573 lines
20 KiB
Python
573 lines
20 KiB
Python
#!/usr/bin/env python3
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# -*- coding: utf-8 -*-
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# adobekey.pyw, version 7.4
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# Copyright © 2009-2022 i♥cabbages, Apprentice Harper et al.
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# Released under the terms of the GNU General Public Licence, version 3
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# <http://www.gnu.org/licenses/>
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# Revision history:
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# 1 - Initial release, for Adobe Digital Editions 1.7
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# 2 - Better algorithm for finding pLK; improved error handling
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# 3 - Rename to INEPT
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# 4 - Series of changes by joblack (and others?) --
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# 4.1 - quick beta fix for ADE 1.7.2 (anon)
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# 4.2 - added old 1.7.1 processing
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# 4.3 - better key search
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# 4.4 - Make it working on 64-bit Python
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# 5 - Clean up and improve 4.x changes;
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# Clean up and merge OS X support by unknown
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# 5.1 - add support for using OpenSSL on Windows in place of PyCrypto
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# 5.2 - added support for output of key to a particular file
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# 5.3 - On Windows try PyCrypto first, OpenSSL next
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# 5.4 - Modify interface to allow use of import
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# 5.5 - Fix for potential problem with PyCrypto
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# 5.6 - Revised to allow use in Plugins to eliminate need for duplicate code
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# 5.7 - Unicode support added, renamed adobekey from ineptkey
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# 5.8 - Added getkey interface for Windows DeDRM application
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# 5.9 - moved unicode_argv call inside main for Windows DeDRM compatibility
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# 6.0 - Work if TkInter is missing
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# 7.0 - Python 3 for calibre 5
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# 7.1 - Fix "failed to decrypt user key key" error (read username from registry)
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# 7.2 - Fix decryption error on Python2 if there's unicode in the username
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# 7.3 - Fix OpenSSL in Wine
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# 7.4 - Remove OpenSSL support to only support PyCryptodome
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"""
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Retrieve Adobe ADEPT user key.
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"""
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__license__ = 'GPL v3'
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__version__ = '7.4'
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import sys, os, struct, getopt
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from base64 import b64decode
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from utilities import SafeUnbuffered
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from argv_utils import unicode_argv
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try:
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from calibre.constants import iswindows, isosx
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except:
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iswindows = sys.platform.startswith('win')
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isosx = sys.platform.startswith('darwin')
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class ADEPTError(Exception):
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pass
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if iswindows:
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from ctypes import windll, c_char_p, c_wchar_p, c_uint, POINTER, byref, \
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create_unicode_buffer, create_string_buffer, CFUNCTYPE, addressof, \
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string_at, Structure, c_void_p, cast, c_size_t, memmove, CDLL, c_int, \
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c_long, c_ulong
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from ctypes.wintypes import LPVOID, DWORD, BOOL
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try:
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import winreg
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except ImportError:
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import _winreg as winreg
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try:
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from Cryptodome.Cipher import AES
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except ImportError:
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from Crypto.Cipher import AES
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def unpad(data, padding=16):
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if sys.version_info[0] == 2:
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pad_len = ord(data[-1])
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else:
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pad_len = data[-1]
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return data[:-pad_len]
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DEVICE_KEY_PATH = r'Software\Adobe\Adept\Device'
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PRIVATE_LICENCE_KEY_PATH = r'Software\Adobe\Adept\Activation'
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MAX_PATH = 255
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kernel32 = windll.kernel32
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advapi32 = windll.advapi32
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crypt32 = windll.crypt32
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def GetSystemDirectory():
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GetSystemDirectoryW = kernel32.GetSystemDirectoryW
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GetSystemDirectoryW.argtypes = [c_wchar_p, c_uint]
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GetSystemDirectoryW.restype = c_uint
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def GetSystemDirectory():
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buffer = create_unicode_buffer(MAX_PATH + 1)
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GetSystemDirectoryW(buffer, len(buffer))
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return buffer.value
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return GetSystemDirectory
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GetSystemDirectory = GetSystemDirectory()
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def GetVolumeSerialNumber():
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GetVolumeInformationW = kernel32.GetVolumeInformationW
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GetVolumeInformationW.argtypes = [c_wchar_p, c_wchar_p, c_uint,
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POINTER(c_uint), POINTER(c_uint),
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POINTER(c_uint), c_wchar_p, c_uint]
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GetVolumeInformationW.restype = c_uint
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def GetVolumeSerialNumber(path):
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vsn = c_uint(0)
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GetVolumeInformationW(
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path, None, 0, byref(vsn), None, None, None, 0)
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return vsn.value
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return GetVolumeSerialNumber
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GetVolumeSerialNumber = GetVolumeSerialNumber()
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def GetUserName():
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GetUserNameW = advapi32.GetUserNameW
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GetUserNameW.argtypes = [c_wchar_p, POINTER(c_uint)]
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GetUserNameW.restype = c_uint
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def GetUserName():
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buffer = create_unicode_buffer(32)
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size = c_uint(len(buffer))
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while not GetUserNameW(buffer, byref(size)):
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buffer = create_unicode_buffer(len(buffer) * 2)
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size.value = len(buffer)
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return buffer.value.encode('utf-16-le')[::2]
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return GetUserName
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GetUserName = GetUserName()
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def GetUserName2():
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try:
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from winreg import OpenKey, QueryValueEx, HKEY_CURRENT_USER
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except ImportError:
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# We're on Python 2
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try:
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# The default _winreg on Python2 isn't unicode-safe.
