Files
BrentHoltsclaw 18827a8574 Cleanup use is for None type compare
Signed-off-by: BrentHoltsclaw <brent.holtsclaw@intel.com>
2019-08-16 14:18:47 -07:00

184 lines
8.1 KiB
Python

#!/usr/bin/python
#CHIPSEC: Platform Security Assessment Framework
#Copyright (c) 2010-2019, Intel Corporation
#
#This program is free software; you can redistribute it and/or
#modify it under the terms of the GNU General Public License
#as published by the Free Software Foundation; Version 2.
#
#This program 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 General Public License for more details.
#
#You should have received a copy of the GNU General Public License
#along with this program; if not, write to the Free Software
#Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
#
#Contact information:
#chipsec@intel.com
#
"""
The vmem command provides direct access to read and write virtual memory.
"""
import os
import chipsec_util
import chipsec.defines
from chipsec.logger import print_buffer
from chipsec.command import BaseCommand
from chipsec.hal import virtmem
# Virtual Memory
class VMemCommand(BaseCommand):
"""
>>> chipsec_util vmem <op> <physical_address> <length> [value|buffer_file]
>>>
>>> <physical_address> : 64-bit physical address
>>> <op> : read|readval|write|writeval|allocate|pagedump|search|getphys
>>> <length> : byte|word|dword or length of the buffer from <buffer_file>
>>> <value> : byte, word or dword value to be written to memory at <physical_address>
>>> <buffer_file> : file with the contents to be written to memory at <physical_address>
Examples:
>>> chipsec_util vmem <op> <virtual_address> <length> [value|file]
>>> chipsec_util vmem readval 0xFED40000 dword
>>> chipsec_util vmem read 0x41E 0x20 buffer.bin
>>> chipsec_util vmem writeval 0xA0000 dword 0x9090CCCC
>>> chipsec_util vmem write 0x100000000 0x1000 buffer.bin
>>> chipsec_util vmem write 0x100000000 0x10 000102030405060708090A0B0C0D0E0F
>>> chipsec_util vmem allocate 0x1000
>>> chipsec_util vmem search 0xF0000 0x10000 _SM_
>>> chipsec_util vmem getphys 0xFED00000
"""
def requires_driver(self):
# No driver required when printing the util documentation
if len(self.argv) < 3:
return False
return True
def run(self):
try:
_vmem = virtmem.VirtMemory(self.cs)
except:
return
size = 0x100
if len(self.argv) < 3:
print (VMemCommand.__doc__)
return
op = self.argv[2]
if 'allocate' == op and 4 == len(self.argv):
size = int(self.argv[3],16)
(va, pa) = _vmem.alloc_virtual_mem( size )
self.logger.log( '[CHIPSEC] Allocated {:X} bytes of virtual memory: VA = 0x{:016X}, PA = 0x{:016X}'.format(size, va, pa) )
elif 'search' == op and len(self.argv) > 5:
virt_address = int(self.argv[3],16)
size = int(self.argv[4],16)
buffer = _vmem.read_virtual_mem( virt_address, size )
buffer = chipsec.defines.bytestostring(buffer)
offset = buffer.find(self.argv[5])
if offset != -1:
self.logger.log( '[CHIPSEC] search buffer from memory: VA = 0x{:016X}, len = 0x{:X}, target address= 0x{:X}..'.format(virt_address, size, virt_address + offset) )
else:
self.logger.log( '[CHIPSEC] search buffer from memory: VA = 0x{:016X}, len = 0x{:X}, can not find the target in the searched range..'.format(virt_address, size) )
elif 'read' == op:
virt_address = int(self.argv[3],16)
size = int(self.argv[4],16) if len(self.argv) > 4 else 0x100
