text = "Trying to cast a freed object.";
  1462. OPCODE_BREAK;
  1463. }
  1464. if (src->get_type() != Variant::OBJECT && src->get_type() != Variant::NIL) {
  1465. err_text = "Trying to assign a non-object value to a variable of type '" + base_type->get_path().get_file() + "'.";
  1466. OPCODE_BREAK;
  1467. }
  1468. #endif
  1469. bool valid = false;
  1470. if (src->get_type() != Variant::NIL && src->operator Object *() != nullptr) {
  1471. ScriptInstance *scr_inst = src->operator Object *()->get_script_instance();
  1472. if (scr_inst) {
  1473. Script *src_type = src->operator Object *()->get_script_instance()->get_script().ptr();
  1474. while (src_type) {
  1475. if (src_type == base_type) {
  1476. valid = true;
  1477. break;
  1478. }
  1479. src_type = src_type->get_base_script().ptr();
  1480. }
  1481. }
  1482. }
  1483. if (valid) {
  1484. *dst = *src; // Valid cast, copy the source object
  1485. } else {
  1486. *dst = Variant(); // invalid cast, assign NULL
  1487. }
  1488. ip += 4;
  1489. }
  1490. DISPATCH_OPCODE;
  1491. OPCODE(OPCODE_CONSTRUCT) {
  1492. LOAD_INSTRUCTION_ARGS
  1493. CHECK_SPACE(2 + instr_arg_count);
  1494. ip += instr_arg_count;
  1495. int argc = _code_ptr[ip + 1];
  1496. Variant::Type t = Variant::Type(_code_ptr[ip + 2]);
  1497. Variant **argptrs = instruction_args;
  1498. GET_INSTRUCTION_ARG(dst, argc);
  1499. Callable::CallError err;
  1500. Variant::construct(t, *dst, (const Variant **)argptrs, argc, err);
  1501. #ifdef DEBUG_ENABLED
  1502. if (err.error != Callable::CallError::CALL_OK) {
  1503. err_text = _get_call_error("'" + Variant::get_type_name(t) + "' constructor", (const Variant **)argptrs, argc, *dst, err);
  1504. OPCODE_BREAK;
  1505. }
  1506. #endif
  1507. ip += 3;
  1508. }
  1509. DISPATCH_OPCODE;
  1510. OPCODE(OPCODE_CONSTRUCT_VALIDATED) {
  1511. LOAD_INSTRUCTION_ARGS
  1512. CHECK_SPACE(2 + instr_arg_count);
  1513. ip += instr_arg_count;
  1514. int argc = _code_ptr[ip + 1];
  1515. int constructor_idx = _code_ptr[ip + 2];
  1516. GD_ERR_BREAK(constructor_idx < 0 || constructor_idx >= _constructors_count);
  1517. Variant::ValidatedConstructor constructor = _constructors_ptr[constructor_idx];
  1518. Variant **argptrs = instruction_args;
  1519. GET_INSTRUCTION_ARG(dst, argc);
  1520. constructor(dst, (const Variant **)argptrs);
  1521. ip += 3;
  1522. }
  1523. DISPATCH_OPCODE;
  1524. OPCODE(OPCODE_CONSTRUCT_ARRAY) {
  1525. LOAD_INSTRUCTION_ARGS
  1526. CHECK_SPACE(1 + instr_arg_count);
  1527. ip += instr_arg_count;
  1528. int argc = _code_ptr[ip + 1];
  1529. Array array;
  1530. array.resize(argc);
  1531. for (int i = 0; i < argc; i++) {
  1532. array[i] = *(instruction_args[i]);
  1533. }
  1534. GET_INSTRUCTION_ARG(dst, argc);
  1535. *dst = Variant(); // Clear potential previous typed array.
  1536. *dst = array;
  1537. ip += 2;
  1538. }
  1539. DISPATCH_OPCODE;
  1540. OPCODE(OPCODE_CONSTRUCT_TYPED_ARRAY) {
  1541. LOAD_INSTRUCTION_ARGS
  1542. CHECK_SPACE(3 + instr_arg_count);
  1543. ip += instr_arg_count;
  1544. int argc = _code_ptr[ip + 1];
  1545. GET_INSTRUCTION_ARG(script_type, argc + 1);
  1546. Variant::Type builtin_type = (Variant::Type)_code_ptr[ip + 2];
  1547. int native_type_idx = _code_ptr[ip + 3];
  1548. GD_ERR_BREAK(native_type_idx < 0 || native_type_idx >= _global_names_count);
  1549. const StringName native_type = _global_names_ptr[native_type_idx];
  1550. Array array;
  1551. array.set_typed(builtin_type, native_type, *script_type);
  1552. array.resize(argc);
  1553. for (int i = 0; i < argc; i++) {
  1554. // Use .set instead of operator[] to handle type conversion / validation.
  1555. array.set(i, *(instruction_args[i]));
  1556. }
  1557. GET_INSTRUCTION_ARG(dst, argc);
  1558. *dst = Variant(); // Clear potential previous typed array.
  1559. *dst = array;
  1560. ip += 4;
  1561. }
  1562. DISPATCH_OPCODE;
  1563. OPCODE(OPCODE_CONSTRUCT_DICTIONARY) {
  1564. LOAD_INSTRUCTION_ARGS
  1565. CHECK_SPACE(2 + instr_arg_count);
  1566. ip += instr_arg_count;
  1567. int argc = _code_ptr[ip + 1];
  1568. Dictionary dict;
  1569. for (int i = 0; i < argc; i++) {
  1570. GET_INSTRUCTION_ARG(k, i * 2 + 0);
  1571. GET_INSTRUCTION_ARG(v, i * 2 + 1);
  1572. dict[*k] = *v;
  1573. }
  1574. GET_INSTRUCTION_ARG(dst, argc * 2);
  1575. *dst = Variant(); // Clear potential previous typed dictionary.
  1576. *dst = dict;
  1577. ip += 2;
  1578. }
  1579. DISPATCH_OPCODE;
  1580. OPCODE(OPCODE_CONSTRUCT_TYPED_DICTIONARY) {
  1581. LOAD_INSTRUCTION_ARGS
  1582. CHECK_SPACE(6 + instr_arg_count);
  1583. ip += instr_arg_count;
  1584. int argc = _code_ptr[ip + 1];
  1585. GET_INSTRUCTION_ARG(key_script_type, argc * 2 + 1);
  1586. Variant::Type key_builtin_type = (Variant::Type)_code_ptr[ip + 2];
  1587. int key_native_type_idx = _code_ptr[ip + 3];
  1588. GD_ERR_BREAK(key_native_type_idx < 0 || key_native_type_idx >= _global_names_count);
  1589. const StringName key_native_type = _global_names_ptr[key_native_type_idx];
  1590. GET_INSTRUCTION_ARG(value_script_type, argc * 2 + 2);
  1591. Variant::Type value_builtin_type = (Variant::Type)_code_ptr[ip + 4];
  1592. int value_native_type_idx = _code_ptr[ip + 5];
  1593. GD_ERR_BREAK(value_native_type_idx < 0 || value_native_type_idx >= _global_names_count);
  1594. const StringName value_native_type = _global_names_ptr[value_native_type_idx];
  1595. Dictionary dict;
  1596. dict.set_typed(key_builtin_type, key_native_type, *key_script_type, value_builtin_type, value_native_type, *value_script_type);
  1597. for (int i = 0; i < argc; i++) {
  1598. GET_INSTRUCTION_ARG(k, i * 2 + 0);
  1599. GET_INSTRUCTION_ARG(v, i * 2 + 1);
  1600. // Use .set instead of operator[] to handle type conversion / validation.
  1601. dict.set(*k, *v);
  1602. }
  1603. GET_INSTRUCTION_ARG(dst, argc * 2);
  1604. *dst = Variant(); // Clear potential previous typed dictionary.
  1605. *dst = dict;
  1606. ip += 6;
  1607. }
  1608. DISPATCH_OPCODE;
  1609. OPCODE(OPCODE_CALL_ASYNC)
  1610. OPCODE(OPCODE_CALL_RETURN)
  1611. OPCODE(OPCODE_CALL) {
  1612. bool call_ret = (_code_ptr[ip]) != OPCODE_CALL;
  1613. #ifdef DEBUG_ENABLED
  1614. bool call_async = (_code_ptr[ip]) == OPCODE_CALL_ASYNC;
  1615. #endif
  1616. LOAD_INSTRUCTION_ARGS
  1617. CHECK_SPACE(3 + instr_arg_count);
  1618. ip += instr_arg_count;
  1619. int argc = _code_ptr[ip + 1];
  1620. GD_ERR_BREAK(argc < 0);
  1621. int methodname_idx = _code_ptr[ip + 2];
  1622. GD_ERR_BREAK(methodname_idx < 0 || methodname_idx >= _global_names_count);
  1623. const StringName *methodname = &_global_names_ptr[methodname_idx];
  1624. GET_INSTRUCTION_ARG(base, argc);
  1625. Variant **argptrs = instruction_args;
  1626. #ifdef DEBUG_ENABLED
  1627. uint64_t call_time = 0;
  1628. if (GDScriptLanguage::get_singleton()->profiling) {
  1629. call_time = OS::get_singleton()->get_ticks_usec();
  1630. }
  1631. Variant::Type base_type = base->get_type();
  1632. Object *base_obj = base->get_validated_object();
  1633. StringName base_class = base_obj ? base_obj->get_class_name() : StringName();
  1634. #endif
  1635. Variant temp_ret;
  1636. Callable::CallError err;
  1637. if (call_ret) {
  1638. GET_INSTRUCTION_ARG(ret, argc + 1);
  1639. base->callp(*methodname, (const Variant **)argptrs, argc, temp_ret, err);
  1640. *ret = temp_ret;
  1641. #ifdef DEBUG_ENABLED
  1642. if (ret->get_type() == Variant::NIL) {
  1643. if (base_type == Variant::OBJECT) {
  1644. if (base_obj) {
  1645. MethodBind *method = ClassDB::get_method(base_class, *methodname);
  1646. if (*methodname == CoreStringName(free_) || (method && !method->has_return())) {
  1647. err_text = R"(Trying to get a return value of a method that returns "void")";
  1648. OPCODE_BREAK;
  1649. }
  1650. }
  1651. } else if (Variant::has_builtin_method(base_type, *methodname) && !Variant::has_builtin_method_return_value(base_type, *methodname)) {
  1652. err_text = R"(Trying to get a return value of a method that returns "void")";
  1653. OPCODE_BREAK;
  1654. }
  1655. }
  1656. if (!call_async && ret->get_type() == Variant::OBJECT) {
  1657. // Check if getting a function state without await.
