mirror of
https://github.com/Atmosphere-NX/Atmosphere
synced 2025-01-19 11:46:13 +00:00
129 lines
4.4 KiB
C++
129 lines
4.4 KiB
C++
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/*
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* Copyright (c) Atmosphère-NX
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*
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* This program is free software; you can redistribute it and/or modify it
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* under the terms and conditions of the GNU General Public License,
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* version 2, as published by the Free Software Foundation.
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*
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* This program is distributed in the hope it will be useful, but WITHOUT
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
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* more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#pragma once
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#include <vapours/common.hpp>
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#include <vapours/assert.hpp>
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#include <vapours/util.hpp>
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#include <vapours/crypto/impl/crypto_hash_function.hpp>
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#include <vapours/crypto/impl/crypto_cbc_mac_impl.hpp>
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#include <vapours/crypto/crypto_memory_clear.hpp>
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namespace ams::crypto::impl {
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template<typename BlockCipher>
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class CmacImpl {
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NON_COPYABLE(CmacImpl);
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NON_MOVEABLE(CmacImpl);
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public:
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static constexpr size_t BlockSize = BlockCipher::BlockSize;
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static constexpr size_t MacSize = BlockSize;
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static_assert(BlockSize == 0x10); /* TODO: Should this be supported? */
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private:
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enum State {
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State_None = 0,
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State_Initialized = 1,
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State_Done = 2,
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};
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private:
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CbcMacImpl m_cbc_mac_impl;
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u8 m_sub_key[BlockSize];
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State m_state;
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public:
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CmacImpl() : m_state(State_None) { /* ... */ }
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~CmacImpl() {
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/* Clear everything. */
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ClearMemory(this, sizeof(*this));
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}
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void Initialize(const BlockCipher *cipher);
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void Update(const void *data, size_t data_size);
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void GetMac(void *dst, size_t dst_size);
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private:
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static void MultiplyOneOverGF128(u8 *data) {
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/* Determine the carry bit. */
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const u8 carry = data[0] & 0x80;
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/* Shift all bytes by one bit. */
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for (size_t i = 0; i < BlockSize - 1; ++i) {
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data[i] = (data[i] << 1) | (data[i + 1] >> 7);
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}
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data[BlockSize - 1] <<= 1;
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/* Adjust based on carry. */
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if (carry) {
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data[BlockSize - 1] ^= 0x87;
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}
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}
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};
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template<typename BlockCipher>
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inline void CmacImpl<BlockCipher>::Initialize(const BlockCipher *cipher) {
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/* Clear the key storage. */
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std::memset(m_sub_key, 0, sizeof(m_sub_key));
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/* Set the key storage. */
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cipher->EncryptBlock(m_sub_key, BlockSize, m_sub_key, BlockSize);
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MultiplyOneOverGF128(m_sub_key);
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/* Initialize the cbc-mac impl. */
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m_cbc_mac_impl.Initialize(cipher);
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/* Mark initialized. */
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m_state = State_Initialized;
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}
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template<typename BlockCipher>
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inline void CmacImpl<BlockCipher>::Update(const void *data, size_t data_size) {
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AMS_ASSERT(m_state == State_Initialized);
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m_cbc_mac_impl.template Update<BlockCipher>(data, data_size);
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}
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template<typename BlockCipher>
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inline void CmacImpl<BlockCipher>::GetMac(void *dst, size_t dst_size) {
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AMS_ASSERT(m_state == State_Initialized || m_state == State_Done);
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AMS_ASSERT(dst_size >= MacSize);
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AMS_UNUSED(dst_size);
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/* If we're not already finalized, get the final mac. */
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if (m_state == State_Initialized) {
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/* Process padding as needed. */
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if (m_cbc_mac_impl.GetBufferedDataSize() != BlockSize) {
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/* Determine the remaining size. */
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const size_t remaining = BlockSize - m_cbc_mac_impl.GetBufferedDataSize();
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/* Update with padding. */
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static constexpr u8 s_padding[BlockSize] = { 0x80, /* ... */ };
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m_cbc_mac_impl.template Update<BlockCipher>(s_padding, remaining);
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/* Update our subkey. */
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MultiplyOneOverGF128(m_sub_key);
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}
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/* Mask the subkey. */
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m_cbc_mac_impl.MaskBufferedData(m_sub_key, BlockSize);
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/* Set our state as done. */
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m_state = State_Done;
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}
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/* Get the mac. */
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m_cbc_mac_impl.GetMac(dst, dst_size);
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}
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}
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