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# Check if we have winreg_unicode, a unicode-safe alternative.
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# Without winreg_unicode, this will fail with Unicode chars in the username.
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from adobekey_winreg_unicode import OpenKey, QueryValueEx, HKEY_CURRENT_USER
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except:
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from _winreg import OpenKey, QueryValueEx, HKEY_CURRENT_USER
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try:
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DEVICE_KEY_PATH = r'Software\Adobe\Adept\Device'
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regkey = OpenKey(HKEY_CURRENT_USER, DEVICE_KEY_PATH)
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userREG = QueryValueEx(regkey, 'username')[0].encode('utf-16-le')[::2]
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return userREG
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except:
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return None
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PAGE_EXECUTE_READWRITE = 0x40
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MEM_COMMIT = 0x1000
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MEM_RESERVE = 0x2000
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def VirtualAlloc():
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_VirtualAlloc = kernel32.VirtualAlloc
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_VirtualAlloc.argtypes = [LPVOID, c_size_t, DWORD, DWORD]
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_VirtualAlloc.restype = LPVOID
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def VirtualAlloc(addr, size, alloctype=(MEM_COMMIT | MEM_RESERVE),
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protect=PAGE_EXECUTE_READWRITE):
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return _VirtualAlloc(addr, size, alloctype, protect)
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return VirtualAlloc
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VirtualAlloc = VirtualAlloc()
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MEM_RELEASE = 0x8000
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def VirtualFree():
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_VirtualFree = kernel32.VirtualFree
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_VirtualFree.argtypes = [LPVOID, c_size_t, DWORD]
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_VirtualFree.restype = BOOL
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def VirtualFree(addr, size=0, freetype=MEM_RELEASE):
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return _VirtualFree(addr, size, freetype)
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return VirtualFree
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VirtualFree = VirtualFree()
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class NativeFunction(object):
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def __init__(self, restype, argtypes, insns):
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self._buf = buf = VirtualAlloc(None, len(insns))
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memmove(buf, insns, len(insns))
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ftype = CFUNCTYPE(restype, *argtypes)
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self._native = ftype(buf)
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def __call__(self, *args):
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return self._native(*args)
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def __del__(self):
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if self._buf is not None:
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try:
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VirtualFree(self._buf)
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self._buf = None
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except TypeError:
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# Apparently this sometimes gets cleared on application exit
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# Causes a useless exception in the log, so let's just catch and ignore that.
