mirror of
https://github.com/apprenticeharper/DeDRM_tools
synced 2024-11-07 09:20:27 +00:00
Make adobekey.py work in Python 3
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9118ce77ab
commit
61c5096da0
@ -1,8 +1,6 @@
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#!/usr/bin/env python
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# -*- coding: utf-8 -*-
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from __future__ import with_statement
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# adobekey.pyw, version 6.0
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# Copyright © 2009-2010 i♥cabbages
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@ -50,8 +48,6 @@ from __future__ import with_statement
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# 6.0 - Work if TkInter is missing
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# 7.0 - Python 3 compatible for calibre 5
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from __future__ import print_function
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"""
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Retrieve Adobe ADEPT user key.
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"""
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@ -60,6 +56,8 @@ __license__ = 'GPL v3'
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__version__ = '7.0'
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import sys, os, struct, getopt
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from base64 import b64decode
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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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@ -71,10 +69,11 @@ class SafeUnbuffered:
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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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if isinstance(data, str):
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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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self.stream.buffer.write(data)
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self.stream.buffer.flush()
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def __getattr__(self, attr):
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return getattr(self.stream, attr)
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@ -112,15 +111,13 @@ def unicode_argv():
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# Remove Python executable and commands if present
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start = argc.value - len(sys.argv)
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return [argv[i] for i in
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xrange(start, argc.value)]
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range(start, argc.value)]
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# if we don't have any arguments at all, just pass back script name
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# this should never happen
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return [u"adobekey.py"]
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else:
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argvencoding = sys.stdin.encoding
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if argvencoding == None:
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argvencoding = "utf-8"
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return arg
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argvencoding = sys.stdin.encoding or "utf-8"
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return [arg if isinstance(arg, str) else str(arg, argvencoding) for arg in sys.argv]
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class ADEPTError(Exception):
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pass
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@ -132,7 +129,7 @@ if iswindows:
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c_long, c_ulong
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from ctypes.wintypes import LPVOID, DWORD, BOOL
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import _winreg as winreg
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import winreg
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def _load_crypto_libcrypto():
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from ctypes.util import find_library
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@ -170,7 +167,7 @@ if iswindows:
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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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iv = (b"\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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@ -181,7 +178,7 @@ if iswindows:
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from Crypto.Cipher import AES as _AES
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class AES(object):
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def __init__(self, key):
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self._aes = _AES.new(key, _AES.MODE_CBC, '\x00'*16)
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self._aes = _AES.new(key, _AES.MODE_CBC, b'\x00'*16)
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def decrypt(self, data):
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return self._aes.decrypt(data)
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return AES
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@ -289,44 +286,44 @@ if iswindows:
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if struct.calcsize("P") == 4:
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CPUID0_INSNS = (
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"\x53" # push %ebx
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"\x31\xc0" # xor %eax,%eax
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"\x0f\xa2" # cpuid
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"\x8b\x44\x24\x08" # mov 0x8(%esp),%eax
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"\x89\x18" # mov %ebx,0x0(%eax)
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"\x89\x50\x04" # mov %edx,0x4(%eax)
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"\x89\x48\x08" # mov %ecx,0x8(%eax)
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"\x5b" # pop %ebx
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"\xc3" # ret
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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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"\x53" # push %ebx
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"\x31\xc0" # xor %eax,%eax
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"\x40" # inc %eax
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"\x0f\xa2" # cpuid
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"\x5b" # pop %ebx
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"\xc3" # ret
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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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"\x49\x89\xd8" # mov %rbx,%r8
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"\x49\x89\xc9" # mov %rcx,%r9
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"\x48\x31\xc0" # xor %rax,%rax
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"\x0f\xa2" # cpuid
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"\x4c\x89\xc8" # mov %r9,%rax
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"\x89\x18" # mov %ebx,0x0(%rax)
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"\x89\x50\x04" # mov %edx,0x4(%rax)
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"\x89\x48\x08" # mov %ecx,0x8(%rax)
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"\x4c\x89\xc3" # mov %r8,%rbx
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"\xc3" # retq
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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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"\x53" # push %rbx
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"\x48\x31\xc0" # xor %rax,%rax
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"\x48\xff\xc0" # inc %rax
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"\x0f\xa2" # cpuid
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"\x5b" # pop %rbx
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"\xc3" # retq
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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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@ -385,7 +382,7 @@ if iswindows:
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plkroot = winreg.OpenKey(cuser, PRIVATE_LICENCE_KEY_PATH)
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except WindowsError:
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raise ADEPTError("Could not locate ADE activation")
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for i in xrange(0, 16):
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for i in range(0, 16):
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try:
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plkparent = winreg.OpenKey(plkroot, "%04d" % (i,))
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except WindowsError:
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@ -393,7 +390,7 @@ if iswindows:
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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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for j in xrange(0, 16):
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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:
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@ -402,10 +399,10 @@ if iswindows:
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if ktype != 'privateLicenseKey':
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continue
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userkey = winreg.QueryValueEx(plkkey, 'value')[0]
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userkey = userkey.decode('base64')
