tools v5.5
Plugins now include unaltered stand-alone scripts, so no longer need to keep separate copies.
This commit is contained in:
@@ -1,35 +1,37 @@
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#!/usr/bin/env python
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# vim:fileencoding=UTF-8:ts=4:sw=4:sta:et:sts=4:ai
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# -*- coding: utf-8 -*-
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from __future__ import with_statement
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__license__ = 'GPL v3'
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__docformat__ = 'restructuredtext en'
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# ineptepub_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 0.7.55 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 a Calibre plugin.
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# All credit given to i♥cabbages for the original standalone scripts.
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# I had the much easier job of converting them to a calibre plugin.
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#
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# This plugin is meant to decrypt Adobe Digital Edition 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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# 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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# When first run, the plugin will attempt to find your Adobe Digital Editions installation
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# (on Windows and Mac OS's). If successful, it will create an 'adeptkey.der' file and
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# save it in Calibre's configuration directory. It will use that file on subsequent runs.
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# If there are already '*.der' files in the directory, the plugin won't attempt to
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# find the ADE installation. So if you have ADE installed on the same machine as Calibre...
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# you are ready to go.
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# (on Windows and Mac OS's). If successful, it will create one or more
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# 'calibre-adeptkey<n>.der' files and save them in calibre's configuration directory.
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# It will use those files on subsequent runs. If there is already a 'calibre-adeptkey*.der'
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# file in the directory, the plugin won't attempt to find the ADE installation.
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# So if you have ADE installed on the same machine as calibre you are ready to go.
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#
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# If you already have keyfiles generated with I <3 Cabbages' ineptkey.pyw script,
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# If you already have keyfiles generated with i♥cabbages' ineptkey.pyw script,
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# 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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# configuration directory' button. Copy your keyfiles in there. Just make sure that
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# they have different names and are saved with the '.der' extension (like the ineptkey
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# script produces). This directory isn't touched when upgrading Calibre, so it's quite
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# safe to leave them there.
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@@ -55,447 +57,157 @@ from __future__ import with_statement
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# 0.1.7 - update to new calibre plugin interface
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# 0.1.8 - Fix for potential problem with PyCrypto
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# 0.1.9 - Fix for potential problem with ADE keys and fix possible output/unicode problem
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# 0.2.0 - Major code change to use unaltered ineptepub.py file 5.8 or later.
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"""
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Decrypt Adobe ADEPT-encrypted EPUB books.
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"""
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PLUGIN_NAME = 'Inept Epub DeDRM'
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PLUGIN_VERSION_TUPLE = (0, 1, 9)
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PLUGIN_VERSION = '.'.join([str(x) for x in PLUGIN_VERSION_TUPLE])
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__license__ = 'GPL v3'
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import sys
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import os
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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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from contextlib import closing
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import xml.etree.ElementTree as etree
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global AES
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global RSA
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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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PLUGIN_NAME = u"Inept Epub DeDRM"
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PLUGIN_VERSION_TUPLE = (0, 2, 0)
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PLUGIN_VERSION = u'.'.join([str(x) for x in PLUGIN_VERSION_TUPLE])
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import sys, os, re
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class ADEPTError(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 ADEPTError('%s Plugin v%s: libcrypto not found' % (PLUGIN_NAME, PLUGIN_VERSION))
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libcrypto = CDLL(libcrypto)
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RSA_NO_PADDING = 3
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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 RSA(Structure):
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pass
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RSA_p = POINTER(RSA)
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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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d2i_RSAPrivateKey = F(RSA_p, 'd2i_RSAPrivateKey',
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[RSA_p, c_char_pp, c_long])
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RSA_size = F(c_int, 'RSA_size', [RSA_p])
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RSA_private_decrypt = F(c_int, 'RSA_private_decrypt',
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[c_int, c_char_p, c_char_p, RSA_p, c_int])
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RSA_free = F(None, 'RSA_free', [RSA_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 RSA(object):
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def __init__(self, der):
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buf = create_string_buffer(der)
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pp = c_char_pp(cast(buf, c_char_p))
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rsa = self._rsa = d2i_RSAPrivateKey(None, pp, len(der))
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if rsa is None:
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raise ADEPTError('Error parsing ADEPT user key DER')
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def decrypt(self, from_):
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rsa = self._rsa
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to = create_string_buffer(RSA_size(rsa))
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dlen = RSA_private_decrypt(len(from_), from_, to, rsa,
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RSA_NO_PADDING)
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if dlen < 0:
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raise ADEPTError('RSA decryption failed')
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return to[:dlen]
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def __del__(self):
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if self._rsa is not None:
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RSA_free(self._rsa)
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self._rsa = None
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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 ADEPTError('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 ADEPTError('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 ADEPTError('AES decryption failed')
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return out.raw
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print 'IneptEpub: Using libcrypto.'
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return (AES, RSA)
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def _load_crypto_pycrypto():
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from Crypto.Cipher import AES as _AES
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from Crypto.PublicKey import RSA as _RSA
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# ASN.1 parsing code from tlslite
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class ASN1Error(Exception):
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pass
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class ASN1Parser(object):
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class Parser(object):
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def __init__(self, bytes):
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self.bytes = bytes
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self.index = 0
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def get(self, length):
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if self.index + length > len(self.bytes):
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raise ASN1Error("Error decoding ASN.1")
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x = 0
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for count in range(length):
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x <<= 8
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x |= self.bytes[self.index]
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self.index += 1
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return x
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def getFixBytes(self, lengthBytes):
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bytes = self.bytes[self.index : self.index+lengthBytes]
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self.index += lengthBytes
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return bytes
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def getVarBytes(self, lengthLength):
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lengthBytes = self.get(lengthLength)
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return self.getFixBytes(lengthBytes)
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def getFixList(self, length, lengthList):
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l = [0] * lengthList
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for x in range(lengthList):
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l[x] = self.get(length)
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return l
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def getVarList(self, length, lengthLength):
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lengthList = self.get(lengthLength)
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if lengthList % length != 0:
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raise ASN1Error("Error decoding ASN.1")
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lengthList = int(lengthList/length)
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l = [0] * lengthList
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for x in range(lengthList):
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l[x] = self.get(length)
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return l
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def startLengthCheck(self, lengthLength):
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self.lengthCheck = self.get(lengthLength)
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self.indexCheck = self.index
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def setLengthCheck(self, length):
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self.lengthCheck = length
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self.indexCheck = self.index
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def stopLengthCheck(self):
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if (self.index - self.indexCheck) != self.lengthCheck:
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raise ASN1Error("Error decoding ASN.1")
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def atLengthCheck(self):
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if (self.index - self.indexCheck) < self.lengthCheck:
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return False
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elif (self.index - self.indexCheck) == self.lengthCheck:
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return True
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else:
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raise ASN1Error("Error decoding ASN.1")
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def __init__(self, bytes):
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p = self.Parser(bytes)
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p.get(1)
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self.length = self._getASN1Length(p)
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self.value = p.getFixBytes(self.length)
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def getChild(self, which):
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p = self.Parser(self.value)
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for x in range(which+1):
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markIndex = p.index
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p.get(1)
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length = self._getASN1Length(p)
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p.getFixBytes(length)
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return ASN1Parser(p.bytes[markIndex:p.index])
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def _getASN1Length(self, p):
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firstLength = p.get(1)
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if firstLength<=127:
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return firstLength
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else:
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lengthLength = firstLength & 0x7F
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return p.get(lengthLength)
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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, '\x00'*16)
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def decrypt(self, data):
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return self._aes.decrypt(data)
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class RSA(object):
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def __init__(self, der):
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key = ASN1Parser([ord(x) for x in der])
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key = [key.getChild(x).value for x in xrange(1, 4)]
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key = [self.bytesToNumber(v) for v in key]
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self._rsa = _RSA.construct(key)
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def bytesToNumber(self, bytes):
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total = 0L
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for byte in bytes:
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total = (total << 8) + byte
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return total
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def decrypt(self, data):
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return self._rsa.decrypt(data)
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print 'IneptEpub: Using pycrypto.'
