Added class for hashing, that is now used for password to key transformation
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GCryptLib/include/GCrypt/Hasher.h
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34
GCryptLib/include/GCrypt/Hasher.h
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@ -0,0 +1,34 @@
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#ifndef GCRYPT_HASHER_H
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#define GCRYPT_HASHER_H
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#include "GCrypt/Flexblock.h"
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#include "GCrypt/Block.h"
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#include "GCrypt/Cipher.h"
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namespace Leonetienne::GCrypt {
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/** This class implements a hash function, based on the GCrypt cipher
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*/
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class Hasher {
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public:
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Hasher();
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//! Will add the hash value of `data` to the hashsum
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void Digest(const Block& data);
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//! Will return the current hashsum
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const Block& GetHashsum() const;
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//! Will calculate a hashsum for `data`.
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static Block CalculateHashsum(const Flexblock& data);
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private:
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//! The cipher to use
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Cipher cipher;
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//! The current state of the hashsum
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Block block;
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};
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}
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#endif
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@ -1,4 +1,6 @@
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#pragma once
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#ifndef GCRYPT_UTIL_H
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#define GCRYPT_UTIL_H
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#include <bitset>
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#include <sstream>
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#include <fstream>
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@ -78,7 +80,7 @@ namespace Leonetienne::GCrypt {
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}
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// Pad rest with zeores
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return Block(PadStringToLength(ss.str(), 128, '0', false));
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return Block(PadStringToLength(ss.str(), BLOCK_SIZE, '0', false));
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}
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//! Will convert a string to a flexible data block
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@ -226,43 +228,7 @@ namespace Leonetienne::GCrypt {
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}
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//! Creates a key of size BLOCK_SIZE from a password of arbitrary length.
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//! Note that if your password is shorter (in bits) than BLOCK_SIZE, the rest of the key will be padded with 0 (see next line!).
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//! To provide a better initial key, (and to get rid of padding zeroes), the raw result (b) will be xor'd with an initialization vector based on b.
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//! : return b ^ iv(b)
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inline Block PasswordToKey(const std::string& in) {
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// Let's provide a nice initial value to be sure even a password of length 0 results in a proper key
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Block b = InitializationVector(StringToBitblock("3J7IipfQTDJbO8jtasz9PgWui6faPaEMOuVuAqyhB1S2CRcLw5caawewgDUEG1WN"));
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// Segment the password in segments of key-size, and xor them together.
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for (std::size_t i = 0; i < in.size(); i += BLOCK_SIZE / 8) {
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const Block fragment = StringToBitblock(
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PadStringToLength(in.substr(i, BLOCK_SIZE / 8), BLOCK_SIZE / 8, 0, false)
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);
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// To provide confusion, xor the blocks together
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// To provide diffusion, hash fragment to fragment' first
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b ^= Block(Cipher(fragment, Cipher::CIPHER_DIRECTION::ENCIPHER).Digest(fragment).to_string());
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}
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return b;
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}
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//! Will reduce a flexblock (they are of arbitrary length) to a single block.
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//! This single block should change completely, if a single bit in the input flexblock changes anywhere.
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inline Block ReductionFunction_Flexblock2Block(const Flexblock& in) {
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Block b; // No initialization vector needed here
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// Segment the input in segments of BLOCK_SIZE, and xor them together.
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for (std::size_t i = 0; i < in.size(); i += BLOCK_SIZE) {
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const Block fragment = Block(PadStringToLength(in.substr(i, BLOCK_SIZE), BLOCK_SIZE, 0, false));
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// To provide confusion, xor the blocks together
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// To provide diffusion, hash fragment to fragment' first
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b ^= Block(Cipher(fragment, Cipher::CIPHER_DIRECTION::ENCIPHER).Digest(fragment).to_string());
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}
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return b;
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}
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Block PasswordToKey(const std::string& in);
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//! Will read a file into a flexblock
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inline Flexblock ReadFileToBits(const std::string& filepath) {
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@ -307,3 +273,5 @@ namespace Leonetienne::GCrypt {
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}
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}
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#endif
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57
GCryptLib/src/Hasher.cpp
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57
GCryptLib/src/Hasher.cpp
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#include "GCrypt/Hasher.h"
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#include "GCrypt/Util.h"
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#include "GCrypt/InitializationVector.h"
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namespace Leonetienne::GCrypt {
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Hasher::Hasher() :
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// Initialize our cipher with a static, but randomly distributed key.
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cipher(
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StringToBitblock("CfRtNdMTP4Y5CWRd"),
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Cipher::CIPHER_DIRECTION::ENCIPHER
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) {
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block = InitializationVector(StringToBitblock("3J7IipfQTDJbO8jtasz9PgWui6faPaEMOuVuAqyhB1S2CRcLw5caawewgDUEG1WN"));
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return;
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}
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void Hasher::Digest(const Block& data) {
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// Encipher the current block, and xor it on the current hashsum
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block ^= cipher.Digest(data);
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return;
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}
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const Block& Hasher::GetHashsum() const {
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return block;
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}
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Block Hasher::CalculateHashsum(const Flexblock& data) {
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// Split input into blocks
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std::vector<Block> blocks;
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for (std::size_t i = 0; i < data.size(); i += BLOCK_SIZE) {
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blocks.push_back(Block(
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PadStringToLength(data.substr(i, BLOCK_SIZE), BLOCK_SIZE, '0', false))
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);
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}
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// Add an additional block, containing the length of the input
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std::stringstream ss;
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ss << data.length();
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const Block lengthBlock = StringToBitblock(ss.str());
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blocks.push_back(lengthBlock);
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// Create hasher instance
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Hasher hasher;
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// Digest all blocks
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for (Block& block : blocks) {
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hasher.Digest(block);
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}
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// Return the total hashsum
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return hasher.GetHashsum();
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}
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}
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13
GCryptLib/src/Util.cpp
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13
GCryptLib/src/Util.cpp
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#include "GCrypt/Util.h"
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#include "GCrypt/Hasher.h"
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namespace Leonetienne::GCrypt {
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Block PasswordToKey(const std::string& in) {
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// We already have a hashing algorithm, so why not use it
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// Yeah, this won't work, because it would create an include loop. This method needs to be outsourced to a cpp file..
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const Block hashedPassword = Hasher::CalculateHashsum(StringToBits(in));
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return hashedPassword;
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}
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}
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