Jac Romme

37 papers B 7Misc 1Journal 14Unranked 15
YearRankTypeTitle / Venue / Authors
2026 J jnl
Neuromorph. Comput. Eng.
Pietro Russo, Yuming He, Jac Romme, Stefano Traferro, Gert-Jan van Schaik, Hua-Peng Liaw, Zhong Ren, Zhenyu Gao, Guido Dolmans, Yao-Hong Liu
2025 conf
ECOC
Javier Pérez Santacruz, Jac Romme, Xuebing Zhang, Esteban Venialgo Araujo, Marcus S. Dahlem, Ruud M. Oldenbeuving, Dongjae Shin
2025 conf
OFC
Xuebing Zhang, Javier Pérez Santacruz, Jac Romme, Amir Abbas Kashi, Gijs van Elzakker, Marcus S. Dahlem, Dongjae Shin, Ruud Oldenbeuving
2025 conf
OFC
Mathias Prost, Huaqing Qiu, Guillaume Croes, Manuel Reza, Jac Romme, Brecht Berteloot, Ziduo Lin, Javier Pérez Santacruz, Esteban Venialgo Araujo, Erik Emmen, Jochem Govers, Pawel Bembnowicz, Felipe Pacheco de Oliveira, Noor Schilder, Elbert Bechthum, Harish Sasikumar, Amir Abbas Kashi, Nicolas Chauvet, Peter Girouard, Tangla D. Kongnyuy, Mennatallah Kandil, Maliheh Ramezani, Puvendren Subramaniam, Padraic E. Morrissey, Sean Collins, Matthew L. Hall, Peter O'Brien, Joost Brouckaert, Ruud Oldenbeuving, Roelof Jansen, Dongjae Shin, Christian Bachmann, Peter Gerets, Marcus S. Dahlem
2025 B conf
PIMRC
Alireza Sheikh, Utku Kumbul, Jac Romme
2025 conf
ECOC
Mathias Prost, Huaqing Qiu, Guillaume Croes, Manuel Reza, Jac Romme, Brecht Berteloot, Ziduo Lin, Javier Pérez Santacruz, Esteban Venialgo Araujo, Erik Emmen, Jochem Govers, Pawel Bembnowicz, Felipe Pacheco de Oliveira, Elbert Bechthum, Amir A. Kashi, Nicolas Chauvet, Peter Girouard, Tangla D. Kongnyuy, Mennatallah Kandil, Maliheh Ramezani, Puvendren Subramaniam, Padraic E. Morrissey, Sean Collins, Matthew L. Hall, Peter O'Brien, Joost Brouckaert, Ruud Oldenbeuving, Roelof Jansen, Dongjae Shin, Christian Bachmann, Peter Gerets, Marcus Dahlem
2025 conf
OFC
Javier Pérez Santacruz, Jac Romme, Xuebing Zhang, Esteban Venialgo Araujo, Marcus S. Dahlem, Ruud M. Oldenbeuving, Dongjae Shin
2024 J jnl
IEEE Trans. Biomed. Circuits Syst.
Lichen Yao, Sadeque Reza Khan, Guido Dolmans, Jac Romme, Srinjoy Mitra
2023 conf
NEWCAS
Lichen Yao, Sadeque Reza Khan, Guido Dolmans, Jac Romme, Srinjoy Mitra
2023 J jnl
IEEE Internet Things J.
Alireza Sheikh, Jac Romme, Jochem Govers, Amirashkan Farsaei, Christian Bachmann
2022 conf
ISSCC
Minyoung Song, Yu Huang, Yiyu Shen, Chengyao Shi, Arjan Breeschoten, Mario Konijnenburg, Huib Visser, Jac Romme, Barundeb Dutta, Morteza S. Alavi, Christian Bachmann, Yao-Hong Liu
2022 J jnl
IEEE J. Solid State Circuits
Minyoung Song, Yu Huang, Hubregt J. Visser, Jac Romme, Yao-Hong Liu
2022 J jnl
IEEE Trans. Wirel. Commun.
Tarik Kazaz, Gerard J. M. Janssen, Jac Romme, Alle-Jan van der Veen
2022 J jnl
IEEE Trans. Instrum. Meas.
