Crypto.cpp 5.3 KB

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  1. /*
  2. * Copyright (c) 2021, Idan Horowitz <idan.horowitz@serenityos.org>
  3. * Copyright (c) 2022, stelar7 <dudedbz@gmail.com>
  4. *
  5. * SPDX-License-Identifier: BSD-2-Clause
  6. */
  7. #include <AK/Random.h>
  8. #include <AK/StringBuilder.h>
  9. #include <LibJS/Runtime/TypedArray.h>
  10. #include <LibWeb/Bindings/ExceptionOrUtils.h>
  11. #include <LibWeb/Bindings/Intrinsics.h>
  12. #include <LibWeb/Crypto/Crypto.h>
  13. #include <LibWeb/Crypto/SubtleCrypto.h>
  14. namespace Web::Crypto {
  15. WebIDL::ExceptionOr<JS::NonnullGCPtr<Crypto>> Crypto::create(JS::Realm& realm)
  16. {
  17. return MUST_OR_THROW_OOM(realm.heap().allocate<Crypto>(realm, realm));
  18. }
  19. Crypto::Crypto(JS::Realm& realm)
  20. : PlatformObject(realm)
  21. {
  22. }
  23. Crypto::~Crypto() = default;
  24. JS::ThrowCompletionOr<void> Crypto::initialize(JS::Realm& realm)
  25. {
  26. MUST_OR_THROW_OOM(Base::initialize(realm));
  27. set_prototype(&Bindings::ensure_web_prototype<Bindings::CryptoPrototype>(realm, "Crypto"));
  28. m_subtle = TRY(Bindings::throw_dom_exception_if_needed(realm.vm(), [&]() {
  29. return SubtleCrypto::create(realm);
  30. }));
  31. return {};
  32. }
  33. JS::NonnullGCPtr<SubtleCrypto> Crypto::subtle() const
  34. {
  35. return *m_subtle;
  36. }
  37. // https://w3c.github.io/webcrypto/#dfn-Crypto-method-getRandomValues
  38. WebIDL::ExceptionOr<JS::Value> Crypto::get_random_values(JS::Value array) const
  39. {
  40. // 1. If array is not an Int8Array, Uint8Array, Uint8ClampedArray, Int16Array, Uint16Array, Int32Array, Uint32Array, BigInt64Array, or BigUint64Array, then throw a TypeMismatchError and terminate the algorithm.
  41. if (!array.is_object() || !(is<JS::Int8Array>(array.as_object()) || is<JS::Uint8Array>(array.as_object()) || is<JS::Uint8ClampedArray>(array.as_object()) || is<JS::Int16Array>(array.as_object()) || is<JS::Uint16Array>(array.as_object()) || is<JS::Int32Array>(array.as_object()) || is<JS::Uint32Array>(array.as_object()) || is<JS::BigInt64Array>(array.as_object()) || is<JS::BigUint64Array>(array.as_object())))
  42. return WebIDL::TypeMismatchError::create(realm(), "array must be one of Int8Array, Uint8Array, Uint8ClampedArray, Int16Array, Uint16Array, Int32Array, Uint32Array, BigInt64Array, or BigUint64Array");
  43. auto& typed_array = static_cast<JS::TypedArrayBase&>(array.as_object());
  44. // 2. If the byteLength of array is greater than 65536, throw a QuotaExceededError and terminate the algorithm.
  45. if (typed_array.byte_length() > 65536)
  46. return WebIDL::QuotaExceededError::create(realm(), "array's byteLength may not be greater than 65536");
  47. // IMPLEMENTATION DEFINED: If the viewed array buffer is detached, throw a InvalidStateError and terminate the algorithm.
  48. if (typed_array.viewed_array_buffer()->is_detached())
  49. return WebIDL::InvalidStateError::create(realm(), "array is detached");
  50. // FIXME: Handle SharedArrayBuffers
  51. // 3. Overwrite all elements of array with cryptographically strong random values of the appropriate type.
  52. fill_with_random(typed_array.viewed_array_buffer()->buffer());
  53. // 4. Return array.
  54. return array;
  55. }
  56. // https://w3c.github.io/webcrypto/#dfn-Crypto-method-randomUUID
  57. WebIDL::ExceptionOr<String> Crypto::random_uuid() const
  58. {
  59. auto& vm = realm().vm();
  60. return TRY_OR_THROW_OOM(vm, generate_random_uuid());
  61. }
  62. void Crypto::visit_edges(Cell::Visitor& visitor)
  63. {
  64. Base::visit_edges(visitor);
  65. visitor.visit(m_subtle.ptr());
  66. }
  67. // https://w3c.github.io/webcrypto/#dfn-generate-a-random-uuid
  68. ErrorOr<String> generate_random_uuid()
  69. {
  70. // 1. Let bytes be a byte sequence of length 16.
  71. u8 bytes[16];
  72. // 2. Fill bytes with cryptographically secure random bytes.
  73. fill_with_random(bytes);
  74. // 3. Set the 4 most significant bits of bytes[6], which represent the UUID version, to 0100.
  75. bytes[6] &= ~(1 << 7);
  76. bytes[6] |= 1 << 6;
  77. bytes[6] &= ~(1 << 5);
  78. bytes[6] &= ~(1 << 4);
  79. // 4. Set the 2 most significant bits of bytes[8], which represent the UUID variant, to 10.
  80. bytes[8] |= 1 << 7;
  81. bytes[8] &= ~(1 << 6);
  82. /* 5. Return the string concatenation of
  83. «
  84. hexadecimal representation of bytes[0],
  85. hexadecimal representation of bytes[1],
  86. hexadecimal representation of bytes[2],
  87. hexadecimal representation of bytes[3],
  88. "-",
  89. hexadecimal representation of bytes[4],
  90. hexadecimal representation of bytes[5],
  91. "-",
  92. hexadecimal representation of bytes[6],
  93. hexadecimal representation of bytes[7],
  94. "-",
  95. hexadecimal representation of bytes[8],
  96. hexadecimal representation of bytes[9],
  97. "-",
  98. hexadecimal representation of bytes[10],
  99. hexadecimal representation of bytes[11],
  100. hexadecimal representation of bytes[12],
  101. hexadecimal representation of bytes[13],
  102. hexadecimal representation of bytes[14],
  103. hexadecimal representation of bytes[15]
  104. ».
  105. */
  106. StringBuilder builder;
  107. TRY(builder.try_appendff("{:02x}{:02x}{:02x}{:02x}-", bytes[0], bytes[1], bytes[2], bytes[3]));
  108. TRY(builder.try_appendff("{:02x}{:02x}-", bytes[4], bytes[5]));
  109. TRY(builder.try_appendff("{:02x}{:02x}-", bytes[6], bytes[7]));
  110. TRY(builder.try_appendff("{:02x}{:02x}-", bytes[8], bytes[9]));
  111. TRY(builder.try_appendff("{:02x}{:02x}{:02x}{:02x}{:02x}{:02x}", bytes[10], bytes[11], bytes[12], bytes[13], bytes[14], bytes[15]));
  112. return builder.to_string();
  113. };
  114. }