/* Copyright <2018-2025> Permission is hereby granted, free of charge, to any person obtaining a copy of this software and associated documentation files (the "Software"), to deal in the Software without restriction, including without limitation the rights to use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software, and to permit persons to whom the Software is furnished to do so, subject to the following conditions: The above copyright notice and this permission notice shall be included in all copies or substantial portions of the Software. THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */ #ifndef REPERTORY_INCLUDE_UTILS_ENCRYPTION_HPP_ #define REPERTORY_INCLUDE_UTILS_ENCRYPTION_HPP_ #if defined(PROJECT_ENABLE_LIBSODIUM) #include "utils/config.hpp" #include "utils/error.hpp" #include "utils/hash.hpp" namespace repertory::utils::encryption { inline constexpr const std::uint32_t encryption_header_size{ crypto_aead_xchacha20poly1305_IETF_NPUBBYTES + crypto_aead_xchacha20poly1305_IETF_ABYTES, }; template inline auto generate_key( std::string_view password, std::function hasher = default_create_hash()) -> hash_t; template inline auto generate_key( std::wstring_view password, std::function hasher = default_create_hash()) -> hash_t; #if defined(PROJECT_ENABLE_BOOST) [[nodiscard]] auto decrypt_file_name(std::string_view encryption_token, std::string &file_name) -> bool; [[nodiscard]] auto decrypt_file_path(std::string_view encryption_token, std::string &file_path) -> bool; template [[nodiscard]] inline auto decrypt_data(const std::array &key, const unsigned char *buffer, std::size_t buffer_size, result_t &res) -> bool { if (buffer_size > encryption_header_size) { const std::uint32_t size = boost::endian::native_to_big(static_cast(buffer_size)); res.resize(buffer_size - encryption_header_size); return crypto_aead_xchacha20poly1305_ietf_decrypt_detached( reinterpret_cast(res.data()), nullptr, &buffer[encryption_header_size], res.size(), &buffer[crypto_aead_xchacha20poly1305_IETF_NPUBBYTES], reinterpret_cast(&size), sizeof(size), buffer, key.data()) == 0; } return false; } template [[nodiscard]] inline auto decrypt_data(const std::array &key, const buffer_t &buf, result_t &res) -> bool { return decrypt_data( key, reinterpret_cast(buf.data()), buf.size(), res); } template [[nodiscard]] inline auto decrypt_data( std::string_view password, const buffer_t &buf, result_t &res, std::function hasher = default_create_hash()) -> bool { return decrypt_data(generate_key(password, hasher), buf, res); } template [[nodiscard]] inline auto decrypt_data( std::string_view password, const unsigned char *buffer, std::size_t buffer_size, result_t &res, std::function hasher = default_create_hash()) -> bool { return decrypt_data(generate_key(password, hasher), buffer, buffer_size, res); } template inline void encrypt_data(const std::array &iv, const std::array &key, const unsigned char *buffer, std::size_t buffer_size, result_t &res) { REPERTORY_USES_FUNCTION_NAME(); std::array mac{}; const std::uint32_t size = boost::endian::native_to_big( static_cast(buffer_size + encryption_header_size)); res.resize(buffer_size + encryption_header_size); unsigned long long mac_length{}; if (crypto_aead_xchacha20poly1305_ietf_encrypt_detached( reinterpret_cast(&res[encryption_header_size]), mac.data(), &mac_length, buffer, buffer_size, reinterpret_cast(&size), sizeof(size), nullptr, iv.data(), key.data()) != 0) { throw repertory::utils::error::create_exception(function_name, { "encryption failed", }); } std::memcpy(res.data(), iv.data(), iv.size()); std::memcpy(&res[iv.size()], mac.data(), mac.size()); } template inline void encrypt_data(const std::array &key, const unsigned char *buffer, std::size_t buffer_size, result_t &res) { std::array iv{}; randombytes_buf(iv.data(), iv.size()); encrypt_data(iv, key, buffer, buffer_size, res); } template inline void encrypt_data( std::string_view password, const unsigned char *buffer, std::size_t buffer_size, result_t &res, std::function hasher = default_create_hash()) { encrypt_data(generate_key(password, hasher), buffer, buffer_size, res); } template inline void encrypt_data( std::string_view password, const buffer_t &buf, result_t &res, std::function hasher = default_create_hash()) { encrypt_data(generate_key(password, hasher), reinterpret_cast(buf.data()), buf.size(), res); } template inline void encrypt_data(const std::array &key, const buffer_t &buf, result_t &res) { encrypt_data(key, reinterpret_cast(buf.data()), buf.size(), res); } template inline void encrypt_data(const std::array &iv, const std::array &key, const buffer_t &buf, result_t &res) { encrypt_data(iv, key, reinterpret_cast(buf.data()), buf.size(), res); } using reader_func_t = std::function; [[nodiscard]] auto read_encrypted_range(const http_range &range, const utils::encryption::hash_256_t &key, reader_func_t reader_func, std::uint64_t total_size, data_buffer &data) -> bool; [[nodiscard]] auto read_encrypted_range( const http_range &range, const utils::encryption::hash_256_t &key, reader_func_t reader_func, std::uint64_t total_size, unsigned char *data, std::size_t size, std::size_t &bytes_read) -> bool; #endif // defined(PROJECT_ENABLE_BOOST) template inline auto generate_key( std::string_view password, std::function hasher) -> hash_t { return hasher(reinterpret_cast(password.data()), password.size()); } template inline auto generate_key( std::wstring_view password, std::function hasher) -> hash_t { return hasher(reinterpret_cast(password.data()), password.size() * sizeof(wchar_t)); } } // namespace repertory::utils::encryption #endif // defined(PROJECT_ENABLE_LIBSODIUM) #endif // REPERTORY_INCLUDE_UTILS_ENCRYPTION_HPP_