  1658. bool was_freed = false;
  1659. Object *obj = ret->get_validated_object_with_check(was_freed);
  1660. if (obj && obj->is_class_ptr(GDScriptFunctionState::get_class_ptr_static())) {
  1661. err_text = R"(Trying to call an async function without "await".)";
  1662. OPCODE_BREAK;
  1663. }
  1664. }
  1665. #endif
  1666. } else {
  1667. base->callp(*methodname, (const Variant **)argptrs, argc, temp_ret, err);
  1668. }
  1669. #ifdef DEBUG_ENABLED
  1670. if (GDScriptLanguage::get_singleton()->profiling) {
  1671. uint64_t t_taken = OS::get_singleton()->get_ticks_usec() - call_time;
  1672. if (GDScriptLanguage::get_singleton()->profile_native_calls && _profile_count_as_native(base_obj, *methodname)) {
  1673. _profile_native_call(t_taken, *methodname, base_class);
  1674. }
  1675. function_call_time += t_taken;
  1676. }
  1677. if (err.error != Callable::CallError::CALL_OK) {
  1678. String methodstr = *methodname;
  1679. String basestr = _get_var_type(base);
  1680. bool is_callable = false;
  1681. if (methodstr == "call") {
  1682. if (argc >= 1 && base->get_type() != Variant::CALLABLE) {
  1683. methodstr = String(*argptrs[0]) + " (via call)";
  1684. if (err.error == Callable::CallError::CALL_ERROR_INVALID_ARGUMENT) {
  1685. err.argument += 1;
  1686. }
  1687. } else {
  1688. methodstr = base->operator String() + " (Callable)";
  1689. is_callable = true;
  1690. }
  1691. } else if (methodstr == "free") {
  1692. if (err.error == Callable::CallError::CALL_ERROR_INVALID_METHOD) {
  1693. if (base->is_ref_counted()) {
  1694. err_text = "Attempted to free a RefCounted object.";
  1695. OPCODE_BREAK;
  1696. } else if (base->get_type() == Variant::OBJECT) {
  1697. err_text = "Attempted to free a locked object (calling or emitting).";
  1698. OPCODE_BREAK;
  1699. }
  1700. }
  1701. } else if (methodstr == "call_recursive" && basestr == "TreeItem") {
  1702. if (argc >= 1) {
  1703. methodstr = String(*argptrs[0]) + " (via TreeItem.call_recursive)";
  1704. if (err.error == Callable::CallError::CALL_ERROR_INVALID_ARGUMENT) {
  1705. err.argument += 1;
  1706. }
  1707. }
  1708. }
  1709. if (is_callable) {
  1710. err_text = _get_callable_call_error(vformat("function '%s'", methodstr), *base, (const Variant **)argptrs, argc, temp_ret, err);
  1711. } else {
  1712. err_text = _get_call_error(vformat("function '%s' in base '%s'", methodstr, basestr), (const Variant **)argptrs, argc, temp_ret, err);
  1713. }
  1714. OPCODE_BREAK;
  1715. }
  1716. #endif // DEBUG_ENABLED
  1717. ip += 3;
  1718. }
  1719. DISPATCH_OPCODE;
  1720. OPCODE(OPCODE_CALL_METHOD_BIND)
  1721. OPCODE(OPCODE_CALL_METHOD_BIND_RET) {
  1722. bool call_ret = (_code_ptr[ip]) == OPCODE_CALL_METHOD_BIND_RET;
  1723. LOAD_INSTRUCTION_ARGS
  1724. CHECK_SPACE(3 + instr_arg_count);
  1725. ip += instr_arg_count;
  1726. int argc = _code_ptr[ip + 1];
  1727. GD_ERR_BREAK(argc < 0);
  1728. GD_ERR_BREAK(_code_ptr[ip + 2] < 0 || _code_ptr[ip + 2] >= _methods_count);
  1729. MethodBind *method = _methods_ptr[_code_ptr[ip + 2]];
  1730. GET_INSTRUCTION_ARG(base, argc);
  1731. #ifdef DEBUG_ENABLED
  1732. bool freed = false;
  1733. Object *base_obj = base->get_validated_object_with_check(freed);
  1734. if (freed) {
  1735. err_text = METHOD_CALL_ON_FREED_INSTANCE_ERROR(method);
  1736. OPCODE_BREAK;
  1737. } else if (!base_obj) {
  1738. err_text = METHOD_CALL_ON_NULL_VALUE_ERROR(method);
  1739. OPCODE_BREAK;
  1740. }
  1741. #else
  1742. Object *base_obj = base->operator Object *();
  1743. #endif
  1744. Variant **argptrs = instruction_args;
  1745. #ifdef DEBUG_ENABLED
  1746. uint64_t call_time = 0;
  1747. if (GDScriptLanguage::get_singleton()->profiling && GDScriptLanguage::get_singleton()->profile_native_calls) {
  1748. call_time = OS::get_singleton()->get_ticks_usec();
  1749. }
  1750. #endif
  1751. Variant temp_ret;
  1752. Callable::CallError err;
  1753. if (call_ret) {
  1754. GET_INSTRUCTION_ARG(ret, argc + 1);
  1755. temp_ret = method->call(base_obj, (const Variant **)argptrs, argc, err);
  1756. *ret = temp_ret;
  1757. } else {
  1758. temp_ret = method->call(base_obj, (const Variant **)argptrs, argc, err);
  1759. }
  1760. #ifdef DEBUG_ENABLED
  1761. if (GDScriptLanguage::get_singleton()->profiling && GDScriptLanguage::get_singleton()->profile_native_calls) {
  1762. uint64_t t_taken = OS::get_singleton()->get_ticks_usec() - call_time;
  1763. _profile_native_call(t_taken, method->get_name(), method->get_instance_class());
  1764. function_call_time += t_taken;
  1765. }
  1766. if (err.error != Callable::CallError::CALL_OK) {
  1767. String methodstr = method->get_name();
  1768. String basestr = _get_var_type(base);
  1769. if (methodstr == "call") {
  1770. if (argc >= 1) {
  1771. methodstr = String(*argptrs[0]) + " (via call)";
  1772. if (err.error == Callable::CallError::CALL_ERROR_INVALID_ARGUMENT) {
  1773. err.argument += 1;
  1774. }
  1775. }
  1776. } else if (methodstr == "free") {
  1777. if (err.error == Callable::CallError::CALL_ERROR_INVALID_METHOD) {
  1778. if (base->is_ref_counted()) {
  1779. err_text = "Attempted to free a RefCounted object.";
  1780. OPCODE_BREAK;
  1781. } else if (base->get_type() == Variant::OBJECT) {
  1782. err_text = "Attempted to free a locked object (calling or emitting).";
  1783. OPCODE_BREAK;
  1784. }
  1785. }
  1786. }
  1787. err_text = _get_call_error("function '" + methodstr + "' in base '" + basestr + "'", (const Variant **)argptrs, argc, temp_ret, err);
  1788. OPCODE_BREAK;
  1789. }
  1790. #endif
  1791. ip += 3;
  1792. }
  1793. DISPATCH_OPCODE;
  1794. OPCODE(OPCODE_CALL_BUILTIN_STATIC) {
  1795. LOAD_INSTRUCTION_ARGS
  1796. CHECK_SPACE(4 + instr_arg_count);
  1797. ip += instr_arg_count;
  1798. GD_ERR_BREAK(_code_ptr[ip + 1] < 0 || _code_ptr[ip + 1] >= Variant::VARIANT_MAX);
  1799. Variant::Type builtin_type = (Variant::Type)_code_ptr[ip + 1];
  1800. int methodname_idx = _code_ptr[ip + 2];
  1801. GD_ERR_BREAK(methodname_idx < 0 || methodname_idx >= _global_names_count);
  1802. const StringName *methodname = &_global_names_ptr[methodname_idx];
  1803. int argc = _code_ptr[ip + 3];
  1804. GD_ERR_BREAK(argc < 0);
  1805. GET_INSTRUCTION_ARG(ret, argc);
  1806. const Variant **argptrs = const_cast<const Variant **>(instruction_args);
  1807. Callable::CallError err;
  1808. Variant::call_static(builtin_type, *methodname, argptrs, argc, *ret, err);
  1809. #ifdef DEBUG_ENABLED
  1810. if (err.error != Callable::CallError::CALL_OK) {
  1811. err_text = _get_call_error("static function '" + methodname->operator String() + "' in type '" + Variant::get_type_name(builtin_type) + "'", argptrs, argc, *ret, err);
  1812. OPCODE_BREAK;
  1813. }
  1814. #endif
  1815. ip += 4;
  1816. }
  1817. DISPATCH_OPCODE;
  1818. OPCODE(OPCODE_CALL_NATIVE_STATIC) {
  1819. LOAD_INSTRUCTION_ARGS
  1820. CHECK_SPACE(3 + instr_arg_count);
  1821. ip += instr_arg_count;
  1822. GD_ERR_BREAK(_code_ptr[ip + 1] < 0 || _code_ptr[ip + 1] >= _methods_count);
  1823. MethodBind *method = _methods_ptr[_code_ptr[ip + 1]];
  1824. int argc = _code_ptr[ip + 2];
  1825. GD_ERR_BREAK(argc < 0);
  1826. GET_INSTRUCTION_ARG(ret, argc);
  1827. const Variant **argptrs = const_cast<const Variant **>(instruction_args);
  1828. #ifdef DEBUG_ENABLED
  1829. uint64_t call_time = 0;
  1830. if (GDScriptLanguage::get_singleton()->profiling && GDScriptLanguage::get_singleton()->profile_native_calls) {
  1831. call_time = OS::get_singleton()->get_ticks_usec();
  1832. }
  1833. #endif
  1834. Callable::CallError err;
  1835. *ret = method->call(nullptr, argptrs, argc, err);
  1836. #ifdef DEBUG_ENABLED
  1837. if (GDScriptLanguage::get_singleton()->profiling && GDScriptLanguage::get_singleton()->profile_native_calls) {
  1838. uint64_t t_taken = OS::get_singleton()->get_ticks_usec() - call_time;
  1839. _profile_native_call(t_taken, method->get_name(), method->get_instance_class());
  1840. function_call_time += t_taken;
  1841. }
  1842. #endif
  1843. if (err.error != Callable::CallError::CALL_OK) {
  1844. err_text = _get_call_error("static function '" + method->get_name().operator String() + "' in type '" + method->get_instance_class().operator String() + "'", argptrs, argc, *ret, err);
  1845. OPCODE_BREAK;
  1846. }
  1847. ip += 3;
  1848. }
  1849. DISPATCH_OPCODE;
  1850. OPCODE(OPCODE_CALL_NATIVE_STATIC_VALIDATED_RETURN) {
  1851. LOAD_INSTRUCTION_ARGS
  1852. CHECK_SPACE(3 + instr_arg_count);
  1853. ip += instr_arg_count;
  1854. int argc = _code_ptr[ip + 1];
  1855. GD_ERR_BREAK(argc < 0);
  1856. GD_ERR_BREAK(_code_ptr[ip + 2] < 0 || _code_ptr[ip + 2] >= _methods_count);
  1857. MethodBind *method = _methods_ptr[_code_ptr[ip + 2]];
  1858. Variant **argptrs = instruction_args;
  1859. #ifdef DEBUG_ENABLED
  1860. uint64_t call_time = 0;
  1861. if (GDScriptLanguage::get_singleton()->profiling && GDScriptLanguage::get_singleton()->profile_native_calls) {
  1862. call_time = OS::get_singleton()->get_ticks_usec();
  1863. }
  1864. #endif
  1865. GET_INSTRUCTION_ARG(ret, argc);
  1866. method->validated_call(nullptr, (const Variant **)argptrs, ret);
  1867. #ifdef DEBUG_ENABLED
  1868. if (GDScriptLanguage::get_singleton()->profiling && GDScriptLanguage::get_singleton()->profile_native_calls) {
  1869. uint64_t t_taken = OS::get_singleton()->get_ticks_usec() - call_time;
  1870. _profile_native_call(t_taken, method->get_name(), method->get_instance_class());
  1871. function_call_time += t_taken;
  1872. }
  1873. #endif
  1874. ip += 3;
  1875. }
  1876. DISPATCH_OPCODE;
  1877. OPCODE(OPCODE_CALL_NATIVE_STATIC_VALIDATED_NO_RETURN) {
  1878. LOAD_INSTRUCTION_ARGS
  1879. CHECK_SPACE(3 + instr_arg_count);
  1880. ip += instr_arg_count;
  1881. int argc = _code_ptr[ip + 1];
  1882. GD_ERR_BREAK(argc < 0);
  1883. GD_ERR_BREAK(_code_ptr[ip + 2] < 0 || _code_ptr[ip + 2] >= _methods_count);
  1884. MethodBind *method = _methods_ptr[_code_ptr[ip + 2]];
  1885. Variant **argptrs = instruction_args;
  1886. #ifdef DEBUG_ENABLED
  1887. uint64_t call_time = 0;
  1888. if (GDScriptLanguage::get_singleton()->profiling && GDScriptLanguage::get_singleton()->profile_native_calls) {
  1889. call_time = OS::get_singleton()->get_ticks_usec();
  1890. }
  1891. #endif
  1892. GET_INSTRUCTION_ARG(ret, argc);
  1893. VariantInternal::initialize(ret, Variant::NIL);
  1894. method->validated_call(nullptr, (const Variant **)argptrs, nullptr);
  1895. #ifdef DEBUG_ENABLED
  1896. if (GDScriptLanguage::get_singleton()->profiling && GDScriptLanguage::get_singleton()->profile_native_calls) {
