Object.cpp 31 KB

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  1. /*
  2. * Copyright (c) 2020, Andreas Kling <kling@serenityos.org>
  3. * All rights reserved.
  4. *
  5. * Redistribution and use in source and binary forms, with or without
  6. * modification, are permitted provided that the following conditions are met:
  7. *
  8. * 1. Redistributions of source code must retain the above copyright notice, this
  9. * list of conditions and the following disclaimer.
  10. *
  11. * 2. Redistributions in binary form must reproduce the above copyright notice,
  12. * this list of conditions and the following disclaimer in the documentation
  13. * and/or other materials provided with the distribution.
  14. *
  15. * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
  16. * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
  17. * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
  18. * DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE
  19. * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
  20. * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
  21. * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
  22. * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
  23. * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
  24. * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
  25. */
  26. #include <AK/String.h>
  27. #include <LibJS/Heap/Heap.h>
  28. #include <LibJS/Interpreter.h>
  29. #include <LibJS/Runtime/Accessor.h>
  30. #include <LibJS/Runtime/Array.h>
  31. #include <LibJS/Runtime/Error.h>
  32. #include <LibJS/Runtime/GlobalObject.h>
  33. #include <LibJS/Runtime/NativeFunction.h>
  34. #include <LibJS/Runtime/NativeProperty.h>
  35. #include <LibJS/Runtime/Object.h>
  36. #include <LibJS/Runtime/Shape.h>
  37. #include <LibJS/Runtime/StringObject.h>
  38. #include <LibJS/Runtime/Value.h>
  39. namespace JS {
  40. PropertyDescriptor PropertyDescriptor::from_dictionary(Interpreter& interpreter, const Object& object)
  41. {
  42. PropertyAttributes attributes;
  43. if (object.has_property("configurable")) {
  44. attributes.set_has_configurable();
  45. if (object.get("configurable").value_or(Value(false)).to_boolean())
  46. attributes.set_configurable();
  47. if (interpreter.exception())
  48. return {};
  49. }
  50. if (object.has_property("enumerable")) {
  51. attributes.set_has_enumerable();
  52. if (object.get("enumerable").value_or(Value(false)).to_boolean())
  53. attributes.set_enumerable();
  54. if (interpreter.exception())
  55. return {};
  56. }
  57. if (object.has_property("writable")) {
  58. attributes.set_has_writable();
  59. if (object.get("writable").value_or(Value(false)).to_boolean())
  60. attributes.set_writable();
  61. if (interpreter.exception())
  62. return {};
  63. }
  64. PropertyDescriptor descriptor { attributes, object.get("value"), nullptr, nullptr };
  65. if (interpreter.exception())
  66. return {};
  67. auto getter = object.get("get");
  68. if (interpreter.exception())
  69. return {};
  70. if (getter.is_function())
  71. descriptor.getter = &getter.as_function();
  72. auto setter = object.get("set");
  73. if (interpreter.exception())
  74. return {};
  75. if (setter.is_function())
  76. descriptor.setter = &setter.as_function();
  77. return descriptor;
  78. }
  79. Object* Object::create_empty(Interpreter&, GlobalObject& global_object)
  80. {
  81. return global_object.heap().allocate<Object>(global_object.object_prototype());
  82. }
  83. Object::Object(Object* prototype)
  84. {
  85. if (prototype) {
  86. m_shape = interpreter().global_object().empty_object_shape();
  87. set_prototype(prototype);
  88. } else {
  89. // This is the global object
  90. m_shape = interpreter().heap().allocate<Shape>(static_cast<GlobalObject&>(*this));
  91. }
  92. }
  93. Object::~Object()
  94. {
  95. }
  96. Object* Object::prototype()
  97. {
  98. return shape().prototype();
  99. }
  100. const Object* Object::prototype() const
  101. {
  102. return shape().prototype();
