mirror of
https://github.com/scito/extract_otp_secret_keys
synced 2024-11-18 09:28:19 +00:00
541 lines
21 KiB
Python
541 lines
21 KiB
Python
# Extract two-factor authentication (2FA, TFA) secret keys from export QR codes of "Google Authenticator" app
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#
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# Usage:
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# 1. Export the QR codes from "Google Authenticator" app
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# 2. Read QR codes with QR code reader (e.g. with a second device)
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# 3. Save the captured QR codes in a text file. Save each QR code on a new line. (The captured QR codes look like "otpauth-migration://offline?data=...")
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# 4. Call this script with the file as input:
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# python extract_otp_secret_keys.py example_export.txt
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#
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# Requirement:
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# The protobuf package of Google for proto3 is required for running this script.
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# pip install protobuf
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#
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# Optional:
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# For printing QR codes, the qrcode module is required
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# pip install qrcode
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#
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# Technical background:
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# The export QR code of "Google Authenticator" contains the URL "otpauth-migration://offline?data=...".
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# The data parameter is a base64 encoded proto3 message (Google Protocol Buffers).
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#
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# Command for regeneration of Python code from proto3 message definition file (only necessary in case of changes of the proto3 message definition):
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# protoc --python_out=generated_python google_auth.proto
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#
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# References:
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# Proto3 documentation: https://developers.google.com/protocol-buffers/docs/pythontutorial
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# Template code: https://github.com/beemdevelopment/Aegis/pull/406
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# Author: Scito (https://scito.ch)
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# This program is free software: you can redistribute it and/or modify
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# it under the terms of the GNU General Public License as published by
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# the Free Software Foundation, either version 3 of the License, or
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# (at your option) any later version.
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#
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# This program is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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# GNU General Public License for more details.
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#
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# You should have received a copy of the GNU General Public License
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# along with this program. If not, see <https://www.gnu.org/licenses/>.
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import argparse
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import base64
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import csv
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import fileinput
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import json
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import os
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import re
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import sys
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import urllib.parse as urlparse
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from enum import Enum
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from operator import add
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from qrcode import QRCode
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import protobuf_generated_python.google_auth_pb2
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def abort(*args, **kwargs):
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eprint(*args, **kwargs)
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sys.exit(1)
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try:
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import cv2
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import numpy
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try:
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import pyzbar.pyzbar as zbar
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from qreader import QReader
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except ImportError as e:
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abort(f"""
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ERROR: Cannot import QReader module. This problem is probably due to the missing zbar shared library.
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On Linux and macOS libzbar0 must be installed.
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See in README.md for the installation of the libzbar0.
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Exception: {e}""")
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qreader_available = True
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except ImportError as e:
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qreader_available = False
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def sys_main():
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main(sys.argv[1:])
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def main(sys_args):
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# allow to use sys.stdout with with (avoid closing)
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sys.stdout.close = lambda: None
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args = parse_args(sys_args)
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otps = extract_otps(args)
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write_csv(args, otps)
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write_keepass_csv(args, otps)
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write_json(args, otps)
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def parse_args(sys_args):
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global verbose, quiet
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formatter = lambda prog: argparse.RawTextHelpFormatter(prog, max_help_position=52)
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description_text = "Extracts one time password (OTP) secret keys from QR codes, e.g. from Google Authenticator app."
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if qreader_available:
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description_text += "\nIf no infiles are provided, the QR codes are interactively captured from the camera."
