
Just some boilerplate code to get started :^) This adds both the SubtleCrypto constructor to the window object, as well as the crypto.subtle instance attribute.
43 lines
2.1 KiB
C++
43 lines
2.1 KiB
C++
/*
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* Copyright (c) 2021, Idan Horowitz <idan.horowitz@serenityos.org>
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*
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* SPDX-License-Identifier: BSD-2-Clause
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*/
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#include <AK/Random.h>
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#include <LibJS/Runtime/TypedArray.h>
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#include <LibWeb/Bindings/Wrapper.h>
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#include <LibWeb/Crypto/Crypto.h>
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#include <LibWeb/Crypto/SubtleCrypto.h>
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namespace Web::Crypto {
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Crypto::Crypto()
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: m_subtle(SubtleCrypto::create())
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{
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}
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DOM::ExceptionOr<JS::Value> Crypto::get_random_values(JS::Value array) const
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{
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// 1. If array is not an Int8Array, Uint8Array, Uint8ClampedArray, Int16Array, Uint16Array, Int32Array, Uint32Array, BigInt64Array, or BigUint64Array, then throw a TypeMismatchError and terminate the algorithm.
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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())))
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return DOM::TypeMismatchError::create("array must be one of Int8Array, Uint8Array, Uint8ClampedArray, Int16Array, Uint16Array, Int32Array, Uint32Array, BigInt64Array, or BigUint64Array");
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auto& typed_array = static_cast<JS::TypedArrayBase&>(array.as_object());
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// 2. If the byteLength of array is greater than 65536, throw a QuotaExceededError and terminate the algorithm.
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if (typed_array.byte_length() > 65536)
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return DOM::QuotaExceededError::create("array's byteLength may not be greater than 65536");
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// IMPLEMENTATION DEFINED: If the viewed array buffer is detached, throw a InvalidStateError and terminate the algorithm.
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if (typed_array.viewed_array_buffer()->is_detached())
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return DOM::InvalidStateError::create("array is detached");
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// FIXME: Handle SharedArrayBuffers
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// 3. Overwrite all elements of array with cryptographically strong random values of the appropriate type.
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fill_with_random(typed_array.viewed_array_buffer()->buffer().data(), typed_array.viewed_array_buffer()->buffer().size());
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// 4. Return array.
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return array;
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}
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}
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