  103. }
  104. bool Object::set_prototype(Object* new_prototype)
  105. {
  106. if (prototype() == new_prototype)
  107. return true;
  108. if (!m_is_extensible)
  109. return false;
  110. if (shape().is_unique()) {
  111. shape().set_prototype_without_transition(new_prototype);
  112. return true;
  113. }
  114. m_shape = m_shape->create_prototype_transition(new_prototype);
  115. return true;
  116. }
  117. bool Object::has_prototype(const Object* prototype) const
  118. {
  119. for (auto* object = this->prototype(); object; object = object->prototype()) {
  120. if (interpreter().exception())
  121. return false;
  122. if (object == prototype)
  123. return true;
  124. }
  125. return false;
  126. }
  127. bool Object::prevent_extensions()
  128. {
  129. m_is_extensible = false;
  130. return true;
  131. }
  132. Value Object::get_own_property(const Object& this_object, PropertyName property_name) const
  133. {
  134. Value value_here;
  135. if (property_name.is_number()) {
  136. auto existing_property = m_indexed_properties.get(nullptr, property_name.as_number(), false);
  137. if (!existing_property.has_value())
  138. return {};
  139. value_here = existing_property.value().value.value_or(js_undefined());
  140. } else {
  141. auto metadata = shape().lookup(property_name.as_string());
  142. if (!metadata.has_value())
  143. return {};
  144. value_here = m_storage[metadata.value().offset].value_or(js_undefined());
  145. }
  146. ASSERT(!value_here.is_empty());
  147. if (value_here.is_accessor()) {
  148. return value_here.as_accessor().call_getter(Value(const_cast<Object*>(this)));
  149. }
  150. if (value_here.is_object() && value_here.as_object().is_native_property())
  151. return call_native_property_getter(const_cast<Object*>(&this_object), value_here);
  152. return value_here;
  153. }
  154. Value Object::get_own_properties(const Object& this_object, GetOwnPropertyMode kind, bool only_enumerable_properties) const
  155. {
  156. auto* properties_array = Array::create(global_object());
  157. // FIXME: Support generic iterables
  158. if (this_object.is_string_object()) {
  159. auto str = static_cast<const StringObject&>(this_object).primitive_string().string();
  160. for (size_t i = 0; i < str.length(); ++i) {
  161. if (kind == GetOwnPropertyMode::Key) {
  162. properties_array->define_property(i, js_string(interpreter(), String::number(i)));
  163. } else if (kind == GetOwnPropertyMode::Value) {
  164. properties_array->define_property(i, js_string(interpreter(), String::format("%c", str[i])));
  165. } else {
  166. auto* entry_array = Array::create(global_object());
  167. entry_array->define_property(0, js_string(interpreter(), String::number(i)));
  168. if (interpreter().exception())
  169. return {};
  170. entry_array->define_property(1, js_string(interpreter(), String::format("%c", str[i])));
  171. if (interpreter().exception())
  172. return {};
  173. properties_array->define_property(i, entry_array);
  174. }
  175. if (interpreter().exception())
  176. return {};
  177. }
  178. return properties_array;
  179. }
  180. size_t property_index = 0;
  181. for (auto& entry : m_indexed_properties) {
  182. auto value_and_attributes = entry.value_and_attributes(const_cast<Object*>(&this_object));
  183. if (only_enumerable_properties && !value_and_attributes.attributes.is_enumerable())
  184. continue;
  185. if (kind == GetOwnPropertyMode::Key) {
  186. properties_array->define_property(property_index, js_string(interpreter(), String::number(entry.index())));
  187. } else if (kind == GetOwnPropertyMode::Value) {
  188. properties_array->define_property(property_index, value_and_attributes.value);
  189. } else {
  190. auto* entry_array = Array::create(global_object());
  191. entry_array->define_property(0, js_string(interpreter(), String::number(entry.index())));
  192. if (interpreter().exception())
  193. return {};
  194. entry_array->define_property(1, value_and_attributes.value);
