Array.cpp 9.6 KB

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  1. /*
  2. * Copyright (c) 2020, Andreas Kling <kling@serenityos.org>
  3. * Copyright (c) 2020-2022, Linus Groh <linusg@serenityos.org>
  4. *
  5. * SPDX-License-Identifier: BSD-2-Clause
  6. */
  7. #include <AK/Function.h>
  8. #include <LibJS/Runtime/Array.h>
  9. #include <LibJS/Runtime/Completion.h>
  10. #include <LibJS/Runtime/Error.h>
  11. #include <LibJS/Runtime/GlobalObject.h>
  12. namespace JS {
  13. // 10.4.2.2 ArrayCreate ( length [ , proto ] ), https://tc39.es/ecma262/#sec-arraycreate
  14. ThrowCompletionOr<Array*> Array::create(GlobalObject& global_object, size_t length, Object* prototype)
  15. {
  16. auto& vm = global_object.vm();
  17. if (length > NumericLimits<u32>::max())
  18. return vm.throw_completion<RangeError>(global_object, ErrorType::InvalidLength, "array");
  19. if (!prototype)
  20. prototype = global_object.array_prototype();
  21. auto* array = global_object.heap().allocate<Array>(global_object, *prototype);
  22. MUST(array->internal_define_own_property(vm.names.length, { .value = Value(length), .writable = true, .enumerable = false, .configurable = false }));
  23. return array;
  24. }
  25. // 7.3.18 CreateArrayFromList ( elements ), https://tc39.es/ecma262/#sec-createarrayfromlist
  26. Array* Array::create_from(GlobalObject& global_object, Vector<Value> const& elements)
  27. {
  28. // 1. Let array be ! ArrayCreate(0).
  29. auto* array = MUST(Array::create(global_object, 0));
  30. // 2. Let n be 0.
  31. // 3. For each element e of elements, do
  32. for (u32 n = 0; n < elements.size(); ++n) {
  33. // a. Perform ! CreateDataPropertyOrThrow(array, ! ToString(𝔽(n)), e).
  34. MUST(array->create_data_property_or_throw(n, elements[n]));
  35. // b. Set n to n + 1.
  36. }
  37. // 4. Return array.
  38. return array;
  39. }
  40. Array::Array(Object& prototype)
  41. : Object(prototype)
  42. {
  43. }
  44. // 10.4.2.4 ArraySetLength ( A, Desc ), https://tc39.es/ecma262/#sec-arraysetlength
  45. ThrowCompletionOr<bool> Array::set_length(PropertyDescriptor const& property_descriptor)
  46. {
  47. auto& global_object = this->global_object();
  48. auto& vm = this->vm();
  49. // 1. If Desc.[[Value]] is absent, then
  50. // a. Return OrdinaryDefineOwnProperty(A, "length", Desc).
  51. // 2. Let newLenDesc be a copy of Desc.
  52. // NOTE: Handled by step 16
  53. size_t new_length = indexed_properties().array_like_size();
  54. if (property_descriptor.value.has_value()) {
  55. // 3. Let newLen be ? ToUint32(Desc.[[Value]]).
  56. new_length = TRY(property_descriptor.value->to_u32(global_object));
  57. // 4. Let numberLen be ? ToNumber(Desc.[[Value]]).
  58. auto number_length = TRY(property_descriptor.value->to_number(global_object));
  59. // 5. If newLen is not the same value as numberLen, throw a RangeError exception.
  60. if (new_length != number_length.as_double())
  61. return vm.throw_completion<RangeError>(global_object, ErrorType::InvalidLength, "array");
  62. }
  63. // 6. Set newLenDesc.[[Value]] to newLen.
  64. // 7. Let oldLenDesc be OrdinaryGetOwnProperty(A, "length").
  65. // 8. Assert: ! IsDataDescriptor(oldLenDesc) is true.
  66. // 9. Assert: oldLenDesc.[[Configurable]] is false.
  67. // 10. Let oldLen be oldLenDesc.[[Value]].
  68. // 11. If newLen ≥ oldLen, then
  69. // a. Return OrdinaryDefineOwnProperty(A, "length", newLenDesc).
  70. // 12. If oldLenDesc.[[Writable]] is false, return false.
  71. // NOTE: Handled by step 16
  72. // 13. If newLenDesc.[[Writable]] is absent or is true, let newWritable be true.
  73. // 14. Else,
  74. // a. NOTE: Setting the [[Writable]] attribute to false is deferred in case any elements cannot be deleted.
  75. // b. Let newWritable be false.
  76. auto new_writable = property_descriptor.writable.value_or(true);
  77. // c. Set newLenDesc.[[Writable]] to true.
  78. // 15. Let succeeded be ! OrdinaryDefineOwnProperty(A, "length", newLenDesc).
  79. // 16. If succeeded is false, return false.
  80. // NOTE: Because the length property does not actually exist calling OrdinaryDefineOwnProperty
  81. // will result in unintended behavior, so instead we only implement here the small subset of
  82. // checks performed inside of it that would have mattered to us:
  83. // 10.1.6.3 ValidateAndApplyPropertyDescriptor ( O, P, extensible, Desc, current ), https://tc39.es/ecma262/#sec-validateandapplypropertydescriptor
  84. // 4. If current.[[Configurable]] is false, then
  85. // a. If Desc.[[Configurable]] is present and its value is true, return false.
  86. if (property_descriptor.configurable.has_value() && *property_descriptor.configurable)
  87. return false;
  88. // b. If Desc.[[Enumerable]] is present and ! SameValue(Desc.[[Enumerable]], current.[[Enumerable]]) is false, return false.
