Viacheslav V. Zosimov

23 papers Misc 5Journal 1Unranked 17
YearRankTypeTitle / Venue / Authors
2025 conf
ITPM
Viacheslav V. Zosimov, Oleksandra S. Bulgakova, Victor Perederyi
2024 Misc conf
CSIT
Oleksandra S. Bulgakova, Zarina Viniarska, Viacheslav V. Zosimov
2024 Misc conf
CSIT
Oleksandra S. Bulgakova, Viacheslav V. Zosimov
2023 conf
IntSol
Valentyna Pleskach, Oleksandra S. Bulgakova, Viacheslav V. Zosimov, Elena Vashchilina, Inga Tumasoniene
2023 conf
CMIS
Viacheslav V. Zosimov, Oleksandra S. Bulgakova
2023 conf
IT&I
Valentyna Pleskach, Oleksandra S. Bulgakova, Viacheslav V. Zosimov, Mariia Pleskach
2023 Misc conf
CSIT
Viacheslav V. Zosimov, Andrii Kudriavtsev, Oleksandra S. Bulgakova
2022 Misc conf
CSIT
Oleksandra S. Bulgakova, Volodymyr Stepashko, Viacheslav V. Zosimov
2022 conf
IT&I
Valentyna Pleskach, Viacheslav V. Zosimov, Oleksandra S. Bulgakova, Mariia Pleskach, Eva Volnyanska
2022 Misc conf
CSIT
Oleksandra S. Bulgakova, Viacheslav V. Zosimov, Yevheniia Tselm
2022 conf
CITRisk
Oleksandra S. Bulgakova, Viacheslav V. Zosimov
2022 conf
CPITS
Valentyna Pleskach, Viacheslav V. Zosimov, Oleksandra S. Bulgakova, Oleg Nagornyi
2021 conf
CITRisk
Oleksandra S. Bulgakova, Viktor Mashkov, Viacheslav V. Zosimov, Pavlo Popravkin
2021 conf
IT&I Workshops
Viacheslav V. Zosimov, Oleksandra S. Bulgakova, Valeriy Pozdeev
2020 conf
CSIT (2)
Viacheslav V. Zosimov, Oleksandra S. Bulgakova
2020 conf
ISDMCI
Viacheslav V. Zosimov, Oleksandra S. Bulgakova, Valeriy Pozdeev
2020 conf
CSIT (2)
Viacheslav V. Zosimov, Oleksandra S. Bulgakova
2020 conf
CSIT (1)
Viacheslav V. Zosimov, Oleksandra S. Bulgakova
2019 conf
ISDMCI
Viacheslav V. Zosimov, Oleksandra S. Bulgakova
2018 J jnl
Program. Comput. Softw.
Viacheslav V. Zosimov, O. V. Khrystodorov, Oleksandra S. Bulgakova
2018 conf
CSIT (1)
Viacheslav V. Zosimov, Oleksandra S. Bulgakova
2017 conf
CSIT (1)
Oleksandra S. Bulgakova, Volodymyr Stepashko, Viacheslav V. Zosimov
2015 conf
DEXA Workshops
Viacheslav V. Zosimov, Volodymyr Stepashko, Oleksandra S. Bulgakova
tests/unit/test_decompile_scores.py
← Index tests/unit/test_decompile_scores.py python
"""Unit tests for bninja/analysis/scores.py — ObfuscationScores."""
import sys
import pytest
from unittest.mock import MagicMock

# Install binaryninja stubs before importing
from tests.unit.conftest_binja_stubs import (
    install_binja_stubs,
    HighLevelILOperation,
)
bn_mock = install_binja_stubs()

from redb.extractors.decompiler.bninja.analysis.scores import (
    ObfuscationScores,
    get_dominated_by,
    uses_mba,
)
import binaryninja.highlevelil as hlil_mod


# ============================================================================
# Helper: Mock HLIL instruction
# ============================================================================

class MockHLILInstruction(hlil_mod.HighLevelILInstruction):
    """Mock HLIL instruction with operation and operands."""
    def __init__(self, operation, operands=None):
        self.operation = operation
        self.operands = operands or []


class MockHLILBasicBlock:
    """Mock HLIL basic block for flattened score testing."""
    def __init__(self, incoming_edges=None, dominator_tree_children=None):
        self.incoming_edges = incoming_edges or []
        self.dominator_tree_children = dominator_tree_children or []


