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			300 lines
		
	
	
	
		
			15 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			300 lines
		
	
	
	
		
			15 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
/*
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 * Copyright (c) 2021-2022, Linus Groh <linusg@serenityos.org>
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 * Copyright (c) 2023, stelar7 <dudedbz@gmail.com>
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 *
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 * SPDX-License-Identifier: BSD-2-Clause
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 */
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#include <AK/QuickSort.h>
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#include <LibCrypto/Hash/HashManager.h>
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#include <LibJS/Runtime/ArrayBuffer.h>
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#include <LibJS/Runtime/Promise.h>
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#include <LibWeb/Bindings/ExceptionOrUtils.h>
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#include <LibWeb/Bindings/Intrinsics.h>
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#include <LibWeb/Crypto/SubtleCrypto.h>
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#include <LibWeb/HTML/Scripting/TemporaryExecutionContext.h>
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#include <LibWeb/Platform/EventLoopPlugin.h>
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#include <LibWeb/WebIDL/AbstractOperations.h>
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#include <LibWeb/WebIDL/Buffers.h>
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#include <LibWeb/WebIDL/ExceptionOr.h>
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#include <LibWeb/WebIDL/Promise.h>
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namespace Web::Crypto {
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static void normalize_key_usages(Vector<Bindings::KeyUsage>& key_usages)
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{
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    quick_sort(key_usages);
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}
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JS_DEFINE_ALLOCATOR(SubtleCrypto);
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JS::NonnullGCPtr<SubtleCrypto> SubtleCrypto::create(JS::Realm& realm)
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{
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    return realm.heap().allocate<SubtleCrypto>(realm, realm);
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}
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SubtleCrypto::SubtleCrypto(JS::Realm& realm)
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    : PlatformObject(realm)
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{
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}
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SubtleCrypto::~SubtleCrypto() = default;
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void SubtleCrypto::initialize(JS::Realm& realm)
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{
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    Base::initialize(realm);
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    set_prototype(&Bindings::ensure_web_prototype<Bindings::SubtleCryptoPrototype>(realm, "SubtleCrypto"_fly_string));
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}
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// https://w3c.github.io/webcrypto/#dfn-normalize-an-algorithm
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WebIDL::ExceptionOr<SubtleCrypto::NormalizedAlgorithmAndParameter> SubtleCrypto::normalize_an_algorithm(AlgorithmIdentifier const& algorithm, String operation)
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{
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    auto& realm = this->realm();
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    auto& vm = this->vm();
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    // If alg is an instance of a DOMString:
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    if (algorithm.has<String>()) {
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        // Return the result of running the normalize an algorithm algorithm,
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        // with the alg set to a new Algorithm dictionary whose name attribute is alg, and with the op set to op.
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        auto dictionary = JS::make_handle(JS::Object::create(realm, realm.intrinsics().object_prototype()));
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        TRY(dictionary->create_data_property("name", JS::PrimitiveString::create(vm, algorithm.get<String>())));
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        return normalize_an_algorithm(dictionary, operation);
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    }
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    // If alg is an object:
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    // 1. Let registeredAlgorithms be the associative container stored at the op key of supportedAlgorithms.
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    // NOTE: There should always be a container at the op key.
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    auto internal_object = supported_algorithms();
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    auto maybe_registered_algorithms = internal_object.get(operation);
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    auto registered_algorithms = maybe_registered_algorithms.value();
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    // 2. Let initialAlg be the result of converting the ECMAScript object represented by alg to
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    // the IDL dictionary type Algorithm, as defined by [WebIDL].
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    // 3. If an error occurred, return the error and terminate this algorithm.
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    // Note: We're not going to bother creating an Algorithm object, all we want is the name attribute so that we can
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    //       fetch the actual algorithm factory from the registeredAlgorithms map.
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    auto initial_algorithm = TRY(algorithm.get<JS::Handle<JS::Object>>()->get("name"));
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    // 4. Let algName be the value of the name attribute of initialAlg.
