Viljan Mahnic

18 papers A* 1Journal 9Unranked 7
YearRankTypeTitle / Venue / Authors
2020 J jnl
Adv. Comput.
Luka Fürst, Marjan Mernik, Viljan Mahnic
2015 J jnl
Softw. Syst. Model.
Luka Fürst, Marjan Mernik, Viljan Mahnic
2015 conf
MIPRO
Marko Pozenel, Luka Fürst, Viljan Mahnic
2012 J jnl
IEEE Trans. Educ.
Viljan Mahnic
2012 J jnl
J. Syst. Softw.
Viljan Mahnic, Tomaz Hovelja
2012 conf
MIPRO
Viljan Mahnic, Igor Rozanc
2011 conf
AGTIVE
Luka Fürst, Marjan Mernik, Viljan Mahnic
2011 J jnl
IET Softw.
Luka Fürst, Marjan Mernik, Viljan Mahnic
2010 J jnl
Informatica (Slovenia)
Marko Pozenel, Viljan Mahnic, Matjaz Kukar
2010 A* conf
ICDM
Marko Pozenel, Viljan Mahnic, Matjaz Kukar
2003 J jnl
Informatica (Slovenia)
Viljan Mahnic
2002 conf
DFN-Arbeitstagung über Kommunikationsnetze
Viljan Mahnic, Janko Uratnik, Natasa Zabkar
2002 conf
Information Technology in Educational Management
Marko Bajec, Viljan Mahnic, Marjan Krisper
2002 ed.
EUNIS
Jan von Knop, Peter Schirmbacher, Viljan Mahnic
2001 conf
EUNIS
Viljan Mahnic, Igor Rozanc
2001 J jnl
Informatica (Slovenia)
Viljan Mahnic, Igor Rozanc
2001 conf
EUNIS
Viljan Mahnic, Natasa Zabkar
1991 J jnl
Microprocessing and Microprogramming
Viljan Mahnic
redb/extractors/decompiler/bninja/analysis/scores.py
← Index redb/extractors/decompiler/bninja/analysis/scores.py python
from collections import deque
from binaryninja import highlevelil
from binaryninja.enums import HighLevelILOperation


class ObfuscationScores:
    def __init__(self, hlil_function):
        self.function = hlil_function
        self._basic_blocks = list(hlil_function.basic_blocks) if hlil_function and hlil_function.basic_blocks else []
        self._block_count = len(self._basic_blocks)

    def flattened_score(self):
        """
        A heuristic for detecting control flow flattening from Tim Blazytko.
        Source: https://www.synthesis.to/2021/03/03/flattening_detection.html
        """
        if self._block_count == 0:
            return 0.0

        max_flattening_ratio = 0.0

        for basic_block in self._basic_blocks:
            dominated = get_dominated_by(basic_block)
            if not any(edge.source in dominated for edge in basic_block.incoming_edges):
                continue
            ratio = len(dominated) / self._block_count
            if ratio > max_flattening_ratio:
                max_flattening_ratio = ratio

        return max_flattening_ratio

    def MBA_score(self):
        """
        Score for MBA is obtained by the number of instructions that have at least one arithmetic operation and
        one logic operation DIVIDED by the number of instructions.
        """
        total = 0
        mba_count = 0

        for ins in self.function.instructions:
            total += 1
            if uses_mba(ins):
                mba_count += 1

        if total == 0:
            return 0.0

        return mba_count / total

def get_dominated_by(dominator):
    """
    Get the dominators that are dominated by the given dominator.
    (To recall the theory, a basic block B is called dominator for A if every path from START
    to A must include B)
    """
    result = set()
    worklist = deque([dominator])

    while worklist:
        block = worklist.popleft()
        if block in result:
            continue
        result.add(block)
        worklist.extend(block.dominator_tree_children)

    return result

_ARITHMETIC_OPS = frozenset({
    HighLevelILOperation.HLIL_ADD,
    HighLevelILOperation.HLIL_NEG,
    HighLevelILOperation.HLIL_SUB,
    HighLevelILOperation.HLIL_MUL,
    HighLevelILOperation.HLIL_DIVS,
    HighLevelILOperation.HLIL_MODS,
})

_LOGIC_OPS = frozenset({
    HighLevelILOperation.HLIL_NOT,
    HighLevelILOperation.HLIL_AND,
    HighLevelILOperation.HLIL_OR,
    HighLevelILOperation.HLIL_XOR,
    HighLevelILOperation.HLIL_LSR,
    HighLevelILOperation.HLIL_LSL,
})

_MBA_OPS = _ARITHMETIC_OPS | _LOGIC_OPS

def uses_mba(hlil_instruction):
    uses_logic = False
    uses_arithmetic = False
    stack = [hlil_instruction]

    while stack:
        instruction = stack.pop()

        if not isinstance(instruction, highlevelil.HighLevelILInstruction):
            continue

        op = instruction.operation

        if op not in _MBA_OPS:
            for operand in instruction.operands:
                if isinstance(operand, highlevelil.HighLevelILInstruction):
                    stack.append(operand)
            continue

        if op in _ARITHMETIC_OPS:
            uses_arithmetic = True
        else:
            uses_logic = True

        if uses_logic and uses_arithmetic:
            return True

        for operand in instruction.operands:
            if isinstance(operand, highlevelil.HighLevelILInstruction):
                stack.append(operand)

    return False