mirror of
https://github.com/LadybirdBrowser/ladybird.git
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89061dd3c4
This required multiple changes: - Make hashes non-copiable because they contain a heap allocated pointer - Reference classes via `NonnullOwnPtr` only (they are non-copiable) - Drop all existing hashes implementations - Use the `OpenSSLHashFunction` base class to implement the same hashes I was not able to come up with a way to divide this commit into multiple without increasing the amount of changes. Nothing breaks with this commit!
241 lines
6.1 KiB
C++
241 lines
6.1 KiB
C++
/*
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* Copyright (c) 2020, Ali Mohammad Pur <mpfard@serenityos.org>
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*
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* SPDX-License-Identifier: BSD-2-Clause
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*/
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#pragma once
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#include <AK/Optional.h>
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#include <AK/OwnPtr.h>
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#include <AK/Variant.h>
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#include <LibCrypto/Hash/BLAKE2b.h>
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#include <LibCrypto/Hash/HashFunction.h>
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#include <LibCrypto/Hash/MD5.h>
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#include <LibCrypto/Hash/SHA1.h>
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#include <LibCrypto/Hash/SHA2.h>
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namespace Crypto::Hash {
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enum class HashKind {
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Unknown,
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None,
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BLAKE2b,
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MD5,
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SHA1,
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SHA256,
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SHA384,
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SHA512,
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};
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struct MultiHashDigestVariant {
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constexpr static size_t Size = 0;
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MultiHashDigestVariant(Empty digest)
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: m_digest(move(digest))
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{
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}
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MultiHashDigestVariant(MD5::DigestType digest)
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: m_digest(move(digest))
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{
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}
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MultiHashDigestVariant(SHA1::DigestType digest)
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: m_digest(move(digest))
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{
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}
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MultiHashDigestVariant(SHA256::DigestType digest)
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: m_digest(move(digest))
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{
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}
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MultiHashDigestVariant(SHA384::DigestType digest)
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: m_digest(move(digest))
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{
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}
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MultiHashDigestVariant(SHA512::DigestType digest)
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: m_digest(move(digest))
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{
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}
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[[nodiscard]] u8 const* immutable_data() const
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{
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return m_digest.visit(
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[&](Empty const&) -> u8 const* { VERIFY_NOT_REACHED(); },
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[&](auto const& value) { return value.immutable_data(); });
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}
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[[nodiscard]] size_t data_length() const
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{
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return m_digest.visit(
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[&](Empty const&) -> size_t { VERIFY_NOT_REACHED(); },
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[&](auto const& value) { return value.data_length(); });
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}
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[[nodiscard]] ReadonlyBytes bytes() const
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{
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return m_digest.visit(
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[&](Empty const&) -> ReadonlyBytes { VERIFY_NOT_REACHED(); },
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[&](auto const& value) { return value.bytes(); });
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}
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using DigestVariant = Variant<Empty, MD5::DigestType, SHA1::DigestType, SHA256::DigestType, SHA384::DigestType, SHA512::DigestType>;
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DigestVariant m_digest {};
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};
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class Manager final : public HashFunction<0, 0, MultiHashDigestVariant> {
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public:
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using HashFunction::update;
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static NonnullOwnPtr<Manager> create(HashKind kind)
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{
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return make<Manager>(kind);
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}
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Manager()
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{
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m_pre_init_buffer = ByteBuffer();
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}
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Manager(Manager const& other) // NOT a copy constructor!
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{
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m_pre_init_buffer = ByteBuffer(); // will not be used
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initialize(other.m_kind);
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}
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Manager(HashKind kind)
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{
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m_pre_init_buffer = ByteBuffer();
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initialize(kind);
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}
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~Manager()
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{
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m_algorithm = Empty {};
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}
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inline size_t digest_size() const
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{
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return m_algorithm.visit(
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[&](Empty const&) -> size_t { return 0; },
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[&](auto const& hash) { return hash->digest_size(); });
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}
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inline size_t block_size() const
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{
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return m_algorithm.visit(
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[&](Empty const&) -> size_t { return 0; },
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[&](auto const& hash) { return hash->block_size(); });
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}
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inline void initialize(HashKind kind)
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{
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if (!m_algorithm.has<Empty>()) {
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VERIFY_NOT_REACHED();
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}
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m_kind = kind;
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switch (kind) {
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case HashKind::BLAKE2b:
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m_algorithm = BLAKE2b::create();
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break;
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case HashKind::MD5:
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m_algorithm = MD5::create();
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break;
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case HashKind::SHA1:
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m_algorithm = SHA1::create();
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break;
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case HashKind::SHA256:
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m_algorithm = SHA256::create();
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break;
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case HashKind::SHA384:
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m_algorithm = SHA384::create();
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break;
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case HashKind::SHA512:
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m_algorithm = SHA512::create();
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break;
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default:
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case HashKind::None:
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m_algorithm = Empty {};
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break;
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}
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}
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virtual void update(u8 const* data, size_t length) override
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{
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auto size = m_pre_init_buffer.size();
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if (size) {
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m_algorithm.visit(
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[&](Empty&) {},
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[&](auto& hash) { hash->update(m_pre_init_buffer); });
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}
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m_algorithm.visit(
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[&](Empty&) { m_pre_init_buffer.append(data, length); },
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[&](auto& hash) { hash->update(data, length); });
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if (size && m_kind != HashKind::None)
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m_pre_init_buffer.clear();
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}
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virtual DigestType peek() override
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{
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return m_algorithm.visit(
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[&](Empty&) -> DigestType { VERIFY_NOT_REACHED(); },
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[&](auto& hash) -> DigestType { return hash->peek(); });
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}
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virtual DigestType digest() override
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{
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return m_algorithm.visit(
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[&](Empty&) -> DigestType { VERIFY_NOT_REACHED(); },
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[&](auto& hash) -> DigestType { return hash->digest(); });
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}
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virtual void reset() override
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{
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m_pre_init_buffer.clear();
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m_algorithm.visit(
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[&](Empty&) {},
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[&](auto& hash) { hash->reset(); });
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}
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virtual ByteString class_name() const override
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{
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return m_algorithm.visit(
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[&](Empty const&) -> ByteString { return "UninitializedHashManager"; },
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[&](auto const& hash) { return hash->class_name(); });
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}
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inline HashKind kind() const
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{
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return m_kind;
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}
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inline bool is(HashKind kind) const
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{
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return m_kind == kind;
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}
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inline Manager copy() const
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{
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auto algorithm = m_algorithm.visit(
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[&](Empty const&) -> AlgorithmVariant { VERIFY_NOT_REACHED(); },
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[&](auto const& hash) -> AlgorithmVariant { return hash->copy(); });
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Manager result;
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result.m_algorithm = move(algorithm);
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result.m_kind = m_kind;
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result.m_pre_init_buffer = m_pre_init_buffer;
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return result;
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}
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private:
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using AlgorithmVariant = Variant<Empty, NonnullOwnPtr<BLAKE2b>, NonnullOwnPtr<MD5>, NonnullOwnPtr<SHA1>, NonnullOwnPtr<SHA256>, NonnullOwnPtr<SHA384>, NonnullOwnPtr<SHA512>>;
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AlgorithmVariant m_algorithm {};
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HashKind m_kind { HashKind::None };
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ByteBuffer m_pre_init_buffer;
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};
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}
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