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proc_peek_recon.py
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proc_peek_recon.py
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#
# IDA Python Proc Peek Recon
# Locate all potentially interesting points and dump to file.
#
# Copyright (C) 2006 Pedram Amini <[email protected]>
#
# $Id: proc_peek_recon.py 236 2010-03-05 18:16:17Z pedram.amini $
#
# 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; either version 2 of the License, or (at your option) any later
# version.
#
# 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., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
#
'''
@author: Pedram Amini
@license: GNU General Public License 2.0 or later
@contact: [email protected]
@organization: www.openrce.org
'''
from idaapi import *
from idautils import *
from idc import *
########################################################################################################################
### Support Functions
###
def get_arg (ea, arg_num):
arg_index = 1
while True:
ea = PrevNotTail(ea)
if GetMnem(ea) == "push":
if arg_index == arg_num:
dref = Dfirst(ea)
if dref == BADADDR:
return dref
return read_string(dref)
arg_index += 1
def instruction_match (ea, mnem=None, op1=None, op2=None, op3=None):
if mnem and mnem != GetMnem(ea):
return False
if op1 and op1 != GetOpnd(ea, 0): return False
if op2 and op2 != GetOpnd(ea, 1): return False
if op3 and op3 != GetOpnd(ea, 2): return False
return True
def disasm_match (ea, needle):
disasm_line = GetDisasm(ea)
# collapse whitespace
while disasm_line.find(" ") != -1:
disasm_line = disasm_line.replace(" ", " ")
if disasm_line.find(needle) == -1:
return False
return True
def read_string (ea):
s = ""
while True:
byte = Byte(ea)
if byte == 0 or byte < 32 or byte > 126:
break
s += chr(byte)
ea += 1
return s
def token_count (format_string):
return format_string.count("%") - format_string.count("%%")
########################################################################################################################
### Meat and Potatoes
###
peek_filename = AskFile(1, "*.recon", "Proc Peek Recon Filename?")
peek_file = open(peek_filename, "w+")
#ida_log = lambda x: None
ida_log = lambda x: sys.stdout.write(x + "\n")
write_line = lambda x: peek_file.write("%s\n" % x)
window = state = found_ea = processed = 0
ida_log("searching for inline memcpy()'s and sign extended moves (movsx).")
for ea in Heads(MinEA(), MaxEA()):
processed += 1
# we don't care about instructions within known library routines.
if GetFunctionFlags(ea) and GetFunctionFlags(ea) & FUNC_LIB:
continue
if disasm_match(ea, "movsx"):
ida_log("%08x: found sign extended move" % ea)
write_line("%08x:3:sign extended move" % ea)
if state == 0 and instruction_match(ea, "shr", "ecx", "2"):
state = 1
window = 0
elif state == 1 and disasm_match(ea, "rep movsd"):
state = 2
window = 0
found_ea = ea
elif state == 2 and instruction_match(ea, "and", "ecx", "3"):
state = 3
window = 0
elif state == 3 and disasm_match(ea, "rep movsb"):
ida_log("%08x: found memcpy" % found_ea)
set_cmt(found_ea, "inline memcpy()", False)
write_line("%08x:5:inline memcpy" % found_ea)
found_ea = state = window = 0
if window > 15:
state = window = 0
if state != 0:
window += 1
ida_log("done. looked at %d heads." % processed)
ida_log("looking for potentially interesting API calls now.")
# format of functions dictionary is function name: format string arg number
# fill this from google search: +run-time.library +security.note site:msdn.microsoft.com
functions = \
{
"fread" : {},
"gets" : {},
"lstrcat" : {},
"lstrcpy" : {},
"mbscat" : {},
"mbscpy" : {},
"mbsncat" : {},
"memcpy" : {},
#"snprintf" : {"fs_arg": 3},
#"snwprintf" : {"fs_arg": 3},
"sprintf" : {"fs_arg": 2},
"sscanf" : {"fs_arg": 2},
"strcpy" : {},
"strcat" : {},
"StrCatBuf" : {},
"strncat" : {},
"swprintf" : {"fs_arg": 2},
"swscanf" : {"fs_arg": 2},
"vfprintf" : {"fs_arg": 2},
"vfwprintf" : {"fs_arg": 2},
"vprintf" : {"fs_arg": 1},
"vwprintf" : {"fs_arg": 1},
"vsprintf" : {"fs_arg": 2},
#"vsnprintf" : {"fs_arg": 3},
#"vsnwprintf" : {"fs_arg": 3},
"vswprintf" : {"fs_arg": 2},
"wcscat" : {},
"wcsncat" : {},
"wcscpy" : {},
"wsprintfA" : {"fs_arg": 2},
"wsprintfW" : {"fs_arg": 2},
"wvsprintfA" : {"fs_arg": 2},
"wvsprintfW" : {"fs_arg": 2},
}
prefixes = ["", "_", "__imp_", "__imp__"]
# for every function we are interested in.
for func in functions:
# enumerate all possible prefixes.
for prefix in prefixes:
full_name = prefix + func
location = LocByName(full_name)
if location == BADADDR:
continue
ida_log("enumerating xrefs to %s" % full_name)
for xref in list(CodeRefsTo(location, True)) + list(DataRefsTo(location)):
if GetMnem(xref) in ("call", "jmp"):
# ensure the xref does not exist within a known library routine.
if GetFunctionFlags(ea) and GetFunctionFlags(xref) & FUNC_LIB:
continue
###
### peek a call with format string arguments
###
if functions[func].has_key("fs_arg"):
fs_arg = functions[func]["fs_arg"]
format_string = get_arg(xref, fs_arg)
# format string must be resolved at runtime.
if format_string == BADADDR:
ida_log("%08x format string must be resolved at runtime" % xref)
write_line("%08x:10:%s" % (xref, func))
# XXX - we have to escape '%' chars here otherwise 'print', which wraps around 'Message()' will
# incorrectly dereference from the stack and potentially crash the script.
else:
format_string = str(format_string).replace("%", "%%")
# format string found.
if format_string.find("%s") != -1:
format_string = format_string.replace("\n", "")
ida_log("%08x favorable format string found '%s'" % (xref, format_string))
write_line("%08x:%d:%s %s" % (xref, token_count(format_string)+fs_arg, func, format_string))
###
### peek a non format string call
###
else:
ida_log("%08x found call to '%s'" % (xref, func))
write_line("%08x:3:%s" % (xref, func))
peek_file.close()
print "done."