2022-05-22 13:07:40 +02:00
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#include "GCrypt/GWrapper.h"
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2022-05-22 12:51:58 +02:00
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#include "GCrypt/GCipher.h"
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2022-05-16 22:35:28 +02:00
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#include "GCrypt/Util.h"
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2022-05-26 00:55:24 +02:00
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#include <vector>
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2022-05-16 22:15:34 +02:00
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namespace Leonetienne::GCrypt {
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2022-05-22 13:43:23 +02:00
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std::string GWrapper::EncryptString(
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const std::string& cleartext,
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const Key& key)
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{
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2022-05-16 22:15:34 +02:00
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// Recode the ascii-string to bits
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const std::vector<Block> cleartext_blocks = StringToBitblocks(cleartext);
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2022-05-26 15:04:39 +02:00
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// Create cipher instance
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GCipher cipher(key, GCipher::DIRECTION::ENCIPHER);
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2022-05-26 15:04:39 +02:00
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// Encrypt all blocks
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std::vector<Block> ciphertext_blocks;
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for (const Block& clearBlock : cleartext_blocks) {
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ciphertext_blocks.emplace_back(cipher.Digest(clearBlock));
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}
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// Recode the ciphertext blocks to a hex-string
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std::stringstream ss;
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for (const Block& block : ciphertext_blocks) {
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ss << block.ToHexString();
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}
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// Return it
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return ss.str();
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}
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2022-05-22 13:43:23 +02:00
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std::string GWrapper::DecryptString(
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const std::string& ciphertext,
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const Key& key)
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{
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// Make sure our ciphertext is a multiple of block size
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if (ciphertext.length() % Block::BLOCK_SIZE*2 != 0) { // Two chars per byte
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throw std::runtime_error("Leonetienne::GCrypt::GWrapper::DecryptString() received ciphertext of length not a multiple of block size.");
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}
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// Recode the hex-string to blocks
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std::vector<Block> ciphertext_blocks;
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ciphertext_blocks.reserve(ciphertext.length() / (Block::BLOCK_SIZE*2));
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for (std::size_t i = 0; i < ciphertext.length(); i += Block::BLOCK_SIZE*2) {
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Block block;
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block.FromHexString(ciphertext.substr(i, Block::BLOCK_SIZE*2));
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ciphertext_blocks.emplace_back(block);
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}
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// Create cipher instance
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GCipher cipher(key, GCipher::DIRECTION::DECIPHER);
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2022-05-26 15:04:39 +02:00
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// Decrypt all blocks
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std::vector<Block> cleartext_blocks;
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for (const Block& cipherBlock : ciphertext_blocks) {
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cleartext_blocks.emplace_back(cipher.Digest(cipherBlock));
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}
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2022-05-26 15:04:39 +02:00
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// Recode the cleartext blocks to bytes
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std::stringstream ss;
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for (const Block& block : cleartext_blocks) {
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ss << block.ToTextString();
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}
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// Return it
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return ss.str();
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}
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bool GWrapper::EncryptFile(
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const std::string& filename_in,
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const std::string& filename_out,
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const Key& key,
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bool printProgressReport)
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{
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try {
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2022-05-26 04:22:42 +02:00
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// Read the file to blocks
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const std::vector<Block> cleartext_blocks = ReadFileToBlocks(filename_in);
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2022-05-26 04:22:42 +02:00
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// Encrypt our cleartext blocks
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std::vector<Block> ciphertext_blocks;
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ciphertext_blocks.reserve(cleartext_blocks.size());
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2022-05-26 04:22:42 +02:00
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// Create cipher instance
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GCipher cipher(key, GCipher::DIRECTION::ENCIPHER);
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// Encrypt all blocks
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for (const Block& clearBlock : cleartext_blocks) {
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ciphertext_blocks.emplace_back(cipher.Digest(clearBlock));
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}
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// Write our ciphertext blocks to file
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WriteBlocksToFile(filename_out, ciphertext_blocks);
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return true;
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}
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catch (std::runtime_error&) {
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return false;
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}
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}
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2022-05-22 13:43:23 +02:00
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bool GWrapper::DecryptFile(
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const std::string& filename_in,
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const std::string& filename_out,
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const Key& key,
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bool printProgressReport)
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{
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try {
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// Read the file to blocks
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const std::vector<Block> ciphertext_blocks = ReadFileToBlocks(filename_in);
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// Decrypt our cleartext blocks
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std::vector<Block> cleartext_blocks;
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cleartext_blocks.reserve(ciphertext_blocks.size());
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// Create cipher instance
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GCipher cipher(key, GCipher::DIRECTION::DECIPHER);
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2022-05-16 22:15:34 +02:00
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2022-05-26 04:22:42 +02:00
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// Decrypt all blocks
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for (const Block& cipherBlock : ciphertext_blocks) {
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cleartext_blocks.emplace_back(cipher.Digest(cipherBlock));
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}
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2022-05-26 04:22:42 +02:00
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// Write our cleartext blocks to file
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WriteBlocksToFile(filename_out, cleartext_blocks);
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return true;
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}
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catch (std::runtime_error&) {
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return false;
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}
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}
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2022-05-26 15:47:24 +02:00
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std::vector<Block> GWrapper::CipherBlocks(
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const std::vector<Block>& data,
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const Key& key,
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2022-05-22 13:04:20 +02:00
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const GCipher::DIRECTION direction)
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{
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2022-05-21 20:41:09 +02:00
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// Create cipher instance
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GCipher cipher(key, direction);
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2022-05-26 15:47:24 +02:00
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std::vector<Block> digested;
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digested.reserve(data.size());
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2022-05-21 20:41:09 +02:00
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2022-05-26 15:47:24 +02:00
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// Digest all our blocks
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for (const Block& block : data) {
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Block digestedBlock = cipher.Digest(block);
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digested.emplace_back(digestedBlock);
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}
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// Return it
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return digested;
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}
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}
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