mirror of
https://github.com/noDRM/DeDRM_tools.git
synced 2024-11-05 05:26:09 +06:00
383 lines
15 KiB
Python
383 lines
15 KiB
Python
#!/usr/bin/env python
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# ignobleepub_plugin.py
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# Released under the terms of the GNU General Public Licence, version 3 or
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# later. <http://www.gnu.org/licenses/>
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#
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# Requires Calibre version 0.6.44 or higher.
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#
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# All credit given to I <3 Cabbages for the original standalone scripts.
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# I had the much easier job of converting them to Calibre a plugin.
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#
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# This plugin is meant to decrypt Barnes & Noble Epubs that are protected
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# with Adobe's Adept encryption. It is meant to function without having to install
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# any dependencies... other than having Calibre installed, of course. It will still
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# work if you have Python and PyCrypto already installed, but they aren't necessary.
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#
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# Configuration:
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# 1) The easiest way to configure the plugin is to enter your name (Barnes & Noble account
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# name) and credit card number (the one used to purchase the books) into the plugin's
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# customization window. Highlight the plugin (Ignoble Epub DeDRM) and click the
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# "Customize Plugin" button on Calibre's Preferences->Plugins page.
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# Enter the name and credit card number separated by a comma: Your Name,1234123412341234
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#
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# If you've purchased books with more than one credit card, separate the info with
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# a colon: Your Name,1234123412341234:Other Name,2345234523452345
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#
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# ** Method 1 is your only option if you don't have/can't run the original
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# I <3 Cabbages scripts on your particular machine. **
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#
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# 2) If you already have keyfiles generated with I <3 Cabbages' ignoblekeygen.pyw
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# script, you can put those keyfiles in Calibre's configuration directory. The easiest
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# way to find the correct directory is to go to Calibre's Preferences page... click
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# on the 'Miscellaneous' button (looks like a gear), and then click the 'Open Calibre
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# configuration directory' button. Paste your keyfiles in there. Just make sure that
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# they have different names and are saved with the '.b64' extension (like the ignoblekeygen
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# script produces). This directory isn't touched when upgrading Calibre, so it's quite safe
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# to leave then there.
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#
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# All keyfiles from option 2 and all data entered from option 1 will be used to attempt
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# to decrypt a book. You can use option 1 or option 2, or a combination of both.
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#
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#
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# Revision history:
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# 0.1.0 - Initial release
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# 0.1.1 - Allow Windows users to make use of openssl if they have it installed.
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# - Incorporated SomeUpdates zipfix routine.
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# 0.1.2 - bug fix for non-ascii file names in encryption.xml
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# 0.1.3 - Try PyCrypto on Windows first
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"""
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Decrypt Barnes & Noble ADEPT encrypted EPUB books.
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"""
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from __future__ import with_statement
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__license__ = 'GPL v3'
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import sys
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import os
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import hashlib
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import zlib
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import zipfile
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import re
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from zipfile import ZipFile, ZIP_STORED, ZIP_DEFLATED
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import xml.etree.ElementTree as etree
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from contextlib import closing
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global AES
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global AES2
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META_NAMES = ('mimetype', 'META-INF/rights.xml', 'META-INF/encryption.xml')
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NSMAP = {'adept': 'http://ns.adobe.com/adept',
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'enc': 'http://www.w3.org/2001/04/xmlenc#'}
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class IGNOBLEError(Exception):
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pass
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def _load_crypto_libcrypto():
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from ctypes import CDLL, POINTER, c_void_p, c_char_p, c_int, c_long, \
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Structure, c_ulong, create_string_buffer, cast
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from ctypes.util import find_library
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if sys.platform.startswith('win'):
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libcrypto = find_library('libeay32')
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else:
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libcrypto = find_library('crypto')
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if libcrypto is None:
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raise IGNOBLEError('libcrypto not found')
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libcrypto = CDLL(libcrypto)
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AES_MAXNR = 14
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c_char_pp = POINTER(c_char_p)
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c_int_p = POINTER(c_int)
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class AES_KEY(Structure):
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_fields_ = [('rd_key', c_long * (4 * (AES_MAXNR + 1))),
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('rounds', c_int)]
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AES_KEY_p = POINTER(AES_KEY)
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def F(restype, name, argtypes):
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func = getattr(libcrypto, name)
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func.restype = restype
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func.argtypes = argtypes
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return func
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AES_set_encrypt_key = F(c_int, 'AES_set_encrypt_key',
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[c_char_p, c_int, AES_KEY_p])
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AES_set_decrypt_key = F(c_int, 'AES_set_decrypt_key',
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[c_char_p, c_int, AES_KEY_p])
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AES_cbc_encrypt = F(None, 'AES_cbc_encrypt',
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[c_char_p, c_char_p, c_ulong, AES_KEY_p, c_char_p,
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c_int])
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class AES(object):
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def __init__(self, userkey):
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self._blocksize = len(userkey)
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if (self._blocksize != 16) and (self._blocksize != 24) and (self._blocksize != 32) :
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raise IGNOBLEError('AES improper key used')
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return
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key = self._key = AES_KEY()
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rv = AES_set_decrypt_key(userkey, len(userkey) * 8, key)
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if rv < 0:
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raise IGNOBLEError('Failed to initialize AES key')
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def decrypt(self, data):
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out = create_string_buffer(len(data))
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iv = ("\x00" * self._blocksize)
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rv = AES_cbc_encrypt(data, out, len(data), self._key, iv, 0)
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if rv == 0:
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raise IGNOBLEError('AES decryption failed')
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return out.raw
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class AES2(object):
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def __init__(self, userkey, iv):
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self._blocksize = len(userkey)
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self._iv = iv
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key = self._key = AES_KEY()
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rv = AES_set_encrypt_key(userkey, len(userkey) * 8, key)
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if rv < 0:
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raise IGNOBLEError('Failed to initialize AES Encrypt key')
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def encrypt(self, data):
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out = create_string_buffer(len(data))
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rv = AES_cbc_encrypt(data, out, len(data), self._key, self._iv, 1)
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if rv == 0:
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raise IGNOBLEError('AES encryption failed')
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return out.raw
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print 'IgnobleEpub: Using libcrypto.'
