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144 lines
6.8 KiB
Python
144 lines
6.8 KiB
Python
# This file is Copyright 2019 Volatility Foundation and licensed under the Volatility Software License 1.0
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# which is available at https://www.volatilityfoundation.org/license/vsl-v1.0
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#
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import logging
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from typing import Iterable, Tuple
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from volatility.framework import interfaces, symbols, exceptions
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from volatility.framework import renderers
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from volatility.framework.configuration import requirements
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from volatility.framework.objects import utility
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from volatility.framework.renderers import format_hints
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from volatility.plugins.windows import pslist, vadinfo
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vollog = logging.getLogger(__name__)
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class Malfind(interfaces.plugins.PluginInterface):
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"""Lists process memory ranges that potentially contain injected code."""
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@classmethod
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def get_requirements(cls):
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# Since we're calling the plugin, make sure we have the plugin's requirements
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return [
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requirements.TranslationLayerRequirement(name = 'primary',
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description = 'Memory layer for the kernel',
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architectures = ["Intel32", "Intel64"]),
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requirements.SymbolTableRequirement(name = "nt_symbols", description = "Windows kernel symbols"),
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requirements.IntRequirement(name = 'pid',
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description = "Process ID to include (all other processes are excluded)",
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optional = True),
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requirements.PluginRequirement(name = 'pslist', plugin = pslist.PsList, version = (1, 0, 0)),
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requirements.PluginRequirement(name = 'vadinfo', plugin = vadinfo.VadInfo, version = (1, 0, 0)),
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]
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@classmethod
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def is_vad_empty(cls, proc_layer, vad):
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"""Check if a VAD region is either entirely unavailable due to paging,
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entirely consisting of zeros, or a combination of the two. This helps
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ignore false positives whose VAD flags match task._injection_filter
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requirements but there's no data and thus not worth reporting it.
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Args:
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proc_layer: the process layer
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vad: the MMVAD structure to test
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Returns:
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A boolean indicating whether a vad is empty or not
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"""
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CHUNK_SIZE = 0x1000
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all_zero_page = "\x00" * CHUNK_SIZE
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offset = 0
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vad_length = vad.get_end() - vad.get_start()
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while offset < vad_length:
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next_addr = vad.get_start() + offset
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if proc_layer.is_valid(next_addr, CHUNK_SIZE) and proc_layer.read(next_addr, CHUNK_SIZE) != all_zero_page:
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return False
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offset += CHUNK_SIZE
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return True
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@classmethod
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def list_injections(cls, context: interfaces.context.ContextInterface, symbol_table: str,
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proc: interfaces.objects.ObjectInterface
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) -> Iterable[Tuple[interfaces.objects.ObjectInterface, bytes]]:
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"""Generate memory regions for a process that may contain injected
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code.
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Args:
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context: The context to retrieve required elements (layers, symbol tables) from
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symbol_table: The name of the table containing the kernel symbols
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proc: an _EPROCESS instance
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Returns:
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An iterable of VAD instances and the first 64 bytes of data containing in that region
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"""
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proc_id = "Unknown"
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try:
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proc_id = proc.UniqueProcessId
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proc_layer_name = proc.add_process_layer()
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except exceptions.InvalidAddressException as excp:
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vollog.debug("Process {}: invalid address {} in layer {}".format(proc_id, excp.invalid_address,
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excp.layer_name))
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return
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proc_layer = context.layers[proc_layer_name]
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for vad in proc.get_vad_root().traverse():
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protection_string = vad.get_protection(
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vadinfo.VadInfo.protect_values(context, proc_layer_name, symbol_table), vadinfo.winnt_protections)
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write_exec = "EXECUTE" in protection_string and "WRITE" in protection_string
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# the write/exec check applies to everything
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if not write_exec:
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continue
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if (vad.get_private_memory() == 1
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and vad.get_tag() == "VadS") or (vad.get_private_memory() == 0
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and protection_string != "PAGE_EXECUTE_WRITECOPY"):
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if cls.is_vad_empty(proc_layer, vad):
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continue
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data = proc_layer.read(vad.get_start(), 64, pad = True)
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yield vad, data
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def _generator(self, procs):
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# determine if we're on a 32 or 64 bit kernel
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is_32bit_arch = not symbols.symbol_table_is_64bit(self.context, self.config["nt_symbols"])
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for proc in procs:
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process_name = utility.array_to_string(proc.ImageFileName)
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for vad, data in self.list_injections(self.context, self.config["nt_symbols"], proc):
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# if we're on a 64 bit kernel, we may still need 32 bit disasm due to wow64
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if is_32bit_arch or proc.get_is_wow64():
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architecture = "intel"
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else:
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architecture = "intel64"
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disasm = interfaces.renderers.Disassembly(data, vad.get_start(), architecture)
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yield (0, (proc.UniqueProcessId, process_name, format_hints.Hex(vad.get_start()),
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format_hints.Hex(vad.get_end()), vad.get_tag(),
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vad.get_protection(
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vadinfo.VadInfo.protect_values(self.context, proc.vol.layer_name,
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self.config["nt_symbols"]), vadinfo.winnt_protections),
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vad.get_commit_charge(), vad.get_private_memory(), format_hints.HexBytes(data), disasm))
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def run(self):
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filter_func = pslist.PsList.create_pid_filter([self.config.get('pid', None)])
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return renderers.TreeGrid([("PID", int), ("Process", str), ("Start VPN", format_hints.Hex),
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("End VPN", format_hints.Hex), ("Tag", str), ("Protection", str),
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("CommitCharge", int), ("PrivateMemory", int), ("Hexdump", format_hints.HexBytes),
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("Disasm", interfaces.renderers.Disassembly)],
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self._generator(
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pslist.PsList.list_processes(context = self.context,
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layer_name = self.config['primary'],
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symbol_table = self.config['nt_symbols'],
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filter_func = filter_func)))
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