#!/usr/bin/python #CHIPSEC: Platform Security Assessment Framework #Copyright (c) 2010-2015, 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 # __version__ = '1.0' import time from chipsec.command import BaseCommand from chipsec.hal import smbus, spd class SPDCommand(BaseCommand): """ >>> chipsec_util spd detect >>> chipsec_util spd dump [device_addr] >>> chipsec_util spd read >>> chipsec_util spd write Examples: >>> chipsec_util spd detect >>> chipsec_util spd dump DIMM0 >>> chipsec_util spd read 0xA0 0x0 >>> chipsec_util spd write 0xA0 0x0 0xAA """ def requires_driver(self): # No driver required when printing the util documentation if len(self.argv) < 3: return False return True def run(self): if len(self.argv) < 3: print SPDCommand.__doc__ return try: _smbus = smbus.SMBus( self.cs ) _spd = spd.SPD( _smbus ) except BaseException, msg: print msg return op = self.argv[2] t = time.time() if not _smbus.is_SMBus_supported(): self.logger.log( "[CHIPSEC] SMBus controller is not supported" ) return #smbus.display_SMBus_info() dev_addr = spd.SPD_SMBUS_ADDRESS if( 'detect' == op ): self.logger.log( "[CHIPSEC] Searching for DIMMs with SPD.." ) _spd.detect() elif( 'dump' == op ): if len(self.argv) > 3: dev = self.argv[3].upper() dev_addr = spd.SPD_DIMM_ADDRESSES[ dev ] if dev in spd.SPD_DIMM_ADDRESSES else int(self.argv[3],16) if not _spd.isSPDPresent( dev_addr ): self.logger.log( "[CHIPSEC] SPD for DIMM 0x%X is not found" % dev_addr ) return _spd.decode( dev_addr ) else: _dimms = _spd.detect() for d in _dimms: _spd.decode( d ) elif( 'read' == op ) or ( 'write' == op ): if len(self.argv) > 3: dev = self.argv[3].upper() dev_addr = spd.SPD_DIMM_ADDRESSES[ dev ] if dev in spd.SPD_DIMM_ADDRESSES else int(self.argv[3],16) if not _spd.isSPDPresent( dev_addr ): self.logger.log( "[CHIPSEC] SPD for DIMM 0x%X is not found" % dev_addr ) return off = int(self.argv[4],16) if( 'read' == op ): val = _spd.read_byte( off, dev_addr ) self.logger.log( "[CHIPSEC] SPD read: offset 0x%X = 0x%X" % (off, val) ) elif( 'write' == op ): val = int(self.argv[5],16) self.logger.log( "[CHIPSEC] SPD write: offset 0x%X = 0x%X" % (off, val) ) _spd.write_byte( off, val, dev_addr ) else: self.logger.error( "unknown command-line option '%.32s'" % op ) self.logger.log( SPDCommand.__doc__ ) return self.logger.log( "[CHIPSEC] (spd) time elapsed %.3f" % (time.time()-t) ) commands = { 'spd': SPDCommand }