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return (AES, AES2)
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def _load_crypto_pycrypto():
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from Crypto.Cipher import AES as _AES
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class AES(object):
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def __init__(self, key):
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self._aes = _AES.new(key, _AES.MODE_CBC)
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def decrypt(self, data):
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return self._aes.decrypt(data)
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class AES2(object):
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def __init__(self, key, iv):
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self._aes = _AES.new(key, _AES.MODE_CBC, iv)
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def encrypt(self, data):
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return self._aes.encrypt(data)
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print 'IgnobleEpub: Using PyCrypto.'
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return (AES, AES2)
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def _load_crypto():
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_aes = _aes2 = None
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cryptolist = (_load_crypto_libcrypto, _load_crypto_pycrypto)
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if sys.platform.startswith('win'):
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cryptolist = (_load_crypto_pycrypto, _load_crypto_libcrypto)
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for loader in cryptolist:
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try:
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_aes, _aes2 = loader()
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break
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except (ImportError, IGNOBLEError):
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pass
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return (_aes, _aes2)
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def normalize_name(name): # Strip spaces and convert to lowercase.
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return ''.join(x for x in name.lower() if x != ' ')
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def generate_keyfile(name, ccn):
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name = normalize_name(name) + '\x00'
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ccn = ccn + '\x00'
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name_sha = hashlib.sha1(name).digest()[:16]
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ccn_sha = hashlib.sha1(ccn).digest()[:16]
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both_sha = hashlib.sha1(name + ccn).digest()
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aes = AES2(ccn_sha, name_sha)
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crypt = aes.encrypt(both_sha + ('\x0c' * 0x0c))
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userkey = hashlib.sha1(crypt).digest()
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return userkey.encode('base64')
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class ZipInfo(zipfile.ZipInfo):
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def __init__(self, *args, **kwargs):
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if 'compress_type' in kwargs:
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compress_type = kwargs.pop('compress_type')
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super(ZipInfo, self).__init__(*args, **kwargs)
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self.compress_type = compress_type
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class Decryptor(object):
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def __init__(self, bookkey, encryption):
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enc = lambda tag: '{%s}%s' % (NSMAP['enc'], tag)
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self._aes = AES(bookkey)
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encryption = etree.fromstring(encryption)
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self._encrypted = encrypted = set()
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expr = './%s/%s/%s' % (enc('EncryptedData'), enc('CipherData'),
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enc('CipherReference'))
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for elem in encryption.findall(expr):
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path = elem.get('URI', None)
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path = path.encode('utf-8')
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if path is not None:
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encrypted.add(path)
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def decompress(self, bytes):
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dc = zlib.decompressobj(-15)
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bytes = dc.decompress(bytes)
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ex = dc.decompress('Z') + dc.flush()
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if ex:
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bytes = bytes + ex
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return bytes
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def decrypt(self, path, data):
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if path in self._encrypted:
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data = self._aes.decrypt(data)[16:]
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data = data[:-ord(data[-1])]
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data = self.decompress(data)
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return data
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def plugin_main(userkey, inpath, outpath):
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key = userkey.decode('base64')[:16]
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aes = AES(key)
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with closing(ZipFile(open(inpath, 'rb'))) as inf:
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namelist = set(inf.namelist())
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if 'META-INF/rights.xml' not in namelist or \
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'META-INF/encryption.xml' not in namelist:
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return 1
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for name in META_NAMES:
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namelist.remove(name)
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try: # If the generated keyfile doesn't match the bookkey, this is where it's likely to blow up.
