Automatically generating round keyset
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main.cpp
52
main.cpp
@ -5,10 +5,11 @@
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#define BLOCK_SIZE 128
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#define FEISTELBLOCK_SIZE (BLOCK_SIZE / 2)
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#define N_ROUNDS 8
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#define N_ROUNDS 64
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typedef std::bitset<BLOCK_SIZE> Block;
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typedef std::bitset<FEISTELBLOCK_SIZE> Feistelblock;
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typedef std::array<Feistelblock, N_ROUNDS> Keyset;
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// Will convert a string to a data block
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Block StringToBits(const std::string& s);
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@ -22,37 +23,37 @@ std::pair<Feistelblock, Feistelblock> FeistelSplit(const Block& block);
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// Combine two feistel blocks (L and R) into a regular data block
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Block FeistelCombine(const Feistelblock& l, const Feistelblock& r);
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// Will generate a keyset from a seed-key
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Keyset GenerateRoundkeys(const Feistelblock& seedKey);
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// Feistel-cipher
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Block Feistel(const Block& data, const std::array<Feistelblock, 8>& keys, bool reverseKeyOrder = false);
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Block Feistel(const Block& data, const Keyset& keys, bool reverseKeyOrder = false);
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// Arbitrary cipher function
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Feistelblock F(Feistelblock m, const Feistelblock& key);
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int main()
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{
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const std::string asciiMessage = "Hello, World! :3";
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const std::string asciiMessage = "Guten Abend!";
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Block message = StringToBits(asciiMessage);
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const std::array<Feistelblock, N_ROUNDS> keys = {
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0b11101101,
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0b01110101,
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0b10111101,
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0b00010110,
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0b00000011,
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0b10110011,
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0b11011101,
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0b00111101
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};
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const Feistelblock seedKey(StringToBits("Ich bin ein PASSWORT-SCHLÜSSEL!").to_string()); // StringToBits returns a bitset that's too large. We have to trim it to fit the smaller FeistelBlock bitset.
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const Keyset roundkeys = GenerateRoundkeys(seedKey);
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//std::cout << "Keys: " << std::endl;
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//for (std::size_t i = 0; i < roundkeys.size(); i++)
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// std::cout << roundkeys[i] << std::endl;
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//std::cout << "---" << std::endl;
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std::cout << "Message ascii: " << asciiMessage << std::endl;
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std::cout << "Message: " << message << std::endl;
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Block ciphertext = Feistel(message, keys);
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Block ciphertext = Feistel(message, roundkeys);
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std::cout << "Ciphertext: " << ciphertext << std::endl;
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Block decrypted = Feistel(ciphertext, keys, true);
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Block decrypted = Feistel(ciphertext, roundkeys, true);
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std::cout << "Decrypted: " << decrypted << std::endl;
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const std::string asciiDecrypted = BitsToString(decrypted);
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@ -61,7 +62,7 @@ int main()
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return 0;
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}
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Block Feistel(const Block& data, const std::array<Feistelblock, 8>& keys, bool reverseKeyOrder)
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Block Feistel(const Block& data, const Keyset& keys, bool reverseKeyOrder)
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{
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const auto splitData = FeistelSplit(data);
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Feistelblock l = splitData.first;
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@ -91,8 +92,10 @@ Feistelblock F(Feistelblock m, const Feistelblock& key)
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{
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// Made-up F function
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// Shift 5 to the left
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m <<= 5;
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// Shift to left by 3 for every 1 in the key
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for (std::size_t i = 0; i < key.size(); i++)
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if (key[i])
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m <<= 3;
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// Xor with key
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return m ^ key;
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@ -140,3 +143,16 @@ Block FeistelCombine(const Feistelblock& l, const Feistelblock& r)
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{
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return Block(l.to_string() + r.to_string());
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}
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Keyset GenerateRoundkeys(const Feistelblock& seedKey)
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{
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Keyset keys;
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keys[0] = seedKey;
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for (std::size_t i = 1; i < keys.size(); i++)
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{
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keys[i] = std::hash<Feistelblock>{}(keys[i-1]);
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}
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return keys;
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}
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