mirror of
https://github.com/chrisgit2004/AbsoluteSolver.git
synced 2026-06-19 13:32:42 +02:00
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1 Commits
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| 52e89192b6 |
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#!/bin/bash
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echo " =============================================================================="
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echo " AbsoluteSolver: PBKDF2-AES Decryptor - Pre-Use Setup, by chrisrich4892"
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echo " =============================================================================="
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echo "=== Setting up AbsoluteSolver for first-time use! ==="
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# Check if Python 3 is installed
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if ! command -v python3 &> /dev/null; then
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echo "[!] Python 3 could not be found. Please install Python 3 and try again."
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exit 1
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fi
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# Ensure pip is installed for Python 3
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if ! command -v pip3 &> /dev/null; then
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echo "[*] pip3 not found. Attempting to install package manager dependencies..."
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if command -v apt &> /dev/null; then
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sudo apt update && sudo apt install -y python3-pip
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elif command -v brew &> /dev/null; then
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brew install python
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else
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echo "[!] Could not automatically install pip. Please install python3-pip manually."
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exit 1
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fi
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fi
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echo "[*] Upgrading pip to the latest version..."
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python3 -m pip install --upgrade pip --user &> /dev/null
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echo "[*] Installing required decryptor dependencies..."
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# pycryptodome provides the required Crypto.Protocol, Crypto.Hash, and Crypto.Cipher modules
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python3 -m pip install pycryptodome --user
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if [ $? -eq 0 ]; then
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echo -e "- AbsoluteSolver Setup Complete! -"
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echo "You can now run it using: python3 solver.py"
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else
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echo -e ":( AbsoluteSolver Setup Failed, Please check your internet connection and permissions."
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exit 1
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fi
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@@ -0,0 +1,95 @@
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import base64
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from Crypto.Protocol.KDF import PBKDF2
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from Crypto.Hash import SHA256
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from Crypto.Cipher import AES
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# ==========================================
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# APPROACH SELECTION
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# ==========================================
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# Set this to True to test raw hex bytes.
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# Set this to False to test pure plaintext strings.
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USE_RAW_HEX_BYTES = False
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if USE_RAW_HEX_BYTES:
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# Option A: Raw Hex String (Will be converted to cryptographic bytes)
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piece_1 = "4A434A454E534F4E"
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piece_2 = "534F4C564552"
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piece_3 = "636F707065722D39"
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piece_4 = "736F6C766572"
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piece_5 = "54455353415F434F4D50524F4D49534544"
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piece_6 = "32303236"
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hex_string = piece_1 + piece_2 + piece_3 + piece_4 + piece_5 + piece_6
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password = bytes.fromhex(hex_string)
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print(f"Current Mode: RAW HEX BYTES")
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print(f"Testing Hex Sequence: '{hex_string}'")
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else:
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# Option B: Plaintext Strings
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piece_1 = "JCJenson"
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piece_2 = "NULLBYTE"
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piece_3 = "copper-9"
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piece_4 = "hunger"
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piece_5 = "TESSA_COMPROMISED"
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piece_6 = "2026"
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password = piece_1 + piece_2 + piece_3 + piece_4 + piece_5 + piece_6
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print(f"Current Mode: PLAINTEXT STRINGS")
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print(f"Testing Password String: '{password}'")
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# ==========================================
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# CRYPTOGRAPHIC PARAMETERS (FROM IMAGES)
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# ==========================================
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problems = {
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"Problem I": {
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"salt": "zjwPziNdCw/KeJllLzPmRljqfQxNWl8z",
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"iv": "U106CuxdAEp6AWTA",
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"ciphertext": "Ln+uvIwB+w+sVtlwLrwm6w==",
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"tag": "3Xyql/cHrxBVx0nCFrl7qA=="
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},
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"Problem II": {
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"salt": "6gV965IdM2b7zzmDy2gXcpp1DgawIXBq",
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"iv": "p7bkD7c2zDnQivbU",
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"ciphertext": "nSvFpXe1F6U7IwVJlEDR6A==",
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"tag": "0bHBGmjimZH2hm/OEjVnsQ=="
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},
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"Problem III": {
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"salt": "QkpTT/H3zL3SyLJUVlp07Pt70TJn8teS",
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"iv": "L1niTTFIU/gANvN3",
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"ciphertext": "MsDJIehDfbw8s2SQlARMKQ==",
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"tag": "ypc32PBsQyV06i59052+NQ=="
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}
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}
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iterations = 2100000
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print("Crunching keys across all problems... (This will take a moment)")
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print("-" * 60)
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# Loop through each problem to find the real one
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for name, data in problems.items():
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try:
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# Decode base64 components
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salt = base64.b64decode(data["salt"])
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iv = base64.b64decode(data["iv"])
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ciphertext = base64.b64decode(data["ciphertext"])
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auth_tag = base64.b64decode(data["tag"])
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# Derive the key using PBKDF2-HMAC-SHA256
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key = PBKDF2(password, salt, dkLen=32, count=iterations, hmac_hash_module=SHA256)
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# Attempt AES-256-GCM decryption
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cipher = AES.new(key, AES.MODE_GCM, nonce=iv)
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decrypted_bytes = cipher.decrypt_and_verify(ciphertext, auth_tag)
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print(f"\n[+++] SUCCESS AT {name}! [+++]")
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print("Decrypted Content:")
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print(decrypted_bytes.decode('utf-8'))
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print("-" * 60)
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except ValueError:
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# GCM authentication tag validation fails if the password is wrong
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print(f"[x] {name}: Verification failed.")
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except Exception as e:
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print(f"[!] {name}: Error occurred: {e}")
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print("\nProcessing complete.")
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