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return (AES, RSA)
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def _load_crypto():
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_aes = _rsa = 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, _rsa = loader()
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break
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except (ImportError, ADEPTError):
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pass
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return (_aes, _rsa)
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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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rsa = RSA(userkey)
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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:
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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 = rsa.decrypt(bookkey.decode('base64'))
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# Padded as per RSAES-PKCS1-v1_5
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if bookkey[-17] != '\x00':
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raise ADEPTError('problem decrypting session key')
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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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from calibre.constants import iswindows, isosx
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|
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# Wrap a stream so that output gets flushed immediately
|
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# and also make sure that any unicode strings get
|
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# encoded using "replace" before writing them.
|
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class SafeUnbuffered:
|
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def __init__(self, stream):
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self.stream = stream
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self.encoding = stream.encoding
|
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if self.encoding == None:
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self.encoding = "utf-8"
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def write(self, data):
|
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if isinstance(data,unicode):
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data = data.encode(self.encoding,"replace")
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self.stream.write(data)
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self.stream.flush()
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def __getattr__(self, attr):
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return getattr(self.stream, attr)
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|
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|
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class IneptDeDRM(FileTypePlugin):
|
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name = PLUGIN_NAME
|
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description = 'Removes DRM from secure Adobe epub files. \
|
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Credit given to I <3 Cabbages for the original stand-alone scripts.'
|
||||
description = u"Removes DRM from secure Adobe epub files. Credit given to i♥cabbages for the original stand-alone scripts."
|
||||
supported_platforms = ['linux', 'osx', 'windows']
|
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author = 'DiapDealer'
|
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author = u"DiapDealer, Apprentice Alf and i♥cabbages"
|
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version = PLUGIN_VERSION_TUPLE
|
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minimum_calibre_version = (0, 7, 55) # 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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priority = 100
|
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|
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def run(self, path_to_ebook):
|
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from calibre_plugins.ineptepub import outputfix
|
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|
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if sys.stdout.encoding == None:
|
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sys.stdout = outputfix.getwriter('utf-8')(sys.stdout)
|
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else:
|
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sys.stdout = outputfix.getwriter(sys.stdout.encoding)(sys.stdout)
|
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if sys.stderr.encoding == None:
|
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sys.stderr = outputfix.getwriter('utf-8')(sys.stderr)
|
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else:
|
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sys.stderr = outputfix.getwriter(sys.stderr.encoding)(sys.stderr)
|
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|
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global AES
|
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global RSA
|
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|
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AES, RSA = _load_crypto()
|
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|
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if AES == None or RSA == None:
|
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# Failed to load libcrypto or PyCrypto... Adobe Epubs can\'t be decrypted.'
|
||||
raise ADEPTError('IneptEpub: Failed to load crypto libs... Adobe Epubs can\'t be decrypted.')
|
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def run(self, path_to_ebook):
|
||||
|
||||
# make sure any unicode output gets converted safely with 'replace'
|
||||
sys.stdout=SafeUnbuffered(sys.stdout)
|
||||
sys.stderr=SafeUnbuffered(sys.stderr)
|
||||
|
||||
print u"{0} v{1}: Trying to decrypt {2}.".format(PLUGIN_NAME, PLUGIN_VERSION, os.path.basename(path_to_ebook))
|
||||
|
||||
# Create a TemporaryPersistent file to work with.
|
||||
# Check original epub archive for zip errors.
|
||||
from calibre_plugins.ineptepub import zipfix
|
||||
inf = self.temporary_file(u".epub")
|
||||
try:
|
||||
print u"{0} v{1}: Verifying zip archive integrity.".format(PLUGIN_NAME, PLUGIN_VERSION)
|
||||
fr = zipfix.fixZip(path_to_ebook, inf.name)
|
||||
fr.fix()
|
||||
except Exception, e:
|
||||
print u"{0} v{1}: Error when checking zip archive.".format(PLUGIN_NAME, PLUGIN_VERSION)
|
||||
raise Exception(e)
|
||||
return
|
||||
|
||||
|
||||
#check the book
|
||||
from calibre_plugins.ineptepub import ineptepub
|
||||
if not ineptepub.adeptBook(inf.name):
|
||||
print u"{0} v{1}: {2} is not a secure Adobe Adept ePub.".format(PLUGIN_NAME, PLUGIN_VERSION, os.path.basename(path_to_ebook))
|
||||
# return the original file, so that no error message is generated in the GUI
|
||||
return path_to_ebook
|
||||
|
||||
# Load any keyfiles (*.der) included Calibre's config directory.
|
||||
userkeys = []
|
||||
|
||||
# Find Calibre's configuration directory.
|
||||
# self.plugin_path is passed in unicode because we defined our name in unicode
|
||||
confpath = os.path.split(os.path.split(self.plugin_path)[0])[0]
|
||||
print 'IneptEpub: Calibre configuration directory = %s' % confpath
|
||||
print u"{0} v{1}: Calibre configuration directory = {2}".format(PLUGIN_NAME, PLUGIN_VERSION, confpath)
|
||||
files = os.listdir(confpath)
|
||||
filefilter = re.compile("\.der$", re.IGNORECASE)
|
||||
filefilter = re.compile(u"\.der$", re.IGNORECASE)
|
||||
files = filter(filefilter.search, files)
|
||||
foundDefault = False
|
||||
|
||||
if files:
|
||||
try:
|
||||
for filename in files:
|
||||
if filename[:16] == 'calibre-adeptkey':
|
||||
if filename[:16] == u"calibre-adeptkey":
|
||||
foundDefault = True
|
||||
fpath = os.path.join(confpath, filename)
|
||||
with open(fpath, 'rb') as f:
|
||||
userkeys.append(f.read())
|
||||
print 'IneptEpub: Keyfile %s found in config folder.' % filename
|
||||
userkeys.append([f.read(), filename])
|
||||
print u"{0} v{1}: Keyfile {2} found in config folder.".format(PLUGIN_NAME, PLUGIN_VERSION, filename)
|
||||
except IOError:
|
||||
print 'IneptEpub: Error reading keyfiles from config directory.'