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example_text = """examples:
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python extract_otp_secret_keys.py
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python extract_otp_secret_keys.py example_*.txt
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python extract_otp_secret_keys.py - < example_export.txt
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python extract_otp_secret_keys.py --csv - example_*.png | tail -n+2
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python extract_otp_secret_keys.py = < example_export.png"""
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arg_parser = argparse.ArgumentParser(formatter_class=formatter,
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description=description_text,
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epilog=example_text)
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arg_parser.add_argument('infile', help="""a) file or - for stdin with 'otpauth-migration://...' URLs separated by newlines, lines starting with # are ignored;
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b) image file containing a QR code or = for stdin for an image containing a QR code""", nargs='*' if qreader_available else '+')
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if qreader_available:
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arg_parser.add_argument('--camera', '-C', help='camera number of system (default camera: 0)', default=0, nargs=1, metavar=('NUMBER'))
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arg_parser.add_argument('--json', '-j', help='export json file or - for stdout', metavar=('FILE'))
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arg_parser.add_argument('--csv', '-c', help='export csv file or - for stdout', metavar=('FILE'))
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arg_parser.add_argument('--keepass', '-k', help='export totp/hotp csv file(s) for KeePass, - for stdout', metavar=('FILE'))
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arg_parser.add_argument('--printqr', '-p', help='print QR code(s) as text to the terminal (requires qrcode module)', action='store_true')
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arg_parser.add_argument('--saveqr', '-s', help='save QR code(s) as images to the given folder (requires qrcode module)', metavar=('DIR'))
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output_group = arg_parser.add_mutually_exclusive_group()
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output_group.add_argument('--verbose', '-v', help='verbose output', action='count')
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output_group.add_argument('--quiet', '-q', help='no stdout output, except output set by -', action='store_true')
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args = arg_parser.parse_args(sys_args)
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if args.csv == '-' or args.json == '-' or args.keepass == '-':
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args.quiet = args.q = True
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verbose = args.verbose if args.verbose else 0
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quiet = True if args.quiet else False
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return args
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def extract_otps(args):
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if not args.infile:
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return extract_otps_from_camera(args)
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else:
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return extract_otps_from_files(args)
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def extract_otps_from_camera(args):
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if verbose: print("Capture QR codes from camera")
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otp_urls = []
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otps = []
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QRMode = Enum('QRMode', ['QREADER', 'DEEP_QREADER', 'CV2'], start = 0)
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qr_mode = QRMode.QREADER
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if verbose: print(f"QR reading mode: {qr_mode}")
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cam = cv2.VideoCapture(args.camera)
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window_name = "Extract OTP Secret Keys: Capture QR Codes from Camera"
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cv2.namedWindow(window_name, cv2.WINDOW_AUTOSIZE)
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font = cv2.FONT_HERSHEY_PLAIN
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font_scale = 1
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font_thickness = 1
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pos_text = 5, 20
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font_dy = 0, cv2.getTextSize("M", font, font_scale, font_thickness)[0][1] + 5
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font_line = cv2.LINE_AA
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text_color = 255, 255, 255
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rect_color = 255, 0, 255
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rect_color_success = 0, 255, 0
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rect_thickness = 5
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decoder = QReader()
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while True:
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success, img = cam.read()
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if not success:
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eprint("ERROR: Failed to capture image")
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break
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if qr_mode in [QRMode.QREADER, QRMode.DEEP_QREADER]:
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bbox, found = decoder.detect(img)
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if qr_mode == QRMode.DEEP_QREADER:
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otp_url = decoder.detect_and_decode(img)
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elif qr_mode == QRMode.QREADER:
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otp_url = decoder.decode(img, bbox) if found else None
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if found:
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cv2.rectangle(img, (bbox[0], bbox[1]), (bbox[2], bbox[3]), rect_color_success if otp_url else rect_color, rect_thickness)
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if otp_url:
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extract_otps_from_otp_url(otp_url, otp_urls, otps, args)
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elif qr_mode == QRMode.CV2:
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for qrcode in zbar.decode(img):
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otp_url = qrcode.data.decode('utf-8')
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pts = numpy.array([qrcode.polygon], numpy.int32)
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pts = pts.reshape((-1, 1, 2))