  89. if (property_descriptor.enumerable.has_value() && *property_descriptor.enumerable)
  90. return false;
  91. // 6. Else if ! SameValue(! IsDataDescriptor(current), ! IsDataDescriptor(Desc)) is false, then
  92. if (property_descriptor.is_accessor_descriptor()) {
  93. // a. If current.[[Configurable]] is false, return false.
  94. return false;
  95. }
  96. // 7. Else if IsDataDescriptor(current) and IsDataDescriptor(Desc) are both true, then
  97. // a. If current.[[Configurable]] is false and current.[[Writable]] is false, then
  98. if (!m_length_writable) {
  99. // i. If Desc.[[Writable]] is present and Desc.[[Writable]] is true, return false.
  100. if (property_descriptor.writable.has_value() && *property_descriptor.writable)
  101. return false;
  102. // ii. If Desc.[[Value]] is present and SameValue(Desc.[[Value]], current.[[Value]]) is false, return false.
  103. if (new_length != indexed_properties().array_like_size())
  104. return false;
  105. }
  106. // 17. For each own property key P of A that is an array index, whose numeric value is greater than or equal to newLen, in descending numeric index order, do
  107. // a. Let deleteSucceeded be ! A.[[Delete]](P).
  108. // b. If deleteSucceeded is false, then
  109. // i. Set newLenDesc.[[Value]] to ! ToUint32(P) + 1𝔽.
  110. bool success = indexed_properties().set_array_like_size(new_length);
  111. // ii. If newWritable is false, set newLenDesc.[[Writable]] to false.
  112. // iii. Perform ! OrdinaryDefineOwnProperty(A, "length", newLenDesc).
  113. // NOTE: Handled by step 18
  114. // 18. If newWritable is false, then
  115. // a. Set succeeded to ! OrdinaryDefineOwnProperty(A, "length", PropertyDescriptor { [[Writable]]: false }).
  116. // b. Assert: succeeded is true.
  117. if (!new_writable)
  118. m_length_writable = false;
  119. // NOTE: Continuation of step #17
  120. // iv. Return false.
  121. if (!success)
  122. return false;
  123. // 19. Return true.
  124. return true;
  125. }
  126. // NON-STANDARD: Used to return the value of the ephemeral length property
  127. ThrowCompletionOr<Optional<PropertyDescriptor>> Array::internal_get_own_property(PropertyKey const& property_key) const
  128. {
  129. auto& vm = this->vm();
  130. if (property_key.is_string() && property_key.as_string() == vm.names.length.as_string())
  131. return PropertyDescriptor { .value = Value(indexed_properties().array_like_size()), .writable = m_length_writable, .enumerable = false, .configurable = false };
  132. return Object::internal_get_own_property(property_key);
  133. }
  134. // 10.4.2.1 [[DefineOwnProperty]] ( P, Desc ), https://tc39.es/ecma262/#sec-array-exotic-objects-defineownproperty-p-desc
  135. ThrowCompletionOr<bool> Array::internal_define_own_property(PropertyKey const& property_key, PropertyDescriptor const& property_descriptor)
  136. {
  137. auto& vm = this->vm();
  138. VERIFY(property_key.is_valid());
  139. // 1. If P is "length", then
  140. if (property_key.is_string() && property_key.as_string() == vm.names.length.as_string()) {
  141. // a. Return ? ArraySetLength(A, Desc).
  142. return set_length(property_descriptor);
  143. }
  144. // 2. Else if P is an array index, then
  145. if (property_key.is_number()) {
  146. // a. Let oldLenDesc be OrdinaryGetOwnProperty(A, "length").
  147. // b. Assert: ! IsDataDescriptor(oldLenDesc) is true.
  148. // c. Assert: oldLenDesc.[[Configurable]] is false.
  149. // d. Let oldLen be oldLenDesc.[[Value]].
  150. // e. Assert: oldLen is a non-negative integral Number.
  151. // f. Let index be ! ToUint32(P).
  152. // g. If index ≥ oldLen and oldLenDesc.[[Writable]] is false, return false.
  153. if (property_key.as_number() >= indexed_properties().array_like_size() && !m_length_writable)
  154. return false;
  155. // h. Let succeeded be ! OrdinaryDefineOwnProperty(A, P, Desc).
  156. auto succeeded = MUST(Object::internal_define_own_property(property_key, property_descriptor));
  157. // i. If succeeded is false, return false.
  158. if (!succeeded)
  159. return false;
  160. // j. If index ≥ oldLen, then
  161. // i. Set oldLenDesc.[[Value]] to index + 1𝔽.
  162. // ii. Set succeeded to OrdinaryDefineOwnProperty(A, "length", oldLenDesc).
  163. // iii. Assert: succeeded is true.
  164. // k. Return true.
  165. return true;
  166. }
  167. // 3. Return OrdinaryDefineOwnProperty(A, P, Desc).
  168. return Object::internal_define_own_property(property_key, property_descriptor);
  169. }
  170. // NON-STANDARD: Used to reject deletes to ephemeral (non-configurable) length property
  171. ThrowCompletionOr<bool> Array::internal_delete(PropertyKey const& property_key)
  172. {
  173. auto& vm = this->vm();
  174. if (property_key.is_string() && property_key.as_string() == vm.names.length.as_string())
  175. return false;
  176. return Object::internal_delete(property_key);
  177. }
  178. // NON-STANDARD: Used to inject the ephemeral length property's key
  179. ThrowCompletionOr<MarkedVector<Value>> Array::internal_own_property_keys() const
  180. {
  181. auto& vm = this->vm();
  182. auto keys = TRY(Object::internal_own_property_keys());
  183. // FIXME: This is pretty expensive, find a better way to do this
  184. keys.insert(indexed_properties().real_size(), js_string(vm, vm.names.length.as_string()));
  185. return { move(keys) };
  186. }
  187. }