  1897. uint64_t t_taken = OS::get_singleton()->get_ticks_usec() - call_time;
  1898. _profile_native_call(t_taken, method->get_name(), method->get_instance_class());
  1899. function_call_time += t_taken;
  1900. }
  1901. #endif
  1902. ip += 3;
  1903. }
  1904. DISPATCH_OPCODE;
  1905. OPCODE(OPCODE_CALL_METHOD_BIND_VALIDATED_RETURN) {
  1906. LOAD_INSTRUCTION_ARGS
  1907. CHECK_SPACE(3 + instr_arg_count);
  1908. ip += instr_arg_count;
  1909. int argc = _code_ptr[ip + 1];
  1910. GD_ERR_BREAK(argc < 0);
  1911. GD_ERR_BREAK(_code_ptr[ip + 2] < 0 || _code_ptr[ip + 2] >= _methods_count);
  1912. MethodBind *method = _methods_ptr[_code_ptr[ip + 2]];
  1913. GET_INSTRUCTION_ARG(base, argc);
  1914. #ifdef DEBUG_ENABLED
  1915. bool freed = false;
  1916. Object *base_obj = base->get_validated_object_with_check(freed);
  1917. if (freed) {
  1918. err_text = METHOD_CALL_ON_FREED_INSTANCE_ERROR(method);
  1919. OPCODE_BREAK;
  1920. } else if (!base_obj) {
  1921. err_text = METHOD_CALL_ON_NULL_VALUE_ERROR(method);
  1922. OPCODE_BREAK;
  1923. }
  1924. #else
  1925. Object *base_obj = *VariantInternal::get_object(base);
  1926. #endif
  1927. Variant **argptrs = instruction_args;
  1928. #ifdef DEBUG_ENABLED
  1929. uint64_t call_time = 0;
  1930. if (GDScriptLanguage::get_singleton()->profiling && GDScriptLanguage::get_singleton()->profile_native_calls) {
  1931. call_time = OS::get_singleton()->get_ticks_usec();
  1932. }
  1933. #endif
  1934. GET_INSTRUCTION_ARG(ret, argc + 1);
  1935. method->validated_call(base_obj, (const Variant **)argptrs, ret);
  1936. #ifdef DEBUG_ENABLED
  1937. if (GDScriptLanguage::get_singleton()->profiling && GDScriptLanguage::get_singleton()->profile_native_calls) {
  1938. uint64_t t_taken = OS::get_singleton()->get_ticks_usec() - call_time;
  1939. _profile_native_call(t_taken, method->get_name(), method->get_instance_class());
  1940. function_call_time += t_taken;
  1941. }
  1942. #endif
  1943. ip += 3;
  1944. }
  1945. DISPATCH_OPCODE;
  1946. OPCODE(OPCODE_CALL_METHOD_BIND_VALIDATED_NO_RETURN) {
  1947. LOAD_INSTRUCTION_ARGS
  1948. CHECK_SPACE(3 + instr_arg_count);
  1949. ip += instr_arg_count;
  1950. int argc = _code_ptr[ip + 1];
  1951. GD_ERR_BREAK(argc < 0);
  1952. GD_ERR_BREAK(_code_ptr[ip + 2] < 0 || _code_ptr[ip + 2] >= _methods_count);
  1953. MethodBind *method = _methods_ptr[_code_ptr[ip + 2]];
  1954. GET_INSTRUCTION_ARG(base, argc);
  1955. #ifdef DEBUG_ENABLED
  1956. bool freed = false;
  1957. Object *base_obj = base->get_validated_object_with_check(freed);
  1958. if (freed) {
  1959. err_text = METHOD_CALL_ON_FREED_INSTANCE_ERROR(method);
  1960. OPCODE_BREAK;
  1961. } else if (!base_obj) {
  1962. err_text = METHOD_CALL_ON_NULL_VALUE_ERROR(method);
  1963. OPCODE_BREAK;
  1964. }
  1965. #else
  1966. Object *base_obj = *VariantInternal::get_object(base);
  1967. #endif
  1968. Variant **argptrs = instruction_args;
  1969. #ifdef DEBUG_ENABLED
  1970. uint64_t call_time = 0;
  1971. if (GDScriptLanguage::get_singleton()->profiling && GDScriptLanguage::get_singleton()->profile_native_calls) {
  1972. call_time = OS::get_singleton()->get_ticks_usec();
  1973. }
  1974. #endif
  1975. GET_INSTRUCTION_ARG(ret, argc + 1);
  1976. VariantInternal::initialize(ret, Variant::NIL);
  1977. method->validated_call(base_obj, (const Variant **)argptrs, nullptr);
  1978. #ifdef DEBUG_ENABLED
  1979. if (GDScriptLanguage::get_singleton()->profiling && GDScriptLanguage::get_singleton()->profile_native_calls) {
  1980. uint64_t t_taken = OS::get_singleton()->get_ticks_usec() - call_time;
  1981. _profile_native_call(t_taken, method->get_name(), method->get_instance_class());
  1982. function_call_time += t_taken;
  1983. }
  1984. #endif
  1985. ip += 3;
  1986. }
  1987. DISPATCH_OPCODE;
  1988. OPCODE(OPCODE_CALL_BUILTIN_TYPE_VALIDATED) {
  1989. LOAD_INSTRUCTION_ARGS
  1990. CHECK_SPACE(3 + instr_arg_count);
  1991. ip += instr_arg_count;
  1992. int argc = _code_ptr[ip + 1];
  1993. GD_ERR_BREAK(argc < 0);
  1994. GET_INSTRUCTION_ARG(base, argc);
  1995. GD_ERR_BREAK(_code_ptr[ip + 2] < 0 || _code_ptr[ip + 2] >= _builtin_methods_count);
  1996. Variant::ValidatedBuiltInMethod method = _builtin_methods_ptr[_code_ptr[ip + 2]];
  1997. Variant **argptrs = instruction_args;
  1998. GET_INSTRUCTION_ARG(ret, argc + 1);
  1999. method(base, (const Variant **)argptrs, argc, ret);
  2000. ip += 3;
  2001. }
  2002. DISPATCH_OPCODE;
  2003. OPCODE(OPCODE_CALL_UTILITY) {
  2004. LOAD_INSTRUCTION_ARGS
  2005. CHECK_SPACE(3 + instr_arg_count);
  2006. ip += instr_arg_count;
  2007. int argc = _code_ptr[ip + 1];
  2008. GD_ERR_BREAK(argc < 0);
  2009. GD_ERR_BREAK(_code_ptr[ip + 2] < 0 || _code_ptr[ip + 2] >= _global_names_count);
  2010. StringName function = _global_names_ptr[_code_ptr[ip + 2]];
  2011. Variant **argptrs = instruction_args;
  2012. GET_INSTRUCTION_ARG(dst, argc);
  2013. Callable::CallError err;
  2014. Variant::call_utility_function(function, dst, (const Variant **)argptrs, argc, err);
  2015. #ifdef DEBUG_ENABLED
  2016. if (err.error != Callable::CallError::CALL_OK) {
  2017. String methodstr = function;
  2018. if (dst->get_type() == Variant::STRING && !dst->operator String().is_empty()) {
  2019. // Call provided error string.
  2020. err_text = vformat(R"*(Error calling utility function "%s()": %s)*", methodstr, *dst);
  2021. } else {
  2022. err_text = _get_call_error(vformat(R"*(utility function "%s()")*", methodstr), (const Variant **)argptrs, argc, *dst, err);
  2023. }
  2024. OPCODE_BREAK;
  2025. }
  2026. #endif
  2027. ip += 3;
  2028. }
  2029. DISPATCH_OPCODE;
  2030. OPCODE(OPCODE_CALL_UTILITY_VALIDATED) {
  2031. LOAD_INSTRUCTION_ARGS
  2032. CHECK_SPACE(3 + instr_arg_count);
  2033. ip += instr_arg_count;
  2034. int argc = _code_ptr[ip + 1];
  2035. GD_ERR_BREAK(argc < 0);
  2036. GD_ERR_BREAK(_code_ptr[ip + 2] < 0 || _code_ptr[ip + 2] >= _utilities_count);
  2037. Variant::ValidatedUtilityFunction function = _utilities_ptr[_code_ptr[ip + 2]];
  2038. Variant **argptrs = instruction_args;
  2039. GET_INSTRUCTION_ARG(dst, argc);
  2040. function(dst, (const Variant **)argptrs, argc);
  2041. ip += 3;
  2042. }
  2043. DISPATCH_OPCODE;
  2044. OPCODE(OPCODE_CALL_GDSCRIPT_UTILITY) {
  2045. LOAD_INSTRUCTION_ARGS
  2046. CHECK_SPACE(3 + instr_arg_count);
  2047. ip += instr_arg_count;
  2048. int argc = _code_ptr[ip + 1];
  2049. GD_ERR_BREAK(argc < 0);
  2050. GD_ERR_BREAK(_code_ptr[ip + 2] < 0 || _code_ptr[ip + 2] >= _gds_utilities_count);
  2051. GDScriptUtilityFunctions::FunctionPtr function = _gds_utilities_ptr[_code_ptr[ip + 2]];
  2052. Variant **argptrs = instruction_args;
  2053. GET_INSTRUCTION_ARG(dst, argc);
  2054. Callable::CallError err;
  2055. function(dst, (const Variant **)argptrs, argc, err);
  2056. #ifdef DEBUG_ENABLED
  2057. if (err.error != Callable::CallError::CALL_OK) {
  2058. String methodstr = gds_utilities_names[_code_ptr[ip + 2]];
  2059. if (dst->get_type() == Variant::STRING && !dst->operator String().is_empty()) {
  2060. // Call provided error string.
  2061. err_text = vformat(R"*(Error calling GDScript utility function "%s()": %s)*", methodstr, *dst);
  2062. } else {
  2063. err_text = _get_call_error(vformat(R"*(GDScript utility function "%s()")*", methodstr), (const Variant **)argptrs, argc, *dst, err);
  2064. }
  2065. OPCODE_BREAK;
  2066. }
  2067. #endif
  2068. ip += 3;
  2069. }
  2070. DISPATCH_OPCODE;
  2071. OPCODE(OPCODE_CALL_SELF_BASE) {
  2072. LOAD_INSTRUCTION_ARGS
  2073. CHECK_SPACE(3 + instr_arg_count);
  2074. ip += instr_arg_count;
  2075. int argc = _code_ptr[ip + 1];
  2076. GD_ERR_BREAK(argc < 0);
  2077. int self_fun = _code_ptr[ip + 2];
  2078. #ifdef DEBUG_ENABLED
  2079. if (self_fun < 0 || self_fun >= _global_names_count) {
  2080. err_text = "compiler bug, function name not found";
  2081. OPCODE_BREAK;
  2082. }
  2083. #endif
  2084. const StringName *methodname = &_global_names_ptr[self_fun];
  2085. Variant **argptrs = instruction_args;
  2086. GET_INSTRUCTION_ARG(dst, argc);
  2087. const GDScript *gds = _script;
  2088. HashMap<StringName, GDScriptFunction *>::ConstIterator E;
  2089. while (gds->base.ptr()) {
  2090. gds = gds->base.ptr();
  2091. E = gds->member_functions.find(*methodname);
  2092. if (E) {
  2093. break;
  2094. }
  2095. }
  2096. Callable::CallError err;
  2097. if (E) {
  2098. *dst = E->value->call(p_instance, (const Variant **)argptrs, argc, err);
  2099. } else if (gds->native.ptr()) {
  2100. if (*methodname != GDScriptLanguage::get_singleton()->strings._init) {
  2101. MethodBind *mb = ClassDB::get_method(gds->native->get_name(), *methodname);
  2102. if (!mb) {
  2103. err.error = Callable::CallError::CALL_ERROR_INVALID_METHOD;
  2104. } else {
  2105. *dst = mb->call(p_instance->owner, (const Variant **)argptrs, argc, err);
  2106. }
  2107. } else {
  2108. err.error = Callable::CallError::CALL_OK;
  2109. }
  2110. } else {
  2111. if (*methodname != GDScriptLanguage::get_singleton()->strings._init) {
  2112. err.error = Callable::CallError::CALL_ERROR_INVALID_METHOD;
  2113. } else {
  2114. err.error = Callable::CallError::CALL_OK;
  2115. }
  2116. }
  2117. if (err.error != Callable::CallError::CALL_OK) {
  2118. String methodstr = *methodname;
  2119. err_text = _get_call_error("function '" + methodstr + "'", (const Variant **)argptrs, argc, *dst, err);
  2120. OPCODE_BREAK;
  2121. }
  2122. ip += 3;
  2123. }
  2124. DISPATCH_OPCODE;
  2125. OPCODE(OPCODE_AWAIT) {
  2126. CHECK_SPACE(2);
  2127. // Do the one-shot connect.
  2128. GET_VARIANT_PTR(argobj, 0);
  2129. Signal sig;
  2130. bool is_signal = true;
  2131. {
  2132. Variant result = *argobj;
  2133. if (argobj->get_type() == Variant::OBJECT) {
  2134. bool was_freed = false;
  2135. Object *obj = argobj->get_validated_object_with_check(was_freed);
  2136. if (was_freed) {
  2137. err_text = "Trying to await on a freed object.";
  2138. OPCODE_BREAK;
  2139. }
  2140. // Is this even possible to be null at this point?
  2141. if (obj) {
  2142. if (obj->is_class_ptr(GDScriptFunctionState::get_class_ptr_static())) {
  2143. result = Signal(obj, SNAME("completed"));
  2144. }
  2145. }
  2146. }
  2147. if (result.get_type() != Variant::SIGNAL) {
  2148. // Not async, return immediately using the target from OPCODE_AWAIT_RESUME.
  2149. GET_VARIANT_PTR(target, 2);
  2150. *target = result;
  2151. ip += 4; // Skip OPCODE_AWAIT_RESUME and its data.