|
||||
print u"{0} v{1}: Error reading keyfiles from config directory.".format(PLUGIN_NAME, PLUGIN_VERSION)
|
||||
pass
|
||||
|
||||
|
||||
if not foundDefault:
|
||||
# Try to find key from ADE install and save the key in
|
||||
# Calibre's configuration directory for future use.
|
||||
if iswindows or isosx:
|
||||
#ignore annoying future warning from key generation
|
||||
import warnings
|
||||
warnings.filterwarnings('ignore', category=FutureWarning)
|
||||
|
||||
# ADE key retrieval script included in respective OS folder.
|
||||
from calibre_plugins.ineptepub.ineptkey import retrieve_keys
|
||||
try:
|
||||
keys = retrieve_keys()
|
||||
for i,key in enumerate(keys):
|
||||
userkeys.append(key)
|
||||
keypath = os.path.join(confpath, 'calibre-adeptkey{0:d}.der'.format(i))
|
||||
keyname = u"calibre-adeptkey{0:d}.der".format(i)
|
||||
userkeys.append([key,keyname])
|
||||
keypath = os.path.join(confpath, keyname)
|
||||
open(keypath, 'wb').write(key)
|
||||
print 'IneptEpub: Created keyfile %s from ADE install.' % keypath
|
||||
print u"{0} v{1}: Created keyfile {2} from ADE install.".format(PLUGIN_NAME, PLUGIN_VERSION, keyname)
|
||||
except:
|
||||
print 'IneptEpub: Couldn\'t Retrieve key from ADE install.'
|
||||
print u"{0} v{1}: Couldn\'t Retrieve key from ADE install.".format(PLUGIN_NAME, PLUGIN_VERSION)
|
||||
pass
|
||||
|
||||
if not userkeys:
|
||||
# No user keys found... bail out.
|
||||
raise ADEPTError('IneptEpub - No keys found. Check keyfile(s)/ADE install')
|
||||
raise ADEPTError(u"{0} v{1}: No keys found. Check keyfile(s)/ADE install".format(PLUGIN_NAME, PLUGIN_VERSION))
|
||||
return
|
||||
|
||||
|
||||
# Attempt to decrypt epub with each encryption key found.
|
||||
for userkey in userkeys:
|
||||
# Create a TemporaryPersistent file to work with.
|
||||
# Check original epub archive for zip errors.
|
||||
from calibre_plugins.ineptepub import zipfix
|
||||
inf = self.temporary_file('.epub')
|
||||
try:
|
||||
print '%s Plugin: Verifying zip archive integrity.' % PLUGIN_NAME
|
||||
fr = zipfix.fixZip(path_to_ebook, inf.name)
|
||||
fr.fix()
|
||||
except Exception, e:
|
||||
print '%s Plugin: unforeseen zip archive issue.' % PLUGIN_NAME
|
||||
raise Exception(e)
|
||||
return
|
||||
of = self.temporary_file('.epub')
|
||||
|
||||
# Give the user key, ebook and TemporaryPersistent file to the plugin_main function.
|
||||
result = plugin_main(userkey, inf.name, of.name)
|
||||
|
||||
for userkeyinfo in userkeys:
|
||||
print u"{0} v{1}: Trying Encryption key {2:s}".format(PLUGIN_NAME, PLUGIN_VERSION, userkeyinfo[1])
|
||||
of = self.temporary_file(u".epub")
|
||||
|
||||
# Give the user key, ebook and TemporaryPersistent file to the decryption function.
|
||||
result = ineptepub.decryptBook(userkeyinfo[0], inf.name, of.name)
|
||||
|
||||
# Ebook is not an Adobe Adept epub... do nothing and pass it on.
|
||||
# This allows a non-encrypted epub to be imported without error messages.
|
||||
if result == 1:
|
||||
print 'IneptEpub: Not an Adobe Adept Epub... punting.'
|
||||
print u"{0} v{1}: {2} is not a secure Adobe Adept ePub.".format(PLUGIN_NAME, PLUGIN_VERSION,os.path.basename(path_to_ebook))
|
||||
of.close()
|
||||
return path_to_ebook
|
||||
break
|
||||
|
||||
|
||||
# Decryption was successful return the modified PersistentTemporary
|
||||
# file to Calibre's import process.
|
||||
if result == 0:
|
||||
print 'IneptEpub: Encryption successfully removed.'
|
||||
of.close
|
||||
print u"{0} v{1}: Encryption successfully removed.".format(PLUGIN_NAME, PLUGIN_VERSION)
|
||||
of.close()
|
||||
return of.name
|
||||
break
|
||||
|
||||
print 'IneptEpub: Encryption key invalid... trying others.'
|
||||
of.close()
|
||||
|
||||
|
||||
print u"{0} v{1}: Encryption key incorrect.".format(PLUGIN_NAME, PLUGIN_VERSION)
|
||||
of.close
|
||||
|
||||
# Something went wrong with decryption.
|
||||
# Import the original unmolested epub.
|
||||
of.close
|
||||
raise ADEPTError('IneptEpub - Ultimately failed to decrypt')
|
||||
raise ADEPTError(u"{0} v{1}: Ultimately failed to decrypt".format(PLUGIN_NAME, PLUGIN_VERSION))
|
||||
return
|
||||
|
||||
|
||||
565
Calibre_Plugins/ineptepub_plugin/ineptepub.py
Normal file
565
Calibre_Plugins/ineptepub_plugin/ineptepub.py
Normal file
@@ -0,0 +1,565 @@
|
||||
#! /usr/bin/python
|
||||
# -*- coding: utf-8 -*-
|
||||
|
||||
from __future__ import with_statement
|
||||
|
||||
# ineptepub.pyw, version 5.8
|
||||
# Copyright © 2009-2010 by i♥cabbages
|
||||
|
||||
# Released under the terms of the GNU General Public Licence, version 3
|
||||
# <http://www.gnu.org/licenses/>
|
||||
|
||||
# Modified 2010–2012 by some_updates, DiapDealer and Apprentice Alf
|
||||
|
||||
# Windows users: Before running this program, you must first install Python 2.6
|
||||
# from <http://www.python.org/download/> and PyCrypto from
|
||||
# <http://www.voidspace.org.uk/python/modules.shtml#pycrypto> (make sure to
|
||||
# install the version for Python 2.6). Save this script file as
|
||||
# ineptepub.pyw and double-click on it to run it.
|
||||
#
|
||||
# Mac OS X users: Save this script file as ineptepub.pyw. You can run this
|
||||
# program from the command line (pythonw ineptepub.pyw) or by double-clicking
|
||||
# it when it has been associated with PythonLauncher.
|
||||
|
||||
# Revision history:
|
||||
# 1 - Initial release
|
||||
# 2 - Rename to INEPT, fix exit code
|
||||
# 5 - Version bump to avoid (?) confusion;
|
||||
# Improve OS X support by using OpenSSL when available
|
||||
# 5.1 - Improve OpenSSL error checking
|
||||
# 5.2 - Fix ctypes error causing segfaults on some systems
|
||||
# 5.3 - add support for OpenSSL on Windows, fix bug with some versions of libcrypto 0.9.8 prior to path level o
|
||||
# 5.4 - add support for encoding to 'utf-8' when building up list of files to decrypt from encryption.xml
|
||||
# 5.5 - On Windows try PyCrypto first, OpenSSL next
|
||||
# 5.6 - Modify interface to allow use with import
|
||||
# 5.7 - Fix for potential problem with PyCrypto
|
||||
# 5.8 - Revised to allow use in calibre plugins to eliminate need for duplicate code
|
||||
|
||||
"""
|
||||
Decrypt Adobe Digital Editions encrypted ePub books.
