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Added new Autokey class for Autokey cipher
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98
SourceFiles/Autokey.cpp
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98
SourceFiles/Autokey.cpp
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//Ciphers/SourceFiles/Autokey.cpp
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//Matthew Ellison
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// Created: 5-3-18
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//Modified: 5-3-18
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//This file contains the implementation of the Autokey class
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#include "../Headers/Autokey.hpp"
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#include <string>
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void Autokey::encodeSetKeyword(std::string& key, std::string input){
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//Remove all unneccessary elements from the key
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Vigenere::setKeyword(key);
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key = Vigenere::getKeyword();
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//Remove all unneccessary elements from the input
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Vigenere::setInputString(input);
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input = getInputString();
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key.append(input);
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//This will take a long time if the keyword in long
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//Remove the last letter in the string until it is the same size as the input
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while(key.size() > input.size()){
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key.erase(key.end() - 1);
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}
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//Set the new Keyword
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keyword = key;
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//Make sure to update the offset
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setOffset();
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}
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void Autokey::decodeSetKeyword(std::string& key, std::string input){
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//Remove all unneccessary elements from the key
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Vigenere::setKeyword(key);
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key = Vigenere::getKeyword();
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//Remove all unneccessary elements from the input
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Vigenere::setInputString(input);
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}
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std::string Autokey::decode(){
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//This is going to take a long time no matter what
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//You must decode what you can and then add the decoded portion to the key and do it all over again
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//std::string input;
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std::string output;
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std::string key = keyword;
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unsigned int keyLength = keyword.size();
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for(int cnt = 0;(key.size() * cnt) < inputString.size();++cnt){
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//Make sure you are not going to run out of bounds with the keyword
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//This also allows the key to be longer than the message
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if(keyword.size() == keyLength){
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while(keyLength > inputString.size()){
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keyword.erase(keyword.end() - 1);
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}
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}
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else if(keyword.size() > inputString.size()){
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while(keyword.size() > inputString.size()){
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keyword.erase(keyword.end() - 1);
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}
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}
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else{
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while((keyword.size() + keyLength) > inputString.size()){
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//key.erase(key.end() - 1);
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--keyLength;
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}
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}
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//Decode the portion that you have
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Vigenere::decode();
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std::string temp = outputString.substr(cnt * key.size(), keyLength);
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output += temp;
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keyword += temp;
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//Make sure to update the offsets
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setOffset();
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}
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return outputString;
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}
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Autokey::Autokey(){
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reset();
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}
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Autokey::~Autokey(){
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}
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std::string Autokey::encode(std::string key, std::string input){
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reset();;
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encodeSetKeyword(key, input);
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return Vigenere::encode();
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}
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std::string Autokey::decode(std::string key, std::string input){
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reset();
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setInputString(input);
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decodeSetKeyword(key, input); //Decoding is a bit different because part of the key is also part of the original message
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return Autokey::decode();
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}
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