self.logger.log( '[CHIPSEC] reading buffer from memory: VA = 0x{:016X}, len = 0x{:X}..'.format(virt_address, size) )
buffer = _vmem.read_virtual_mem( virt_address, size )
if len(self.argv) > 5:
buf_file = self.argv[5]
chipsec.file.write_file( buf_file, buffer )
self.logger.log( "[CHIPSEC] written 0x{:X} bytes to '{}'".format(len(buffer), buf_file) )
else:
print_buffer( chipsec.defines.bytestostring(buffer) )
elif 'readval' == op:
virt_address = int(self.argv[3],16)
width = 0x4
if len(self.argv) > 4:
width = chipsec_util.get_option_width(self.argv[4]) if chipsec_util.is_option_valid_width(self.argv[4]) else int(self.argv[4],16)
self.logger.log( '[CHIPSEC] reading {:X}-byte value from VA 0x{:016X}..'.format(width, virt_address) )
if 0x1 == width: value = _vmem.read_virtual_mem_byte ( virt_address )
elif 0x2 == width: value = _vmem.read_virtual_mem_word ( virt_address )
elif 0x4 == width: value = _vmem.read_virtual_mem_dword( virt_address )
self.logger.log( '[CHIPSEC] value = 0x{:X}'.format(value) )
elif 'write' == op:
virt_address = int(self.argv[3],16)
if len(self.argv) > 4:
size = int(self.argv[4],16)
else:
self.logger.error( "must specify <length> argument in 'mem write'" )
return
if len(self.argv) > 5:
buf_file = self.argv[5]
if not os.path.exists( buf_file ):
#buffer = buf_file.decode('hex')
try:
buffer = bytearray.fromhex(buf_file)
except ValueError as e:
self.logger.error( "incorrect <value> specified: '{}'".format(buf_file) )
self.logger.error( str(e) )
return
self.logger.log( "[CHIPSEC] read 0x{:X} hex bytes from command-line: {}'".format(len(buffer), buf_file) )
else:
buffer = chipsec.file.read_file( buf_file )
self.logger.log( "[CHIPSEC] read 0x{:X} bytes from file '{}'".format(len(buffer), buf_file) )
if len(buffer) < size:
self.logger.error( "number of bytes read (0x{:X}) is less than the specified <length> (0x{:X})".format(len(buffer),size) )
return
self.logger.log( '[CHIPSEC] writing buffer to memory: VA = 0x{:016X}, len = 0x{:X}..'.format(virt_address, size) )
_vmem.write_virtual_mem( virt_address, size, buffer )
else:
self.logger.error( "must specify <buffer>|<file> argument in 'mem write'" )
return
elif 'writeval' == op:
virt_address = int(self.argv[3],16)
if len(self.argv) > 4:
width = chipsec_util.get_option_width(self.argv[4]) if chipsec_util.is_option_valid_width(self.argv[4]) else int(self.argv[4],16)
else:
self.logger.error( "must specify <length> argument in 'mem writeval' as one of {}".format(chipsec_util.CMD_OPTS_WIDTH) )
return
if len(self.argv) > 5:
value = int(self.argv[5],16)
else:
self.logger.error( "must specify <value> argument in 'mem writeval'" )
return
self.logger.log( '[CHIPSEC] writing {:X}-byte value 0x{:X} to VA 0x{:016X}..'.format(width, value, virt_address) )
if 0x1 == width: _vmem.write_virtual_mem_byte ( virt_address, value )
elif 0x2 == width: _vmem.write_virtual_mem_word ( virt_address, value )
elif 0x4 == width: _vmem.write_virtual_mem_dword( virt_address, value )
elif 'getphys' == op:
virt_address = int(self.argv[3],16)
pa = _vmem.va2pa( virt_address )
if pa is not None:
self.logger.log( '[CHIPSEC] Allocated {:X} bytes of virtual memory: VA = 0x{:016X}, PA = 0x{:016X}'.format(size, virt_address, pa) )
else:
print (VMemCommand.__doc__)
return
commands = { 'vmem': VMemCommand }