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CustomerDecrypts.py
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CustomerDecrypts.py
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import phe as paillier
import json
import numpy as np
def getKeys():
# Load keys from custkeys.json file
with open('PaillierKeys\custkeys.json', 'r') as file:
keys = json.load(file)
# Reconstruct Paillier public-private key pair
pub_key = paillier.PaillierPublicKey(n=int(keys['public_key']['n']))
priv_key = paillier.PaillierPrivateKey(pub_key, keys['private_key']['p'], keys['private_key']['q'])
return pub_key, priv_key
def loadAnswer():
# Load encrypted answer from answer.json file
with open('Encrypted_Predicted_value\\answer.json', 'r') as file:
ans = json.load(file)
# Parse the JSON data
answer_data = json.loads(ans)
return answer_data
def decryptAnswer(pub_key, priv_key, answer_data):
# Reconstruct answer key from the loaded data
answer_key = paillier.PaillierPublicKey(n=int(answer_data['pubkey']['n']))
# Reconstruct encrypted answer from the loaded data
answer = paillier.EncryptedNumber(answer_key, int(answer_data['values'][0]), int(answer_data['values'][1]))
# Check if the answer key matches the user's private key
if answer_key == pub_key:
# Decrypt the answer
decrypted_answer = priv_key.decrypt(answer)
# Transform the decrypted answer (assuming it's logarithmic, for example)
final_prediction = np.exp(decrypted_answer)
return final_prediction
else:
print("Error: The answer key does not match the user's public key.")
return None
def main():
# Load user's public and private keys
pub_key, priv_key = getKeys()
# Load the encrypted answer
answer_data = loadAnswer()
# Decrypt and process the answer
final_prediction = decryptAnswer(pub_key, priv_key, answer_data)
# Print the final prediction
if final_prediction is not None:
print("Final Prediction:", final_prediction)
if __name__ == "__main__":
main()