  195. if (interpreter().exception())
  196. return {};
  197. properties_array->define_property(property_index, entry_array);
  198. }
  199. if (interpreter().exception())
  200. return {};
  201. ++property_index;
  202. }
  203. for (auto& it : this_object.shape().property_table_ordered()) {
  204. if (only_enumerable_properties && !it.value.attributes.is_enumerable())
  205. continue;
  206. size_t offset = it.value.offset + property_index;
  207. if (kind == GetOwnPropertyMode::Key) {
  208. properties_array->define_property(offset, js_string(interpreter(), it.key));
  209. } else if (kind == GetOwnPropertyMode::Value) {
  210. properties_array->define_property(offset, this_object.get(it.key));
  211. } else {
  212. auto* entry_array = Array::create(global_object());
  213. entry_array->define_property(0, js_string(interpreter(), it.key));
  214. if (interpreter().exception())
  215. return {};
  216. entry_array->define_property(1, this_object.get(it.key));
  217. if (interpreter().exception())
  218. return {};
  219. properties_array->define_property(offset, entry_array);
  220. }
  221. if (interpreter().exception())
  222. return {};
  223. }
  224. return properties_array;
  225. }
  226. Optional<PropertyDescriptor> Object::get_own_property_descriptor(PropertyName property_name) const
  227. {
  228. Value value;
  229. PropertyAttributes attributes;
  230. if (property_name.is_number()) {
  231. auto existing_value = m_indexed_properties.get(nullptr, property_name.as_number(), false);
  232. if (!existing_value.has_value())
  233. return {};
  234. value = existing_value.value().value;
  235. attributes = existing_value.value().attributes;
  236. attributes = default_attributes;
  237. } else {
  238. auto metadata = shape().lookup(property_name.as_string());
  239. if (!metadata.has_value())
  240. return {};
  241. value = m_storage[metadata.value().offset];
  242. if (interpreter().exception())
  243. return {};
  244. attributes = metadata.value().attributes;
  245. }
  246. PropertyDescriptor descriptor { attributes, {}, nullptr, nullptr };
  247. if (value.is_object() && value.as_object().is_native_property()) {
  248. auto result = call_native_property_getter(const_cast<Object*>(this), value);
  249. descriptor.value = result.value_or(js_undefined());
  250. } else if (value.is_accessor()) {
  251. auto& pair = value.as_accessor();
  252. if (pair.getter())
  253. descriptor.getter = pair.getter();
  254. if (pair.setter())
  255. descriptor.setter = pair.setter();
  256. } else {
  257. descriptor.value = value.value_or(js_undefined());
  258. }
  259. return descriptor;
  260. }
  261. Value Object::get_own_property_descriptor_object(PropertyName property_name) const
  262. {
  263. auto descriptor_opt = get_own_property_descriptor(property_name);
  264. if (!descriptor_opt.has_value())
  265. return js_undefined();
  266. auto descriptor = descriptor_opt.value();
  267. auto* descriptor_object = Object::create_empty(interpreter(), global_object());
  268. descriptor_object->define_property("enumerable", Value(descriptor.attributes.is_enumerable()));
  269. if (interpreter().exception())
  270. return {};
  271. descriptor_object->define_property("configurable", Value(descriptor.attributes.is_configurable()));
  272. if (interpreter().exception())
  273. return {};
  274. if (descriptor.is_data_descriptor()) {
  275. descriptor_object->define_property("value", descriptor.value.value_or(js_undefined()));
  276. if (interpreter().exception())
  277. return {};
  278. descriptor_object->define_property("writable", Value(descriptor.attributes.is_writable()));
  279. if (interpreter().exception())
  280. return {};
  281. } else if (descriptor.is_accessor_descriptor()) {
  282. if (descriptor.getter) {
  283. descriptor_object->define_property("get", Value(descriptor.getter));
  284. if (interpreter().exception())
  285. return {};
  286. }
  287. if (descriptor.setter) {
  288. descriptor_object->define_property("set", Value(descriptor.setter));