  2152. is_signal = false;
  2153. } else {
  2154. sig = result;
  2155. }
  2156. }
  2157. if (is_signal) {
  2158. Ref<GDScriptFunctionState> gdfs = memnew(GDScriptFunctionState);
  2159. gdfs->function = this;
  2160. gdfs->state.stack.resize(alloca_size);
  2161. // First `FIXED_ADDRESSES_MAX` stack addresses are special, so we just skip them here.
  2162. for (int i = FIXED_ADDRESSES_MAX; i < _stack_size; i++) {
  2163. memnew_placement(&gdfs->state.stack.write[sizeof(Variant) * i], Variant(stack[i]));
  2164. }
  2165. gdfs->state.stack_size = _stack_size;
  2166. gdfs->state.ip = ip + 2;
  2167. gdfs->state.line = line;
  2168. gdfs->state.script = _script;
  2169. {
  2170. MutexLock lock(GDScriptLanguage::get_singleton()->mutex);
  2171. _script->pending_func_states.add(&gdfs->scripts_list);
  2172. if (p_instance) {
  2173. gdfs->state.instance = p_instance;
  2174. p_instance->pending_func_states.add(&gdfs->instances_list);
  2175. } else {
  2176. gdfs->state.instance = nullptr;
  2177. }
  2178. }
  2179. #ifdef DEBUG_ENABLED
  2180. gdfs->state.function_name = name;
  2181. gdfs->state.script_path = _script->get_script_path();
  2182. #endif
  2183. gdfs->state.defarg = defarg;
  2184. gdfs->function = this;
  2185. if (p_state) {
  2186. // Pass down the signal from the first state.
  2187. gdfs->state.completed = p_state->completed;
  2188. } else {
  2189. gdfs->state.completed = Signal(gdfs.ptr(), SNAME("completed"));
  2190. }
  2191. retvalue = gdfs;
  2192. Error err = sig.connect(Callable(gdfs.ptr(), "_signal_callback").bind(retvalue), Object::CONNECT_ONE_SHOT);
  2193. if (err != OK) {
  2194. err_text = "Error connecting to signal: " + sig.get_name() + " during await.";
  2195. OPCODE_BREAK;
  2196. }
  2197. awaited = true;
  2198. #ifdef DEBUG_ENABLED
  2199. exit_ok = true;
  2200. #endif
  2201. OPCODE_BREAK;
  2202. }
  2203. }
  2204. DISPATCH_OPCODE; // Needed for synchronous calls (when result is immediately available).
  2205. OPCODE(OPCODE_AWAIT_RESUME) {
  2206. CHECK_SPACE(2);
  2207. #ifdef DEBUG_ENABLED
  2208. if (!p_state) {
  2209. err_text = ("Invalid Resume (bug?)");
  2210. OPCODE_BREAK;
  2211. }
  2212. #endif
  2213. GET_VARIANT_PTR(result, 0);
  2214. *result = p_state->result;
  2215. ip += 2;
  2216. }
  2217. DISPATCH_OPCODE;
  2218. OPCODE(OPCODE_CREATE_LAMBDA) {
  2219. LOAD_INSTRUCTION_ARGS
  2220. CHECK_SPACE(2 + instr_arg_count);
  2221. ip += instr_arg_count;
  2222. int captures_count = _code_ptr[ip + 1];
  2223. GD_ERR_BREAK(captures_count < 0);
  2224. int lambda_index = _code_ptr[ip + 2];
  2225. GD_ERR_BREAK(lambda_index < 0 || lambda_index >= _lambdas_count);
  2226. GDScriptFunction *lambda = _lambdas_ptr[lambda_index];
  2227. Vector<Variant> captures;
  2228. captures.resize(captures_count);
  2229. for (int i = 0; i < captures_count; i++) {
  2230. GET_INSTRUCTION_ARG(arg, i);
  2231. captures.write[i] = *arg;
  2232. }
  2233. GDScriptLambdaCallable *callable = memnew(GDScriptLambdaCallable(Ref<GDScript>(script), lambda, captures));
  2234. GET_INSTRUCTION_ARG(result, captures_count);
  2235. *result = Callable(callable);
  2236. ip += 3;
  2237. }
  2238. DISPATCH_OPCODE;
  2239. OPCODE(OPCODE_CREATE_SELF_LAMBDA) {
  2240. LOAD_INSTRUCTION_ARGS
  2241. CHECK_SPACE(2 + instr_arg_count);
  2242. GD_ERR_BREAK(p_instance == nullptr);
  2243. ip += instr_arg_count;
  2244. int captures_count = _code_ptr[ip + 1];
  2245. GD_ERR_BREAK(captures_count < 0);
  2246. int lambda_index = _code_ptr[ip + 2];
  2247. GD_ERR_BREAK(lambda_index < 0 || lambda_index >= _lambdas_count);
  2248. GDScriptFunction *lambda = _lambdas_ptr[lambda_index];
  2249. Vector<Variant> captures;
  2250. captures.resize(captures_count);
  2251. for (int i = 0; i < captures_count; i++) {
  2252. GET_INSTRUCTION_ARG(arg, i);
  2253. captures.write[i] = *arg;
  2254. }
  2255. GDScriptLambdaSelfCallable *callable;
  2256. if (Object::cast_to<RefCounted>(p_instance->owner)) {
  2257. callable = memnew(GDScriptLambdaSelfCallable(Ref<RefCounted>(Object::cast_to<RefCounted>(p_instance->owner)), lambda, captures));
  2258. } else {
  2259. callable = memnew(GDScriptLambdaSelfCallable(p_instance->owner, lambda, captures));
  2260. }
  2261. GET_INSTRUCTION_ARG(result, captures_count);
  2262. *result = Callable(callable);
  2263. ip += 3;
  2264. }
  2265. DISPATCH_OPCODE;
  2266. OPCODE(OPCODE_JUMP) {
  2267. CHECK_SPACE(2);
  2268. int to = _code_ptr[ip + 1];
  2269. GD_ERR_BREAK(to < 0 || to > _code_size);
  2270. ip = to;
  2271. }
  2272. DISPATCH_OPCODE;
  2273. OPCODE(OPCODE_JUMP_IF) {
  2274. CHECK_SPACE(3);
  2275. GET_VARIANT_PTR(test, 0);
  2276. bool result = test->booleanize();
  2277. if (result) {
  2278. int to = _code_ptr[ip + 2];
  2279. GD_ERR_BREAK(to < 0 || to > _code_size);
  2280. ip = to;
  2281. } else {
  2282. ip += 3;
  2283. }
  2284. }
  2285. DISPATCH_OPCODE;
  2286. OPCODE(OPCODE_JUMP_IF_NOT) {
  2287. CHECK_SPACE(3);
  2288. GET_VARIANT_PTR(test, 0);
  2289. bool result = test->booleanize();
  2290. if (!result) {
  2291. int to = _code_ptr[ip + 2];
  2292. GD_ERR_BREAK(to < 0 || to > _code_size);
  2293. ip = to;
  2294. } else {
  2295. ip += 3;
  2296. }
  2297. }
  2298. DISPATCH_OPCODE;
  2299. OPCODE(OPCODE_JUMP_TO_DEF_ARGUMENT) {
  2300. CHECK_SPACE(2);
  2301. ip = _default_arg_ptr[defarg];
  2302. }
  2303. DISPATCH_OPCODE;
  2304. OPCODE(OPCODE_JUMP_IF_SHARED) {
  2305. CHECK_SPACE(3);
  2306. GET_VARIANT_PTR(val, 0);
  2307. if (val->is_shared()) {
  2308. int to = _code_ptr[ip + 2];
  2309. GD_ERR_BREAK(to < 0 || to > _code_size);
  2310. ip = to;
  2311. } else {
  2312. ip += 3;
  2313. }
  2314. }
  2315. DISPATCH_OPCODE;
  2316. OPCODE(OPCODE_RETURN) {
  2317. CHECK_SPACE(2);
  2318. GET_VARIANT_PTR(r, 0);
  2319. retvalue = *r;
  2320. #ifdef DEBUG_ENABLED
  2321. exit_ok = true;
  2322. #endif
  2323. OPCODE_BREAK;
  2324. }
  2325. OPCODE(OPCODE_RETURN_TYPED_BUILTIN) {
  2326. CHECK_SPACE(3);
  2327. GET_VARIANT_PTR(r, 0);
  2328. Variant::Type ret_type = (Variant::Type)_code_ptr[ip + 2];
  2329. GD_ERR_BREAK(ret_type < 0 || ret_type >= Variant::VARIANT_MAX);
  2330. if (r->get_type() != ret_type) {
  2331. if (Variant::can_convert_strict(r->get_type(), ret_type)) {
  2332. Callable::CallError ce;
  2333. Variant::construct(ret_type, retvalue, const_cast<const Variant **>(&r), 1, ce);
  2334. } else {
  2335. #ifdef DEBUG_ENABLED
  2336. err_text = vformat(R"(Trying to return value of type "%s" from a function whose return type is "%s".)",
  2337. Variant::get_type_name(r->get_type()), Variant::get_type_name(ret_type));
  2338. #endif // DEBUG_ENABLED
  2339. // Construct a base type anyway so type constraints are met.
