402 lines
13 KiB
Python
Executable File
402 lines
13 KiB
Python
Executable File
#!/usr/bin/env python
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"""
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The MIT License (MIT)
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Copyright (c) 2014-2018 Dave Parsons & Sam Bingner
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Permission is hereby granted, free of charge, to any person obtaining a copy
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of this software and associated documentation files (the 'Software'), to deal
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in the Software without restriction, including without limitation the rights
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to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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copies of the Software, and to permit persons to whom the Software is
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furnished to do so, subject to the following conditions:
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The above copyright notice and this permission notice shall be included in
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all copies or substantial portions of the Software.
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THE SOFTWARE IS PROVIDED 'AS IS', WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
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THE SOFTWARE.
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vSMC Header Structure
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Offset Length Struct Type Description
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----------------------------------------
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0x00/00 0x08/08 Q ptr Offset to key table
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0x08/08 0x04/4 I int Number of private keys
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0x0C/12 0x04/4 I int Number of public keys
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vSMC Key Data Structure
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Offset Length Struct Type Description
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----------------------------------------
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0x00/00 0x04/04 4s int Key name (byte reversed e.g. #KEY is YEK#)
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0x04/04 0x01/01 B byte Length of returned data
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0x05/05 0x04/04 4s int Data type (byte reversed e.g. ui32 is 23iu)
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0x09/09 0x01/01 B byte Flag R/W
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0x0A/10 0x06/06 6x byte Padding
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0x10/16 0x08/08 Q ptr Internal VMware routine
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0x18/24 0x30/48 48B byte Data
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"""
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from __future__ import print_function
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import codecs
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import os
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import re
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import struct
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import sys
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if sys.version_info < (2, 7):
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sys.stderr.write('You need Python 2.7 or later\n')
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sys.exit(1)
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# Setup imports depending on whether IronPython or CPython
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if sys.platform == 'win32' \
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or sys.platform == 'cli':
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# noinspection PyUnresolvedReferences
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if sys.version_info > (3, 0):
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from winreg import *
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else:
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from _winreg import *
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def bytetohex(data):
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if sys.version_info > (3, 0):
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# Python 3 code in this block
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return "".join("{:02X} ".format(c) for c in data)
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else:
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# Python 2 code in this block
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return "".join("{:02X} ".format(ord(c)) for c in data)
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def joinpath(folder, filename):
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return os.path.join(folder, filename)
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def printkey(i, offset, smc_key, smc_data):
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print(str(i + 1).zfill(3)
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+ ' ' + hex(offset)
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+ ' ' + smc_key[0][::-1].decode('UTF-8')
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+ ' ' + str(smc_key[1]).zfill(2)
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+ ' ' + smc_key[2][::-1].replace(b'\x00', b' ').decode('UTF-8')
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+ ' ' + '{0:#0{1}x}'.format(smc_key[3], 4)
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+ ' ' + hex(smc_key[4])
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+ ' ' + bytetohex(smc_data))
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def set_bit(value, bit):
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return value | (1 << bit)
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def clear_bit(value, bit):
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return value & ~(1 << bit)
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def test_bit(value, bit):
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return value & bit
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E_CLASS64 = 2
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E_SHT_RELA = 4
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def patchelf(f, oldoffset, newoffset):
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f.seek(0)
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magic = f.read(4)
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if not magic == b'\x7fELF':
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raise Exception('Magic number does not match')
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ei_class = struct.unpack('=B', f.read(1))[0]
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if ei_class != E_CLASS64:
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raise Exception('Not 64bit elf header: ' + ei_class)
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f.seek(40)
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e_shoff = struct.unpack('=Q', f.read(8))[0]
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f.seek(58)
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e_shentsize = struct.unpack('=H', f.read(2))[0]
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e_shnum = struct.unpack('=H', f.read(2))[0]
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e_shstrndx = struct.unpack('=H', f.read(2))[0]
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print('e_shoff: 0x{:x} e_shentsize: 0x{:x} e_shnum:0x{:x} e_shstrndx:0x{:x}'.format(e_shoff, e_shentsize,
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e_shnum, e_shstrndx))
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for i in range(0, e_shnum):
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f.seek(e_shoff + i * e_shentsize)
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e_sh = struct.unpack('=LLQQQQLLQQ', f.read(e_shentsize))
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# e_sh_name = e_sh[0]
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e_sh_type = e_sh[1]
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e_sh_offset = e_sh[4]
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e_sh_size = e_sh[5]
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e_sh_entsize = e_sh[9]
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if e_sh_type == E_SHT_RELA:
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e_sh_nument = int(e_sh_size / e_sh_entsize)
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# print 'RELA at 0x{:x} with {:d} entries'.format(e_sh_offset, e_sh_nument)
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for j in range(0, e_sh_nument):