  289. if (interpreter().exception())
  290. return {};
  291. }
  292. }
  293. return descriptor_object;
  294. }
  295. void Object::set_shape(Shape& new_shape)
  296. {
  297. m_storage.resize(new_shape.property_count());
  298. m_shape = &new_shape;
  299. }
  300. bool Object::define_property(const FlyString& property_name, const Object& descriptor, bool throw_exceptions)
  301. {
  302. bool is_accessor_property = descriptor.has_property("get") || descriptor.has_property("set");
  303. PropertyAttributes attributes;
  304. if (descriptor.has_property("configurable")) {
  305. attributes.set_has_configurable();
  306. if (descriptor.get("configurable").value_or(Value(false)).to_boolean())
  307. attributes.set_configurable();
  308. if (interpreter().exception())
  309. return false;
  310. }
  311. if (descriptor.has_property("enumerable")) {
  312. attributes.set_has_enumerable();
  313. if (descriptor.get("enumerable").value_or(Value(false)).to_boolean())
  314. attributes.set_enumerable();
  315. if (interpreter().exception())
  316. return false;
  317. }
  318. if (is_accessor_property) {
  319. if (descriptor.has_property("value") || descriptor.has_property("writable")) {
  320. if (throw_exceptions)
  321. interpreter().throw_exception<TypeError>(ErrorType::AccessorValueOrWritable);
  322. return false;
  323. }
  324. auto getter = descriptor.get("get").value_or(js_undefined());
  325. if (interpreter().exception())
  326. return {};
  327. auto setter = descriptor.get("set").value_or(js_undefined());
  328. if (interpreter().exception())
  329. return {};
  330. Function* getter_function { nullptr };
  331. Function* setter_function { nullptr };
  332. if (getter.is_function()) {
  333. getter_function = &getter.as_function();
  334. } else if (!getter.is_undefined()) {
  335. interpreter().throw_exception<TypeError>(ErrorType::AccessorBadField, "get");
  336. return false;
  337. }
  338. if (setter.is_function()) {
  339. setter_function = &setter.as_function();
  340. } else if (!setter.is_undefined()) {
  341. interpreter().throw_exception<TypeError>(ErrorType::AccessorBadField, "set");
  342. return false;
  343. }
  344. dbg() << "Defining new property " << property_name << " with accessor descriptor { attributes=" << attributes << ", "
  345. << "getter=" << getter.to_string_without_side_effects() << ", "
  346. << "setter=" << setter.to_string_without_side_effects() << "}";
  347. return define_property(property_name, Accessor::create(interpreter(), getter_function, setter_function), attributes, throw_exceptions);
  348. }
  349. auto value = descriptor.get("value");
  350. if (interpreter().exception())
  351. return {};
  352. if (descriptor.has_property("writable")) {
  353. attributes.set_has_writable();
  354. if (descriptor.get("writable").value_or(Value(false)).to_boolean())
  355. attributes.set_writable();
  356. if (interpreter().exception())
  357. return false;
  358. }
  359. if (interpreter().exception())
  360. return {};
  361. dbg() << "Defining new property " << property_name << " with data descriptor { attributes=" << attributes
  362. << ", value=" << (value.is_empty() ? "<empty>" : value.to_string_without_side_effects()) << " }";
  363. return define_property(property_name, value, attributes, throw_exceptions);
  364. }
  365. bool Object::define_property(PropertyName property_name, Value value, PropertyAttributes attributes, bool throw_exceptions)
  366. {
  367. if (property_name.is_number())
  368. return put_own_property_by_index(*this, property_name.as_number(), value, attributes, PutOwnPropertyMode::DefineProperty, throw_exceptions);
  369. i32 property_index = property_name.as_string().to_int().value_or(-1);
  370. if (property_index >= 0)
  371. return put_own_property_by_index(*this, property_index, value, attributes, PutOwnPropertyMode::DefineProperty, throw_exceptions);
  372. return put_own_property(*this, property_name.as_string(), value, attributes, PutOwnPropertyMode::DefineProperty, throw_exceptions);
  373. }