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    auto algorithm_name = TRY(initial_algorithm.to_string(vm));
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    RegisteredAlgorithm desired_type;
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    // 5. If registeredAlgorithms contains a key that is a case-insensitive string match for algName:
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    if (auto it = registered_algorithms.find(algorithm_name); it != registered_algorithms.end()) {
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        // 1. Set algName to the value of the matching key.
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        // 2. Let desiredType be the IDL dictionary type stored at algName in registeredAlgorithms.
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        desired_type = it->value;
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    } else {
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        // Otherwise:
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        // Return a new NotSupportedError and terminate this algorithm.
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        return WebIDL::NotSupportedError::create(realm, MUST(String::formatted("Algorithm '{}' is not supported", algorithm_name)));
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    }
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    // 8. Let normalizedAlgorithm be the result of converting the ECMAScript object represented by alg
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    // to the IDL dictionary type desiredType, as defined by [WebIDL].
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    // 9. Set the name attribute of normalizedAlgorithm to algName.
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    // 10. If an error occurred, return the error and terminate this algorithm.
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    // 11. Let dictionaries be a list consisting of the IDL dictionary type desiredType
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    // and all of desiredType's inherited dictionaries, in order from least to most derived.
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    // 12. For each dictionary dictionary in dictionaries:
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    //    Note: All of these steps are handled by the create_methods and parameter_from_value methods.
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    auto methods = desired_type.create_methods(realm);
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    auto parameter = TRY(desired_type.parameter_from_value(vm, algorithm.get<JS::Handle<JS::Object>>()));
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    auto normalized_algorithm = NormalizedAlgorithmAndParameter { move(methods), move(parameter) };
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    // 13. Return normalizedAlgorithm.
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    return normalized_algorithm;
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}
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// https://w3c.github.io/webcrypto/#dfn-SubtleCrypto-method-digest
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JS::NonnullGCPtr<JS::Promise> SubtleCrypto::digest(AlgorithmIdentifier const& algorithm, JS::Handle<WebIDL::BufferSource> const& data)
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{
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    auto& realm = this->realm();
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    // 1. Let algorithm be the algorithm parameter passed to the digest() method.
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    // 2. Let data be the result of getting a copy of the bytes held by the data parameter passed to the digest() method.
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    auto data_buffer_or_error = WebIDL::get_buffer_source_copy(*data->raw_object());
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    if (data_buffer_or_error.is_error())
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        return WebIDL::create_rejected_promise_from_exception(realm, WebIDL::OperationError::create(realm, "Failed to copy bytes from ArrayBuffer"_fly_string));
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    auto data_buffer = data_buffer_or_error.release_value();
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    // 3. Let normalizedAlgorithm be the result of normalizing an algorithm, with alg set to algorithm and op set to "digest".
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    auto normalized_algorithm = normalize_an_algorithm(algorithm, "digest"_string);
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    // 4. If an error occurred, return a Promise rejected with normalizedAlgorithm.
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    // FIXME: Spec bug: link to https://webidl.spec.whatwg.org/#a-promise-rejected-with
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    if (normalized_algorithm.is_error())
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        return WebIDL::create_rejected_promise_from_exception(realm, normalized_algorithm.release_error());
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    // 5. Let promise be a new Promise.
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    auto promise = WebIDL::create_promise(realm);
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    // 6. Return promise and perform the remaining steps in parallel.
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    Platform::EventLoopPlugin::the().deferred_invoke([&realm, algorithm_object = normalized_algorithm.release_value(), promise, data_buffer = move(data_buffer)]() -> void {
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        HTML::TemporaryExecutionContext context(Bindings::host_defined_environment_settings_object(realm), HTML::TemporaryExecutionContext::CallbacksEnabled::Yes);
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        // 7. If the following steps or referenced procedures say to throw an error, reject promise with the returned error and then terminate the algorithm.
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        // FIXME: Need spec reference to https://webidl.spec.whatwg.org/#reject
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        // 8. Let result be the result of performing the digest operation specified by normalizedAlgorithm using algorithm, with data as message.