|
||||
"""
|
||||
|
||||
__license__ = 'GPL v3'
|
||||
__version__ = "5.8"
|
||||
|
||||
import sys
|
||||
import os
|
||||
import traceback
|
||||
import zlib
|
||||
import zipfile
|
||||
from zipfile import ZipFile, ZIP_STORED, ZIP_DEFLATED
|
||||
from contextlib import closing
|
||||
import xml.etree.ElementTree as etree
|
||||
|
||||
# Wrap a stream so that output gets flushed immediately
|
||||
# and also make sure that any unicode strings get
|
||||
# encoded using "replace" before writing them.
|
||||
class SafeUnbuffered:
|
||||
def __init__(self, stream):
|
||||
self.stream = stream
|
||||
self.encoding = stream.encoding
|
||||
if self.encoding == None:
|
||||
self.encoding = "utf-8"
|
||||
def write(self, data):
|
||||
if isinstance(data,unicode):
|
||||
data = data.encode(self.encoding,"replace")
|
||||
self.stream.write(data)
|
||||
self.stream.flush()
|
||||
def __getattr__(self, attr):
|
||||
return getattr(self.stream, attr)
|
||||
|
||||
try:
|
||||
from calibre.constants import iswindows, isosx
|
||||
except:
|
||||
iswindows = sys.platform.startswith('win')
|
||||
isosx = sys.platform.startswith('darwin')
|
||||
|
||||
def unicode_argv():
|
||||
if iswindows:
|
||||
# Uses shell32.GetCommandLineArgvW to get sys.argv as a list of Unicode
|
||||
# strings.
|
||||
|
||||
# Versions 2.x of Python don't support Unicode in sys.argv on
|
||||
# Windows, with the underlying Windows API instead replacing multi-byte
|
||||
# characters with '?'.
|
||||
|
||||
|
||||
from ctypes import POINTER, byref, cdll, c_int, windll
|
||||
from ctypes.wintypes import LPCWSTR, LPWSTR
|
||||
|
||||
GetCommandLineW = cdll.kernel32.GetCommandLineW
|
||||
GetCommandLineW.argtypes = []
|
||||
GetCommandLineW.restype = LPCWSTR
|
||||
|
||||
CommandLineToArgvW = windll.shell32.CommandLineToArgvW
|
||||
CommandLineToArgvW.argtypes = [LPCWSTR, POINTER(c_int)]
|
||||
CommandLineToArgvW.restype = POINTER(LPWSTR)
|
||||
|
||||
cmd = GetCommandLineW()
|
||||
argc = c_int(0)
|
||||
argv = CommandLineToArgvW(cmd, byref(argc))
|
||||
if argc.value > 0:
|
||||
# Remove Python executable and commands if present
|
||||
start = argc.value - len(sys.argv)
|
||||
return [argv[i] for i in
|
||||
xrange(start, argc.value)]
|
||||
return [u"ineptepub.py"]
|
||||
else:
|
||||
argvencoding = sys.stdin.encoding
|
||||
if argvencoding == None:
|
||||
argvencoding = "utf-8"
|
||||
return [arg if (type(arg) == unicode) else unicode(arg,argvencoding) for arg in sys.argv]
|
||||
|
||||
|
||||
class ADEPTError(Exception):
|
||||
pass
|
||||
|
||||
def _load_crypto_libcrypto():
|
||||
from ctypes import CDLL, POINTER, c_void_p, c_char_p, c_int, c_long, \
|
||||
Structure, c_ulong, create_string_buffer, cast
|
||||
from ctypes.util import find_library
|
||||
|
||||
if iswindows:
|
||||
libcrypto = find_library('libeay32')
|
||||
else:
|
||||
libcrypto = find_library('crypto')
|
||||
|
||||
if libcrypto is None:
|
||||
raise ADEPTError('libcrypto not found')
|
||||
libcrypto = CDLL(libcrypto)
|
||||
|
||||
RSA_NO_PADDING = 3
|
||||
AES_MAXNR = 14
|
||||
|
||||
c_char_pp = POINTER(c_char_p)
|
||||
c_int_p = POINTER(c_int)
|
||||
|
||||
class RSA(Structure):
|
||||
pass
|
||||
RSA_p = POINTER(RSA)
|
||||
|
||||
class AES_KEY(Structure):
|
||||
_fields_ = [('rd_key', c_long * (4 * (AES_MAXNR + 1))),
|
||||
('rounds', c_int)]
|
||||
AES_KEY_p = POINTER(AES_KEY)
|
||||
|
||||
def F(restype, name, argtypes):
|
||||
func = getattr(libcrypto, name)
|
||||
func.restype = restype
|
||||
func.argtypes = argtypes
|
||||
return func
|
||||
|
||||
d2i_RSAPrivateKey = F(RSA_p, 'd2i_RSAPrivateKey',
|
||||
[RSA_p, c_char_pp, c_long])
|
||||
RSA_size = F(c_int, 'RSA_size', [RSA_p])
|
||||
RSA_private_decrypt = F(c_int, 'RSA_private_decrypt',
|
||||
[c_int, c_char_p, c_char_p, RSA_p, c_int])
|
||||
RSA_free = F(None, 'RSA_free', [RSA_p])
|
||||
AES_set_decrypt_key = F(c_int, 'AES_set_decrypt_key',
|
||||
[c_char_p, c_int, AES_KEY_p])
|
||||
AES_cbc_encrypt = F(None, 'AES_cbc_encrypt',
|
||||
[c_char_p, c_char_p, c_ulong, AES_KEY_p, c_char_p,
|
||||
c_int])
|
||||
|
||||
class RSA(object):
|
||||
def __init__(self, der):
|
||||
buf = create_string_buffer(der)
|
||||
pp = c_char_pp(cast(buf, c_char_p))
|
||||
rsa = self._rsa = d2i_RSAPrivateKey(None, pp, len(der))
|
||||
if rsa is None:
|
||||
raise ADEPTError('Error parsing ADEPT user key DER')
|
||||
|
||||
def decrypt(self, from_):
|
||||
rsa = self._rsa
|
||||
to = create_string_buffer(RSA_size(rsa))
|
||||
dlen = RSA_private_decrypt(len(from_), from_, to, rsa,
|
||||
RSA_NO_PADDING)
|
||||
if dlen < 0:
|
||||
raise ADEPTError('RSA decryption failed')
|
||||
return to[:dlen]
|
||||
|
||||
def __del__(self):
|
||||
if self._rsa is not None:
|
||||
RSA_free(self._rsa)
|
||||
self._rsa = None
|
||||
|
||||
class AES(object):
|
||||
def __init__(self, userkey):
|
||||
self._blocksize = len(userkey)
|
||||
if (self._blocksize != 16) and (self._blocksize != 24) and (self._blocksize != 32) :
|
||||
raise ADEPTError('AES improper key used')
|
||||
return
|
||||
key = self._key = AES_KEY()
|
||||
rv = AES_set_decrypt_key(userkey, len(userkey) * 8, key)
|
||||
if rv < 0:
|
||||
raise ADEPTError('Failed to initialize AES key')
|
||||
|
||||
def decrypt(self, data):
|
||||
out = create_string_buffer(len(data))
|
||||
iv = ("\x00" * self._blocksize)
|
||||
rv = AES_cbc_encrypt(data, out, len(data), self._key, iv, 0)
|
||||
if rv == 0:
|
||||
raise ADEPTError('AES decryption failed')
|
||||
return out.raw
|
||||
|
||||
return (AES, RSA)
|
||||
|
||||
def _load_crypto_pycrypto():
|
||||
from Crypto.Cipher import AES as _AES
|
||||
from Crypto.PublicKey import RSA as _RSA
|
||||
|
||||
# ASN.1 parsing code from tlslite
|
||||
class ASN1Error(Exception):
|
||||
pass
|
||||
|
||||
class ASN1Parser(object):
|
||||
class Parser(object):
|
||||
def __init__(self, bytes):
|
||||
self.bytes = bytes
|
||||