# ============================================================================
# 5a. ObfuscationScores
# ============================================================================


class TestFlattenedScore:
    def test_flattened_score_no_back_edges(self):
        """Linear CFG with no back edges -> score 0.0."""
        block = MockHLILBasicBlock(incoming_edges=[], dominator_tree_children=[])
        func = MagicMock()
        func.basic_blocks = [block]
        scores = ObfuscationScores(func)
        assert scores.flattened_score() == 0.0

    def test_flattened_score_with_loop(self):
        """CFG with a back edge -> score > 0.0."""
        block = MockHLILBasicBlock(dominator_tree_children=[])
        # Create a back edge: an incoming edge whose source is in the dominated set
        edge = MagicMock()
        edge.source = block  # source IS the dominator -> back edge
        block.incoming_edges = [edge]
        func = MagicMock()
        func.basic_blocks = [block]
        scores = ObfuscationScores(func)
        assert scores.flattened_score() > 0.0

    def test_flattened_score_fully_flat(self):
        """Flattened CFG: one block dominates all -> ratio close to 1.0."""
        children = [MockHLILBasicBlock() for _ in range(4)]
        root = MockHLILBasicBlock(dominator_tree_children=children)
        # Back edge from root incoming
        edge = MagicMock()
        edge.source = root
        root.incoming_edges = [edge]
        all_blocks = [root] + children
        func = MagicMock()
        func.basic_blocks = all_blocks
        scores = ObfuscationScores(func)
        assert scores.flattened_score() == pytest.approx(1.0)


class TestMBAScore:
    def test_mba_score_no_mixed_ops(self):
        """Instructions with only arithmetic -> score 0.0."""
        instr = MockHLILInstruction(HighLevelILOperation.HLIL_ADD, operands=[])
        func = MagicMock()
        func.instructions = [instr]
        scores = ObfuscationScores(func)
        assert scores.MBA_score() == 0.0

    def test_mba_score_mixed_ops(self):
        """Instructions with arithmetic + logic -> score > 0.0."""
        inner_logic = MockHLILInstruction(HighLevelILOperation.HLIL_XOR, operands=[])
        outer_arith = MockHLILInstruction(
            HighLevelILOperation.HLIL_ADD, operands=[inner_logic]
        )
        func = MagicMock()
        func.instructions = [outer_arith]
        scores = ObfuscationScores(func)
        assert scores.MBA_score() > 0.0

    def test_mba_score_all_mixed(self):
        """Every instruction has both -> score 1.0."""
        inner_logic = MockHLILInstruction(HighLevelILOperation.HLIL_NOT, operands=[])
        outer_arith = MockHLILInstruction(
            HighLevelILOperation.HLIL_SUB, operands=[inner_logic]
        )
        func = MagicMock()
        func.instructions = [outer_arith]
        scores = ObfuscationScores(func)
        assert scores.MBA_score() == 1.0


class TestGetDominatedBy:
    def test_get_dominated_by(self):
        child1 = MockHLILBasicBlock(dominator_tree_children=[])
        child2 = MockHLILBasicBlock(dominator_tree_children=[])
        root = MockHLILBasicBlock(dominator_tree_children=[child1, child2])
        result = get_dominated_by(root)
        assert root in result
        assert child1 in result
        assert child2 in result
        assert len(result) == 3


class TestUsesMBA:
    def test_uses_mba_arithmetic_only(self):
        instr = MockHLILInstruction(HighLevelILOperation.HLIL_ADD, operands=[])
        assert uses_mba(instr) is False

    def test_uses_mba_logic_only(self):
        instr = MockHLILInstruction(HighLevelILOperation.HLIL_XOR, operands=[])
        assert uses_mba(instr) is False

    def test_uses_mba_mixed(self):
        inner = MockHLILInstruction(HighLevelILOperation.HLIL_AND, operands=[])
        outer = MockHLILInstruction(HighLevelILOperation.HLIL_ADD, operands=[inner])
        assert uses_mba(outer) is True