  2340. Callable::CallError ce;
  2341. Variant::construct(ret_type, retvalue, nullptr, 0, ce);
  2342. OPCODE_BREAK;
  2343. }
  2344. } else {
  2345. retvalue = *r;
  2346. }
  2347. #ifdef DEBUG_ENABLED
  2348. exit_ok = true;
  2349. #endif // DEBUG_ENABLED
  2350. OPCODE_BREAK;
  2351. }
  2352. OPCODE(OPCODE_RETURN_TYPED_ARRAY) {
  2353. CHECK_SPACE(5);
  2354. GET_VARIANT_PTR(r, 0);
  2355. GET_VARIANT_PTR(script_type, 1);
  2356. Variant::Type builtin_type = (Variant::Type)_code_ptr[ip + 3];
  2357. int native_type_idx = _code_ptr[ip + 4];
  2358. GD_ERR_BREAK(native_type_idx < 0 || native_type_idx >= _global_names_count);
  2359. const StringName native_type = _global_names_ptr[native_type_idx];
  2360. if (r->get_type() != Variant::ARRAY) {
  2361. #ifdef DEBUG_ENABLED
  2362. err_text = vformat(R"(Trying to return value of type "%s" from a function whose return type is "Array[%s]".)",
  2363. Variant::get_type_name(r->get_type()), Variant::get_type_name(builtin_type));
  2364. #endif
  2365. OPCODE_BREAK;
  2366. }
  2367. Array *array = VariantInternal::get_array(r);
  2368. if (array->get_typed_builtin() != ((uint32_t)builtin_type) || array->get_typed_class_name() != native_type || array->get_typed_script() != *script_type) {
  2369. #ifdef DEBUG_ENABLED
  2370. err_text = vformat(R"(Trying to return an array of type "%s" where expected return type is "Array[%s]".)",
  2371. _get_var_type(r), _get_element_type(builtin_type, native_type, *script_type));
  2372. #endif // DEBUG_ENABLED
  2373. OPCODE_BREAK;
  2374. }
  2375. retvalue = *array;
  2376. #ifdef DEBUG_ENABLED
  2377. exit_ok = true;
  2378. #endif // DEBUG_ENABLED
  2379. OPCODE_BREAK;
  2380. }
  2381. OPCODE(OPCODE_RETURN_TYPED_DICTIONARY) {
  2382. CHECK_SPACE(8);
  2383. GET_VARIANT_PTR(r, 0);
  2384. GET_VARIANT_PTR(key_script_type, 1);
  2385. Variant::Type key_builtin_type = (Variant::Type)_code_ptr[ip + 4];
  2386. int key_native_type_idx = _code_ptr[ip + 5];
  2387. GD_ERR_BREAK(key_native_type_idx < 0 || key_native_type_idx >= _global_names_count);
  2388. const StringName key_native_type = _global_names_ptr[key_native_type_idx];
  2389. GET_VARIANT_PTR(value_script_type, 2);
  2390. Variant::Type value_builtin_type = (Variant::Type)_code_ptr[ip + 6];
  2391. int value_native_type_idx = _code_ptr[ip + 7];
  2392. GD_ERR_BREAK(value_native_type_idx < 0 || value_native_type_idx >= _global_names_count);
  2393. const StringName value_native_type = _global_names_ptr[value_native_type_idx];
  2394. if (r->get_type() != Variant::DICTIONARY) {
  2395. #ifdef DEBUG_ENABLED
  2396. err_text = vformat(R"(Trying to return a value of type "%s" where expected return type is "Dictionary[%s, %s]".)",
  2397. _get_var_type(r), _get_element_type(key_builtin_type, key_native_type, *key_script_type),
  2398. _get_element_type(value_builtin_type, value_native_type, *value_script_type));
  2399. #endif // DEBUG_ENABLED
  2400. OPCODE_BREAK;
  2401. }
  2402. Dictionary *dictionary = VariantInternal::get_dictionary(r);
  2403. if (dictionary->get_typed_key_builtin() != ((uint32_t)key_builtin_type) || dictionary->get_typed_key_class_name() != key_native_type || dictionary->get_typed_key_script() != *key_script_type ||
  2404. dictionary->get_typed_value_builtin() != ((uint32_t)value_builtin_type) || dictionary->get_typed_value_class_name() != value_native_type || dictionary->get_typed_value_script() != *value_script_type) {
  2405. #ifdef DEBUG_ENABLED
  2406. err_text = vformat(R"(Trying to return a dictionary of type "%s" where expected return type is "Dictionary[%s, %s]".)",
  2407. _get_var_type(r), _get_element_type(key_builtin_type, key_native_type, *key_script_type),
  2408. _get_element_type(value_builtin_type, value_native_type, *value_script_type));
  2409. #endif // DEBUG_ENABLED
  2410. OPCODE_BREAK;
  2411. }
  2412. retvalue = *dictionary;
  2413. #ifdef DEBUG_ENABLED
  2414. exit_ok = true;
  2415. #endif // DEBUG_ENABLED
  2416. OPCODE_BREAK;
  2417. }
  2418. OPCODE(OPCODE_RETURN_TYPED_NATIVE) {
  2419. CHECK_SPACE(3);
  2420. GET_VARIANT_PTR(r, 0);
  2421. GET_VARIANT_PTR(type, 1);
  2422. GDScriptNativeClass *nc = Object::cast_to<GDScriptNativeClass>(type->operator Object *());
  2423. GD_ERR_BREAK(!nc);
  2424. if (r->get_type() != Variant::OBJECT && r->get_type() != Variant::NIL) {
  2425. err_text = vformat(R"(Trying to return value of type "%s" from a function whose return type is "%s".)",
  2426. Variant::get_type_name(r->get_type()), nc->get_name());
  2427. OPCODE_BREAK;
  2428. }
  2429. #ifdef DEBUG_ENABLED
  2430. bool freed = false;
  2431. Object *ret_obj = r->get_validated_object_with_check(freed);
  2432. if (freed) {
  2433. err_text = "Trying to return a previously freed instance.";
  2434. OPCODE_BREAK;
  2435. }
  2436. #else
  2437. Object *ret_obj = r->operator Object *();
  2438. #endif // DEBUG_ENABLED
  2439. if (ret_obj && !ClassDB::is_parent_class(ret_obj->get_class_name(), nc->get_name())) {
  2440. #ifdef DEBUG_ENABLED
  2441. err_text = vformat(R"(Trying to return value of type "%s" from a function whose return type is "%s".)",
  2442. ret_obj->get_class_name(), nc->get_name());
  2443. #endif // DEBUG_ENABLED
  2444. OPCODE_BREAK;
  2445. }
  2446. retvalue = *r;
  2447. #ifdef DEBUG_ENABLED
  2448. exit_ok = true;
  2449. #endif // DEBUG_ENABLED
  2450. OPCODE_BREAK;
  2451. }
  2452. OPCODE(OPCODE_RETURN_TYPED_SCRIPT) {
  2453. CHECK_SPACE(3);
  2454. GET_VARIANT_PTR(r, 0);
  2455. GET_VARIANT_PTR(type, 1);
  2456. Script *base_type = Object::cast_to<Script>(type->operator Object *());
  2457. GD_ERR_BREAK(!base_type);
  2458. if (r->get_type() != Variant::OBJECT && r->get_type() != Variant::NIL) {
  2459. #ifdef DEBUG_ENABLED
  2460. err_text = vformat(R"(Trying to return value of type "%s" from a function whose return type is "%s".)",
  2461. Variant::get_type_name(r->get_type()), GDScript::debug_get_script_name(Ref<Script>(base_type)));
  2462. #endif // DEBUG_ENABLED
  2463. OPCODE_BREAK;
  2464. }
  2465. #ifdef DEBUG_ENABLED
  2466. bool freed = false;
  2467. Object *ret_obj = r->get_validated_object_with_check(freed);
  2468. if (freed) {
  2469. err_text = "Trying to return a previously freed instance.";
  2470. OPCODE_BREAK;
  2471. }
  2472. #else
  2473. Object *ret_obj = r->operator Object *();
  2474. #endif // DEBUG_ENABLED
  2475. if (ret_obj) {
  2476. ScriptInstance *ret_inst = ret_obj->get_script_instance();
  2477. if (!ret_inst) {
  2478. #ifdef DEBUG_ENABLED
  2479. err_text = vformat(R"(Trying to return value of type "%s" from a function whose return type is "%s".)",
  2480. ret_obj->get_class_name(), GDScript::debug_get_script_name(Ref<GDScript>(base_type)));
  2481. #endif // DEBUG_ENABLED
  2482. OPCODE_BREAK;
  2483. }
  2484. Script *ret_type = ret_obj->get_script_instance()->get_script().ptr();
  2485. bool valid = false;
  2486. while (ret_type) {
  2487. if (ret_type == base_type) {
  2488. valid = true;
  2489. break;
  2490. }
  2491. ret_type = ret_type->get_base_script().ptr();
  2492. }
  2493. if (!valid) {
  2494. #ifdef DEBUG_ENABLED
  2495. err_text = vformat(R"(Trying to return value of type "%s" from a function whose return type is "%s".)",
  2496. GDScript::debug_get_script_name(ret_obj->get_script_instance()->get_script()), GDScript::debug_get_script_name(Ref<GDScript>(base_type)));
  2497. #endif // DEBUG_ENABLED
  2498. OPCODE_BREAK;
  2499. }
  2500. }
  2501. retvalue = *r;
  2502. #ifdef DEBUG_ENABLED
  2503. exit_ok = true;
  2504. #endif // DEBUG_ENABLED
  2505. OPCODE_BREAK;
  2506. }
  2507. OPCODE(OPCODE_ITERATE_BEGIN) {
  2508. CHECK_SPACE(8); // Space for this and a regular iterate.
  2509. GET_VARIANT_PTR(counter, 0);
  2510. GET_VARIANT_PTR(container, 1);
  2511. *counter = Variant();
  2512. bool valid;
  2513. if (!container->iter_init(*counter, valid)) {
  2514. #ifdef DEBUG_ENABLED
  2515. if (!valid) {
  2516. err_text = "Unable to iterate on object of type '" + Variant::get_type_name(container->get_type()) + "'.";
  2517. OPCODE_BREAK;
  2518. }
  2519. #endif
  2520. int jumpto = _code_ptr[ip + 4];
  2521. GD_ERR_BREAK(jumpto < 0 || jumpto > _code_size);
  2522. ip = jumpto;
  2523. } else {
  2524. GET_VARIANT_PTR(iterator, 2);
  2525. *iterator = container->iter_get(*counter, valid);
  2526. #ifdef DEBUG_ENABLED
  2527. if (!valid) {
  2528. err_text = "Unable to obtain iterator object of type '" + Variant::get_type_name(container->get_type()) + "'.";
  2529. OPCODE_BREAK;
  2530. }
  2531. #endif
  2532. ip += 5; // Skip regular iterate which is always next.
  2533. }
  2534. }
  2535. DISPATCH_OPCODE;
  2536. OPCODE(OPCODE_ITERATE_BEGIN_INT) {
  2537. CHECK_SPACE(8); // Check space for iterate instruction too.
  2538. GET_VARIANT_PTR(counter, 0);
  2539. GET_VARIANT_PTR(container, 1);
  2540. int64_t size = *VariantInternal::get_int(container);
  2541. VariantInternal::initialize(counter, Variant::INT);
  2542. *VariantInternal::get_int(counter) = 0;
  2543. if (size > 0) {
  2544. GET_VARIANT_PTR(iterator, 2);
  2545. VariantInternal::initialize(iterator, Variant::INT);
  2546. *VariantInternal::get_int(iterator) = 0;
  2547. // Skip regular iterate.
  2548. ip += 5;
  2549. } else {
  2550. // Jump to end of loop.
  2551. int jumpto = _code_ptr[ip + 4];
  2552. GD_ERR_BREAK(jumpto < 0 || jumpto > _code_size);
  2553. ip = jumpto;
  2554. }
  2555. }
  2556. DISPATCH_OPCODE;
  2557. OPCODE(OPCODE_ITERATE_BEGIN_FLOAT) {
  2558. CHECK_SPACE(8); // Check space for iterate instruction too.
  2559. GET_VARIANT_PTR(counter, 0);
  2560. GET_VARIANT_PTR(container, 1);
  2561. double size = *VariantInternal::get_float(container);
  2562. VariantInternal::initialize(counter, Variant::FLOAT);
  2563. *VariantInternal::get_float(counter) = 0.0;
  2564. if (size > 0) {
  2565. GET_VARIANT_PTR(iterator, 2);
  2566. VariantInternal::initialize(iterator, Variant::FLOAT);
  2567. *VariantInternal::get_float(iterator) = 0;
  2568. // Skip regular iterate.
  2569. ip += 5;
  2570. } else {
  2571. // Jump to end of loop.
  2572. int jumpto = _code_ptr[ip + 4];
  2573. GD_ERR_BREAK(jumpto < 0 || jumpto > _code_size);
  2574. ip = jumpto;
  2575. }
  2576. }
  2577. DISPATCH_OPCODE;
  2578. OPCODE(OPCODE_ITERATE_BEGIN_VECTOR2) {
  2579. CHECK_SPACE(8); // Check space for iterate instruction too.
  2580. GET_VARIANT_PTR(counter, 0);
  2581. GET_VARIANT_PTR(container, 1);
  2582. Vector2 *bounds = VariantInternal::get_vector2(container);
  2583. VariantInternal::initialize(counter, Variant::FLOAT);
  2584. *VariantInternal::get_float(counter) = bounds->x;
  2585. if (bounds->x < bounds->y) {
  2586. GET_VARIANT_PTR(iterator, 2);
  2587. VariantInternal::initialize(iterator, Variant::FLOAT);
  2588. *VariantInternal::get_float(iterator) = bounds->x;
  2589. // Skip regular iterate.
  2590. ip += 5;
  2591. } else {
  2592. // Jump to end of loop.
  2593. int jumpto = _code_ptr[ip + 4];
  2594. GD_ERR_BREAK(jumpto < 0 || jumpto > _code_size);
  2595. ip = jumpto;
  2596. }
  2597. }
  2598. DISPATCH_OPCODE;
  2599. OPCODE(OPCODE_ITERATE_BEGIN_VECTOR2I) {
  2600. CHECK_SPACE(8); // Check space for iterate instruction too.
  2601. GET_VARIANT_PTR(counter, 0);
  2602. GET_VARIANT_PTR(container, 1);
  2603. Vector2i *bounds = VariantInternal::get_vector2i(container);
  2604. VariantInternal::initialize(counter, Variant::FLOAT);
  2605. *VariantInternal::get_int(counter) = bounds->x;
  2606. if (bounds->x < bounds->y) {
  2607. GET_VARIANT_PTR(iterator, 2);
  2608. VariantInternal::initialize(iterator, Variant::INT);
  2609. *VariantInternal::get_int(iterator) = bounds->x;
  2610. // Skip regular iterate.
  2611. ip += 5;
  2612. } else {
  2613. // Jump to end of loop.
  2614. int jumpto = _code_ptr[ip + 4];
  2615. GD_ERR_BREAK(jumpto < 0 || jumpto > _code_size);
  2616. ip = jumpto;
  2617. }
  2618. }
  2619. DISPATCH_OPCODE;
  2620. OPCODE(OPCODE_ITERATE_BEGIN_VECTOR3) {
  2621. CHECK_SPACE(8); // Check space for iterate instruction too.
  2622. GET_VARIANT_PTR(counter, 0);
  2623. GET_VARIANT_PTR(container, 1);
  2624. Vector3 *bounds = VariantInternal::get_vector3(container);
  2625. double from = bounds->x;
  2626. double to = bounds->y;
  2627. double step = bounds->z;
  2628. VariantInternal::initialize(counter, Variant::FLOAT);
  2629. *VariantInternal::get_float(counter) = from;
  2630. bool do_continue = from == to ? false : (from < to ? step > 0 : step < 0);
  2631. if (do_continue) {
  2632. GET_VARIANT_PTR(iterator, 2);
  2633. VariantInternal::initialize(iterator, Variant::FLOAT);
  2634. *VariantInternal::get_float(iterator) = from;
  2635. // Skip regular iterate.