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pass
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if struct.calcsize("P") == 4:
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CPUID0_INSNS = (
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b"\x53" # push %ebx
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b"\x31\xc0" # xor %eax,%eax
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b"\x0f\xa2" # cpuid
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b"\x8b\x44\x24\x08" # mov 0x8(%esp),%eax
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b"\x89\x18" # mov %ebx,0x0(%eax)
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b"\x89\x50\x04" # mov %edx,0x4(%eax)
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b"\x89\x48\x08" # mov %ecx,0x8(%eax)
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b"\x5b" # pop %ebx
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b"\xc3" # ret
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)
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CPUID1_INSNS = (
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b"\x53" # push %ebx
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b"\x31\xc0" # xor %eax,%eax
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b"\x40" # inc %eax
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b"\x0f\xa2" # cpuid
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b"\x5b" # pop %ebx
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b"\xc3" # ret
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)
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else:
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CPUID0_INSNS = (
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b"\x49\x89\xd8" # mov %rbx,%r8
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b"\x49\x89\xc9" # mov %rcx,%r9
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b"\x48\x31\xc0" # xor %rax,%rax
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b"\x0f\xa2" # cpuid
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b"\x4c\x89\xc8" # mov %r9,%rax
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b"\x89\x18" # mov %ebx,0x0(%rax)
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b"\x89\x50\x04" # mov %edx,0x4(%rax)
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b"\x89\x48\x08" # mov %ecx,0x8(%rax)
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b"\x4c\x89\xc3" # mov %r8,%rbx
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b"\xc3" # retq
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)
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CPUID1_INSNS = (
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b"\x53" # push %rbx
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b"\x48\x31\xc0" # xor %rax,%rax
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b"\x48\xff\xc0" # inc %rax
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b"\x0f\xa2" # cpuid
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b"\x5b" # pop %rbx
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b"\xc3" # retq
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)
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def cpuid0():
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_cpuid0 = NativeFunction(None, [c_char_p], CPUID0_INSNS)
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buf = create_string_buffer(12)
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def cpuid0():
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_cpuid0(buf)
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return buf.raw
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return cpuid0
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cpuid0 = cpuid0()
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cpuid1 = NativeFunction(c_uint, [], CPUID1_INSNS)
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class DataBlob(Structure):
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_fields_ = [('cbData', c_uint),
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('pbData', c_void_p)]
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DataBlob_p = POINTER(DataBlob)
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def CryptUnprotectData():
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_CryptUnprotectData = crypt32.CryptUnprotectData
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_CryptUnprotectData.argtypes = [DataBlob_p, c_wchar_p, DataBlob_p,
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c_void_p, c_void_p, c_uint, DataBlob_p]
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_CryptUnprotectData.restype = c_uint
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def CryptUnprotectData(indata, entropy):
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indatab = create_string_buffer(indata)
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indata = DataBlob(len(indata), cast(indatab, c_void_p))
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entropyb = create_string_buffer(entropy)
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entropy = DataBlob(len(entropy), cast(entropyb, c_void_p))
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outdata = DataBlob()
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if not _CryptUnprotectData(byref(indata), None, byref(entropy),
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None, None, 0, byref(outdata)):
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raise ADEPTError("Failed to decrypt user key key (sic)")
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return string_at(outdata.pbData, outdata.cbData)
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return CryptUnprotectData
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CryptUnprotectData = CryptUnprotectData()
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def adeptkeys():
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root = GetSystemDirectory().split('\\')[0] + '\\'
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serial = GetVolumeSerialNumber(root)
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vendor = cpuid0()
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signature = struct.pack('>I', cpuid1())[1:]
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user = GetUserName2()
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if user is None:
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user = GetUserName()
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entropy = struct.pack('>I12s3s13s', serial, vendor, signature, user)
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cuser = winreg.HKEY_CURRENT_USER
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try:
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regkey = winreg.OpenKey(cuser, DEVICE_KEY_PATH)
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device = winreg.QueryValueEx(regkey, 'key')[0]
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except (WindowsError, FileNotFoundError):
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raise ADEPTError("Adobe Digital Editions not activated")
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keykey = CryptUnprotectData(device, entropy)
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userkey = None
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keys = []
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names = []
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try:
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plkroot = winreg.OpenKey(cuser, PRIVATE_LICENCE_KEY_PATH)
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except (WindowsError, FileNotFoundError):
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raise ADEPTError("Could not locate ADE activation")
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i = -1
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while True:
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i = i + 1 # start with 0
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try:
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plkparent = winreg.OpenKey(plkroot, "%04d" % (i,))
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except:
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# No more keys
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break
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ktype = winreg.QueryValueEx(plkparent, None)[0]
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if ktype != 'credentials':
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continue
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uuid_name = ""
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for j in range(0, 16):
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try:
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plkkey = winreg.OpenKey(plkparent, "%04d" % (j,))
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except (WindowsError, FileNotFoundError):
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break
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ktype = winreg.QueryValueEx(plkkey, None)[0]
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if ktype == 'user':
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# Add Adobe UUID to key name