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f.seek(e_sh_offset + e_sh_entsize * j)
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rela = struct.unpack('=QQq', f.read(e_sh_entsize))
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r_offset = rela[0]
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r_info = rela[1]
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r_addend = rela[2]
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if r_addend == oldoffset:
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r_addend = newoffset
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f.seek(e_sh_offset + e_sh_entsize * j)
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f.write(struct.pack('=QQq', r_offset, r_info, r_addend))
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print('Relocation modified at: ' + hex(e_sh_offset + e_sh_entsize * j))
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def patchkeys(f, key):
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# Setup struct pack string
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key_pack = '=4sB4sB6xQ'
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# smc_old_memptr = 0
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smc_new_memptr = 0
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# Do Until OSK1 read
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i = 0
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while True:
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# Read key into struct str and data byte str
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offset = key + (i * 72)
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f.seek(offset)
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smc_key = struct.unpack(key_pack, f.read(24))
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smc_data = f.read(smc_key[1])
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# Reset pointer to beginning of key entry
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f.seek(offset)
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if smc_key[0] == b'SKL+':
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# Use the +LKS data routine for OSK0/1
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smc_new_memptr = smc_key[4]
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print('+LKS Key: ')
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printkey(i, offset, smc_key, smc_data)
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elif smc_key[0] == b'0KSO':
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# Write new data routine pointer from +LKS
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print('OSK0 Key Before:')
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printkey(i, offset, smc_key, smc_data)
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# smc_old_memptr = smc_key[4]
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f.seek(offset)
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f.write(struct.pack(key_pack, smc_key[0], smc_key[1], smc_key[2], smc_key[3], smc_new_memptr))
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f.flush()
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# Write new data for key
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f.seek(offset + 24)
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smc_new_data = codecs.encode('bheuneqjbexolgurfrjbeqfthneqrqcy', 'rot_13')
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f.write(smc_new_data.encode('UTF-8'))
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f.flush()
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# Re-read and print key
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f.seek(offset)
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smc_key = struct.unpack(key_pack, f.read(24))
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smc_data = f.read(smc_key[1])
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print('OSK0 Key After:')
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printkey(i, offset, smc_key, smc_data)
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elif smc_key[0] == b'1KSO':
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# Write new data routine pointer from +LKS
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print('OSK1 Key Before:')
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printkey(i, offset, smc_key, smc_data)
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smc_old_memptr = smc_key[4]
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f.seek(offset)
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f.write(struct.pack(key_pack, smc_key[0], smc_key[1], smc_key[2], smc_key[3], smc_new_memptr))
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f.flush()
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# Write new data for key
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f.seek(offset + 24)
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smc_new_data = codecs.encode('rnfrqbagfgrny(p)NccyrPbzchgreVap', 'rot_13')
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f.write(smc_new_data.encode('UTF-8'))
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f.flush()
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# Re-read and print key
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f.seek(offset)
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smc_key = struct.unpack(key_pack, f.read(24))
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smc_data = f.read(smc_key[1])
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print('OSK1 Key After:')
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printkey(i, offset, smc_key, smc_data)
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# Finished so get out of loop
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break
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else:
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pass
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i += 1
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return smc_old_memptr, smc_new_memptr
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def patchsmc(name, sharedobj):
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with open(name, 'r+b') as f:
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smc_old_memptr = 0
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smc_new_memptr = 0
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# Read file into string variable
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vmx = f.read()
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print('File: ' + name + '\n')
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# Setup hex string for vSMC headers
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# These are the private and public key counts
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smc_header_v0 = b'\xF2\x00\x00\x00\xF0\x00\x00\x00'
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smc_header_v1 = b'\xB4\x01\x00\x00\xB0\x01\x00\x00'
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# Setup hex string for #KEY key
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key_key = b'\x59\x45\x4B\x23\x04\x32\x33\x69\x75'
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# Setup hex string for $Adr key
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adr_key = b'\x72\x64\x41\x24\x04\x32\x33\x69\x75'
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# Find the vSMC headers
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smc_header_v0_offset = vmx.find(smc_header_v0) - 8
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smc_header_v1_offset = vmx.find(smc_header_v1) - 8
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# Find '#KEY' keys
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smc_key0 = vmx.find(key_key)
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smc_key1 = vmx.rfind(key_key)
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# Find '$Adr' key only V1 table
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smc_adr = vmx.find(adr_key)
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# Print vSMC0 tables and keys
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print('appleSMCTableV0 (smc.version = "0")')
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print('appleSMCTableV0 Address : ' + hex(smc_header_v0_offset))
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print('appleSMCTableV0 Private Key #: 0xF2/242')
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print('appleSMCTableV0 Public Key #: 0xF0/240')
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if (smc_adr - smc_key0) != 72:
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print('appleSMCTableV0 Table : ' + hex(smc_key0))
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smc_old_memptr, smc_new_memptr = patchkeys(f, smc_key0)
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elif (smc_adr - smc_key1) != 72:
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print('appleSMCTableV0 Table : ' + hex(smc_key1))
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smc_old_memptr, smc_new_memptr = patchkeys(f, smc_key1)
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print()
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# Print vSMC1 tables and keys
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print('appleSMCTableV1 (smc.version = "1")')
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print('appleSMCTableV1 Address : ' + hex(smc_header_v1_offset))
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print('appleSMCTableV1 Private Key #: 0x01B4/436')
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print('appleSMCTableV1 Public Key #: 0x01B0/432')
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if (smc_adr - smc_key0) == 72:
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print('appleSMCTableV1 Table : ' + hex(smc_key0))
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smc_old_memptr, smc_new_memptr = patchkeys(f, smc_key0)
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elif (smc_adr - smc_key1) == 72:
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print('appleSMCTableV1 Table : ' + hex(smc_key1))
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smc_old_memptr, smc_new_memptr = patchkeys(f, smc_key1)
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print()
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# Find matching RELA record in .rela.dyn in ESXi ELF files
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# This is temporary code until proper ELF parsing written
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if sharedobj:
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print('Modifying RELA records from: ' + hex(smc_old_memptr) + ' to ' + hex(smc_new_memptr))
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patchelf(f, smc_old_memptr, smc_new_memptr)
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# Tidy up
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f.flush()
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f.close()
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def patchbase(name):
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# Patch file
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print('GOS Patching: ' + name)
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f = open(name, 'r+b')
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# Entry to search for in GOS table
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# Should work for Workstation 12-15...
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darwin = re.compile(
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b'\x10\x00\x00\x00[\x10|\x20]\x00\x00\x00[\x01|\x02]\x00\x00\x00\x00\x00\x00\x00'
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b'\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00')
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# Read file into string variable
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base = f.read()
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# Loop through each entry and set top bit
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# 0xBE --> 0xBF (WKS 12)
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# 0x3E --> 0x3F (WKS 14)
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for m in darwin.finditer(base):
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offset = m.start()
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f.seek(offset + 32)
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flag = ord(f.read(1))
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flag = set_bit(flag, 0)
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# flag = chr(flag)
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f.seek(offset + 32)
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f.write(bytes([flag]))
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print('GOS Patched flag @: ' + hex(offset))
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# Tidy up
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f.flush()
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f.close()
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print('GOS Patched: ' + name)
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def patchvmkctl(name):
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# Patch file
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print('smcPresent Patching: ' + name)
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f = open(name, 'r+b')
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# Read file into string variable
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vmkctl = f.read()
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applesmc = vmkctl.find(b'applesmc')
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f.seek(applesmc)
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f.write(b'vmkernel')
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# Tidy up
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f.flush()
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f.close()
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print('smcPresent Patched: ' + name)
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# noinspection PyUnresolvedReferences
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def main():
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# Work around absent Platform module on VMkernel
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if os.name == 'nt' or os.name == 'cli':
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osname = 'windows'
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else:
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osname = os.uname()[0].lower()
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# vmwarebase = ''
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vmx_so = False
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# Setup default paths
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if osname == 'linux':
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vmx_path = '/usr/lib/vmware/bin/'
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vmx = joinpath(vmx_path, 'vmware-vmx')
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vmx_debug = joinpath(vmx_path, 'vmware-vmx-debug')
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vmx_stats = joinpath(vmx_path, 'vmware-vmx-stats')
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if os.path.isfile('/usr/lib/vmware/lib/libvmwarebase.so/libvmwarebase.so'):
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vmx_so = True
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vmwarebase = '/usr/lib/vmware/lib/libvmwarebase.so/libvmwarebase.so'
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else:
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vmwarebase = '/usr/lib/vmware/lib/libvmwarebase.so.0/libvmwarebase.so.0'
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elif osname == 'windows':
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reg = ConnectRegistry(None, HKEY_LOCAL_MACHINE)
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key = OpenKey(reg, r'SOFTWARE\Wow6432Node\VMware, Inc.\VMware Workstation')
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vmwarebase_path = QueryValueEx(key, 'InstallPath')[0]
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vmx_path = QueryValueEx(key, 'InstallPath64')[0]
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vmx = joinpath(vmx_path, 'vmware-vmx.exe')
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vmx_debug = joinpath(vmx_path, 'vmware-vmx-debug.exe')
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vmx_stats = joinpath(vmx_path, 'vmware-vmx-stats.exe')
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vmwarebase = joinpath(vmwarebase_path, 'vmwarebase.dll')
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else:
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print('Unknown Operating System: ' + osname)
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return
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# Patch the vmx executables skipping stats version for Player
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patchsmc(vmx, vmx_so)
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patchsmc(vmx_debug, vmx_so)
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if os.path.isfile(vmx_stats):
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patchsmc(vmx_stats, vmx_so)
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# Patch vmwarebase for Workstation and Player
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patchbase(vmwarebase)
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if __name__ == '__main__':
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main()
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