183 lines
No EOL
5.4 KiB
C++
183 lines
No EOL
5.4 KiB
C++
#include "EncryptionManager.h"
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EncryptionManager::EncryptionManager()
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:keyReady(false)
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{
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if (sodium_init() < 0) {
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throw std::runtime_error("libsodium init failed");
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}
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keyReady = false;
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generateKeys();
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}
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std::vector<char> EncryptionManager::encrypt(const std::vector<char>& raw)
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{
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std::vector<char> crypt(raw.size());
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// Generowanie kluczy
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// generateKeys();
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if (crypto_stream_chacha20_ietf_xor_ic(
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reinterpret_cast<unsigned char*>(crypt.data()),
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reinterpret_cast<const unsigned char*>(raw.data()),
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static_cast<unsigned long long>(raw.size()),
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nonce.data(), 0, key.data()) != 0)
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{
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throw std::runtime_error("crypto_stream_chacha20_ietf_xor_ic failed");
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}
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return crypt;
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}
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void EncryptionManager::generateKeys()
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{
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if (keyReady) return;
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//randombytes_buf(key.data(), key.size());
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crypto_stream_chacha20_ietf_keygen(key.data());
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randombytes_buf(nonce.data(), nonce.size());
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keyReady = true;
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}
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void EncryptionManager::saveKey(const std::string& path, bool hpp)
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{
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const int sig = SIGNATURE_KEY_FILE;
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const short ver = VERSION;
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// Wygeneruj time stamp
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std::time_t now = std::time(nullptr);
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const int time = static_cast<int>(now);
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// Wygeneruj crc kluczy
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std::vector<char> keyVec(reinterpret_cast<const char*>(key.data()),
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reinterpret_cast<const char*>(key.data()) + key.size());
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std::vector<char> nonceVec(reinterpret_cast<const char*>(nonce.data()),
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reinterpret_cast<const char*>(nonce.data()) + nonce.size());
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const uint64_t crcKey = XXH64(keyVec.data(), keyVec.size(), VERSION);
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const uint64_t crcNonce = XXH64(nonceVec.data(), nonceVec.size(), VERSION);
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// Zapisz ten œmietnik do pliku KEY
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std::ofstream file(path + ".key", std::ios::binary);
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if (!file) { std::cout << "Failed to save encryption key to file" << std::endl; }
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file.write(reinterpret_cast<const char*>(&sig), sizeof(sig));
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file.write(reinterpret_cast<const char*>(&ver), sizeof(ver));
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file.write(reinterpret_cast<const char*>(&time), sizeof(time));
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file.write(reinterpret_cast<const char*>(keyVec.data()), keyVec.size());
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file.write(reinterpret_cast<const char*>(&crcKey), sizeof(crcKey));
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file.write(reinterpret_cast<const char*>(nonceVec.data()), nonceVec.size());
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file.write(reinterpret_cast<const char*>(&crcNonce), sizeof(crcNonce));
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file.close();
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if (hpp) {saveCppHeadFile(path);}
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}
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// Generowanie pliku nag³ówkowego CPP z kluczem i nonce
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void EncryptionManager::saveCppHeadFile(const std::string& path)
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{
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std::vector<unsigned char> keyVec(key.begin(), key.end());
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std::vector<unsigned char> nonceVec(nonce.begin(), nonce.end());
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const std::string headerText =
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"// Plik wygenerowany przy wykorzystaniu exPAK\n\n"
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"// Klucz deszyfruj¹cy\n"
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"const std::array<unsigned char, crypto_stream_chacha20_ietf_KEYBYTES> key{" + toHex(keyVec) + "};\n\n"
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"// Ci¹g nonce\n"
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"const std::array<unsigned char, crypto_stream_chacha20_ietf_NONCEBYTES> nonce{" + toHex(nonceVec) + "}; ";
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std::ofstream file(path + ".hh");
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file << headerText;
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file.close();
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}
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std::string EncryptionManager::toHex(const std::vector<unsigned char>& data)
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{
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std::string bytes;
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int sk = data.size();
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int skp = 1;
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for (const auto& b : data)
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{
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std::stringstream ss;
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ss << "0x" << std::hex << std::uppercase << std::setw(2) << std::setfill('0')
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<< static_cast<int>(b);
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bytes += "'";
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bytes += ss.str();
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bytes += "'";
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if (skp < sk)
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{
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bytes += ", ";
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skp++;
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}
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}
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return bytes;
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}
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// Wczytaj klucz
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void EncryptionManager::loadKey(const std::string& path)
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{
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std::ifstream file(path + ".key", std::ios::binary);
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int sig;
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short ver;
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int time;
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// Wczytaj
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file.read(reinterpret_cast<char*>(&sig), sizeof(sig));
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file.read(reinterpret_cast<char*>(&ver), sizeof(ver));
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// SprawdŸ czy plik klucza jest poprawny
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if (sig != SIGNATURE_KEY_FILE || ver != VERSION)
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{
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throw std::runtime_error("Invalid key file!");
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}
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std::vector<char> keyVec(key.size());
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std::vector<char> nonceVec(nonce.size());
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uint64_t crcKey;
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uint64_t crcNonce;
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file.read(reinterpret_cast<char*>(&time), sizeof(time));
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file.read(keyVec.data(), keyVec.size());
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file.read(reinterpret_cast<char*>(&crcKey), sizeof(crcKey));
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file.read(nonceVec.data(), nonceVec.size());
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file.read(reinterpret_cast<char*>(&crcNonce), sizeof(crcNonce));
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// SprawdŸ integralnoœæ klucza
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if (XXH64(keyVec.data(), keyVec.size(), VERSION) != crcKey
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|| XXH64(nonceVec.data(), nonceVec.size(), VERSION) != crcNonce)
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{
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throw std::runtime_error("Key integrity error!");
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}
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file.close();
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// Przekonwertuj vector na array
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key = toArray<crypto_stream_chacha20_ietf_KEYBYTES>(keyVec);
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nonce = toArray<crypto_stream_chacha20_ietf_NONCEBYTES>(nonceVec);
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}
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// Deszyfracja
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std::vector<char> EncryptionManager::decrypt(const std::vector<char>& crypt)
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{
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std::vector<char> raw(crypt.size());
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if (crypto_stream_chacha20_ietf_xor(
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reinterpret_cast<unsigned char*>(raw.data()),
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reinterpret_cast<const unsigned char*>(crypt.data()),
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static_cast<unsigned long long>(crypt.size()),
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nonce.data(), key.data()) != 0)
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{
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throw std::runtime_error("Data decryption error!");
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}
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return raw;
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} |