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Fixed typo in caesar_cipher.py (#2979)
* Fixed typo in caesar_cipher.py * Typo fixes
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@ -220,7 +220,7 @@ def brute_force(input_string: str, alphabet=None) -> dict:
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def main():
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while True:
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print(f'\n{"-" * 10}\n Menu\n{"-" * 10}')
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print(*["1.Encrpyt", "2.Decrypt", "3.BruteForce", "4.Quit"], sep="\n")
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print(*["1.Encrypt", "2.Decrypt", "3.BruteForce", "4.Quit"], sep="\n")
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# get user input
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choice = input("\nWhat would you like to do?: ").strip() or "4"
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@ -183,7 +183,7 @@ class XORCipher:
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# crypt = XORCipher()
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# key = 67
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# # test enrcypt
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# # test encrypt
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# print(crypt.encrypt("hallo welt",key))
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# # test decrypt
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# print(crypt.decrypt(crypt.encrypt("hallo welt",key), key))
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@ -8,7 +8,7 @@ Usage: python sha1.py --string "Hello World!!"
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Also contains a Test class to verify that the generated Hash is same as that
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returned by the hashlib library
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SHA1 hash or SHA1 sum of a string is a crytpographic function which means it is easy
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SHA1 hash or SHA1 sum of a string is a cryptographic function which means it is easy
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to calculate forwards but extremely difficult to calculate backwards. What this means
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is, you can easily calculate the hash of a string, but it is extremely difficult to
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know the original string if you have its hash. This property is useful to communicate
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