  374. bool Object::put_own_property(Object& this_object, const FlyString& property_name, Value value, PropertyAttributes attributes, PutOwnPropertyMode mode, bool throw_exceptions)
  375. {
  376. ASSERT(!(mode == PutOwnPropertyMode::Put && value.is_accessor()));
  377. if (!is_extensible()) {
  378. dbg() << "Disallow define_property of non-extensible object";
  379. if (throw_exceptions && interpreter().in_strict_mode())
  380. interpreter().throw_exception<TypeError>(ErrorType::NonExtensibleDefine, property_name.characters());
  381. return false;
  382. }
  383. if (value.is_accessor()) {
  384. auto& accessor = value.as_accessor();
  385. if (accessor.getter())
  386. attributes.set_has_getter();
  387. if (accessor.setter())
  388. attributes.set_has_setter();
  389. }
  390. auto metadata = shape().lookup(property_name);
  391. bool new_property = !metadata.has_value();
  392. if (new_property) {
  393. if (!m_shape->is_unique() && shape().property_count() > 100) {
  394. // If you add more than 100 properties to an object, let's stop doing
  395. // transitions to avoid filling up the heap with shapes.
  396. ensure_shape_is_unique();
  397. }
  398. if (m_shape->is_unique()) {
  399. m_shape->add_property_to_unique_shape(property_name, attributes);
  400. m_storage.resize(m_shape->property_count());
  401. } else {
  402. set_shape(*m_shape->create_put_transition(property_name, attributes));
  403. }
  404. metadata = shape().lookup(property_name);
  405. ASSERT(metadata.has_value());
  406. }
  407. if (!new_property && mode == PutOwnPropertyMode::DefineProperty && !metadata.value().attributes.is_configurable() && attributes != metadata.value().attributes) {
  408. dbg() << "Disallow reconfig of non-configurable property";
  409. if (throw_exceptions)
  410. interpreter().throw_exception<TypeError>(ErrorType::DescChangeNonConfigurable, property_name.characters());
  411. return false;
  412. }
  413. if (mode == PutOwnPropertyMode::DefineProperty && attributes != metadata.value().attributes) {
  414. if (m_shape->is_unique()) {
  415. m_shape->reconfigure_property_in_unique_shape(property_name, attributes);
  416. } else {
  417. set_shape(*m_shape->create_configure_transition(property_name, attributes));
  418. }
  419. metadata = shape().lookup(property_name);
  420. dbg() << "Reconfigured property " << property_name << ", new shape says offset is " << metadata.value().offset << " and my storage capacity is " << m_storage.size();
  421. }
  422. auto value_here = m_storage[metadata.value().offset];
  423. if (!new_property && mode == PutOwnPropertyMode::Put && !value_here.is_accessor() && !metadata.value().attributes.is_writable()) {
  424. dbg() << "Disallow write to non-writable property";
  425. return false;
  426. }
  427. if (value.is_empty())
  428. return true;
  429. if (value_here.is_object() && value_here.as_object().is_native_property()) {
  430. call_native_property_setter(const_cast<Object*>(&this_object), value_here, value);
  431. } else {
  432. m_storage[metadata.value().offset] = value;
  433. }
  434. return true;
  435. }
  436. bool Object::put_own_property_by_index(Object& this_object, u32 property_index, Value value, PropertyAttributes attributes, PutOwnPropertyMode mode, bool throw_exceptions)
  437. {
  438. ASSERT(!(mode == PutOwnPropertyMode::Put && value.is_accessor()));
  439. if (!is_extensible()) {
  440. dbg() << "Disallow define_property of non-extensible object";
  441. if (throw_exceptions && interpreter().in_strict_mode())
  442. interpreter().throw_exception<TypeError>(ErrorType::NonExtensibleDefine, property_index);
  443. return false;
  444. }
  445. if (value.is_accessor()) {
  446. auto& accessor = value.as_accessor();
  447. if (accessor.getter())
  448. attributes.set_has_getter();
  449. if (accessor.setter())
  450. attributes.set_has_setter();
  451. }
  452. auto existing_property = m_indexed_properties.get(nullptr, property_index, false);
  453. auto new_property = !existing_property.has_value();
