ArrayBuffer.h 9.3 KB

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  1. /*
  2. * Copyright (c) 2020-2021, Linus Groh <linusg@serenityos.org>
  3. *
  4. * SPDX-License-Identifier: BSD-2-Clause
  5. */
  6. #pragma once
  7. #include <AK/ByteBuffer.h>
  8. #include <AK/Function.h>
  9. #include <AK/Variant.h>
  10. #include <LibJS/Runtime/Completion.h>
  11. #include <LibJS/Runtime/GlobalObject.h>
  12. #include <LibJS/Runtime/Object.h>
  13. namespace JS {
  14. struct ClampedU8 {
  15. };
  16. // 25.1.1 Notation (read-modify-write modification function), https://tc39.es/ecma262/#sec-arraybuffer-notation
  17. using ReadWriteModifyFunction = Function<ByteBuffer(ByteBuffer, ByteBuffer)>;
  18. class ArrayBuffer : public Object {
  19. JS_OBJECT(ArrayBuffer, Object);
  20. public:
  21. static ThrowCompletionOr<ArrayBuffer*> create(GlobalObject&, size_t);
  22. static ArrayBuffer* create(GlobalObject&, ByteBuffer);
  23. static ArrayBuffer* create(GlobalObject&, ByteBuffer*);
  24. ArrayBuffer(ByteBuffer buffer, Object& prototype);
  25. ArrayBuffer(ByteBuffer* buffer, Object& prototype);
  26. virtual ~ArrayBuffer() override;
  27. size_t byte_length() const { return buffer_impl().size(); }
  28. ByteBuffer& buffer() { return buffer_impl(); }
  29. const ByteBuffer& buffer() const { return buffer_impl(); }
  30. // Used by allocate_array_buffer() to attach the data block after construction
  31. void set_buffer(ByteBuffer buffer) { m_buffer = move(buffer); }
  32. Value detach_key() const { return m_detach_key; }
  33. void set_detach_key(Value detach_key) { m_detach_key = detach_key; }
  34. void detach_buffer() { m_buffer = Empty {}; }
  35. bool is_detached() const { return m_buffer.has<Empty>(); }
  36. enum Order {
  37. SeqCst,
  38. Unordered
  39. };
  40. template<typename type>
  41. Value get_value(size_t byte_index, bool is_typed_array, Order, bool is_little_endian = true);
  42. template<typename type>
  43. Value set_value(size_t byte_index, Value value, bool is_typed_array, Order, bool is_little_endian = true);
  44. template<typename T>
  45. Value get_modify_set_value(size_t byte_index, Value value, ReadWriteModifyFunction operation, bool is_little_endian = true);
  46. private:
  47. virtual void visit_edges(Visitor&) override;
  48. ByteBuffer& buffer_impl()
  49. {
  50. ByteBuffer* ptr { nullptr };
  51. m_buffer.visit([&](Empty) { VERIFY_NOT_REACHED(); }, [&](auto* pointer) { ptr = pointer; }, [&](auto& value) { ptr = &value; });
  52. return *ptr;
  53. }
  54. const ByteBuffer& buffer_impl() const { return const_cast<ArrayBuffer*>(this)->buffer_impl(); }
  55. Variant<Empty, ByteBuffer, ByteBuffer*> m_buffer;
  56. // The various detach related members of ArrayBuffer are not used by any ECMA262 functionality,
  57. // but are required to be available for the use of various harnesses like the Test262 test runner.