self.index = 0
|
||||
|
||||
def get(self, length):
|
||||
if self.index + length > len(self.bytes):
|
||||
raise ASN1Error("Error decoding ASN.1")
|
||||
x = 0
|
||||
for count in range(length):
|
||||
x <<= 8
|
||||
x |= self.bytes[self.index]
|
||||
self.index += 1
|
||||
return x
|
||||
|
||||
def getFixBytes(self, lengthBytes):
|
||||
bytes = self.bytes[self.index : self.index+lengthBytes]
|
||||
self.index += lengthBytes
|
||||
return bytes
|
||||
|
||||
def getVarBytes(self, lengthLength):
|
||||
lengthBytes = self.get(lengthLength)
|
||||
return self.getFixBytes(lengthBytes)
|
||||
|
||||
def getFixList(self, length, lengthList):
|
||||
l = [0] * lengthList
|
||||
for x in range(lengthList):
|
||||
l[x] = self.get(length)
|
||||
return l
|
||||
|
||||
def getVarList(self, length, lengthLength):
|
||||
lengthList = self.get(lengthLength)
|
||||
if lengthList % length != 0:
|
||||
raise ASN1Error("Error decoding ASN.1")
|
||||
lengthList = int(lengthList/length)
|
||||
l = [0] * lengthList
|
||||
for x in range(lengthList):
|
||||
l[x] = self.get(length)
|
||||
return l
|
||||
|
||||
def startLengthCheck(self, lengthLength):
|
||||
self.lengthCheck = self.get(lengthLength)
|
||||
self.indexCheck = self.index
|
||||
|
||||
def setLengthCheck(self, length):
|
||||
self.lengthCheck = length
|
||||
self.indexCheck = self.index
|
||||
|
||||
def stopLengthCheck(self):
|
||||
if (self.index - self.indexCheck) != self.lengthCheck:
|
||||
raise ASN1Error("Error decoding ASN.1")
|
||||
|
||||
def atLengthCheck(self):
|
||||
if (self.index - self.indexCheck) < self.lengthCheck:
|
||||
return False
|
||||
elif (self.index - self.indexCheck) == self.lengthCheck:
|
||||
return True
|
||||
else:
|
||||
raise ASN1Error("Error decoding ASN.1")
|
||||
|
||||
def __init__(self, bytes):
|
||||
p = self.Parser(bytes)
|
||||
p.get(1)
|
||||
self.length = self._getASN1Length(p)
|
||||
self.value = p.getFixBytes(self.length)
|
||||
|
||||
def getChild(self, which):
|
||||
p = self.Parser(self.value)
|
||||
for x in range(which+1):
|
||||
markIndex = p.index
|
||||
p.get(1)
|
||||
length = self._getASN1Length(p)
|
||||
p.getFixBytes(length)
|
||||
return ASN1Parser(p.bytes[markIndex:p.index])
|
||||
|
||||
def _getASN1Length(self, p):
|
||||
firstLength = p.get(1)
|
||||
if firstLength<=127:
|
||||
return firstLength
|
||||
else:
|
||||
lengthLength = firstLength & 0x7F
|
||||
return p.get(lengthLength)
|
||||
|
||||
class AES(object):
|
||||
def __init__(self, key):
|
||||
self._aes = _AES.new(key, _AES.MODE_CBC, '\x00'*16)
|
||||
|
||||
def decrypt(self, data):
|
||||
return self._aes.decrypt(data)
|
||||
|
||||
class RSA(object):
|
||||
def __init__(self, der):
|
||||
key = ASN1Parser([ord(x) for x in der])
|
||||
key = [key.getChild(x).value for x in xrange(1, 4)]
|
||||
key = [self.bytesToNumber(v) for v in key]
|
||||
self._rsa = _RSA.construct(key)
|
||||
|
||||
def bytesToNumber(self, bytes):
|
||||
total = 0L
|
||||
for byte in bytes:
|
||||
total = (total << 8) + byte
|
||||
return total
|
||||
|
||||
def decrypt(self, data):
|
||||
return self._rsa.decrypt(data)
|
||||
|
||||
return (AES, RSA)
|
||||
|
||||
def _load_crypto():
|
||||
AES = RSA = None
|
||||
cryptolist = (_load_crypto_libcrypto, _load_crypto_pycrypto)
|
||||
if sys.platform.startswith('win'):
|
||||
cryptolist = (_load_crypto_pycrypto, _load_crypto_libcrypto)
|
||||
for loader in cryptolist:
|
||||
try:
|
||||
AES, RSA = loader()
|
||||
break
|
||||
except (ImportError, ADEPTError):
|
||||
pass
|
||||
return (AES, RSA)
|
||||
|
||||
AES, RSA = _load_crypto()
|
||||
|
||||
META_NAMES = ('mimetype', 'META-INF/rights.xml', 'META-INF/encryption.xml')
|
||||
NSMAP = {'adept': 'http://ns.adobe.com/adept',
|
||||
'enc': 'http://www.w3.org/2001/04/xmlenc#'}
|
||||
|
||||
class ZipInfo(zipfile.ZipInfo):
|
||||
def __init__(self, *args, **kwargs):
|
||||
if 'compress_type' in kwargs:
|
||||
compress_type = kwargs.pop('compress_type')
|
||||
super(ZipInfo, self).__init__(*args, **kwargs)
|
||||
self.compress_type = compress_type
|
||||
|
||||
class Decryptor(object):
|
||||
def __init__(self, bookkey, encryption):
|
||||
enc = lambda tag: '{%s}%s' % (NSMAP['enc'], tag)
|
||||
self._aes = AES(bookkey)
|
||||
encryption = etree.fromstring(encryption)
|
||||
self._encrypted = encrypted = set()
|
||||
expr = './%s/%s/%s' % (enc('EncryptedData'), enc('CipherData'),
|
||||
enc('CipherReference'))
|
||||
for elem in encryption.findall(expr):
|
||||
path = elem.get('URI', None)
|
||||
if path is not None:
|
||||
path = path.encode('utf-8')
|
||||
encrypted.add(path)
|
||||
|
||||
def decompress(self, bytes):
|
||||
dc = zlib.decompressobj(-15)
|
||||
bytes = dc.decompress(bytes)
|
||||
ex = dc.decompress('Z') + dc.flush()
|
||||
if ex:
|
||||
bytes = bytes + ex
|
||||
return bytes
|
||||
|
||||
def decrypt(self, path, data):
|
||||
if path in self._encrypted:
|
||||
data = self._aes.decrypt(data)[16:]
|
||||
data = data[:-ord(data[-1])]
|
||||
data = self.decompress(data)
|
||||
return data
|
||||
|
||||
# check file to make check whether it's probably an Adobe Adept encrypted ePub
|
||||
def adeptBook(inpath):
|
||||
with closing(ZipFile(open(inpath, 'rb'))) as inf:
|
||||
namelist = set(inf.namelist())
|
||||
if 'META-INF/rights.xml' not in namelist or \
|
||||
'META-INF/encryption.xml' not in namelist:
|
||||
return False
|
||||
try:
|
||||
rights = etree.fromstring(inf.read('META-INF/rights.xml'))
|
||||
adept = lambda tag: '{%s}%s' % (NSMAP['adept'], tag)
|
||||
expr = './/%s' % (adept('encryptedKey'),)
|
||||
bookkey = ''.join(rights.findtext(expr))
|
||||
if len(bookkey) == 172:
|
||||
return True
|
||||
except:
|
||||
# if we couldn't check, assume it is
|
||||
return True
|
||||
return False
|
||||
|
||||
def decryptBook(userkey, inpath, outpath):
|
||||
if AES is None:
|
||||
raise ADEPTError(u"PyCrypto or OpenSSL must be installed.")
