Maarten Keijzer

30 papers A 7B 13Journal 4Unranked 5
YearRankTypeTitle / Venue / Authors
2016 J jnl
Int. J. Algebra Comput.
David M. Clark, Maarten Keijzer, Lee Spector
2014 B conf
EuroGP
Sébastien Gaucel, Maarten Keijzer, Evelyne Lutton, Alberto Paolo Tonda
2013 conf
GECCO (Companion)
Maarten Keijzer
2008 A ed.
GECCO
Conor Ryan, Maarten Keijzer
2008 ed.
GECCO (Companion)
Conor Ryan, Maarten Keijzer
2008 conf
GECCO (Companion)
Maarten Keijzer
2007 B conf
EuroGP
Maarten Keijzer, James Foster
2005 A conf
GECCO
Maarten Keijzer, Martin Baptist, Vladan Babovic, Javier Rodriguez Uthurburu
2005 B ed.
EuroGP
Maarten Keijzer, Andrea Tettamanzi, Pierre Collet, Jano I. van Hemert, Marco Tomassini
2005 conf
GECCO Workshops
Ivar Siccama, Maarten Keijzer
2005 A conf
GECCO
Lee Spector, Jon Klein, Maarten Keijzer
2005 B conf
EuroGP
Maarten Keijzer, Conor Ryan, Gearoid Murphy, Mike Cattolico
2004 B conf
EuroGP
Maarten Keijzer
2004 B ed.
EuroGP
Maarten Keijzer, Una-May O'Reilly, Simon M. Lucas, Ernesto Costa, Terence Soule
2004 conf
GECCO (2)
Maarten Keijzer, Conor Ryan, Mike Cattolico
2004 J jnl
Genet. Program. Evolvable Mach.
Maarten Keijzer
2003 A conf
GECCO
Federico Divina, Maarten Keijzer, Elena Marchiori
2003 B conf
EuroGP
Conor Ryan, Maarten Keijzer
2003 J jnl
Genet. Program. Evolvable Mach.
Michael O'Neill, Conor Ryan, Maarten Keijzer, Mike Cattolico
2003 B ed.
EuroGP
Conor Ryan, Terence Soule, Maarten Keijzer, Edward P. K. Tsang, Riccardo Poli, Ernesto Costa
2003 B conf
EuroGP
Maarten Keijzer
2003 A conf
GECCO
Federico Divina, Maarten Keijzer, Elena Marchiori
2003 A conf
GECCO
Conor Ryan, Maarten Keijzer, Miguel Nicolau
2002 J jnl
Genet. Program. Evolvable Mach.
Maarten Keijzer, Vladan Babovic
2002 B conf
EuroGP
Maarten Keijzer, Michael O'Neill, Conor Ryan, Mike Cattolico
2001 B conf
EuroGP
Michael O'Neill, Conor Ryan, Maarten Keijzer, Mike Cattolico
2001 conf
Artificial Evolution
Maarten Keijzer, Juan Julián Merelo Guervós, Gustavo Romero, Marc Schoenauer
2001 B conf
EuroGP
Maarten Keijzer, Conor Ryan, Michael O'Neill, Mike Cattolico, Vladan Babovic
2000 A conf
GECCO
Maarten Keijzer, Vladan Babovic
2000 B conf
EuroGP
Maarten Keijzer, Vladan Babovic
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