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        auto result = algorithm_object.methods->digest(*algorithm_object.parameter, data_buffer);
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        if (result.is_exception()) {
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            WebIDL::reject_promise(realm, promise, Bindings::dom_exception_to_throw_completion(realm.vm(), result.release_error()).release_value().value());
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            return;
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        }
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        // 9. Resolve promise with result.
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        WebIDL::resolve_promise(realm, promise, result.release_value());
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    });
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    return verify_cast<JS::Promise>(*promise->promise());
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}
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// https://w3c.github.io/webcrypto/#SubtleCrypto-method-importKey
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JS::ThrowCompletionOr<JS::NonnullGCPtr<JS::Promise>> SubtleCrypto::import_key(Bindings::KeyFormat format, KeyDataType key_data, AlgorithmIdentifier algorithm, bool extractable, Vector<Bindings::KeyUsage> key_usages)
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{
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    auto& realm = this->realm();
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    // 1. Let format, algorithm, extractable and usages, be the format, algorithm, extractable
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    // and key_usages parameters passed to the importKey() method, respectively.
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    Variant<ByteBuffer, Bindings::JsonWebKey, Empty> real_key_data;
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    // 2. If format is equal to the string "raw", "pkcs8", or "spki":
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    if (format == Bindings::KeyFormat::Raw || format == Bindings::KeyFormat::Pkcs8 || format == Bindings::KeyFormat::Spki) {
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        // 1. If the keyData parameter passed to the importKey() method is a JsonWebKey dictionary, throw a TypeError.
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        if (key_data.has<Bindings::JsonWebKey>()) {
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            return realm.vm().throw_completion<JS::TypeError>(JS::ErrorType::NotAnObjectOfType, "BufferSource");
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        }
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        // 2. Let keyData be the result of getting a copy of the bytes held by the keyData parameter passed to the importKey() method.
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        real_key_data = MUST(WebIDL::get_buffer_source_copy(*key_data.get<JS::Handle<WebIDL::BufferSource>>()->raw_object()));
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    }
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    if (format == Bindings::KeyFormat::Jwk) {
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        // 1. If the keyData parameter passed to the importKey() method is not a JsonWebKey dictionary, throw a TypeError.
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        if (!key_data.has<Bindings::JsonWebKey>()) {
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            return realm.vm().throw_completion<JS::TypeError>(JS::ErrorType::NotAnObjectOfType, "JsonWebKey");
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        }
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        // 2. Let keyData be the keyData parameter passed to the importKey() method.
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        real_key_data = key_data.get<Bindings::JsonWebKey>();
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    }
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    // NOTE: The spec jumps to 5 here for some reason?
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    // 5. Let normalizedAlgorithm be the result of normalizing an algorithm, with alg set to algorithm and op set to "importKey".
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    auto normalized_algorithm = normalize_an_algorithm(algorithm, "importKey"_string);
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    // 6. If an error occurred, return a Promise rejected with normalizedAlgorithm.
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    if (normalized_algorithm.is_error())
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        return WebIDL::create_rejected_promise_from_exception(realm, normalized_algorithm.release_error());
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    // 7. Let promise be a new Promise.
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    auto promise = WebIDL::create_promise(realm);
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    // 8. Return promise and perform the remaining steps in parallel.
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    Platform::EventLoopPlugin::the().deferred_invoke([&realm, real_key_data = move(real_key_data), normalized_algorithm = normalized_algorithm.release_value(), promise, format, extractable, key_usages = move(key_usages), algorithm = move(algorithm)]() mutable -> void {
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        HTML::TemporaryExecutionContext context(Bindings::host_defined_environment_settings_object(realm), HTML::TemporaryExecutionContext::CallbacksEnabled::Yes);
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        // 9. If the following steps or referenced procedures say to throw an error, reject promise with the returned error and then terminate the algorithm.
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        // 10. Let result be the CryptoKey object that results from performing the import key operation
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        // specified by normalizedAlgorithm using keyData, algorithm, format, extractable and usages.
