Jan A. Melkebeek

18 papers C 3Journal 15
YearRankTypeTitle / Venue / Authors
2021 J jnl
IEEE Trans. Ind. Electron.
Huayu Li, Jordi Van Damme, Chenwei Ma, Jan A. Melkebeek, Frederik De Belie
2017 J jnl
IEEE Trans. Ind. Electron.
Joachim Druant, Hendrik Vansompel, Frederik M. De Belie, Jan A. Melkebeek, Peter Sergeant
2016 J jnl
IEEE Trans. Veh. Technol.
Joachim Druant, Frederik M. De Belie, Peter Sergeant, Jan A. Melkebeek
2016 J jnl
IEEE Trans. Ind. Electron.
Araz Darba, Frederik M. De Belie, Pieter D'haese, Jan A. Melkebeek
2015 J jnl
IEEE Trans. Ind. Electron.
Araz Darba, Frederik M. De Belie, Jan A. Melkebeek
2015 J jnl
IEEE Trans. Ind. Electron.
Joachim Druant, Thomas J. Vyncke, Frederik M. De Belie, Peter Sergeant, Jan A. Melkebeek
2015 C conf
IECON
Frederik De Belie, Araz Darba, Jan A. Melkebeek
2014 C conf
IECON
Aboubakr Salem, Moataz F. Elsied, Joachim Druant, Frederik De Belie, Amrane Oukaour, Hamid Gualous, Jan A. Melkebeek
2013 C conf
IECON
Aboubakr Salem, Frederik De Belie, Araz Darba, Mostafa M. Eissa, Sherief Wasfy, Jan A. Melkebeek
2013 J jnl
IEEE Trans. Ind. Informatics
Thomas J. Vyncke, Steven Thielemans, Jan A. Melkebeek
2013 J jnl
Math. Comput. Simul.
Thomas J. Vyncke, Steven Thielemans, Jan A. Melkebeek
2012 J jnl
IEEE Trans. Ind. Electron.
Peter Sergeant, Frederik M. De Belie, Jan A. Melkebeek
2010 J jnl
Math. Comput. Simul.
Frederik M. De Belie, Peter Sergeant, Jan A. Melkebeek
2010 J jnl
IEEE Trans. Ind. Electron.
Tine L. Vandoorn, Frederik M. De Belie, Thomas J. Vyncke, Jan A. Melkebeek, Philippe Lataire
2010 J jnl
IEEE Trans. Ind. Electron.
Kristof R. Geldhof, Alex P. M. Van den Bossche, Jan A. Melkebeek
2007 J jnl
IEEE Trans. Ind. Electron.
Koen De Gussemé, David M. Van de Sype, Alex P. M. Van den Bossche, Jan A. Melkebeek
2005 J jnl
IEEE Trans. Ind. Electron.
Koen De Gussemé, David M. Van de Sype, Alex P. M. Van den Bossche, Jan A. Melkebeek
2005 J jnl
IEEE Trans. Ind. Electron.
David M. Van de Sype, Koen De Gussemé, Alex P. M. Van den Bossche, Jan A. Melkebeek
tests/unit/test_decompile_arch.py
← Index tests/unit/test_decompile_arch.py python
"""Unit tests for architecture modules:
- bninja/arch/creator.py
- bninja/arch/x86.py
"""
import sys
import pytest

# Install binaryninja stubs before importing arch modules
from tests.unit.conftest_binja_stubs import install_binja_stubs
install_binja_stubs()

from redb.extractors.decompiler.bninja.arch.creator import ArchitectureCreator
from redb.extractors.decompiler.bninja.arch.x86 import Arch_x86


# ============================================================================
# 3a. ArchitectureCreator
# ============================================================================

class TestArchitectureCreator:
    def test_create_x86(self):
        arch = ArchitectureCreator("x86").get()
        assert isinstance(arch, Arch_x86)

    def test_create_x86_case_insensitive(self):
        for name in ["X86", "x86", "X86"]:
            arch = ArchitectureCreator(name).get()
            assert isinstance(arch, Arch_x86)

    def test_unsupported_arch_raises(self):
        with pytest.raises(ValueError, match="Unsupported architecture"):
            ArchitectureCreator("arm").get()


# ============================================================================
# 3b. Arch_x86
# ============================================================================

class TestArch_x86Registers:
    def setup_method(self):
        self.arch = Arch_x86()

    def test_is_register_valid(self):
        assert self.arch.is_register("RAX") is True
        assert self.arch.is_register("eax") is True
        assert self.arch.is_register("XMM0") is True

    def test_is_register_invalid(self):
        assert self.arch.is_register("INVALID_REG") is False

    def test_is_general_purpose_register(self):
        assert self.arch.is_general_purpose_register("RAX") is True
        assert self.arch.is_general_purpose_register("XMM0") is False

    def test_is_stack_register(self):
        assert self.arch.is_stack_register("RSP") is True
        assert self.arch.is_stack_register("RBP") is True
        assert self.arch.is_stack_register("RAX") is False

    def test_is_xmm_register(self):
        assert self.arch.is_xmm_register("XMM0") is True
        assert self.arch.is_xmm_register("RAX") is False


class TestArch_x86OpcodeCategories:
    def setup_method(self):
        self.arch = Arch_x86()

    def test_opcode_categories_populated(self):
        assert len(self.arch.opcode_categories) > 0

    def test_opcode_mov_category(self):
        assert self.arch.opcode_categories["MOV"] == "DATA_MOVEMENT"

    def test_opcode_call_category(self):
        assert self.arch.opcode_categories["CALL"] == "CONTROL_FLOW"

    def test_opcode_add_category(self):
        assert self.arch.opcode_categories["ADD"] == "ARITHMETIC"


class TestArch_x86ControlFlow:
    def setup_method(self):
        self.arch = Arch_x86()

    def test_is_control_flow_instruction_by_mnemonic(self):
        assert self.arch.is_control_flow_instruction_by_mnemonic("JMP") is True
        assert self.arch.is_control_flow_instruction_by_mnemonic("MOV") is False

    def test_is_control_flow_instruction_call(self):
        assert self.arch.is_control_flow_instruction_by_mnemonic("CALL") is True

    def test_is_control_flow_instruction_ret(self):
        assert self.arch.is_control_flow_instruction_by_mnemonic("RET") is True

    def test_is_control_flow_instruction_loop(self):
        assert self.arch.is_control_flow_instruction_by_mnemonic("LOOP") is True

    def test_is_control_flow_instruction_empty(self):
        assert self.arch.is_control_flow_instruction_by_mnemonic("") is False
        assert self.arch.is_control_flow_instruction_by_mnemonic(None) is False