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uuid_name = uuid_name + winreg.QueryValueEx(plkkey, 'value')[0][9:] + "_"
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if ktype == 'username':
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# Add account type & email to key name, if present
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try:
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uuid_name = uuid_name + winreg.QueryValueEx(plkkey, 'method')[0] + "_"
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except:
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pass
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try:
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uuid_name = uuid_name + winreg.QueryValueEx(plkkey, 'value')[0] + "_"
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except:
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pass
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if ktype == 'privateLicenseKey':
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userkey = winreg.QueryValueEx(plkkey, 'value')[0]
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userkey = unpad(AES.new(keykey, AES.MODE_CBC, b'\x00'*16).decrypt(b64decode(userkey)))[26:]
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# print ("found " + uuid_name + " key: " + str(userkey))
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keys.append(userkey)
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if uuid_name == "":
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names.append("Unknown")
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else:
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names.append(uuid_name[:-1])
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if len(keys) == 0:
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raise ADEPTError('Could not locate privateLicenseKey')
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print("Found {0:d} keys".format(len(keys)))
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return keys, names
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elif isosx:
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import xml.etree.ElementTree as etree
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import subprocess
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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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def findActivationDat():
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import warnings
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warnings.filterwarnings('ignore', category=FutureWarning)
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home = os.getenv('HOME')
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cmdline = 'find "' + home + '/Library/Application Support/Adobe/Digital Editions" -name "activation.dat"'
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cmdline = cmdline.encode(sys.getfilesystemencoding())
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p2 = subprocess.Popen(cmdline, shell=True, stdin=None, stdout=subprocess.PIPE, stderr=subprocess.PIPE, close_fds=False)
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out1, out2 = p2.communicate()
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reslst = out1.split(b'\n')
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cnt = len(reslst)
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ActDatPath = b"activation.dat"
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for j in range(cnt):
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resline = reslst[j]
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pp = resline.find(b'activation.dat')
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if pp >= 0:
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ActDatPath = resline
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break
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if os.path.exists(ActDatPath):
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return ActDatPath
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return None
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def adeptkeys():
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# TODO: All the code to support extracting multiple activation keys
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# TODO: seems to be Windows-only currently, still needs to be added for Mac.
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actpath = findActivationDat()
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if actpath is None:
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raise ADEPTError("Could not find ADE activation.dat file.")
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tree = etree.parse(actpath)
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adept = lambda tag: '{%s}%s' % (NSMAP['adept'], tag)
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expr = '//%s/%s' % (adept('credentials'), adept('privateLicenseKey'))
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userkey = tree.findtext(expr)
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exprUUID = '//%s/%s' % (adept('credentials'), adept('user'))
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keyName = ""
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try:
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keyName = tree.findtext(exprUUID)[9:] + "_"
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except:
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pass
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try:
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exprMail = '//%s/%s' % (adept('credentials'), adept('username'))
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keyName = keyName + tree.find(exprMail).attrib["method"] + "_"
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keyName = keyName + tree.findtext(exprMail) + "_"
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except:
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pass
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if keyName == "":
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keyName = "Unknown"
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else:
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keyName = keyName[:-1]
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userkey = b64decode(userkey)
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userkey = userkey[26:]
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return [userkey], [keyName]
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else:
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def adeptkeys():
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raise ADEPTError("This script only supports Windows and Mac OS X.")
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return [], []
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# interface for Python DeDRM
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def getkey(outpath):
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keys, names = adeptkeys()
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if len(keys) > 0:
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if not os.path.isdir(outpath):
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outfile = outpath
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with open(outfile, 'wb') as keyfileout:
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keyfileout.write(keys[0])
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print("Saved a key to {0}".format(outfile))
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else:
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keycount = 0
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name_index = 0
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for key in keys:
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while True:
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keycount += 1
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outfile = os.path.join(outpath,"adobekey{0:d}_uuid_{1}.der".format(keycount, names[name_index]))
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if not os.path.exists(outfile):
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break
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with open(outfile, 'wb') as keyfileout:
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keyfileout.write(key)
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print("Saved a key to {0}".format(outfile))
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name_index += 1
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return True
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return False
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def usage(progname):
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print("Finds, decrypts and saves the default Adobe Adept encryption key(s).")
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print("Keys are saved to the current directory, or a specified output directory.")
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print("If a file name is passed instead of a directory, only the first key is saved, in that file.")