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cv2.polylines(img, [pts], True, rect_color_success if otp_url else rect_color, rect_thickness)
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extract_otps_from_otp_url(otp_url, otp_urls, otps, args)
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else:
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assert False, f"ERROR: Wrong QReader mode {qr_mode.name}"
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cv2.putText(img, f"Mode: {qr_mode.name} (Hit space to change)", pos_text, font, font_scale, text_color, font_thickness, font_line)
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cv2.putText(img, "Hit ESC to quit", tuple(map(add, pos_text, font_dy)), font, font_scale, text_color, font_thickness, font_line)
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window_dim = cv2.getWindowImageRect(window_name)
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qrcodes_text = f"{len(otp_urls)} QR code{'s'[:len(otp_urls) != 1]} captured"
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pos_qrcodes_text = window_dim[2] - cv2.getTextSize(qrcodes_text, font, font_scale, font_thickness)[0][0] - 5, pos_text[1]
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cv2.putText(img, qrcodes_text, pos_qrcodes_text, font, font_scale, text_color, font_thickness, font_line)
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otps_text = f"{len(otps)} otp{'s'[:len(otps) != 1]} extracted"
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pos_otps_text = window_dim[2] - cv2.getTextSize(otps_text, font, font_scale, font_thickness)[0][0] - 5, pos_text[1] + font_dy[1]
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cv2.putText(img, otps_text, pos_otps_text, font, font_scale, text_color, font_thickness, font_line)
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cv2.imshow(window_name, img)
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key = cv2.waitKey(1) & 0xFF
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if key == 27 or key == ord('q') or key == 13:
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# ESC pressed
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break
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elif key == 32:
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qr_mode = QRMode((qr_mode.value + 1) % len(QRMode))
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if verbose: print(f"QR reading mode: {qr_mode}")
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cam.release()
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cv2.destroyAllWindows()
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return otps
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def extract_otps_from_otp_url(otp_url, otp_urls, otps, args):
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if otp_url and verbose: print(otp_url)
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if otp_url and otp_url not in otp_urls:
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otp_urls.append(otp_url)
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extract_otp_from_otp_url(otp_url, otps, len(otp_urls), len(otps), 'camera', args)
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if verbose: print(f"{len(otps)} otp{'s'[:len(otps) != 1]} from {len(otp_urls)} QR code{'s'[:len(otp_urls) != 1]} extracted")
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def extract_otps_from_files(args):
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otps = []
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i = j = k = 0
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if verbose: print(f"Input files: {args.infile}")
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for infile in args.infile:
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if verbose: print(f"Processing infile {infile}")
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k += 1
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for line in get_otp_urls_from_file(infile):
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if verbose: print(line)
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if line.startswith('#') or line == '': continue
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i += 1
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j = extract_otp_from_otp_url(line, otps, i, j, infile, args)
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if verbose: print(f"{k} infile{'s'[:k != 1]} processed")
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return otps
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def get_otp_urls_from_file(filename):
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# stdin stream cannot be rewinded, thus distinguish, use - for utf-8 stdin and = for binary image stdin
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if filename != '=':
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check_file_exists(filename)
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lines = read_lines_from_text_file(filename)
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if lines or filename == '-':
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return lines
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# could not process text file, try reading as image
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if filename != '-' and qreader_available:
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return convert_img_to_otp_url(filename)
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return []
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def read_lines_from_text_file(filename):
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if verbose: print(f"Reading lines of {filename}")
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finput = fileinput.input(filename)
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try:
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lines = []
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for line in (line.strip() for line in finput):
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if verbose: print(line)
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if is_binary(line):
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abort("\nBinary input was given in stdin, please use = instead of - as infile argument for images.")
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# unfortunately yield line leads to random test fails
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lines.append(line)
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if not lines:
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eprint(f"WARN: {filename.replace('-', 'stdin')} is empty")
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return lines
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except UnicodeDecodeError:
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if filename == '-':
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abort("\nERROR: Unable to open text file form stdin. "
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"In case you want read an image file from stdin, you must use '=' instead of '-'.")
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else: # The file is probably an image, process below
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return None
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finally:
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finput.close()
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def extract_otp_from_otp_url(otpauth_migration_url, otps, i, j, infile, args):
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payload = get_payload_from_otp_url(otpauth_migration_url, i, infile)
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# pylint: disable=no-member
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for raw_otp in payload.otp_parameters:
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j += 1
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if verbose: print(f"\n{j}. Secret Key")
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secret = convert_secret_from_bytes_to_base32_str(raw_otp.secret)
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otp_type_enum = get_enum_name_by_number(raw_otp, 'type')
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otp_type = get_otp_type_str_from_code(raw_otp.type)
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otp_url = build_otp_url(secret, raw_otp)
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otp = {
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"name": raw_otp.name,
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"secret": secret,
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"issuer": raw_otp.issuer,
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"type": otp_type,
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"counter": raw_otp.counter if raw_otp.type == 1 else None,
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"url": otp_url
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}
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otps.append(otp)
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if not quiet:
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print_otp(otp)
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if args.printqr:
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print_qr(args, otp_url)
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if args.saveqr:
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save_qr(otp, args, j)
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if not quiet:
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print()
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return j
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def convert_img_to_otp_url(filename):
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if verbose: print(f"Reading image {filename}")
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try:
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if filename != '=':
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img = cv2.imread(filename)
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else:
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try:
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stdin = sys.stdin.buffer.read()
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except AttributeError:
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# Workaround for pytest, since pytest cannot monkeypatch sys.stdin.buffer
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stdin = sys.stdin.read()
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if not stdin:
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eprint("WARN: stdin is empty")
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try:
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img_array = numpy.frombuffer(stdin, dtype='uint8')
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except TypeError as e:
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abort(f"\nERROR: Cannot read binary stdin buffer. Exception: {e}")
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if not img_array.size:
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return []
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img = cv2.imdecode(img_array, cv2.IMREAD_UNCHANGED)
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if img is None:
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abort(f"\nERROR: Unable to open file for reading.\ninput file: {filename}")
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decoded_text = QReader().detect_and_decode(img)
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if decoded_text is None:
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abort(f"\nERROR: Unable to read QR Code from file.\ninput file: {filename}")
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return [decoded_text]
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except Exception as e:
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abort(f"\nERROR: Encountered exception '{e}'.\ninput file: {filename}")
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def get_payload_from_otp_url(otpauth_migration_url, i, input_source):
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if not otpauth_migration_url.startswith('otpauth-migration://'):
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eprint(f"\nWARN: line is not a otpauth-migration:// URL\ninput: {input_source}\nline '{otpauth_migration_url}'\nProbably a wrong file was given")
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parsed_url = urlparse.urlparse(otpauth_migration_url)
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if verbose > 2: print(f"\nDEBUG: parsed_url={parsed_url}")
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try:
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params = urlparse.parse_qs(parsed_url.query, strict_parsing=True)
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except: # Not necessary for Python >= 3.11
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params = []
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if verbose > 2: print(f"\nDEBUG: querystring params={params}")
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if 'data' not in params:
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abort(f"\nERROR: no data query parameter in input URL\ninput file: {input_source}\nline '{otpauth_migration_url}'\nProbably a wrong file was given")
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data_base64 = params['data'][0]
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if verbose > 2: print(f"\nDEBUG: data_base64={data_base64}")
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data_base64_fixed = data_base64.replace(' ', '+')
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if verbose > 2: print(f"\nDEBUG: data_base64_fixed={data_base64_fixed}")
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data = base64.b64decode(data_base64_fixed, validate=True)
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payload = protobuf_generated_python.google_auth_pb2.MigrationPayload()
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try:
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payload.ParseFromString(data)
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except:
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abort(f"\nERROR: Cannot decode otpauth-migration migration payload.\n"
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f"data={data_base64}")
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if verbose:
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print(f"\n{i}. Payload Line", payload, sep='\n')