  454. PropertyAttributes existing_attributes = new_property ? 0 : existing_property.value().attributes;
  455. if (!new_property && mode == PutOwnPropertyMode::DefineProperty && !existing_attributes.is_configurable() && attributes != existing_attributes) {
  456. dbg() << "Disallow reconfig of non-configurable property";
  457. if (throw_exceptions)
  458. interpreter().throw_exception<TypeError>(ErrorType::DescChangeNonConfigurable, property_index);
  459. return false;
  460. }
  461. auto value_here = new_property ? Value() : existing_property.value().value;
  462. if (!new_property && mode == PutOwnPropertyMode::Put && !value_here.is_accessor() && !existing_attributes.is_writable()) {
  463. dbg() << "Disallow write to non-writable property";
  464. return false;
  465. }
  466. if (value.is_empty())
  467. return true;
  468. if (value_here.is_object() && value_here.as_object().is_native_property()) {
  469. call_native_property_setter(const_cast<Object*>(&this_object), value_here, value);
  470. } else {
  471. m_indexed_properties.put(&this_object, property_index, value, attributes, mode == PutOwnPropertyMode::Put);
  472. }
  473. return true;
  474. }
  475. Value Object::delete_property(PropertyName property_name)
  476. {
  477. ASSERT(property_name.is_valid());
  478. if (property_name.is_number())
  479. return Value(m_indexed_properties.remove(property_name.as_number()));
  480. int property_index = property_name.as_string().to_int().value_or(-1);
  481. if (property_index >= 0)
  482. return Value(m_indexed_properties.remove(property_name.as_number()));
  483. auto metadata = shape().lookup(property_name.as_string());
  484. if (!metadata.has_value())
  485. return Value(true);
  486. if (!metadata.value().attributes.is_configurable())
  487. return Value(false);
  488. size_t deleted_offset = metadata.value().offset;
  489. ensure_shape_is_unique();
  490. shape().remove_property_from_unique_shape(property_name.as_string(), deleted_offset);
  491. m_storage.remove(deleted_offset);
  492. return Value(true);
  493. }
  494. void Object::ensure_shape_is_unique()
  495. {
  496. if (shape().is_unique())
  497. return;
  498. m_shape = m_shape->create_unique_clone();
  499. }
  500. Value Object::get_by_index(u32 property_index) const
  501. {
  502. const Object* object = this;
  503. while (object) {
  504. if (is_string_object()) {
  505. auto& string = static_cast<const StringObject*>(this)->primitive_string().string();
  506. if (property_index < string.length())
  507. return js_string(heap(), string.substring(property_index, 1));
  508. return js_undefined();
  509. }
  510. if (static_cast<size_t>(property_index) < object->m_indexed_properties.array_like_size()) {
  511. auto result = object->m_indexed_properties.get(const_cast<Object*>(this), property_index);
  512. if (interpreter().exception())
  513. return {};
  514. if (result.has_value() && !result.value().value.is_empty())
  515. return result.value().value;
  516. return {};
  517. }
  518. object = object->prototype();
  519. if (interpreter().exception())
  520. return {};
  521. }
  522. return {};
  523. }
  524. Value Object::get(PropertyName property_name) const
  525. {
  526. if (property_name.is_number())
  527. return get_by_index(property_name.as_number());
  528. auto property_string = property_name.to_string();
  529. i32 property_index = property_string.to_int().value_or(-1);
  530. if (property_index >= 0)
  531. return get_by_index(property_index);
  532. const Object* object = this;
  533. while (object) {
  534. auto value = object->get_own_property(*this, property_name);
  535. if (interpreter().exception())
  536. return {};
  537. if (!value.is_empty())
  538. return value;
  539. object = object->prototype();
  540. if (interpreter().exception())
  541. return {};
  542. }
  543. return {};
  544. }
  545. bool Object::put_by_index(u32 property_index, Value value)
  546. {
  547. ASSERT(!value.is_empty());
  548. // If there's a setter in the prototype chain, we go to the setter.