  58. Value m_detach_key;
  59. };
  60. ThrowCompletionOr<ArrayBuffer*> allocate_array_buffer(GlobalObject&, FunctionObject& constructor, size_t byte_length, Optional<size_t> max_byte_length = {});
  61. ThrowCompletionOr<ArrayBuffer*> clone_array_buffer(GlobalObject&, ArrayBuffer& source_buffer, size_t source_byte_offset, size_t source_length, FunctionObject& clone_constructor);
  62. // 25.1.2.9 RawBytesToNumeric ( type, rawBytes, isLittleEndian ), https://tc39.es/ecma262/#sec-rawbytestonumeric
  63. template<typename T>
  64. static Value raw_bytes_to_numeric(GlobalObject& global_object, ByteBuffer raw_value, bool is_little_endian)
  65. {
  66. if (!is_little_endian) {
  67. VERIFY(raw_value.size() % 2 == 0);
  68. for (size_t i = 0; i < raw_value.size() / 2; ++i)
  69. swap(raw_value[i], raw_value[raw_value.size() - 1 - i]);
  70. }
  71. using UnderlyingBufferDataType = Conditional<IsSame<ClampedU8, T>, u8, T>;
  72. if constexpr (IsSame<UnderlyingBufferDataType, float>) {
  73. float value;
  74. raw_value.span().copy_to({ &value, sizeof(float) });
  75. if (isnan(value))
  76. return js_nan();
  77. return Value(value);
  78. }
  79. if constexpr (IsSame<UnderlyingBufferDataType, double>) {
  80. double value;
  81. raw_value.span().copy_to({ &value, sizeof(double) });
  82. if (isnan(value))
  83. return js_nan();
  84. return Value(value);
  85. }
  86. if constexpr (!IsIntegral<UnderlyingBufferDataType>)
  87. VERIFY_NOT_REACHED();
  88. UnderlyingBufferDataType int_value = 0;
  89. raw_value.span().copy_to({ &int_value, sizeof(UnderlyingBufferDataType) });
  90. if constexpr (sizeof(UnderlyingBufferDataType) == 8) {
  91. if constexpr (IsSigned<UnderlyingBufferDataType>)
  92. return js_bigint(global_object.heap(), Crypto::SignedBigInteger::create_from(int_value));
  93. else
  94. return js_bigint(global_object.heap(), Crypto::SignedBigInteger { Crypto::UnsignedBigInteger::create_from(int_value) });
  95. } else {
  96. return Value(int_value);
  97. }
  98. }
  99. // Implementation for 25.1.2.10 GetValueFromBuffer, used in TypedArray<T>::get_value_from_buffer().
  100. template<typename T>
  101. Value ArrayBuffer::get_value(size_t byte_index, [[maybe_unused]] bool is_typed_array, Order, bool is_little_endian)
  102. {
  103. auto element_size = sizeof(T);
  104. // FIXME: Check for shared buffer
  105. auto raw_value = buffer_impl().slice(byte_index, element_size);
  106. return raw_bytes_to_numeric<T>(global_object(), move(raw_value), is_little_endian);
  107. }
  108. // 25.1.2.11 NumericToRawBytes ( type, value, isLittleEndian ), https://tc39.es/ecma262/#sec-numerictorawbytes
  109. template<typename T>
  110. static ByteBuffer numeric_to_raw_bytes(GlobalObject& global_object, Value value, bool is_little_endian)
  111. {
  112. VERIFY(value.is_number() || value.is_bigint());
  113. using UnderlyingBufferDataType = Conditional<IsSame<ClampedU8, T>, u8, T>;
  114. ByteBuffer raw_bytes = ByteBuffer::create_uninitialized(sizeof(UnderlyingBufferDataType)).release_value_but_fixme_should_propagate_errors(); // FIXME: Handle possible OOM situation.