|
||||
rsa = RSA(userkey)
|
||||
with closing(ZipFile(open(inpath, 'rb'))) as inf:
|
||||
namelist = set(inf.namelist())
|
||||
if 'META-INF/rights.xml' not in namelist or \
|
||||
'META-INF/encryption.xml' not in namelist:
|
||||
print u"{0:s} is DRM-free.".format(os.path.basename(inpath))
|
||||
return 1
|
||||
for name in META_NAMES:
|
||||
namelist.remove(name)
|
||||
try:
|
||||
rights = etree.fromstring(inf.read('META-INF/rights.xml'))
|
||||
adept = lambda tag: '{%s}%s' % (NSMAP['adept'], tag)
|
||||
expr = './/%s' % (adept('encryptedKey'),)
|
||||
bookkey = ''.join(rights.findtext(expr))
|
||||
if len(bookkey) != 172:
|
||||
print u"{0:s} is not a secure Adobe Adept ePub.".format(os.path.basename(inpath))
|
||||
return 1
|
||||
bookkey = rsa.decrypt(bookkey.decode('base64'))
|
||||
# Padded as per RSAES-PKCS1-v1_5
|
||||
if bookkey[-17] != '\x00':
|
||||
print u"Could not decrypt {0:s}. Wrong key".format(os.path.basename(inpath))
|
||||
return 2
|
||||
encryption = inf.read('META-INF/encryption.xml')
|
||||
decryptor = Decryptor(bookkey[-16:], encryption)
|
||||
kwds = dict(compression=ZIP_DEFLATED, allowZip64=False)
|
||||
with closing(ZipFile(open(outpath, 'wb'), 'w', **kwds)) as outf:
|
||||
zi = ZipInfo('mimetype', compress_type=ZIP_STORED)
|
||||
outf.writestr(zi, inf.read('mimetype'))
|
||||
for path in namelist:
|
||||
data = inf.read(path)
|
||||
outf.writestr(path, decryptor.decrypt(path, data))
|
||||
except:
|
||||
print u"Could not decrypt {0:s} because of an exception:\n{1:s}".format(os.path.basename(inpath), traceback.format_exc())
|
||||
return 2
|
||||
return 0
|
||||
|
||||
|
||||
def cli_main(argv=unicode_argv()):
|
||||
progname = os.path.basename(argv[0])
|
||||
if len(argv) != 4:
|
||||
print u"usage: {0} <keyfile.der> <inbook.epub> <outbook.epub>".format(progname)
|
||||
return 1
|
||||
keypath, inpath, outpath = argv[1:]
|
||||
userkey = open(keypath,'rb').read()
|
||||
result = decryptBook(userkey, inpath, outpath)
|
||||
if result == 0:
|
||||
print u"Successfully decrypted {0:s} as {1:s}".format(os.path.basename(inpath),os.path.basename(outpath))
|
||||
return result
|
||||
|
||||
def gui_main():
|
||||
import Tkinter
|
||||
import Tkconstants
|
||||
import tkFileDialog
|
||||
import traceback
|
||||
|
||||
class DecryptionDialog(Tkinter.Frame):
|
||||
def __init__(self, root):
|
||||
Tkinter.Frame.__init__(self, root, border=5)
|
||||
self.status = Tkinter.Label(self, text=u"Select files for decryption")
|
||||
self.status.pack(fill=Tkconstants.X, expand=1)
|
||||
body = Tkinter.Frame(self)
|
||||
body.pack(fill=Tkconstants.X, expand=1)
|
||||
sticky = Tkconstants.E + Tkconstants.W
|
||||
body.grid_columnconfigure(1, weight=2)
|
||||
Tkinter.Label(body, text=u"Key file").grid(row=0)
|
||||
self.keypath = Tkinter.Entry(body, width=30)
|
||||
self.keypath.grid(row=0, column=1, sticky=sticky)
|
||||
if os.path.exists(u"adeptkey.der"):
|
||||
self.keypath.insert(0, u"adeptkey.der")
|
||||
button = Tkinter.Button(body, text=u"...", command=self.get_keypath)
|
||||
button.grid(row=0, column=2)
|
||||
Tkinter.Label(body, text=u"Input file").grid(row=1)
|
||||
self.inpath = Tkinter.Entry(body, width=30)
|
||||
self.inpath.grid(row=1, column=1, sticky=sticky)
|
||||
button = Tkinter.Button(body, text=u"...", command=self.get_inpath)
|
||||
button.grid(row=1, column=2)
|
||||
Tkinter.Label(body, text=u"Output file").grid(row=2)
|
||||
self.outpath = Tkinter.Entry(body, width=30)
|
||||
self.outpath.grid(row=2, column=1, sticky=sticky)
|
||||
button = Tkinter.Button(body, text=u"...", command=self.get_outpath)
|
||||
button.grid(row=2, column=2)
|
||||
buttons = Tkinter.Frame(self)
|
||||
buttons.pack()
|
||||
botton = Tkinter.Button(
|
||||
buttons, text=u"Decrypt", width=10, command=self.decrypt)
|
||||
botton.pack(side=Tkconstants.LEFT)
|
||||
Tkinter.Frame(buttons, width=10).pack(side=Tkconstants.LEFT)
|
||||
button = Tkinter.Button(
|
||||
buttons, text=u"Quit", width=10, command=self.quit)
|
||||
button.pack(side=Tkconstants.RIGHT)
|
||||
|
||||
def get_keypath(self):
|
||||
keypath = tkFileDialog.askopenfilename(
|
||||
parent=None, title=u"Select Adobe Adept \'.der\' key file",
|
||||
defaultextension=u".der",
|
||||
filetypes=[('Adobe Adept DER-encoded files', '.der'),
|
||||
('All Files', '.*')])
|
||||
if keypath:
|
||||
keypath = os.path.normpath(keypath)
|
||||
self.keypath.delete(0, Tkconstants.END)
|
||||
self.keypath.insert(0, keypath)
|
||||
return
|
||||
|
||||
def get_inpath(self):
|
||||
inpath = tkFileDialog.askopenfilename(
|
||||
parent=None, title=u"Select ADEPT-encrypted ePub file to decrypt",
|
||||
defaultextension=u".epub", filetypes=[('ePub files', '.epub')])
|
||||
if inpath:
|
||||
inpath = os.path.normpath(inpath)
|
||||
self.inpath.delete(0, Tkconstants.END)
|
||||
self.inpath.insert(0, inpath)
|
||||
return
|
||||
|
||||
def get_outpath(self):
|
||||
outpath = tkFileDialog.asksaveasfilename(
|
||||
parent=None, title=u"Select unencrypted ePub file to produce",
|
||||
defaultextension=u".epub", filetypes=[('ePub files', '.epub')])
|
||||
if outpath:
|
||||
outpath = os.path.normpath(outpath)
|
||||
self.outpath.delete(0, Tkconstants.END)
|
||||
self.outpath.insert(0, outpath)
|
||||
return
|
||||
|
||||
def decrypt(self):
|
||||
keypath = self.keypath.get()
|
||||
inpath = self.inpath.get()
|
||||
outpath = self.outpath.get()
|
||||
if not keypath or not os.path.exists(keypath):
|
||||
self.status['text'] = u"Specified key file does not exist"
|
||||
return
|
||||
if not inpath or not os.path.exists(inpath):
|
||||
self.status['text'] = u"Specified input file does not exist"
|
||||
return
|
||||
if not outpath:
|
||||
self.status['text'] = u"Output file not specified"
|
||||
return
|
||||
if inpath == outpath:
|
||||
self.status['text'] = u"Must have different input and output files"
|
||||
return
|
||||
userkey = open(keypath,'rb').read()
|
||||
self.status['text'] = u"Decrypting..."