  2636. ip += 5;
  2637. } else {
  2638. // Jump to end of loop.
  2639. int jumpto = _code_ptr[ip + 4];
  2640. GD_ERR_BREAK(jumpto < 0 || jumpto > _code_size);
  2641. ip = jumpto;
  2642. }
  2643. }
  2644. DISPATCH_OPCODE;
  2645. OPCODE(OPCODE_ITERATE_BEGIN_VECTOR3I) {
  2646. CHECK_SPACE(8); // Check space for iterate instruction too.
  2647. GET_VARIANT_PTR(counter, 0);
  2648. GET_VARIANT_PTR(container, 1);
  2649. Vector3i *bounds = VariantInternal::get_vector3i(container);
  2650. int64_t from = bounds->x;
  2651. int64_t to = bounds->y;
  2652. int64_t step = bounds->z;
  2653. VariantInternal::initialize(counter, Variant::INT);
  2654. *VariantInternal::get_int(counter) = from;
  2655. bool do_continue = from == to ? false : (from < to ? step > 0 : step < 0);
  2656. if (do_continue) {
  2657. GET_VARIANT_PTR(iterator, 2);
  2658. VariantInternal::initialize(iterator, Variant::INT);
  2659. *VariantInternal::get_int(iterator) = from;
  2660. // Skip regular iterate.
  2661. ip += 5;
  2662. } else {
  2663. // Jump to end of loop.
  2664. int jumpto = _code_ptr[ip + 4];
  2665. GD_ERR_BREAK(jumpto < 0 || jumpto > _code_size);
  2666. ip = jumpto;
  2667. }
  2668. }
  2669. DISPATCH_OPCODE;
  2670. OPCODE(OPCODE_ITERATE_BEGIN_STRING) {
  2671. CHECK_SPACE(8); // Check space for iterate instruction too.
  2672. GET_VARIANT_PTR(counter, 0);
  2673. GET_VARIANT_PTR(container, 1);
  2674. String *str = VariantInternal::get_string(container);
  2675. VariantInternal::initialize(counter, Variant::INT);
  2676. *VariantInternal::get_int(counter) = 0;
  2677. if (!str->is_empty()) {
  2678. GET_VARIANT_PTR(iterator, 2);
  2679. VariantInternal::initialize(iterator, Variant::STRING);
  2680. *VariantInternal::get_string(iterator) = str->substr(0, 1);
  2681. // Skip regular iterate.
  2682. ip += 5;
  2683. } else {
  2684. // Jump to end of loop.
  2685. int jumpto = _code_ptr[ip + 4];
  2686. GD_ERR_BREAK(jumpto < 0 || jumpto > _code_size);
  2687. ip = jumpto;
  2688. }
  2689. }
  2690. DISPATCH_OPCODE;
  2691. OPCODE(OPCODE_ITERATE_BEGIN_DICTIONARY) {
  2692. CHECK_SPACE(8); // Check space for iterate instruction too.
  2693. GET_VARIANT_PTR(counter, 0);
  2694. GET_VARIANT_PTR(container, 1);
  2695. Dictionary *dict = VariantInternal::get_dictionary(container);
  2696. const Variant *next = dict->next(nullptr);
  2697. if (!dict->is_empty()) {
  2698. GET_VARIANT_PTR(iterator, 2);
  2699. *counter = *next;
  2700. *iterator = *next;
  2701. // Skip regular iterate.
  2702. ip += 5;
  2703. } else {
  2704. // Jump to end of loop.
  2705. int jumpto = _code_ptr[ip + 4];
  2706. GD_ERR_BREAK(jumpto < 0 || jumpto > _code_size);
  2707. ip = jumpto;
  2708. }
  2709. }
  2710. DISPATCH_OPCODE;
  2711. OPCODE(OPCODE_ITERATE_BEGIN_ARRAY) {
  2712. CHECK_SPACE(8); // Check space for iterate instruction too.
  2713. GET_VARIANT_PTR(counter, 0);
  2714. GET_VARIANT_PTR(container, 1);
  2715. Array *array = VariantInternal::get_array(container);
  2716. VariantInternal::initialize(counter, Variant::INT);
  2717. *VariantInternal::get_int(counter) = 0;
  2718. if (!array->is_empty()) {
  2719. GET_VARIANT_PTR(iterator, 2);
  2720. *iterator = array->get(0);
  2721. // Skip regular iterate.
  2722. ip += 5;
  2723. } else {
  2724. // Jump to end of loop.
  2725. int jumpto = _code_ptr[ip + 4];
  2726. GD_ERR_BREAK(jumpto < 0 || jumpto > _code_size);
  2727. ip = jumpto;
  2728. }
  2729. }
  2730. DISPATCH_OPCODE;
  2731. #define OPCODE_ITERATE_BEGIN_PACKED_ARRAY(m_var_type, m_elem_type, m_get_func, m_var_ret_type, m_ret_type, m_ret_get_func) \
  2732. OPCODE(OPCODE_ITERATE_BEGIN_PACKED_##m_var_type##_ARRAY) { \
  2733. CHECK_SPACE(8); \
  2734. GET_VARIANT_PTR(counter, 0); \
  2735. GET_VARIANT_PTR(container, 1); \
  2736. Vector<m_elem_type> *array = VariantInternal::m_get_func(container); \
  2737. VariantInternal::initialize(counter, Variant::INT); \
  2738. *VariantInternal::get_int(counter) = 0; \
  2739. if (!array->is_empty()) { \
  2740. GET_VARIANT_PTR(iterator, 2); \
  2741. VariantInternal::initialize(iterator, Variant::m_var_ret_type); \
  2742. m_ret_type *it = VariantInternal::m_ret_get_func(iterator); \
  2743. *it = array->get(0); \
  2744. ip += 5; \
  2745. } else { \
  2746. int jumpto = _code_ptr[ip + 4]; \
  2747. GD_ERR_BREAK(jumpto < 0 || jumpto > _code_size); \
  2748. ip = jumpto; \
  2749. } \
  2750. } \
  2751. DISPATCH_OPCODE
  2752. OPCODE_ITERATE_BEGIN_PACKED_ARRAY(BYTE, uint8_t, get_byte_array, INT, int64_t, get_int);
  2753. OPCODE_ITERATE_BEGIN_PACKED_ARRAY(INT32, int32_t, get_int32_array, INT, int64_t, get_int);
  2754. OPCODE_ITERATE_BEGIN_PACKED_ARRAY(INT64, int64_t, get_int64_array, INT, int64_t, get_int);
  2755. OPCODE_ITERATE_BEGIN_PACKED_ARRAY(FLOAT32, float, get_float32_array, FLOAT, double, get_float);
  2756. OPCODE_ITERATE_BEGIN_PACKED_ARRAY(FLOAT64, double, get_float64_array, FLOAT, double, get_float);
  2757. OPCODE_ITERATE_BEGIN_PACKED_ARRAY(STRING, String, get_string_array, STRING, String, get_string);
  2758. OPCODE_ITERATE_BEGIN_PACKED_ARRAY(VECTOR2, Vector2, get_vector2_array, VECTOR2, Vector2, get_vector2);
  2759. OPCODE_ITERATE_BEGIN_PACKED_ARRAY(VECTOR3, Vector3, get_vector3_array, VECTOR3, Vector3, get_vector3);
  2760. OPCODE_ITERATE_BEGIN_PACKED_ARRAY(COLOR, Color, get_color_array, COLOR, Color, get_color);
  2761. OPCODE_ITERATE_BEGIN_PACKED_ARRAY(VECTOR4, Vector4, get_vector4_array, VECTOR4, Vector4, get_vector4);
  2762. OPCODE(OPCODE_ITERATE_BEGIN_OBJECT) {
  2763. CHECK_SPACE(4);
  2764. GET_VARIANT_PTR(counter, 0);
  2765. GET_VARIANT_PTR(container, 1);
  2766. #ifdef DEBUG_ENABLED
  2767. bool freed = false;
  2768. Object *obj = container->get_validated_object_with_check(freed);
  2769. if (freed) {
  2770. err_text = "Trying to iterate on a previously freed object.";
  2771. OPCODE_BREAK;
  2772. } else if (!obj) {
  2773. err_text = "Trying to iterate on a null value.";
  2774. OPCODE_BREAK;
  2775. }
  2776. #else
  2777. Object *obj = *VariantInternal::get_object(container);
  2778. #endif
  2779. *counter = Variant();
  2780. Array ref = { *counter };
  2781. Variant vref;
  2782. VariantInternal::initialize(&vref, Variant::ARRAY);
  2783. *VariantInternal::get_array(&vref) = ref;
  2784. const Variant *args[] = { &vref };
  2785. Callable::CallError ce;
  2786. Variant has_next = obj->callp(CoreStringName(_iter_init), args, 1, ce);
  2787. #ifdef DEBUG_ENABLED
  2788. if (ref.size() != 1 || ce.error != Callable::CallError::CALL_OK) {
  2789. err_text = vformat(R"(There was an error calling "_iter_next" on iterator object of type %s.)", *container);
  2790. OPCODE_BREAK;
  2791. }
  2792. #endif
  2793. if (!has_next.booleanize()) {
  2794. int jumpto = _code_ptr[ip + 4];
  2795. GD_ERR_BREAK(jumpto < 0 || jumpto > _code_size);
  2796. ip = jumpto;
  2797. } else {
  2798. *counter = ref[0];
  2799. GET_VARIANT_PTR(iterator, 2);
  2800. *iterator = obj->callp(CoreStringName(_iter_get), (const Variant **)&counter, 1, ce);
  2801. #ifdef DEBUG_ENABLED
  2802. if (ce.error != Callable::CallError::CALL_OK) {
  2803. err_text = vformat(R"(There was an error calling "_iter_get" on iterator object of type %s.)", *container);
  2804. OPCODE_BREAK;
  2805. }
  2806. #endif
  2807. ip += 5; // Loop again.
  2808. }
  2809. }
  2810. DISPATCH_OPCODE;
  2811. OPCODE(OPCODE_ITERATE_BEGIN_RANGE) {
  2812. CHECK_SPACE(6);
  2813. GET_VARIANT_PTR(counter, 0);
  2814. GET_VARIANT_PTR(from_ptr, 1);
  2815. GET_VARIANT_PTR(to_ptr, 2);
  2816. GET_VARIANT_PTR(step_ptr, 3);
  2817. int64_t from = *VariantInternal::get_int(from_ptr);
  2818. int64_t to = *VariantInternal::get_int(to_ptr);
  2819. int64_t step = *VariantInternal::get_int(step_ptr);
  2820. VariantInternal::initialize(counter, Variant::INT);
  2821. *VariantInternal::get_int(counter) = from;
  2822. bool do_continue = from == to ? false : (from < to ? step > 0 : step < 0);
  2823. if (do_continue) {
  2824. GET_VARIANT_PTR(iterator, 4);
  2825. VariantInternal::initialize(iterator, Variant::INT);
  2826. *VariantInternal::get_int(iterator) = from;
  2827. // Skip regular iterate.
  2828. ip += 7;
  2829. } else {
  2830. // Jump to end of loop.
  2831. int jumpto = _code_ptr[ip + 6];
  2832. GD_ERR_BREAK(jumpto < 0 || jumpto > _code_size);
  2833. ip = jumpto;
  2834. }
  2835. }
  2836. DISPATCH_OPCODE;
  2837. OPCODE(OPCODE_ITERATE) {
  2838. CHECK_SPACE(4);
  2839. GET_VARIANT_PTR(counter, 0);
  2840. GET_VARIANT_PTR(container, 1);
  2841. bool valid;
  2842. if (!container->iter_next(*counter, valid)) {
  2843. #ifdef DEBUG_ENABLED
  2844. if (!valid) {
  2845. err_text = "Unable to iterate on object of type '" + Variant::get_type_name(container->get_type()) + "' (type changed since first iteration?).";
  2846. OPCODE_BREAK;
  2847. }
  2848. #endif
  2849. int jumpto = _code_ptr[ip + 4];
  2850. GD_ERR_BREAK(jumpto < 0 || jumpto > _code_size);
  2851. ip = jumpto;
  2852. } else {
  2853. GET_VARIANT_PTR(iterator, 2);
  2854. *iterator = container->iter_get(*counter, valid);
  2855. #ifdef DEBUG_ENABLED
  2856. if (!valid) {
  2857. err_text = "Unable to obtain iterator object of type '" + Variant::get_type_name(container->get_type()) + "' (but was obtained on first iteration?).";
  2858. OPCODE_BREAK;
  2859. }
  2860. #endif
  2861. ip += 5; //loop again
  2862. }
  2863. }
  2864. DISPATCH_OPCODE;
  2865. OPCODE(OPCODE_ITERATE_INT) {
  2866. CHECK_SPACE(4);
  2867. GET_VARIANT_PTR(counter, 0);
  2868. GET_VARIANT_PTR(container, 1);
  2869. int64_t size = *VariantInternal::get_int(container);
  2870. int64_t *count = VariantInternal::get_int(counter);
  2871. (*count)++;
  2872. if (*count >= size) {
  2873. int jumpto = _code_ptr[ip + 4];
  2874. GD_ERR_BREAK(jumpto < 0 || jumpto > _code_size);
  2875. ip = jumpto;
  2876. } else {
  2877. GET_VARIANT_PTR(iterator, 2);
  2878. *VariantInternal::get_int(iterator) = *count;
  2879. ip += 5; // Loop again.
