# CHIPSEC: Platform Security Assessment Framework # Copyright (c) 2010-2021, 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 # """ Access to physical memory usage: >>> read_physical_mem( 0xf0000, 0x100 ) >>> write_physical_mem( 0xf0000, 0x100, buffer ) >>> write_physical_mem_dowrd( 0xf0000, 0xdeadbeef ) >>> read_physical_mem_dowrd( 0xfed40000 ) """ from struct import unpack, pack from typing import Tuple, Optional from chipsec.hal.hal_base import HALBase from chipsec.library.logger import print_buffer_bytes class Memory(HALBase): def __init__(self, cs): super(Memory, self).__init__(cs) self.helper = cs.helper #################################################################################### # # Physical memory API using 64b Physical Address # (Same functions as below just using 64b PA instead of High and Low 32b parts of PA) # #################################################################################### # Reading physical memory def read_physical_mem(self, phys_address: int, length: int) -> bytes: self.logger.log_hal(f'[mem] 0x{phys_address:016X}') return self.helper.read_phys_mem(phys_address, length) def read_physical_mem_qword(self, phys_address: int) -> int: out_buf = self.read_physical_mem(phys_address, 8) value = unpack('=Q', out_buf)[0] self.logger.log_hal(f'[mem] qword at PA = 0x{phys_address:016X}: 0x{value:016X}') return value def read_physical_mem_dword(self, phys_address: int) -> int: out_buf = self.read_physical_mem(phys_address, 4) value = unpack('=I', out_buf)[0] self.logger.log_hal(f'[mem] dword at PA = 0x{phys_address:016X}: 0x{value:08X}') return value def read_physical_mem_word(self, phys_address: int) -> int: out_buf = self.read_physical_mem(phys_address, 2) value = unpack('=H', out_buf)[0] self.logger.log_hal(f'[mem] word at PA = 0x{phys_address:016X}: 0x{value:04X}') return value def read_physical_mem_byte(self, phys_address: int) -> int: out_buf = self.read_physical_mem(phys_address, 1) value = unpack('=B', out_buf)[0] self.logger.log_hal(f'[mem] byte at PA = 0x{phys_address:016X}: 0x{value:02X}') return value # Writing physical memory def write_physical_mem(self, phys_address: int, length: int, buf: bytes) -> int: if self.logger.HAL: self.logger.log(f'[mem] buffer len = 0x{length:X} to PA = 0x{phys_address:016X}') print_buffer_bytes(buf) return self.helper.write_phys_mem(phys_address, length, buf) def write_physical_mem_dword(self, phys_address: int, dword_value: int) -> int: self.logger.log_hal(f'[mem] dword to PA = 0x{phys_address:016X} <- 0x{dword_value:08X}') return self.write_physical_mem(phys_address, 4, pack('I', dword_value)) def write_physical_mem_word(self, phys_address: int, word_value: int) -> int: self.logger.log_hal(f'[mem] word to PA = 0x{phys_address:016X} <- 0x{word_value:04X}') return self.write_physical_mem(phys_address, 2, pack('H', word_value)) def write_physical_mem_byte(self, phys_address: int, byte_value: int) -> int: self.logger.log_hal(f'[mem] byte to PA = 0x{phys_address:016X} <- 0x{byte_value:02X}') return self.write_physical_mem(phys_address, 1, pack('B', byte_value)) # Allocate physical memory buffer def alloc_physical_mem(self, length: int, max_phys_address: int = 0xFFFFFFFFFFFFFFFF) -> Tuple[int, int]: (va, pa) = self.helper.alloc_phys_mem(length, max_phys_address) self.logger.log_hal(f'[mem] Allocated: PA = 0x{pa:016X}, VA = 0x{va:016X}') return (va, pa) def va2pa(self, va: int) -> Optional[int]: (pa, error_code) = self.helper.va2pa(va) if error_code: self.logger.log_hal(f'[mem] Looks like VA (0x{va:016X}) not mapped') return None self.logger.log_hal(f'[mem] VA (0x{va:016X}) -> PA (0x{pa:016X})') return pa # Map physical address to virtual def map_io_space(self, pa: int, length: int, cache_type: int) -> int: va = self.helper.map_io_space(pa, length, cache_type) self.logger.log_hal(f'[mem] Mapped: PA = 0x{pa:016X}, VA = 0x{va:016X}') return va # Free physical memory buffer def free_physical_mem(self, pa: int) -> bool: ret = self.helper.free_phys_mem(pa) self.logger.log_hal(f'[mem] Deallocated : PA = 0x{pa:016X}') return True if ret == 1 else False def set_mem_bit(self, addr: int, bit: int) -> int: addr += bit >> 3 byte = self.read_physical_mem_byte(addr) self.write_physical_mem_byte(addr, (byte | (0x1 << (bit & 0x7)))) return byte