Maciej Pech

14 papers A* 2Journal 9Unranked 3
YearRankTypeTitle / Venue / Authors
2026 A* conf
HRI
Tonia Mielke, Marilena Georgiades, Oliver S. Großer, Maciej Pech, Christian Hansen, Florian Heinrich
2025 A* conf
HRI
Josefine Schreiter, Tonia Mielke, Marilena Georgiades, Maciej Pech, Christian Hansen, Florian Heinrich
2024 J jnl
Virtual Real.
Dominik Spinczyk, Grzegorz Rosiak, Krzysztof Milczarek, Dariusz Konecki, Jaroslaw Zylkowski, Jakub Franke, Maciej Pech, Karl Rohmer, Karol Zaczkowski, Ania Wolinska-Soltys, Piotr Sperka, Dawid Hajda, Ewa Pietka
2023 J jnl
Int. J. Comput. Assist. Radiol. Surg.
Josefine Schreiter, Tonia Mielke, Danny Schott, Maximilian Thormann, Jazan Omari, Maciej Pech, Christian Hansen
2023 J jnl
Comput. Methods Programs Biomed.
Georg Hille, Shubham Agrawal, Pavan Tummala, Christian Wybranski, Maciej Pech, Alexey Surov, Sylvia Saalfeld
2023 conf
EMBC
Naghmeh Mahmoodian, Sumit Chakrabarty, Marilena Georgiades, Maciej Pech, Christoph Hoeschen
2023 conf
MILLanD@MICCAI
Gino Gulamhussene, Oleksii Bashkanov, Jazan Omari, Maciej Pech, Christian Hansen, Marko Rak
2022 J jnl
IEEE Access
Mohd Mahmeen, Raul David Dominguez Sanchez, Michael Friebe, Maciej Pech, Sultan Haider
2022 J jnl
CoRR
Georg Hille, Shubham Agrawal, Christian Wybranski, Maciej Pech, Alexey Surov, Sylvia Saalfeld
2022 J jnl
CoRR
Gino Gulamhussene, Anneke Meyer, Marko Rak, Oleksii Bashkanov, Jazan Omari, Maciej Pech, Christian Hansen
2022 J jnl
Comput. Medical Imaging Graph.
Gino Gulamhussene, Anneke Meyer, Marko Rak, Oleksii Bashkanov, Jazan Omari, Maciej Pech, Christian Hansen
2021 conf
ASMUS@MICCAI
Josefine Schreiter, Fabian Joeres, Christine March, Maciej Pech, Christian Hansen
2021 J jnl
IEEE Access
Mohd Mahmeen, Marcus Richard Melconian, Sultan Haider, Michael Friebe, Maciej Pech
2019 J jnl
CoRR
Gino Gulamhussene, Fabian Joeres, Marko Rak, Maciej Pech, Christian Hansen
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