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print("Usage:")
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print(" {0:s} [-h] [<outpath>]".format(progname))
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def cli_main():
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sys.stdout=SafeUnbuffered(sys.stdout)
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sys.stderr=SafeUnbuffered(sys.stderr)
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argv=unicode_argv("adobekey.py")
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progname = os.path.basename(argv[0])
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print("{0} v{1}\nCopyright © 2009-2020 i♥cabbages, Apprentice Harper et al.".format(progname,__version__))
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try:
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opts, args = getopt.getopt(argv[1:], "h")
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except getopt.GetoptError as err:
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print("Error in options or arguments: {0}".format(err.args[0]))
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usage(progname)
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sys.exit(2)
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for o, a in opts:
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if o == "-h":
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usage(progname)
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sys.exit(0)
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if len(args) > 1:
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usage(progname)
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sys.exit(2)
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if len(args) == 1:
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# save to the specified file or directory
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outpath = args[0]
|
|
if not os.path.isabs(outpath):
|
|
outpath = os.path.abspath(outpath)
|
|
else:
|
|
# save to the same directory as the script
|
|
outpath = os.path.dirname(argv[0])
|
|
|
|
# make sure the outpath is the
|
|
outpath = os.path.realpath(os.path.normpath(outpath))
|
|
|
|
keys, names = adeptkeys()
|
|
if len(keys) > 0:
|
|
if not os.path.isdir(outpath):
|
|
outfile = outpath
|
|
with open(outfile, 'wb') as keyfileout:
|
|
keyfileout.write(keys[0])
|
|
print("Saved a key to {0}".format(outfile))
|
|
else:
|
|
keycount = 0
|
|
name_index = 0
|
|
for key in keys:
|
|
while True:
|
|
keycount += 1
|
|
outfile = os.path.join(outpath,"adobekey{0:d}_uuid_{1}.der".format(keycount, names[name_index]))
|
|
if not os.path.exists(outfile):
|
|
break
|
|
with open(outfile, 'wb') as keyfileout:
|
|
keyfileout.write(key)
|
|
print("Saved a key to {0}".format(outfile))
|
|
name_index += 1
|
|
else:
|
|
print("Could not retrieve Adobe Adept key.")
|
|
return 0
|
|
|
|
|
|
def gui_main():
|
|
try:
|
|
import tkinter
|
|
import tkinter.constants
|
|
import tkinter.messagebox
|
|
import traceback
|
|
except:
|
|
return cli_main()
|
|
|
|
class ExceptionDialog(tkinter.Frame):
|
|
def __init__(self, root, text):
|
|
tkinter.Frame.__init__(self, root, border=5)
|
|
label = tkinter.Label(self, text="Unexpected error:",
|
|
anchor=tkinter.constants.W, justify=tkinter.constants.LEFT)
|
|
label.pack(fill=tkinter.constants.X, expand=0)
|
|
self.text = tkinter.Text(self)
|
|
self.text.pack(fill=tkinter.constants.BOTH, expand=1)
|
|
|
|
self.text.insert(tkinter.constants.END, text)
|
|
|
|
|
|
argv=unicode_argv("adobekey.py")
|
|
root = tkinter.Tk()
|
|
root.withdraw()
|
|
progpath, progname = os.path.split(argv[0])
|
|
success = False
|
|
try:
|
|
keys, names = adeptkeys()
|
|
print(keys)
|
|
print(names)
|
|
keycount = 0
|
|
name_index = 0
|
|
for key in keys:
|
|
while True:
|
|
keycount += 1
|
|
outfile = os.path.join(progpath,"adobekey{0:d}_uuid_{1}.der".format(keycount, names[name_index]))
|
|
if not os.path.exists(outfile):
|
|
break
|
|
|
|
with open(outfile, 'wb') as keyfileout:
|
|
keyfileout.write(key)
|
|
success = True
|
|
tkinter.messagebox.showinfo(progname, "Key successfully retrieved to {0}".format(outfile))
|
|
name_index += 1
|
|
except ADEPTError as e:
|
|
tkinter.messagebox.showerror(progname, "Error: {0}".format(str(e)))
|
|
except Exception:
|
|
root.wm_state('normal')
|
|
root.title(progname)
|
|
text = traceback.format_exc()
|
|
ExceptionDialog(root, text).pack(fill=tkinter.constants.BOTH, expand=1)
|
|
root.mainloop()
|
|
if not success:
|
|
return 1
|
|
return 0
|
|
|
|
if __name__ == '__main__':
|
|
if len(sys.argv) > 1:
|
|
sys.exit(cli_main())
|
|
sys.exit(gui_main())
|