James M. Stichnoth

18 papers A* 3A 3B 1Journal 3Unranked 8
YearRankTypeTitle / Venue / Authors
2007 conf
LCPC
Todd A. Anderson, Neal Glew, Peng Guo, Brian T. Lewis, Wei Liu, Zhanglin Liu, Leaf Petersen, Mohan Rajagopalan, James M. Stichnoth, Gansha Wu, Dan Zhang
2005 J jnl
Concurr. Pract. Exp.
Michal Cierniak, Marsha Eng, Neal Glew, Brian T. Lewis, James M. Stichnoth
2004 J jnl
J. Object Technol.
Todd A. Anderson, Marsha Eng, Neal Glew, Brian T. Lewis, Vijay Menon, James M. Stichnoth
2004 A conf
CGO
Ali-Reza Adl-Tabatabai, Jay Bharadwaj, Michal Cierniak, Marsha Eng, Jesse Fang, Brian T. Lewis, Brian R. Murphy, James M. Stichnoth
2004 conf
Virtual Machine Research and Technology Symposium
Neal Glew, Spyridon Triantafyllis, Michal Cierniak, Marsha Eng, Brian T. Lewis, James M. Stichnoth
2002 conf
Java Grande
Michal Cierniak, Brian T. Lewis, James M. Stichnoth
2000 A* conf
PLDI
Michal Cierniak, Guei-Yuan Lueh, James M. Stichnoth
1999 A* conf
PLDI
James M. Stichnoth, Guei-Yuan Lueh, Michal Cierniak
1998 conf
IPPS/SPDP
Jaspal Subhlok, Peter Steenkiste, James M. Stichnoth, Peter Lieu
1998 A* conf
PLDI
Ali-Reza Adl-Tabatabai, Michal Cierniak, Guei-Yuan Lueh, Vishesh M. Parikh, James M. Stichnoth
1997 conf
DSL
James M. Stichnoth, Thomas R. Gross
1996 A conf
SC
Lei Wang, James M. Stichnoth, Siddhartha Chatterjee
1995 conf
LCPC
James M. Stichnoth, Thomas R. Gross
1995 A conf
International Conference on Supercomputing
Thomas Stricker, James M. Stichnoth, David R. O'Hallaron, Susan Hinrichs, Thomas R. Gross
1994 J jnl
J. Parallel Distributed Comput.
James M. Stichnoth, David R. O'Hallaron, Thomas R. Gross
1993 conf
LCPC
Bwolen Yang, Jon A. Webb, James M. Stichnoth, David R. O'Hallaron, Thomas R. Gross
1993 B conf
PPoPP
Jaspal Subhlok, James M. Stichnoth, David R. O'Hallaron, Thomas R. Gross
1992 conf
SIGPLAN Workshop
Thomas R. Gross, Susan Hinrichs, David R. O'Hallaron, James M. Stichnoth, Jaspal Subhlok
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