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* Update rsa_cipher.py by replacing %s with {} * Update rsa_cipher.py * [pre-commit.ci] auto fixes from pre-commit.com hooks for more information, see https://pre-commit.ci * Update linear_discriminant_analysis.py * [pre-commit.ci] auto fixes from pre-commit.com hooks for more information, see https://pre-commit.ci * Update linear_discriminant_analysis.py * Update linear_discriminant_analysis.py * [pre-commit.ci] auto fixes from pre-commit.com hooks for more information, see https://pre-commit.ci * Update linear_discriminant_analysis.py * Update linear_discriminant_analysis.py * [pre-commit.ci] auto fixes from pre-commit.com hooks for more information, see https://pre-commit.ci * Update linear_discriminant_analysis.py * Update machine_learning/linear_discriminant_analysis.py Co-authored-by: Christian Clauss <cclauss@me.com> * Update linear_discriminant_analysis.py * updated --------- Co-authored-by: pre-commit-ci[bot] <66853113+pre-commit-ci[bot]@users.noreply.github.com> Co-authored-by: Christian Clauss <cclauss@me.com>
154 lines
4.8 KiB
Python
154 lines
4.8 KiB
Python
import os
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import sys
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from . import rsa_key_generator as rkg
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DEFAULT_BLOCK_SIZE = 128
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BYTE_SIZE = 256
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def get_blocks_from_text(
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message: str, block_size: int = DEFAULT_BLOCK_SIZE
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) -> list[int]:
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message_bytes = message.encode("ascii")
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block_ints = []
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for block_start in range(0, len(message_bytes), block_size):
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block_int = 0
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for i in range(block_start, min(block_start + block_size, len(message_bytes))):
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block_int += message_bytes[i] * (BYTE_SIZE ** (i % block_size))
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block_ints.append(block_int)
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return block_ints
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def get_text_from_blocks(
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block_ints: list[int], message_length: int, block_size: int = DEFAULT_BLOCK_SIZE
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) -> str:
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message: list[str] = []
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for block_int in block_ints:
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block_message: list[str] = []
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for i in range(block_size - 1, -1, -1):
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if len(message) + i < message_length:
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ascii_number = block_int // (BYTE_SIZE**i)
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block_int = block_int % (BYTE_SIZE**i)
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block_message.insert(0, chr(ascii_number))
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message.extend(block_message)
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return "".join(message)
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def encrypt_message(
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message: str, key: tuple[int, int], block_size: int = DEFAULT_BLOCK_SIZE
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) -> list[int]:
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encrypted_blocks = []
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n, e = key
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for block in get_blocks_from_text(message, block_size):
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encrypted_blocks.append(pow(block, e, n))
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return encrypted_blocks
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def decrypt_message(
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encrypted_blocks: list[int],
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message_length: int,
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key: tuple[int, int],
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block_size: int = DEFAULT_BLOCK_SIZE,
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) -> str:
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decrypted_blocks = []
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n, d = key
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for block in encrypted_blocks:
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decrypted_blocks.append(pow(block, d, n))
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return get_text_from_blocks(decrypted_blocks, message_length, block_size)
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def read_key_file(key_filename: str) -> tuple[int, int, int]:
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with open(key_filename) as fo:
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content = fo.read()
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key_size, n, eor_d = content.split(",")
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return (int(key_size), int(n), int(eor_d))
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def encrypt_and_write_to_file(
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message_filename: str,
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key_filename: str,
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message: str,
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block_size: int = DEFAULT_BLOCK_SIZE,
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) -> str:
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key_size, n, e = read_key_file(key_filename)
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if key_size < block_size * 8:
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sys.exit(
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"ERROR: Block size is {} bits and key size is {} bits. The RSA cipher "
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"requires the block size to be equal to or greater than the key size. "
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"Either decrease the block size or use different keys.".format(
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block_size * 8, key_size
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)
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)
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encrypted_blocks = [str(i) for i in encrypt_message(message, (n, e), block_size)]
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encrypted_content = ",".join(encrypted_blocks)
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encrypted_content = f"{len(message)}_{block_size}_{encrypted_content}"
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with open(message_filename, "w") as fo:
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fo.write(encrypted_content)
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return encrypted_content
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def read_from_file_and_decrypt(message_filename: str, key_filename: str) -> str:
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key_size, n, d = read_key_file(key_filename)
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with open(message_filename) as fo:
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content = fo.read()
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message_length_str, block_size_str, encrypted_message = content.split("_")
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message_length = int(message_length_str)
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block_size = int(block_size_str)
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if key_size < block_size * 8:
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sys.exit(
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"ERROR: Block size is {} bits and key size is {} bits. The RSA cipher "
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"requires the block size to be equal to or greater than the key size. "
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"Did you specify the correct key file and encrypted file?".format(
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block_size * 8, key_size
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)
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)
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encrypted_blocks = []
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for block in encrypted_message.split(","):
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encrypted_blocks.append(int(block))
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return decrypt_message(encrypted_blocks, message_length, (n, d), block_size)
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def main() -> None:
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filename = "encrypted_file.txt"
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response = input(r"Encrypt\Decrypt [e\d]: ")
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if response.lower().startswith("e"):
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mode = "encrypt"
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elif response.lower().startswith("d"):
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mode = "decrypt"
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if mode == "encrypt":
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if not os.path.exists("rsa_pubkey.txt"):
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rkg.make_key_files("rsa", 1024)
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message = input("\nEnter message: ")
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pubkey_filename = "rsa_pubkey.txt"
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print(f"Encrypting and writing to {filename}...")
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encrypted_text = encrypt_and_write_to_file(filename, pubkey_filename, message)
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print("\nEncrypted text:")
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print(encrypted_text)
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elif mode == "decrypt":
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privkey_filename = "rsa_privkey.txt"
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print(f"Reading from {filename} and decrypting...")
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decrypted_text = read_from_file_and_decrypt(filename, privkey_filename)
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print("writing decryption to rsa_decryption.txt...")
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with open("rsa_decryption.txt", "w") as dec:
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dec.write(decrypted_text)
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print("\nDecryption:")
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print(decrypted_text)
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if __name__ == "__main__":
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main()
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