  2880. }
  2881. }
  2882. DISPATCH_OPCODE;
  2883. OPCODE(OPCODE_ITERATE_FLOAT) {
  2884. CHECK_SPACE(4);
  2885. GET_VARIANT_PTR(counter, 0);
  2886. GET_VARIANT_PTR(container, 1);
  2887. double size = *VariantInternal::get_float(container);
  2888. double *count = VariantInternal::get_float(counter);
  2889. (*count)++;
  2890. if (*count >= size) {
  2891. int jumpto = _code_ptr[ip + 4];
  2892. GD_ERR_BREAK(jumpto < 0 || jumpto > _code_size);
  2893. ip = jumpto;
  2894. } else {
  2895. GET_VARIANT_PTR(iterator, 2);
  2896. *VariantInternal::get_float(iterator) = *count;
  2897. ip += 5; // Loop again.
  2898. }
  2899. }
  2900. DISPATCH_OPCODE;
  2901. OPCODE(OPCODE_ITERATE_VECTOR2) {
  2902. CHECK_SPACE(4);
  2903. GET_VARIANT_PTR(counter, 0);
  2904. GET_VARIANT_PTR(container, 1);
  2905. const Vector2 *bounds = VariantInternal::get_vector2((const Variant *)container);
  2906. double *count = VariantInternal::get_float(counter);
  2907. (*count)++;
  2908. if (*count >= bounds->y) {
  2909. int jumpto = _code_ptr[ip + 4];
  2910. GD_ERR_BREAK(jumpto < 0 || jumpto > _code_size);
  2911. ip = jumpto;
  2912. } else {
  2913. GET_VARIANT_PTR(iterator, 2);
  2914. *VariantInternal::get_float(iterator) = *count;
  2915. ip += 5; // Loop again.
  2916. }
  2917. }
  2918. DISPATCH_OPCODE;
  2919. OPCODE(OPCODE_ITERATE_VECTOR2I) {
  2920. CHECK_SPACE(4);
  2921. GET_VARIANT_PTR(counter, 0);
  2922. GET_VARIANT_PTR(container, 1);
  2923. const Vector2i *bounds = VariantInternal::get_vector2i((const Variant *)container);
  2924. int64_t *count = VariantInternal::get_int(counter);
  2925. (*count)++;
  2926. if (*count >= bounds->y) {
  2927. int jumpto = _code_ptr[ip + 4];
  2928. GD_ERR_BREAK(jumpto < 0 || jumpto > _code_size);
  2929. ip = jumpto;
  2930. } else {
  2931. GET_VARIANT_PTR(iterator, 2);
  2932. *VariantInternal::get_int(iterator) = *count;
  2933. ip += 5; // Loop again.
  2934. }
  2935. }
  2936. DISPATCH_OPCODE;
  2937. OPCODE(OPCODE_ITERATE_VECTOR3) {
  2938. CHECK_SPACE(4);
  2939. GET_VARIANT_PTR(counter, 0);
  2940. GET_VARIANT_PTR(container, 1);
  2941. const Vector3 *bounds = VariantInternal::get_vector3((const Variant *)container);
  2942. double *count = VariantInternal::get_float(counter);
  2943. *count += bounds->z;
  2944. if ((bounds->z < 0 && *count <= bounds->y) || (bounds->z > 0 && *count >= bounds->y)) {
  2945. int jumpto = _code_ptr[ip + 4];
  2946. GD_ERR_BREAK(jumpto < 0 || jumpto > _code_size);
  2947. ip = jumpto;
  2948. } else {
  2949. GET_VARIANT_PTR(iterator, 2);
  2950. *VariantInternal::get_float(iterator) = *count;
  2951. ip += 5; // Loop again.
  2952. }
  2953. }
  2954. DISPATCH_OPCODE;
  2955. OPCODE(OPCODE_ITERATE_VECTOR3I) {
  2956. CHECK_SPACE(4);
  2957. GET_VARIANT_PTR(counter, 0);
  2958. GET_VARIANT_PTR(container, 1);
  2959. const Vector3i *bounds = VariantInternal::get_vector3i((const Variant *)container);
  2960. int64_t *count = VariantInternal::get_int(counter);
  2961. *count += bounds->z;
  2962. if ((bounds->z < 0 && *count <= bounds->y) || (bounds->z > 0 && *count >= bounds->y)) {
  2963. int jumpto = _code_ptr[ip + 4];
  2964. GD_ERR_BREAK(jumpto < 0 || jumpto > _code_size);
  2965. ip = jumpto;
  2966. } else {
  2967. GET_VARIANT_PTR(iterator, 2);
  2968. *VariantInternal::get_int(iterator) = *count;
  2969. ip += 5; // Loop again.
  2970. }
  2971. }
  2972. DISPATCH_OPCODE;
  2973. OPCODE(OPCODE_ITERATE_STRING) {
  2974. CHECK_SPACE(4);
  2975. GET_VARIANT_PTR(counter, 0);
  2976. GET_VARIANT_PTR(container, 1);
  2977. const String *str = VariantInternal::get_string((const Variant *)container);
  2978. int64_t *idx = VariantInternal::get_int(counter);
  2979. (*idx)++;
  2980. if (*idx >= str->length()) {
  2981. int jumpto = _code_ptr[ip + 4];
  2982. GD_ERR_BREAK(jumpto < 0 || jumpto > _code_size);
  2983. ip = jumpto;
  2984. } else {
  2985. GET_VARIANT_PTR(iterator, 2);
  2986. *VariantInternal::get_string(iterator) = str->substr(*idx, 1);
  2987. ip += 5; // Loop again.
  2988. }
  2989. }
  2990. DISPATCH_OPCODE;
  2991. OPCODE(OPCODE_ITERATE_DICTIONARY) {
  2992. CHECK_SPACE(4);
  2993. GET_VARIANT_PTR(counter, 0);
  2994. GET_VARIANT_PTR(container, 1);
  2995. const Dictionary *dict = VariantInternal::get_dictionary((const Variant *)container);
  2996. const Variant *next = dict->next(counter);
  2997. if (!next) {
  2998. int jumpto = _code_ptr[ip + 4];
  2999. GD_ERR_BREAK(jumpto < 0 || jumpto > _code_size);
  3000. ip = jumpto;
  3001. } else {
  3002. GET_VARIANT_PTR(iterator, 2);
  3003. *counter = *next;
  3004. *iterator = *next;
  3005. ip += 5; // Loop again.
  3006. }
  3007. }
  3008. DISPATCH_OPCODE;
  3009. OPCODE(OPCODE_ITERATE_ARRAY) {
  3010. CHECK_SPACE(4);
  3011. GET_VARIANT_PTR(counter, 0);
  3012. GET_VARIANT_PTR(container, 1);
  3013. const Array *array = VariantInternal::get_array((const Variant *)container);
  3014. int64_t *idx = VariantInternal::get_int(counter);
  3015. (*idx)++;
  3016. if (*idx >= array->size()) {
  3017. int jumpto = _code_ptr[ip + 4];
  3018. GD_ERR_BREAK(jumpto < 0 || jumpto > _code_size);
  3019. ip = jumpto;
  3020. } else {
  3021. GET_VARIANT_PTR(iterator, 2);
  3022. *iterator = array->get(*idx);
  3023. ip += 5; // Loop again.
  3024. }
  3025. }
  3026. DISPATCH_OPCODE;
  3027. #define OPCODE_ITERATE_PACKED_ARRAY(m_var_type, m_elem_type, m_get_func, m_ret_get_func) \
  3028. OPCODE(OPCODE_ITERATE_PACKED_##m_var_type##_ARRAY) { \
  3029. CHECK_SPACE(4); \
  3030. GET_VARIANT_PTR(counter, 0); \
  3031. GET_VARIANT_PTR(container, 1); \
  3032. const Vector<m_elem_type> *array = VariantInternal::m_get_func((const Variant *)container); \
  3033. int64_t *idx = VariantInternal::get_int(counter); \
  3034. (*idx)++; \
  3035. if (*idx >= array->size()) { \
  3036. int jumpto = _code_ptr[ip + 4]; \
  3037. GD_ERR_BREAK(jumpto < 0 || jumpto > _code_size); \
  3038. ip = jumpto; \
  3039. } else { \
  3040. GET_VARIANT_PTR(iterator, 2); \
  3041. *VariantInternal::m_ret_get_func(iterator) = array->get(*idx); \
  3042. ip += 5; \
  3043. } \
  3044. } \
  3045. DISPATCH_OPCODE
  3046. OPCODE_ITERATE_PACKED_ARRAY(BYTE, uint8_t, get_byte_array, get_int);
  3047. OPCODE_ITERATE_PACKED_ARRAY(INT32, int32_t, get_int32_array, get_int);
  3048. OPCODE_ITERATE_PACKED_ARRAY(INT64, int64_t, get_int64_array, get_int);
  3049. OPCODE_ITERATE_PACKED_ARRAY(FLOAT32, float, get_float32_array, get_float);
  3050. OPCODE_ITERATE_PACKED_ARRAY(FLOAT64, double, get_float64_array, get_float);
  3051. OPCODE_ITERATE_PACKED_ARRAY(STRING, String, get_string_array, get_string);
  3052. OPCODE_ITERATE_PACKED_ARRAY(VECTOR2, Vector2, get_vector2_array, get_vector2);
  3053. OPCODE_ITERATE_PACKED_ARRAY(VECTOR3, Vector3, get_vector3_array, get_vector3);
  3054. OPCODE_ITERATE_PACKED_ARRAY(COLOR, Color, get_color_array, get_color);
  3055. OPCODE_ITERATE_PACKED_ARRAY(VECTOR4, Vector4, get_vector4_array, get_vector4);
  3056. OPCODE(OPCODE_ITERATE_OBJECT) {
  3057. CHECK_SPACE(4);
  3058. GET_VARIANT_PTR(counter, 0);
  3059. GET_VARIANT_PTR(container, 1);
  3060. #ifdef DEBUG_ENABLED
  3061. bool freed = false;
  3062. Object *obj = container->get_validated_object_with_check(freed);
  3063. if (freed) {
  3064. err_text = "Trying to iterate on a previously freed object.";
  3065. OPCODE_BREAK;
  3066. } else if (!obj) {
  3067. err_text = "Trying to iterate on a null value.";
  3068. OPCODE_BREAK;
  3069. }
  3070. #else
  3071. Object *obj = *VariantInternal::get_object(container);
  3072. #endif
  3073. Array ref = { *counter };
  3074. Variant vref;
  3075. VariantInternal::initialize(&vref, Variant::ARRAY);
  3076. *VariantInternal::get_array(&vref) = ref;
  3077. const Variant *args[] = { &vref };
  3078. Callable::CallError ce;
  3079. Variant has_next = obj->callp(CoreStringName(_iter_next), args, 1, ce);
  3080. #ifdef DEBUG_ENABLED
  3081. if (ref.size() != 1 || ce.error != Callable::CallError::CALL_OK) {
  3082. err_text = vformat(R"(There was an error calling "_iter_next" on iterator object of type %s.)", *container);
  3083. OPCODE_BREAK;
  3084. }
  3085. #endif
  3086. if (!has_next.booleanize()) {
  3087. int jumpto = _code_ptr[ip + 4];
  3088. GD_ERR_BREAK(jumpto < 0 || jumpto > _code_size);
  3089. ip = jumpto;
  3090. } else {
  3091. *counter = ref[0];
  3092. GET_VARIANT_PTR(iterator, 2);
  3093. *iterator = obj->callp(CoreStringName(_iter_get), (const Variant **)&counter, 1, ce);
  3094. #ifdef DEBUG_ENABLED
  3095. if (ce.error != Callable::CallError::CALL_OK) {
  3096. err_text = vformat(R"(There was an error calling "_iter_get" on iterator object of type %s.)", *container);
  3097. OPCODE_BREAK;
  3098. }
  3099. #endif
  3100. ip += 5; // Loop again.