|
||||
try:
|
||||
decrypt_status = decryptBook(userkey, inpath, outpath)
|
||||
except Exception, e:
|
||||
self.status['text'] = u"Error; {0}".format(e)
|
||||
return
|
||||
if decrypt_status == 0:
|
||||
self.status['text'] = u"File successfully decrypted"
|
||||
else:
|
||||
self.status['text'] = u"The was an error decrypting the file."
|
||||
|
||||
root = Tkinter.Tk()
|
||||
root.title(u"Adobe Adept ePub Decrypter v.{0}".format(__version__))
|
||||
root.resizable(True, False)
|
||||
root.minsize(300, 0)
|
||||
DecryptionDialog(root).pack(fill=Tkconstants.X, expand=1)
|
||||
root.mainloop()
|
||||
return 0
|
||||
|
||||
if __name__ == '__main__':
|
||||
if len(sys.argv) > 1:
|
||||
sys.stdout=SafeUnbuffered(sys.stdout)
|
||||
sys.stderr=SafeUnbuffered(sys.stderr)
|
||||
sys.exit(cli_main())
|
||||
sys.exit(gui_main())
|
||||
@@ -6,8 +6,8 @@ from __future__ import with_statement
|
||||
# ineptkey.pyw, version 5.6
|
||||
# Copyright © 2009-2010 i♥cabbages
|
||||
|
||||
# Released under the terms of the GNU General Public Licence, version 3 or
|
||||
# later. <http://www.gnu.org/licenses/>
|
||||
# Released under the terms of the GNU General Public Licence, version 3
|
||||
# <http://www.gnu.org/licenses/>
|
||||
|
||||
# Windows users: Before running this program, you must first install Python 2.6
|
||||
# from <http://www.python.org/download/> and PyCrypto from
|
||||
@@ -37,7 +37,7 @@ from __future__ import with_statement
|
||||
# 5.3 - On Windows try PyCrypto first, OpenSSL next
|
||||
# 5.4 - Modify interface to allow use of import
|
||||
# 5.5 - Fix for potential problem with PyCrypto
|
||||
# 5.6 - Revise to allow use in Plugins to eliminate need for duplicate code
|
||||
# 5.6 - Revised to allow use in Plugins to eliminate need for duplicate code
|
||||
|
||||
"""
|
||||
Retrieve Adobe ADEPT user key.
|
||||
@@ -49,12 +49,65 @@ import sys
|
||||
import os
|
||||
import struct
|
||||
|
||||
# Wrap a stream so that output gets flushed immediately
|
||||
# and also make sure that any unicode strings get
|
||||
# encoded using "replace" before writing them.
|
||||
class SafeUnbuffered:
|
||||
def __init__(self, stream):
|
||||
self.stream = stream
|
||||
self.encoding = stream.encoding
|
||||
if self.encoding == None:
|
||||
self.encoding = "utf-8"
|
||||
def write(self, data):
|
||||
if isinstance(data,unicode):
|
||||
data = data.encode(self.encoding,"replace")
|
||||
self.stream.write(data)
|
||||
self.stream.flush()
|
||||
def __getattr__(self, attr):
|
||||
return getattr(self.stream, attr)
|
||||
|
||||
try:
|
||||
from calibre.constants import iswindows, isosx
|
||||
except:
|
||||
iswindows = sys.platform.startswith('win')
|
||||
isosx = sys.platform.startswith('darwin')
|
||||
|
||||
def unicode_argv():
|
||||
if iswindows:
|
||||
# Uses shell32.GetCommandLineArgvW to get sys.argv as a list of Unicode
|
||||
# strings.
|
||||
|
||||
# Versions 2.x of Python don't support Unicode in sys.argv on
|
||||
# Windows, with the underlying Windows API instead replacing multi-byte
|
||||
# characters with '?'.
|
||||
|
||||
|
||||
from ctypes import POINTER, byref, cdll, c_int, windll
|
||||
from ctypes.wintypes import LPCWSTR, LPWSTR
|
||||
|
||||
GetCommandLineW = cdll.kernel32.GetCommandLineW
|
||||
GetCommandLineW.argtypes = []
|
||||
GetCommandLineW.restype = LPCWSTR
|
||||
|
||||
CommandLineToArgvW = windll.shell32.CommandLineToArgvW
|
||||
CommandLineToArgvW.argtypes = [LPCWSTR, POINTER(c_int)]
|
||||
CommandLineToArgvW.restype = POINTER(LPWSTR)
|
||||
|
||||
cmd = GetCommandLineW()
|
||||
argc = c_int(0)
|
||||
argv = CommandLineToArgvW(cmd, byref(argc))
|
||||
if argc.value > 0:
|
||||
# Remove Python executable and commands if present
|
||||
start = argc.value - len(sys.argv)
|
||||
return [argv[i] for i in
|
||||
xrange(start, argc.value)]
|
||||
return [u"ineptkey.py"]
|
||||
else:
|
||||
argvencoding = sys.stdin.encoding
|
||||
if argvencoding == None:
|
||||
argvencoding = "utf-8"
|
||||
return [arg if (type(arg) == unicode) else unicode(arg,argvencoding) for arg in sys.argv]
|
||||
|
||||
class ADEPTError(Exception):
|
||||
pass
|
||||
|
||||
@@ -80,13 +133,13 @@ if iswindows:
|
||||
_fields_ = [('rd_key', c_long * (4 * (AES_MAXNR + 1))),
|
||||
('rounds', c_int)]
|
||||
AES_KEY_p = POINTER(AES_KEY)
|
||||
|
||||
|
||||
def F(restype, name, argtypes):
|
||||
func = getattr(libcrypto, name)
|
||||
func.restype = restype
|
||||
func.argtypes = argtypes
|
||||
return func
|
||||
|
||||
|
||||
AES_set_decrypt_key = F(c_int, 'AES_set_decrypt_key',
|
||||
[c_char_p, c_int, AES_KEY_p])
|
||||
AES_cbc_encrypt = F(None, 'AES_cbc_encrypt',
|
||||
@@ -308,9 +361,9 @@ if iswindows:
|
||||
cuser = winreg.HKEY_CURRENT_USER
|
||||
try:
|
||||
regkey = winreg.OpenKey(cuser, DEVICE_KEY_PATH)
|
||||
device = winreg.QueryValueEx(regkey, 'key')[0]
|
||||
except WindowsError:
|
||||
raise ADEPTError("Adobe Digital Editions not activated")
|
||||
device = winreg.QueryValueEx(regkey, 'key')[0]
|
||||
keykey = CryptUnprotectData(device, entropy)
|
||||
userkey = None
|
||||
keys = []
|
||||
@@ -343,7 +396,7 @@ if iswindows:
|
||||
if len(keys) == 0:
|
||||
raise ADEPTError('Could not locate privateLicenseKey')
|
||||
return keys
|
||||
|
||||
|
||||
|
||||
elif isosx:
|
||||
import xml.etree.ElementTree as etree
|
||||
@@ -386,7 +439,7 @@ else:
|
||||
def retrieve_keys(keypath):
|
||||
raise ADEPTError("This script only supports Windows and Mac OS X.")