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return payload
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# https://stackoverflow.com/questions/40226049/find-enums-listed-in-python-descriptor-for-protobuf
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def get_enum_name_by_number(parent, field_name):
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field_value = getattr(parent, field_name)
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return parent.DESCRIPTOR.fields_by_name[field_name].enum_type.values_by_number.get(field_value).name
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def get_otp_type_str_from_code(otp_type):
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return 'totp' if otp_type == 2 else 'hotp'
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def convert_secret_from_bytes_to_base32_str(bytes):
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return str(base64.b32encode(bytes), 'utf-8').replace('=', '')
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def build_otp_url(secret, raw_otp):
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url_params = {'secret': secret}
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if raw_otp.type == 1: url_params['counter'] = raw_otp.counter
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if raw_otp.issuer: url_params['issuer'] = raw_otp.issuer
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otp_url = f"otpauth://{get_otp_type_str_from_code(raw_otp.type)}/{urlparse.quote(raw_otp.name)}?" + urlparse.urlencode(url_params)
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return otp_url
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def print_otp(otp):
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print(f"Name: {otp['name']}")
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print(f"Secret: {otp['secret']}")
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if otp['issuer']: print(f"Issuer: {otp['issuer']}")
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print(f"Type: {otp['type']}")
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if otp['type'] == 'hotp':
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print(f"Counter: {otp['counter']}")
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if verbose:
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print(otp['url'])
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def save_qr(otp, args, j):
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dir = args.saveqr
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if not (os.path.exists(dir)): os.makedirs(dir, exist_ok=True)
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pattern = re.compile(r'[\W_]+')
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file_otp_name = pattern.sub('', otp['name'])
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file_otp_issuer = pattern.sub('', otp['issuer'])
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save_qr_file(args, otp['url'], f"{dir}/{j}-{file_otp_name}{'-' + file_otp_issuer if file_otp_issuer else ''}.png")
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return file_otp_issuer
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def save_qr_file(args, data, name):
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qr = QRCode()
|
|
qr.add_data(data)
|
|
img = qr.make_image(fill_color='black', back_color='white')
|
|
if verbose: print(f"Saving to {name}")
|
|
img.save(name)
|
|
|
|
|
|
def print_qr(args, data):
|
|
qr = QRCode()
|
|
qr.add_data(data)
|
|
qr.print_ascii()
|
|
|
|
|
|
def write_csv(args, otps):
|
|
if args.csv and len(otps) > 0:
|
|
with open_file_or_stdout_for_csv(args.csv) as outfile:
|
|
writer = csv.DictWriter(outfile, otps[0].keys())
|
|
writer.writeheader()
|
|
writer.writerows(otps)
|
|
if not quiet: print(f"Exported {len(otps)} otp{'s'[:len(otps) != 1]} to csv {args.csv}")
|
|
|
|
|
|
def write_keepass_csv(args, otps):
|
|
if args.keepass and len(otps) > 0:
|
|
has_totp = has_otp_type(otps, 'totp')
|
|
has_hotp = has_otp_type(otps, 'hotp')
|
|
otp_filename_totp = args.keepass if has_totp != has_hotp else add_pre_suffix(args.keepass, "totp")
|
|
otp_filename_hotp = args.keepass if has_totp != has_hotp else add_pre_suffix(args.keepass, "hotp")
|
|
count_totp_entries = 0
|
|
count_hotp_entries = 0
|
|
if has_totp:
|
|
with open_file_or_stdout_for_csv(otp_filename_totp) as outfile:
|
|
writer = csv.DictWriter(outfile, ["Title", "User Name", "TimeOtp-Secret-Base32", "Group"])
|
|
writer.writeheader()
|
|
for otp in otps:
|
|
if otp['type'] == 'totp':
|
|
writer.writerow({
|
|
'Title': otp['issuer'],
|
|
'User Name': otp['name'],
|
|
'TimeOtp-Secret-Base32': otp['secret'] if otp['type'] == 'totp' else None,
|
|
'Group': f"OTP/{otp['type'].upper()}"
|
|
})
|
|
count_totp_entries += 1
|
|
if has_hotp:
|
|
with open_file_or_stdout_for_csv(otp_filename_hotp) as outfile:
|
|
writer = csv.DictWriter(outfile, ["Title", "User Name", "HmacOtp-Secret-Base32", "HmacOtp-Counter", "Group"])
|
|
writer.writeheader()
|
|
for otp in otps:
|
|
if otp['type'] == 'hotp':
|
|
writer.writerow({
|
|
'Title': otp['issuer'],
|
|
'User Name': otp['name'],
|
|
'HmacOtp-Secret-Base32': otp['secret'] if otp['type'] == 'hotp' else None,
|
|
'HmacOtp-Counter': otp['counter'] if otp['type'] == 'hotp' else None,
|
|
'Group': f"OTP/{otp['type'].upper()}"
|
|
})
|
|
count_hotp_entries += 1
|
|
if not quiet:
|
|
if count_totp_entries > 0: print(f"Exported {count_totp_entries} totp entrie{'s'[:count_totp_entries != 1]} to keepass csv file {otp_filename_totp}")
|
|
if count_hotp_entries > 0: print(f"Exported {count_hotp_entries} hotp entrie{'s'[:count_hotp_entries != 1]} to keepass csv file {otp_filename_hotp}")
|
|
|
|
|
|
def write_json(args, otps):
|
|
if args.json:
|
|
with open_file_or_stdout(args.json) as outfile:
|
|
json.dump(otps, outfile, indent=4)
|
|
if not quiet: print(f"Exported {len(otps)} otp{'s'[:len(otps) != 1]} to json {args.json}")
|
|
|
|
|
|
def has_otp_type(otps, otp_type):
|
|
for otp in otps:
|
|
if otp['type'] == otp_type:
|
|
return True
|
|
return False
|
|
|
|
|
|
def add_pre_suffix(file, pre_suffix):
|
|
'''filename.ext, pre -> filename.pre.ext'''
|
|
name, ext = os.path.splitext(file)
|
|
return name + "." + pre_suffix + (ext if ext else "")
|
|
|
|
|
|
def open_file_or_stdout(filename):
|
|
'''stdout is denoted as "-".
|
|
Note: Set before the following line:
|
|
sys.stdout.close = lambda: None'''
|
|
return open(filename, "w", encoding='utf-8') if filename != '-' else sys.stdout
|
|
|
|
|
|
def open_file_or_stdout_for_csv(filename):
|
|
'''stdout is denoted as "-".
|
|
newline=''
|
|
Note: Set before the following line:
|
|
sys.stdout.close = lambda: None'''
|
|
return open(filename, "w", encoding='utf-8', newline='') if filename != '-' else sys.stdout
|
|
|
|
|
|
def check_file_exists(filename):
|
|
if filename != '-' and not os.path.isfile(filename):
|
|
abort(f"\nERROR: Input file provided is non-existent or not a file."
|
|
f"\ninput file: {filename}")
|
|
|
|
|
|
def is_binary(line):
|
|
try:
|
|
line.startswith('#')
|
|
return False
|
|
except (UnicodeDecodeError, AttributeError, TypeError):
|
|
return True
|
|
|
|
|
|
def eprint(*args, **kwargs):
|
|
'''Print to stderr.'''
|
|
print(*args, file=sys.stderr, **kwargs)
|
|
|
|
|
|
if __name__ == '__main__':
|
|
sys_main()
|