Python/ciphers/xor_cipher.py

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"""
author: Christian Bender
date: 21.12.2017
class: XORCipher
This class implements the XOR-cipher algorithm and provides
some useful methods for encrypting and decrypting strings and
files.
Overview about methods
- encrypt : list of char
- decrypt : list of char
- encrypt_string : str
- decrypt_string : str
- encrypt_file : boolean
- decrypt_file : boolean
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"""
from __future__ import annotations
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class XORCipher:
def __init__(self, key: int = 0):
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"""
simple constructor that receives a key or uses
default key = 0
"""
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# private field
self.__key = key
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def encrypt(self, content: str, key: int) -> list[str]:
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"""
input: 'content' of type string and 'key' of type int
output: encrypted string 'content' as a list of chars
if key not passed the method uses the key by the constructor.
otherwise key = 1
"""
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# precondition
assert isinstance(key, int) and isinstance(content, str)
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key = key or self.__key or 1
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# make sure key is an appropriate size
key %= 255
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return [chr(ord(ch) ^ key) for ch in content]
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def decrypt(self, content: str, key: int) -> list[str]:
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"""
input: 'content' of type list and 'key' of type int
output: decrypted string 'content' as a list of chars
if key not passed the method uses the key by the constructor.
otherwise key = 1
"""
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# precondition
assert isinstance(key, int) and isinstance(content, list)
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key = key or self.__key or 1
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# make sure key is an appropriate size
key %= 255
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return [chr(ord(ch) ^ key) for ch in content]
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def encrypt_string(self, content: str, key: int = 0) -> str:
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"""
input: 'content' of type string and 'key' of type int
output: encrypted string 'content'
if key not passed the method uses the key by the constructor.
otherwise key = 1
"""
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# precondition
assert isinstance(key, int) and isinstance(content, str)
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key = key or self.__key or 1
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# make sure key can be any size
while key > 255:
key -= 255
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# This will be returned
ans = ""
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for ch in content:
ans += chr(ord(ch) ^ key)
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return ans
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def decrypt_string(self, content: str, key: int = 0) -> str:
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"""
input: 'content' of type string and 'key' of type int
output: decrypted string 'content'
if key not passed the method uses the key by the constructor.
otherwise key = 1
"""
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# precondition
assert isinstance(key, int) and isinstance(content, str)
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key = key or self.__key or 1
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# make sure key can be any size
while key > 255:
key -= 255
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# This will be returned
ans = ""
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for ch in content:
ans += chr(ord(ch) ^ key)
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return ans
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def encrypt_file(self, file: str, key: int = 0) -> bool:
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"""
input: filename (str) and a key (int)
output: returns true if encrypt process was
successful otherwise false
if key not passed the method uses the key by the constructor.
otherwise key = 1
"""
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# precondition
assert isinstance(file, str) and isinstance(key, int)
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try:
with open(file) as fin:
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with open("encrypt.out", "w+") as fout:
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# actual encrypt-process
for line in fin:
fout.write(self.encrypt_string(line, key))
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except OSError:
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return False
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return True
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def decrypt_file(self, file: str, key: int) -> bool:
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"""
input: filename (str) and a key (int)
output: returns true if decrypt process was
successful otherwise false
if key not passed the method uses the key by the constructor.
otherwise key = 1
"""
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# precondition
assert isinstance(file, str) and isinstance(key, int)
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try:
with open(file) as fin:
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with open("decrypt.out", "w+") as fout:
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# actual encrypt-process
for line in fin:
fout.write(self.decrypt_string(line, key))
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except OSError:
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return False
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return True
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# Tests
# crypt = XORCipher()
# key = 67
# # test encrypt
# print(crypt.encrypt("hallo welt",key))
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# # test decrypt
# print(crypt.decrypt(crypt.encrypt("hallo welt",key), key))
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# # test encrypt_string
# print(crypt.encrypt_string("hallo welt",key))
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# # test decrypt_string
# print(crypt.decrypt_string(crypt.encrypt_string("hallo welt",key),key))
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# if (crypt.encrypt_file("test.txt",key)):
# print("encrypt successful")
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# else:
# print("encrypt unsuccessful")
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# if (crypt.decrypt_file("encrypt.out",key)):
# print("decrypt successful")
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# else:
# print("decrypt unsuccessful")