  3101. }
  3102. }
  3103. DISPATCH_OPCODE;
  3104. OPCODE(OPCODE_ITERATE_RANGE) {
  3105. CHECK_SPACE(5);
  3106. GET_VARIANT_PTR(counter, 0);
  3107. GET_VARIANT_PTR(to_ptr, 1);
  3108. GET_VARIANT_PTR(step_ptr, 2);
  3109. int64_t to = *VariantInternal::get_int(to_ptr);
  3110. int64_t step = *VariantInternal::get_int(step_ptr);
  3111. int64_t *count = VariantInternal::get_int(counter);
  3112. *count += step;
  3113. if ((step < 0 && *count <= to) || (step > 0 && *count >= to)) {
  3114. int jumpto = _code_ptr[ip + 5];
  3115. GD_ERR_BREAK(jumpto < 0 || jumpto > _code_size);
  3116. ip = jumpto;
  3117. } else {
  3118. GET_VARIANT_PTR(iterator, 3);
  3119. *VariantInternal::get_int(iterator) = *count;
  3120. ip += 6; // Loop again.
  3121. }
  3122. }
  3123. DISPATCH_OPCODE;
  3124. OPCODE(OPCODE_STORE_GLOBAL) {
  3125. CHECK_SPACE(3);
  3126. int global_idx = _code_ptr[ip + 2];
  3127. GD_ERR_BREAK(global_idx < 0 || global_idx >= GDScriptLanguage::get_singleton()->get_global_array_size());
  3128. GET_VARIANT_PTR(dst, 0);
  3129. *dst = GDScriptLanguage::get_singleton()->get_global_array()[global_idx];
  3130. ip += 3;
  3131. }
  3132. DISPATCH_OPCODE;
  3133. OPCODE(OPCODE_STORE_NAMED_GLOBAL) {
  3134. CHECK_SPACE(3);
  3135. int globalname_idx = _code_ptr[ip + 2];
  3136. GD_ERR_BREAK(globalname_idx < 0 || globalname_idx >= _global_names_count);
  3137. const StringName *globalname = &_global_names_ptr[globalname_idx];
  3138. GD_ERR_BREAK(!GDScriptLanguage::get_singleton()->get_named_globals_map().has(*globalname));
  3139. GET_VARIANT_PTR(dst, 0);
  3140. *dst = GDScriptLanguage::get_singleton()->get_named_globals_map()[*globalname];
  3141. ip += 3;
  3142. }
  3143. DISPATCH_OPCODE;
  3144. #define OPCODE_TYPE_ADJUST(m_v_type, m_c_type) \
  3145. OPCODE(OPCODE_TYPE_ADJUST_##m_v_type) { \
  3146. CHECK_SPACE(2); \
  3147. GET_VARIANT_PTR(arg, 0); \
  3148. VariantTypeAdjust<m_c_type>::adjust(arg); \
  3149. ip += 2; \
  3150. } \
  3151. DISPATCH_OPCODE
  3152. OPCODE_TYPE_ADJUST(BOOL, bool);
  3153. OPCODE_TYPE_ADJUST(INT, int64_t);
  3154. OPCODE_TYPE_ADJUST(FLOAT, double);
  3155. OPCODE_TYPE_ADJUST(STRING, String);
  3156. OPCODE_TYPE_ADJUST(VECTOR2, Vector2);
  3157. OPCODE_TYPE_ADJUST(VECTOR2I, Vector2i);
  3158. OPCODE_TYPE_ADJUST(RECT2, Rect2);
  3159. OPCODE_TYPE_ADJUST(RECT2I, Rect2i);
  3160. OPCODE_TYPE_ADJUST(VECTOR3, Vector3);
  3161. OPCODE_TYPE_ADJUST(VECTOR3I, Vector3i);
  3162. OPCODE_TYPE_ADJUST(TRANSFORM2D, Transform2D);
  3163. OPCODE_TYPE_ADJUST(VECTOR4, Vector4);
  3164. OPCODE_TYPE_ADJUST(VECTOR4I, Vector4i);
  3165. OPCODE_TYPE_ADJUST(PLANE, Plane);
  3166. OPCODE_TYPE_ADJUST(QUATERNION, Quaternion);
  3167. OPCODE_TYPE_ADJUST(AABB, AABB);
  3168. OPCODE_TYPE_ADJUST(BASIS, Basis);
  3169. OPCODE_TYPE_ADJUST(TRANSFORM3D, Transform3D);
  3170. OPCODE_TYPE_ADJUST(PROJECTION, Projection);
  3171. OPCODE_TYPE_ADJUST(COLOR, Color);
  3172. OPCODE_TYPE_ADJUST(STRING_NAME, StringName);
  3173. OPCODE_TYPE_ADJUST(NODE_PATH, NodePath);
  3174. OPCODE_TYPE_ADJUST(RID, RID);
  3175. OPCODE_TYPE_ADJUST(OBJECT, Object *);
  3176. OPCODE_TYPE_ADJUST(CALLABLE, Callable);
  3177. OPCODE_TYPE_ADJUST(SIGNAL, Signal);
  3178. OPCODE_TYPE_ADJUST(DICTIONARY, Dictionary);
  3179. OPCODE_TYPE_ADJUST(ARRAY, Array);
  3180. OPCODE_TYPE_ADJUST(PACKED_BYTE_ARRAY, PackedByteArray);
  3181. OPCODE_TYPE_ADJUST(PACKED_INT32_ARRAY, PackedInt32Array);
  3182. OPCODE_TYPE_ADJUST(PACKED_INT64_ARRAY, PackedInt64Array);
  3183. OPCODE_TYPE_ADJUST(PACKED_FLOAT32_ARRAY, PackedFloat32Array);
  3184. OPCODE_TYPE_ADJUST(PACKED_FLOAT64_ARRAY, PackedFloat64Array);
  3185. OPCODE_TYPE_ADJUST(PACKED_STRING_ARRAY, PackedStringArray);
  3186. OPCODE_TYPE_ADJUST(PACKED_VECTOR2_ARRAY, PackedVector2Array);
  3187. OPCODE_TYPE_ADJUST(PACKED_VECTOR3_ARRAY, PackedVector3Array);
  3188. OPCODE_TYPE_ADJUST(PACKED_COLOR_ARRAY, PackedColorArray);
  3189. OPCODE_TYPE_ADJUST(PACKED_VECTOR4_ARRAY, PackedVector4Array);
  3190. OPCODE(OPCODE_ASSERT) {
  3191. CHECK_SPACE(3);
  3192. #ifdef DEBUG_ENABLED
  3193. GET_VARIANT_PTR(test, 0);
  3194. bool result = test->booleanize();
  3195. if (!result) {
  3196. String message_str;
  3197. if (_code_ptr[ip + 2] != 0) {
  3198. GET_VARIANT_PTR(message, 1);
  3199. Variant message_var = *message;
  3200. if (message->get_type() != Variant::NIL) {
  3201. message_str = message_var;
  3202. }
  3203. }
  3204. if (message_str.is_empty()) {
  3205. err_text = "Assertion failed.";
  3206. } else {
  3207. err_text = "Assertion failed: " + message_str;
  3208. }
  3209. OPCODE_BREAK;
  3210. }
  3211. #endif
  3212. ip += 3;
  3213. }
  3214. DISPATCH_OPCODE;
  3215. OPCODE(OPCODE_BREAKPOINT) {
  3216. #ifdef DEBUG_ENABLED
  3217. if (EngineDebugger::is_active()) {
  3218. GDScriptLanguage::get_singleton()->debug_break("Breakpoint Statement", true);
  3219. }
  3220. #endif
  3221. ip += 1;
  3222. }
  3223. DISPATCH_OPCODE;
  3224. OPCODE(OPCODE_LINE) {
  3225. CHECK_SPACE(2);
  3226. line = _code_ptr[ip + 1];
  3227. ip += 2;
  3228. if (EngineDebugger::is_active()) {
  3229. // line
  3230. bool do_break = false;
  3231. if (unlikely(EngineDebugger::get_script_debugger()->get_lines_left() > 0)) {
  3232. if (EngineDebugger::get_script_debugger()->get_depth() <= 0) {
  3233. EngineDebugger::get_script_debugger()->set_lines_left(EngineDebugger::get_script_debugger()->get_lines_left() - 1);
  3234. }
  3235. if (EngineDebugger::get_script_debugger()->get_lines_left() <= 0) {
  3236. do_break = true;
  3237. }
  3238. }
  3239. if (EngineDebugger::get_script_debugger()->is_breakpoint(line, source)) {
  3240. do_break = true;
  3241. }
  3242. if (unlikely(do_break)) {
  3243. GDScriptLanguage::get_singleton()->debug_break("Breakpoint", true);
  3244. }
  3245. EngineDebugger::get_singleton()->line_poll();
  3246. }
  3247. }
  3248. DISPATCH_OPCODE;
  3249. OPCODE(OPCODE_END) {
  3250. #ifdef DEBUG_ENABLED
  3251. exit_ok = true;
  3252. #endif
  3253. OPCODE_BREAK;
  3254. }
  3255. #if 0 // Enable for debugging.
  3256. default: {
  3257. err_text = "Illegal opcode " + itos(_code_ptr[ip]) + " at address " + itos(ip);
  3258. OPCODE_BREAK;
  3259. }
  3260. #endif
  3261. }
  3262. OPCODES_END
  3263. #ifdef DEBUG_ENABLED
  3264. if (exit_ok) {
  3265. OPCODE_OUT;
  3266. }
  3267. //error
  3268. // function, file, line, error, explanation
  3269. String err_file;
  3270. bool instance_valid_with_script = p_instance && ObjectDB::get_instance(p_instance->owner_id) != nullptr && p_instance->script->is_valid();
  3271. if (instance_valid_with_script && !get_script()->path.is_empty()) {
  3272. err_file = get_script()->path;
  3273. } else if (script) {
  3274. err_file = script->path;
  3275. }
  3276. if (err_file.is_empty()) {
  3277. err_file = "<built-in>";
  3278. }
  3279. String err_func = name;
  3280. if (instance_valid_with_script && p_instance->script->local_name != StringName()) {
  3281. err_func = p_instance->script->local_name.operator String() + "." + err_func;
  3282. }
  3283. int err_line = line;
  3284. if (err_text.is_empty()) {
  3285. err_text = "Internal script error! Opcode: " + itos(last_opcode) + " (please report).";
  3286. }
  3287. _err_print_error(err_func.utf8().get_data(), err_file.utf8().get_data(), err_line, err_text.utf8().get_data(), false, ERR_HANDLER_SCRIPT);
  3288. GDScriptLanguage::get_singleton()->debug_break(err_text, false);
  3289. // Get a default return type in case of failure
  3290. retvalue = _get_default_variant_for_data_type(return_type);
  3291. #endif
  3292. OPCODE_OUT;
  3293. }
  3294. OPCODES_OUT
  3295. #ifdef DEBUG_ENABLED
  3296. if (GDScriptLanguage::get_singleton()->profiling) {
  3297. uint64_t time_taken = OS::get_singleton()->get_ticks_usec() - function_start_time;
  3298. profile.total_time.add(time_taken);
  3299. profile.self_time.add(time_taken - function_call_time);
  3300. profile.frame_total_time.add(time_taken);
  3301. profile.frame_self_time.add(time_taken - function_call_time);
  3302. if (Thread::get_caller_id() == Thread::get_main_id()) {
  3303. GDScriptLanguage::get_singleton()->script_frame_time += time_taken - function_call_time;
  3304. }
  3305. }
  3306. #endif
  3307. // Check if this is not the last time it was interrupted by `await` or if it's the first time executing.
  3308. // If that is the case then we exit the function as normal. Otherwise we postpone it until the last `await` is completed.
  3309. // This ensures the call stack can be properly shown when using `await`, showing what resumed the function.
  3310. if (!p_state || awaited) {
  3311. GDScriptLanguage::get_singleton()->exit_function();
  3312. // Free stack, except reserved addresses.
  3313. for (int i = FIXED_ADDRESSES_MAX; i < _stack_size; i++) {
  3314. stack[i].~Variant();
  3315. }
  3316. }
  3317. // Always free reserved addresses, since they are never copied.
  3318. for (int i = 0; i < FIXED_ADDRESSES_MAX; i++) {
  3319. stack[i].~Variant();
  3320. }
  3321. call_depth--;
  3322. if (p_state && !awaited) {
  3323. // This means we have finished executing a resumed function and it was not awaited again.
  3324. // Signal the next function-state to resume.
  3325. const Variant *args[1] = { &retvalue };
  3326. p_state->completed.emit(args, 1);
  3327. // Exit function only after executing the remaining function states to preserve async call stack.
  3328. GDScriptLanguage::get_singleton()->exit_function();
  3329. }
  3330. return retvalue;
  3331. }