  549. // Otherwise, it goes in the own property storage.
  550. Object* object = this;
  551. while (object) {
  552. auto existing_value = object->m_indexed_properties.get(nullptr, property_index, false);
  553. if (existing_value.has_value()) {
  554. auto value_here = existing_value.value();
  555. if (value_here.value.is_accessor()) {
  556. value_here.value.as_accessor().call_setter(object, value);
  557. return true;
  558. }
  559. if (value_here.value.is_object() && value_here.value.as_object().is_native_property()) {
  560. call_native_property_setter(const_cast<Object*>(this), value_here.value, value);
  561. return true;
  562. }
  563. }
  564. object = object->prototype();
  565. if (interpreter().exception())
  566. return {};
  567. }
  568. return put_own_property_by_index(*this, property_index, value, default_attributes, PutOwnPropertyMode::Put);
  569. }
  570. bool Object::put(PropertyName property_name, Value value)
  571. {
  572. if (property_name.is_number())
  573. return put_by_index(property_name.as_number(), value);
  574. ASSERT(!value.is_empty());
  575. auto property_string = property_name.to_string();
  576. i32 property_index = property_string.to_int().value_or(-1);
  577. if (property_index >= 0)
  578. return put_by_index(property_index, value);
  579. // If there's a setter in the prototype chain, we go to the setter.
  580. // Otherwise, it goes in the own property storage.
  581. Object* object = this;
  582. while (object) {
  583. auto metadata = object->shape().lookup(property_string);
  584. if (metadata.has_value()) {
  585. auto value_here = object->m_storage[metadata.value().offset];
  586. if (value_here.is_accessor()) {
  587. value_here.as_accessor().call_setter(Value(this), value);
  588. return true;
  589. }
  590. if (value_here.is_object() && value_here.as_object().is_native_property()) {
  591. call_native_property_setter(const_cast<Object*>(this), value_here, value);
  592. return true;
  593. }
  594. }
  595. object = object->prototype();
  596. if (interpreter().exception())
  597. return {};
  598. }
  599. return put_own_property(*this, property_string, value, default_attributes, PutOwnPropertyMode::Put);
  600. }
  601. bool Object::define_native_function(const FlyString& property_name, AK::Function<Value(Interpreter&, GlobalObject&)> native_function, i32 length, PropertyAttributes attribute)
  602. {
  603. auto* function = NativeFunction::create(interpreter(), global_object(), property_name, move(native_function));
  604. function->define_property("length", Value(length), Attribute::Configurable);
  605. if (interpreter().exception())
  606. return {};
  607. function->define_property("name", js_string(heap(), property_name), Attribute::Configurable);
  608. if (interpreter().exception())
  609. return {};
  610. return define_property(property_name, function, attribute);
  611. }
  612. bool Object::define_native_property(const FlyString& property_name, AK::Function<Value(Interpreter&, GlobalObject&)> getter, AK::Function<void(Interpreter&, GlobalObject&, Value)> setter, PropertyAttributes attribute)
  613. {
  614. return define_property(property_name, heap().allocate<NativeProperty>(move(getter), move(setter)), attribute);
  615. }
  616. void Object::visit_children(Cell::Visitor& visitor)
  617. {
  618. Cell::visit_children(visitor);
  619. visitor.visit(m_shape);
  620. for (auto& value : m_storage)
  621. visitor.visit(value);
  622. for (auto& value : m_indexed_properties.values_unordered())
  623. visitor.visit(value.value);
  624. }
  625. bool Object::has_property(PropertyName property_name) const
  626. {
  627. const Object* object = this;
  628. while (object) {
  629. if (object->has_own_property(property_name))
  630. return true;