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rights = etree.fromstring(inf.read('META-INF/rights.xml'))
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adept = lambda tag: '{%s}%s' % (NSMAP['adept'], tag)
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expr = './/%s' % (adept('encryptedKey'),)
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bookkey = ''.join(rights.findtext(expr))
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bookkey = aes.decrypt(bookkey.decode('base64'))
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bookkey = bookkey[:-ord(bookkey[-1])]
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encryption = inf.read('META-INF/encryption.xml')
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decryptor = Decryptor(bookkey[-16:], encryption)
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kwds = dict(compression=ZIP_DEFLATED, allowZip64=False)
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with closing(ZipFile(open(outpath, 'wb'), 'w', **kwds)) as outf:
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zi = ZipInfo('mimetype', compress_type=ZIP_STORED)
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outf.writestr(zi, inf.read('mimetype'))
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for path in namelist:
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data = inf.read(path)
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outf.writestr(path, decryptor.decrypt(path, data))
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except:
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return 2
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return 0
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from calibre.customize import FileTypePlugin
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class IgnobleDeDRM(FileTypePlugin):
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name = 'Ignoble Epub DeDRM'
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description = 'Removes DRM from secure Barnes & Noble epub files. \
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Credit given to I <3 Cabbages for the original stand-alone scripts.'
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supported_platforms = ['linux', 'osx', 'windows']
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author = 'DiapDealer'
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version = (0, 1, 3)
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minimum_calibre_version = (0, 6, 44) # Compiled python libraries cannot be imported in earlier versions.
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file_types = set(['epub'])
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on_import = True
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def run(self, path_to_ebook):
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global AES
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global AES2
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from calibre.gui2 import is_ok_to_use_qt
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from PyQt4.Qt import QMessageBox
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from calibre.constants import iswindows, isosx
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AES, AES2 = _load_crypto()
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if AES == None or AES2 == None:
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# Failed to load libcrypto or PyCrypto... Adobe Epubs can't be decrypted.'
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raise IGNOBLEError('IgnobleEpub - Failed to load crypto libs.')
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return
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# Load any keyfiles (*.b64) included Calibre's config directory.
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userkeys = []
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try:
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# Find Calibre's configuration directory.
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confpath = os.path.split(os.path.split(self.plugin_path)[0])[0]
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print 'IgnobleEpub: Calibre configuration directory = %s' % confpath
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files = os.listdir(confpath)
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filefilter = re.compile("\.b64$", re.IGNORECASE)
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files = filter(filefilter.search, files)
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if files:
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for filename in files:
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fpath = os.path.join(confpath, filename)
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with open(fpath, 'rb') as f:
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userkeys.append(f.read())
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print 'IgnobleEpub: Keyfile %s found in config folder.' % filename
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else:
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print 'IgnobleEpub: No keyfiles found. Checking plugin customization string.'
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except IOError:
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print 'IgnobleEpub: Error reading keyfiles from config directory.'
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pass
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# Get name and credit card number from Plugin Customization
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if not userkeys and not self.site_customization:
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# Plugin hasn't been configured... do nothing.
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raise IGNOBLEError('IgnobleEpub - No keys found. Plugin not configured.')
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return
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if self.site_customization:
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keystuff = self.site_customization
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ar = keystuff.split(':')
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keycount = 0
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for i in ar:
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try:
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name, ccn = i.split(',')
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keycount += 1
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except ValueError:
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raise IGNOBLEError('IgnobleEpub - Error parsing user supplied data.')
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return
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# Generate Barnes & Noble EPUB user key from name and credit card number.
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userkeys.append( generate_keyfile(name, ccn) )
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print 'IgnobleEpub: %d userkey(s) generated from customization data.' % keycount
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# Attempt to decrypt epub with each encryption key (generated or provided).
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for userkey in userkeys:
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# Create a TemporaryPersistent file to work with.
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# Check original epub archive for zip errors.
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import zipfix
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inf = self.temporary_file('.epub')
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try:
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fr = zipfix.fixZip(path_to_ebook, inf.name)
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fr.fix()
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except Exception, e:
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raise Exception(e)
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return
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of = self.temporary_file('.epub')
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# Give the user key, ebook and TemporaryPersistent file to the Stripper function.
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result = plugin_main(userkey, inf.name, of.name)
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# Ebook is not a B&N Adept epub... do nothing and pass it on.
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# This allows a non-encrypted epub to be imported without error messages.
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if result == 1:
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print 'IgnobleEpub: Not a B&N Adept Epub... punting.'
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of.close()
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return path_to_ebook
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break
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# Decryption was successful return the modified PersistentTemporary
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# file to Calibre's import process.
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if result == 0:
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print 'IgnobleEpub: Encryption successfully removed.'
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of.close()
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return of.name
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break
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print 'IgnobleEpub: Encryption key invalid... trying others.'
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of.close()
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# Something went wrong with decryption.
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# Import the original unmolested epub.
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of.close
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raise IGNOBLEError('IgnobleEpub - Ultimately failed to decrypt.')
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return
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def customization_help(self, gui=False):
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return 'Enter B&N Account name and CC# (separate name and CC# with a comma)'
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