|
||||
return []
|
||||
|
||||
|
||||
def retrieve_key(keypath):
|
||||
keys = retrieve_keys()
|
||||
with open(keypath, 'wb') as f:
|
||||
@@ -397,22 +450,22 @@ def extractKeyfile(keypath):
|
||||
try:
|
||||
success = retrieve_key(keypath)
|
||||
except ADEPTError, e:
|
||||
print "Key generation Error: " + str(e)
|
||||
print u"Key generation Error: {0}".format(e.args[0])
|
||||
return 1
|
||||
except Exception, e:
|
||||
print "General Error: " + str(e)
|
||||
print "General Error: {0}".format(e.args[0])
|
||||
return 1
|
||||
if not success:
|
||||
return 1
|
||||
return 0
|
||||
|
||||
|
||||
def cli_main(argv=sys.argv):
|
||||
def cli_main(argv=unicode_argv()):
|
||||
keypath = argv[1]
|
||||
return extractKeyfile(keypath)
|
||||
|
||||
|
||||
def main(argv=sys.argv):
|
||||
def gui_main(argv=unicode_argv()):
|
||||
import Tkinter
|
||||
import Tkconstants
|
||||
import tkMessageBox
|
||||
@@ -421,24 +474,24 @@ def main(argv=sys.argv):
|
||||
class ExceptionDialog(Tkinter.Frame):
|
||||
def __init__(self, root, text):
|
||||
Tkinter.Frame.__init__(self, root, border=5)
|
||||
label = Tkinter.Label(self, text="Unexpected error:",
|
||||
label = Tkinter.Label(self, text=u"Unexpected error:",
|
||||
anchor=Tkconstants.W, justify=Tkconstants.LEFT)
|
||||
label.pack(fill=Tkconstants.X, expand=0)
|
||||
self.text = Tkinter.Text(self)
|
||||
self.text.pack(fill=Tkconstants.BOTH, expand=1)
|
||||
|
||||
|
||||
self.text.insert(Tkconstants.END, text)
|
||||
|
||||
|
||||
root = Tkinter.Tk()
|
||||
root.withdraw()
|
||||
progname = os.path.basename(argv[0])
|
||||
keypath = os.path.abspath("adeptkey.der")
|
||||
keypath, progname = os.path.split(argv[0])
|
||||
keypath = os.path.join(keypath, u"adeptkey.der")
|
||||
success = False
|
||||
try:
|
||||
success = retrieve_key(keypath)
|
||||
except ADEPTError, e:
|
||||
tkMessageBox.showerror("ADEPT Key", "Error: " + str(e))
|
||||
tkMessageBox.showerror(u"ADEPT Key", "Error: {0}".format(e.args[0]))
|
||||
except Exception:
|
||||
root.wm_state('normal')
|
||||
root.title('ADEPT Key')
|
||||
@@ -448,10 +501,12 @@ def main(argv=sys.argv):
|
||||
if not success:
|
||||
return 1
|
||||
tkMessageBox.showinfo(
|
||||
"ADEPT Key", "Key successfully retrieved to %s" % (keypath))
|
||||
u"ADEPT Key", u"Key successfully retrieved to {0}".format(keypath))
|
||||
return 0
|
||||
|
||||
if __name__ == '__main__':
|
||||
if len(sys.argv) > 1:
|
||||
sys.stdout=SafeUnbuffered(sys.stdout)
|
||||
sys.stderr=SafeUnbuffered(sys.stderr)
|
||||
sys.exit(cli_main())
|
||||
sys.exit(main())
|
||||
sys.exit(gui_main())
|
||||
|
||||
@@ -1,45 +0,0 @@
|
||||
# -*- coding: utf-8 -*-
|
||||
#
|
||||
# Adapted and simplified from the kitchen project
|
||||
#
|
||||
# Kitchen Project Copyright (c) 2012 Red Hat, Inc.
|
||||
#
|
||||
# kitchen is free software; you can redistribute it and/or
|
||||
# modify it under the terms of the GNU Lesser General Public
|
||||
# License as published by the Free Software Foundation; either
|
||||
# version 2.1 of the License, or (at your option) any later version.
|
||||
#
|
||||
# kitchen is distributed in the hope that it will be useful,
|
||||
# but WITHOUT ANY WARRANTY; without even the implied warranty of
|
||||
# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
|
||||
# Lesser General Public License for more details.
|
||||
#
|
||||
# You should have received a copy of the GNU Lesser General Public
|
||||
# License along with kitchen; if not, see <http://www.gnu.org/licenses/>
|
||||
#
|
||||
# Authors:
|
||||
# Toshio Kuratomi <toshio@fedoraproject.org>
|
||||
# Seth Vidal
|
||||
#
|
||||
# Portions of code taken from yum/i18n.py and
|
||||
# python-fedora: fedora/textutils.py
|
||||
|
||||
import codecs
|
||||
|
||||
# returns a char string unchanged
|
||||
# returns a unicode string converted to a char string of the passed encoding
|
||||
# return the empty string for anything else
|
||||
def getwriter(encoding):
|
||||
class _StreamWriter(codecs.StreamWriter):
|
||||
def __init__(self, stream):
|
||||
codecs.StreamWriter.__init__(self, stream, 'replace')
|
||||
|
||||
def encode(self, msg, errors='replace'):
|
||||
if isinstance(msg, basestring):
|
||||
if isinstance(msg, str):
|
||||
return (msg, len(msg))
|
||||
return (msg.encode(self.encoding, 'replace'), len(msg))
|
||||
return ('',0)
|
||||
|
||||
_StreamWriter.encoding = encoding
|
||||
return _StreamWriter
|
||||
@@ -1,4 +1,5 @@
|
||||
#!/usr/bin/env python
|
||||
# -*- coding: utf-8 -*-
|
||||
|
||||
import sys
|
||||
import zlib
|
||||
|
||||
Reference in New Issue
Block a user