  631. object = object->prototype();
  632. if (interpreter().exception())
  633. return false;
  634. }
  635. return false;
  636. }
  637. bool Object::has_own_property(PropertyName property_name) const
  638. {
  639. auto has_indexed_property = [&](u32 index) -> bool {
  640. if (is_string_object())
  641. return index < static_cast<const StringObject*>(this)->primitive_string().string().length();
  642. return m_indexed_properties.has_index(index);
  643. };
  644. if (property_name.is_number())
  645. return has_indexed_property(property_name.as_number());
  646. i32 property_index = property_name.as_string().to_int().value_or(-1);
  647. if (property_index >= 0)
  648. return has_indexed_property(property_index);
  649. return shape().lookup(property_name.as_string()).has_value();
  650. }
  651. Value Object::to_primitive(Value::PreferredType preferred_type) const
  652. {
  653. Value result = js_undefined();
  654. switch (preferred_type) {
  655. case Value::PreferredType::Default:
  656. case Value::PreferredType::Number: {
  657. result = value_of();
  658. if (result.is_object()) {
  659. result = to_string();
  660. }
  661. break;
  662. }
  663. case Value::PreferredType::String: {
  664. result = to_string();
  665. if (result.is_object())
  666. result = value_of();
  667. break;
  668. }
  669. }
  670. ASSERT(!result.is_object());
  671. return result;
  672. }
  673. Value Object::to_string() const
  674. {
  675. auto to_string_property = get("toString");
  676. if (to_string_property.is_function()) {
  677. auto& to_string_function = to_string_property.as_function();
  678. auto& interpreter = const_cast<Object*>(this)->interpreter();
  679. auto to_string_result = interpreter.call(to_string_function, const_cast<Object*>(this));
  680. if (to_string_result.is_object())
  681. interpreter.throw_exception<TypeError>(ErrorType::Convert, "object", "string");
  682. if (interpreter.exception())
  683. return {};
  684. auto* string = to_string_result.to_primitive_string(interpreter);
  685. if (interpreter.exception())
  686. return {};
  687. return string;
  688. }
  689. return js_string(heap(), String::format("[object %s]", class_name()));
  690. }
  691. Value Object::invoke(const FlyString& property_name, Optional<MarkedValueList> arguments)
  692. {
  693. auto& interpreter = this->interpreter();
  694. auto property = get(property_name).value_or(js_undefined());
  695. if (interpreter.exception())
  696. return {};
  697. if (!property.is_function()) {
  698. interpreter.throw_exception<TypeError>(ErrorType::NotAFunction, property.to_string_without_side_effects().characters());
  699. return {};
  700. }
  701. return interpreter.call(property.as_function(), this, move(arguments));
  702. }
  703. Value Object::call_native_property_getter(Object* this_object, Value property) const
  704. {
  705. ASSERT(property.is_object());
  706. ASSERT(property.as_object().is_native_property());
  707. auto& native_property = static_cast<NativeProperty&>(property.as_object());
  708. auto& call_frame = interpreter().push_call_frame();
  709. call_frame.this_value = this_object;
  710. auto result = native_property.get(interpreter());
  711. interpreter().pop_call_frame();
  712. return result;
  713. }
  714. void Object::call_native_property_setter(Object* this_object, Value property, Value value) const
  715. {
  716. ASSERT(property.is_object());
  717. ASSERT(property.as_object().is_native_property());
  718. auto& native_property = static_cast<NativeProperty&>(property.as_object());
  719. auto& call_frame = interpreter().push_call_frame();
  720. call_frame.this_value = this_object;
  721. native_property.set(interpreter(), value);
  722. interpreter().pop_call_frame();
  723. }
  724. }