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        auto maybe_result = normalized_algorithm.methods->import_key(*normalized_algorithm.parameter, format, real_key_data.downcast<CryptoKey::InternalKeyData>(), extractable, key_usages);
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        if (maybe_result.is_error()) {
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            WebIDL::reject_promise(realm, promise, Bindings::dom_exception_to_throw_completion(realm.vm(), maybe_result.release_error()).release_value().value());
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            return;
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        }
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        auto result = maybe_result.release_value();
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        // 11. If the [[type]] internal slot of result is "secret" or "private" and usages is empty, then throw a SyntaxError.
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        if ((result->type() == Bindings::KeyType::Secret || result->type() == Bindings::KeyType::Private) && key_usages.is_empty()) {
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            WebIDL::reject_promise(realm, promise, WebIDL::SyntaxError::create(realm, "usages must not be empty"_fly_string));
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            return;
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        }
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        // 12. Set the [[extractable]] internal slot of result to extractable.
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        result->set_extractable(extractable);
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        // 13. Set the [[usages]] internal slot of result to the normalized value of usages.
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        normalize_key_usages(key_usages);
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        result->set_usages(key_usages);
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        // 14. Resolve promise with result.
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        WebIDL::resolve_promise(realm, promise, result);
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    });
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    return verify_cast<JS::Promise>(*promise->promise());
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}
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SubtleCrypto::SupportedAlgorithmsMap& SubtleCrypto::supported_algorithms_internal()
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{
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    static SubtleCrypto::SupportedAlgorithmsMap s_supported_algorithms;
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    return s_supported_algorithms;
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}
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// https://w3c.github.io/webcrypto/#algorithm-normalization-internalS
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SubtleCrypto::SupportedAlgorithmsMap SubtleCrypto::supported_algorithms()
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{
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    auto& internal_object = supported_algorithms_internal();
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    if (!internal_object.is_empty()) {
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        return internal_object;
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    }
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    // 1. For each value, v in the List of supported operations,
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    // set the v key of the internal object supportedAlgorithms to a new associative container.
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    auto supported_operations = Vector {
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        "encrypt"_string,
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        "decrypt"_string,
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        "sign"_string,
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        "verify"_string,
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        "digest"_string,
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        "deriveBits"_string,
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        "wrapKey"_string,
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        "unwrapKey"_string,
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        "generateKey"_string,
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        "importKey"_string,
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        "exportKey"_string,
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        "get key length"_string,
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    };
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    for (auto& operation : supported_operations) {
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        internal_object.set(operation, {});
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    }
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    // https://w3c.github.io/webcrypto/#algorithm-conventions
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    // https://w3c.github.io/webcrypto/#sha
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    define_an_algorithm<SHA>("digest"_string, "SHA-1"_string);
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    define_an_algorithm<SHA>("digest"_string, "SHA-256"_string);
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    define_an_algorithm<SHA>("digest"_string, "SHA-384"_string);
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    define_an_algorithm<SHA>("digest"_string, "SHA-512"_string);
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    // https://w3c.github.io/webcrypto/#pbkdf2
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    define_an_algorithm<PBKDF2>("importKey"_string, "PBKDF2"_string);
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    // FIXME: define_an_algorithm("deriveBits"_string, "PBKDF2"_string, "Pbkdf2Params"_string);
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    // FIXME: define_an_algorithm("get key length"_string, "PBKDF2"_string, ""_string);
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    return internal_object;
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}
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// https://w3c.github.io/webcrypto/#concept-define-an-algorithm
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template<typename Methods, typename Param>
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void SubtleCrypto::define_an_algorithm(AK::String op, AK::String algorithm)
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{
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    auto& internal_object = supported_algorithms_internal();
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    // 1. Let registeredAlgorithms be the associative container stored at the op key of supportedAlgorithms.
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    // NOTE: There should always be a container at the op key.
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    auto maybe_registered_algorithms = internal_object.get(op);
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    auto registered_algorithms = maybe_registered_algorithms.value();
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    // 2. Set the alg key of registeredAlgorithms to the IDL dictionary type type.
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    registered_algorithms.set(algorithm, RegisteredAlgorithm { &Methods::create, &Param::from_value });
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    internal_object.set(op, registered_algorithms);
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}
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}
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