Chenglong Li, Emmeric Tanghe, Luc Martens, Jac Romme, Gaurav Singh, Eli De Poorter, Wout Joseph
2022 J jnl
CoRR
Alireza Sheikh, Jac Romme, Jochem Govers, Amirashkan Farsaei, Christian Bachmann
2021 J jnl
Sensors
Lichen Yao, Guido Dolmans, Jac Romme
2021 J jnl
IACR Cryptol. ePrint Arch.
Aysajan Abidin, Mohieddine El Soussi, Jac Romme, Pepijn Boer, Dave Singelée, Christian Bachmann
2021 J jnl
IACR Trans. Cryptogr. Hardw. Embed. Syst.
Aysajan Abidin, Mohieddine El Soussi, Jac Romme, Pepijn Boer, Dave Singelée, Christian Bachmann
2020 Misc conf
ACSSC
Tarik Kazaz, Jac Romme, Gerard J. M. Janssen, Alle-Jan van der Veen
2020 conf
VTC Spring
Pepijn Boer, Jac Romme, Jochem Govers, Guido Dolmans
2020 conf
EUSIPCO
Alle-Jan van der Veen, Jac Romme, Ye Cui
2019 B conf
PIMRC
Pouria Zand, Ayturk Duzen, Jac Romme, Jochem Govers, Christian Bachmann, Kathleen Philips
2019 B conf
WCNC
Pouria Zand, Jac Romme, Jochem Govers, Frank J. Pasveer, Guido Dolmans
2019 J jnl
IEEE Trans. Inf. Forensics Secur.
Enrique Argones-Rúa, Aysajan Abidin, Roel Peeters, Jac Romme
2018 J jnl
CoRR
Raj Thilak Rajan, Rob van Schaijk, Anup Das, Jac Romme, Frank J. Pasveer
2017 conf
ESSCIRC
Hasan Gul, Jac Romme, Paul Mateman, Johan Dijkhuis, Xiongchuan Huang, Cui Zhou, Benjamin Busze, Gert-Jan van Schaik, Elbert Bechthum, Ming Ding, Arjan Breeschoten, Yao-Hong Liu, Christian Bachmann, Guido Dolmans, Kathleen Philips
2013 conf
ICC
Jac Romme, Johan H. C. van den Heuvel, Guido Dolmans, George N. Selimis, Kathleen Philips, Harmke de Groot
2013 B conf
GLOBECOM
Johan H. C. van den Heuvel, Hans W. Pflug, A. Ramkumar, Alex Young, Jac Romme, Martijn Hijdra, Benjamin Busze, Arjan Breeschoten, Gerard J. M. Janssen, Guido Dolmans, Kathleen Philips, Harmke de Groot
2013 B conf
PIMRC
Georgios N. Selimis, Jac Romme, Hans W. Pflug, Kathleen Philips, Guido Dolmans, Harmke de Groot
2013 conf
ICC
Johan H. C. van den Heuvel, Jac Romme, Jean-François Dufour, Guido Dolmans, Nauman F. Kiyani, Kathleen Philips, Harmke de Groot
2011 conf
A-SSCC
X. Wang, Kathleen Philips, C. Zhou, Ben Busze, Hans W. Pflug, Alex Young, Jac Romme, Pieter Harpe, Sumit Bagga, Stefano D'Amico, Marcello De Matteis, Andrea Baschirotto, Harmke de Groot
2009 J jnl
IEEE Signal Process. Mag.
Klaus Witrisal, Geert Leus, Gerard J. M. Janssen, Marco Pausini, Florian Troesch, Thomas Zasowski, Jac Romme
2006 conf
VTC Spring
Jac Romme, Klaus Witrisal
2006 conf
EUSIPCO
Jac Romme, Klaus Witrisal
2003 B conf
GLOBECOM
Giuseppe Durisi, Jac Romme, Sergio Benedetto
2003 J jnl
J. Commun. Networks
Giuseppe Durisi, Alberto Tarable, Jac Romme, Sergio Benedetto
2000 B conf
GLOBECOM
Wen Xu, Jac Romme
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