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userkey = b64decode(userkey)
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aes = AES(keykey)
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userkey = aes.decrypt(userkey)
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userkey = userkey[26:-ord(userkey[-1])]
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userkey = userkey[26:-ord(userkey[-1:])]
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#print "found key:",userkey.encode('hex')
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keys.append(userkey)
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if len(keys) == 0:
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@ -433,7 +430,7 @@ elif isosx:
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reslst = out1.split('\n')
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cnt = len(reslst)
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ActDatPath = "activation.dat"
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for j in xrange(cnt):
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for j in range(cnt):
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resline = reslst[j]
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pp = resline.find('activation.dat')
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if pp >= 0:
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@ -451,7 +448,7 @@ elif isosx:
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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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userkey = userkey.decode('base64')
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userkey = b64decode(userkey)
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userkey = userkey[26:]
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return [userkey]
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@ -466,7 +463,7 @@ def getkey(outpath):
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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 file(outfile, 'wb') as keyfileout:
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with open(outfile, 'wb') as keyfileout:
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keyfileout.write(keys[0])
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print(u"Saved a key to {0}".format(outfile))
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else:
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@ -477,7 +474,7 @@ def getkey(outpath):
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outfile = os.path.join(outpath,u"adobekey_{0:d}.der".format(keycount))
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if not os.path.exists(outfile):
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break
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with file(outfile, 'wb') as keyfileout:
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with open(outfile, 'wb') as keyfileout:
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keyfileout.write(key)
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print(u"Saved a key to {0}".format(outfile))
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return True
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@ -515,9 +512,7 @@ def cli_main():
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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]
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if not os.path.isabs(outpath):
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outpath = os.path.abspath(outpath)
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outpath = os.path.abspath(args[0])
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else:
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# save to the same directory as the script
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outpath = os.path.dirname(argv[0])
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@ -529,7 +524,7 @@ def cli_main():
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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 file(outfile, 'wb') as keyfileout:
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with open(outfile, 'wb') as keyfileout:
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keyfileout.write(keys[0])
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print(u"Saved a key to {0}".format(outfile))
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else:
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@ -540,7 +535,7 @@ def cli_main():
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outfile = os.path.join(outpath,u"adobekey_{0:d}.der".format(keycount))
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if not os.path.exists(outfile):
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break
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with file(outfile, 'wb') as keyfileout:
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with open(outfile, 'wb') as keyfileout:
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keyfileout.write(key)
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print(u"Saved a key to {0}".format(outfile))
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else:
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@ -550,27 +545,27 @@ def cli_main():
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def gui_main():
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try:
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import Tkinter
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import Tkconstants
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import tkMessageBox
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import tkinter
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import tkinter.constants
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import tkinter.messagebox
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import traceback
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except:
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return cli_main()
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class ExceptionDialog(Tkinter.Frame):
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class ExceptionDialog(tkinter.Frame):
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def __init__(self, root, text):
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Tkinter.Frame.__init__(self, root, border=5)
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label = Tkinter.Label(self, text=u"Unexpected error:",
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anchor=Tkconstants.W, justify=Tkconstants.LEFT)
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label.pack(fill=Tkconstants.X, expand=0)
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self.text = Tkinter.Text(self)
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self.text.pack(fill=Tkconstants.BOTH, expand=1)
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tkinter.Frame.__init__(self, root, border=5)
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label = tkinter.Label(self, text=u"Unexpected error:",
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anchor=tkinter.constants.W, justify=tkinter.constants.LEFT)
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label.pack(fill=tkinter.constants.X, expand=0)
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self.text = tkinter.Text(self)
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self.text.pack(fill=tkinter.constants.BOTH, expand=1)
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self.text.insert(Tkconstants.END, text)
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self.text.insert(tkinter.constants.END, text)
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argv=unicode_argv()
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root = Tkinter.Tk()
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root = tkinter.Tk()
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root.withdraw()
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progpath, progname = os.path.split(argv[0])
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success = False
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@ -584,17 +579,17 @@ def gui_main():
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if not os.path.exists(outfile):
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break
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with file(outfile, 'wb') as keyfileout:
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with open(outfile, 'wb') as keyfileout:
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keyfileout.write(key)
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success = True
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tkMessageBox.showinfo(progname, u"Key successfully retrieved to {0}".format(outfile))
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tkinter.messagebox.showinfo(progname, u"Key successfully retrieved to {0}".format(outfile))
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except ADEPTError as e:
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tkMessageBox.showerror(progname, u"Error: {0}".format(str(e)))
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tkinter.messagebox.showerror(progname, u"Error: {0}".format(str(e)))
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except Exception:
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root.wm_state('normal')
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root.title(progname)
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text = traceback.format_exc()
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ExceptionDialog(root, text).pack(fill=Tkconstants.BOTH, expand=1)
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ExceptionDialog(root, text).pack(fill=tkinter.constants.BOTH, expand=1)
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root.mainloop()
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if not success:
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return 1
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