  115. auto flip_if_needed = [&]() {
  116. if (is_little_endian)
  117. return;
  118. VERIFY(sizeof(UnderlyingBufferDataType) % 2 == 0);
  119. for (size_t i = 0; i < sizeof(UnderlyingBufferDataType) / 2; ++i)
  120. swap(raw_bytes[i], raw_bytes[sizeof(UnderlyingBufferDataType) - 1 - i]);
  121. };
  122. if constexpr (IsSame<UnderlyingBufferDataType, float>) {
  123. float raw_value = MUST(value.to_double(global_object));
  124. ReadonlyBytes { &raw_value, sizeof(float) }.copy_to(raw_bytes);
  125. flip_if_needed();
  126. return raw_bytes;
  127. }
  128. if constexpr (IsSame<UnderlyingBufferDataType, double>) {
  129. double raw_value = MUST(value.to_double(global_object));
  130. ReadonlyBytes { &raw_value, sizeof(double) }.copy_to(raw_bytes);
  131. flip_if_needed();
  132. return raw_bytes;
  133. }
  134. if constexpr (!IsIntegral<UnderlyingBufferDataType>)
  135. VERIFY_NOT_REACHED();
  136. if constexpr (sizeof(UnderlyingBufferDataType) == 8) {
  137. UnderlyingBufferDataType int_value;
  138. if constexpr (IsSigned<UnderlyingBufferDataType>)
  139. int_value = MUST(value.to_bigint_int64(global_object));
  140. else
  141. int_value = MUST(value.to_bigint_uint64(global_object));
  142. ReadonlyBytes { &int_value, sizeof(UnderlyingBufferDataType) }.copy_to(raw_bytes);
  143. flip_if_needed();
  144. return raw_bytes;
  145. } else {
  146. UnderlyingBufferDataType int_value;
  147. if constexpr (IsSigned<UnderlyingBufferDataType>) {
  148. if constexpr (sizeof(UnderlyingBufferDataType) == 4)
  149. int_value = MUST(value.to_i32(global_object));
  150. else if constexpr (sizeof(UnderlyingBufferDataType) == 2)
  151. int_value = MUST(value.to_i16(global_object));
  152. else
  153. int_value = MUST(value.to_i8(global_object));
  154. } else {
  155. if constexpr (sizeof(UnderlyingBufferDataType) == 4)
  156. int_value = MUST(value.to_u32(global_object));
  157. else if constexpr (sizeof(UnderlyingBufferDataType) == 2)
  158. int_value = MUST(value.to_u16(global_object));
  159. else if constexpr (!IsSame<T, ClampedU8>)
  160. int_value = MUST(value.to_u8(global_object));
  161. else
  162. int_value = MUST(value.to_u8_clamp(global_object));
  163. }
  164. ReadonlyBytes { &int_value, sizeof(UnderlyingBufferDataType) }.copy_to(raw_bytes);
  165. if constexpr (sizeof(UnderlyingBufferDataType) % 2 == 0)
  166. flip_if_needed();
  167. return raw_bytes;
  168. }
  169. }
  170. // 25.1.2.12 SetValueInBuffer ( arrayBuffer, byteIndex, type, value, isTypedArray, order [ , isLittleEndian ] ), https://tc39.es/ecma262/#sec-setvalueinbuffer
  171. template<typename T>
  172. Value ArrayBuffer::set_value(size_t byte_index, Value value, [[maybe_unused]] bool is_typed_array, Order, bool is_little_endian)
  173. {
  174. auto raw_bytes = numeric_to_raw_bytes<T>(global_object(), value, is_little_endian);
  175. // FIXME: Check for shared buffer
  176. raw_bytes.span().copy_to(buffer_impl().span().slice(byte_index));
  177. return js_undefined();
  178. }
  179. // 25.1.2.13 GetModifySetValueInBuffer ( arrayBuffer, byteIndex, type, value, op [ , isLittleEndian ] ), https://tc39.es/ecma262/#sec-getmodifysetvalueinbuffer
  180. template<typename T>
  181. Value ArrayBuffer::get_modify_set_value(size_t byte_index, Value value, ReadWriteModifyFunction operation, bool is_little_endian)
  182. {
  183. auto raw_bytes = numeric_to_raw_bytes<T>(global_object(), value, is_little_endian);
  184. // FIXME: Check for shared buffer
  185. auto raw_bytes_read = buffer_impl().slice(byte_index, sizeof(T));
  186. auto raw_bytes_modified = operation(raw_bytes_read, raw_bytes);
  187. raw_bytes_modified.span().copy_to(buffer_impl().span().slice(byte_index));
  188. return raw_bytes_to_numeric<T>(global_object(), raw_bytes_read, is_little_endian);
  189. }
  190. }