Kai K. Kimppa

28 papers C 2Journal 8Unranked 17
YearRankTypeTitle / Venue / Authors
2026 J jnl
CoRR
Jefferson Seide Molléri, Sami Hyrynsalmi, Antti Hakkala, Kai K. Kimppa, Jouni Smed
2022 C conf
ICIS
Anne-Marie Tuikka, Jani Koskinen, Kai K. Kimppa
2020 conf
WIS
Sami Hyrynsalmi, Sonja M. Hyrynsalmi, Kai K. Kimppa
2020 conf
Tethics
Minna M. Rantanen, Juhani Naskali, Kai K. Kimppa, Jani Koskinen
2020 conf
HCC
Olli I. Heimo, Kai K. Kimppa
2019 conf
SmartWorld/SCALCOM/UIC/ATC/CBDCom/IOP/SCI
Olli I. Heimo, Kai K. Kimppa, Antti Hakkala
2019 ch.
Encyclopedia of Computer Graphics and Games
Sami Hyrynsalmi, Kai K. Kimppa, Jouni Smed
2019 conf
Tethics
Olli I. Heimo, Kai K. Kimppa
2018 J jnl
SIGCAS Comput. Soc.
Antti Hakkala, Olli I. Heimo, Sami Hyrynsalmi, Kai K. Kimppa
2018 conf
HCC
Olli I. Heimo, Minna M. Rantanen, Kai K. Kimppa
2018 conf
WIS
Jouko Kiesiläinen, Minna M. Rantanen, Olli I. Heimo, Kai K. Kimppa
2017 conf
IWSECO
Jani Koskinen, Minna M. Rantanen, Kai K. Kimppa, Sami Hyrynsalmi
2016 conf
HCC
Tero Vartiainen, Olli I. Heimo, Kai K. Kimppa
2016 conf
HCC
Jani Simo Sakari Koskinen, Kai K. Kimppa
2016 conf
HCC
Olli I. Heimo, Tapani N. Liukkonen, Miika Oja-Nisula, Julius Rajala, Anne Paavolainen, Kai K. Kimppa, Tuomas Mäkilä
2015 J jnl
SIGCAS Comput. Soc.
Kai K. Kimppa, Olli I. Heimo, J. Tuomas Harviainen
2015 J jnl
Comput. Secur.
Francois Mouton, Mercia M. Malan, Kai K. Kimppa, H. S. Venter
2015 C conf
ISTAS
Tuomas Tanskanen, Anne-Marie Tuikka, Sami Hyrynsalmi, Kai K. Kimppa
2015 J jnl
SIGCAS Comput. Soc.
Diane Whitehouse, Penny Duquenoy, Kai K. Kimppa, Oliver K. Burmeister, Don Gotterbarn, David Kreps, Norberto Patrignani
2015 J jnl
SIGCAS Comput. Soc.
Anne-Marie Tuikka, Minna Rantanen, Olli I. Heimo, Jani Simo Sakari Koskinen, Neeraj Sachdeva, Kai K. Kimppa
2015 J jnl
SIGCAS Comput. Soc.
Olli I. Heimo, Minna Rantanen, Kai K. Kimppa
2014 conf
WIS
Jani Simo Sakari Koskinen, Kai K. Kimppa, Ville Matti Antero Kainu
2012 conf
WIS
Jani Simo Sakari Koskinen, Olli I. Heimo, Kai K. Kimppa
2012 J jnl
J. Inf. Commun. Ethics Soc.
Olli I. Heimo, Antti Hakkala, Kai K. Kimppa
2007 conf
History of Nordic Computing
Kai K. Kimppa, Janne Lahtiranta, Markku I. Nurminen
2006 conf
The Information Society
Kai K. Kimppa
2006 conf
The Information Society
Kai K. Kimppa
2005 conf
The Information Society
Kai K. Kimppa
tests/unit/conftest.py
← Index tests/unit/conftest.py python
"""
Unit test configuration.

Replaces the redb.extractors package with a minimal stub so that
``from redb.extractors.database_exporters import ...`` works without
pulling in the heavy __init__.py import chain (pefile, elftools,
signify, magic, etc.).

Also stubs out redb.settings so that Elasticsearch / ClickHouse
clients are never actually created during unit tests.

Additionally installs binaryninja stubs for decompiler unit tests.

Stubs heavy third-party packages (pefile, magic, psutil, etc.) so that
redb.workers, redb.queries, redb.ingestor, and redb.s3_utils can all
be imported and patched in unit tests without requiring the real packages.
"""
import sys
import types
from pathlib import Path
from unittest.mock import MagicMock

# ---------------------------------------------------------------------------
# 0. Install binaryninja stubs FIRST — must happen before any decompiler
#    module is imported (triggered by __init__.py chain).
# ---------------------------------------------------------------------------
from tests.unit.conftest_binja_stubs import install_binja_stubs as _install_binja_stubs
_install_binja_stubs()

# ---------------------------------------------------------------------------
# 1. Stub external packages required by database_exporters.py itself,
#    the decompiler chain, and the workers/ingestor modules.
# ---------------------------------------------------------------------------
_heavy_deps = [
    # Database / networking
    "elasticsearch", "clickhouse_connect", "dotenv",
    # Binary analysis — top-level packages
    "pefile", "magic", "machofile",
    # Archive handling
    "py7zr", "pyzipper",
    # File type detection
    "magika",
    # System monitoring
    "psutil",
    # S3 / MinIO (submodule paths needed for `from minio.error import S3Error`)
    "minio", "minio.error",
    # YARA
    "yara_x",
    # Binary parsing — elftools tree
    "elftools", "elftools.elf", "elftools.elf.elffile",
    "elftools.common", "elftools.common.exceptions",
    # Code signing — signify tree
    "signify", "signify.fingerprinter", "signify.authenticode",
    # LIEF
    "lief",
    # Fuzzy hashing
    "ppdeep",
    # .NET analysis
    "dotnetfile",
    # Crypto / ASN.1
    "asn1crypto", "asn1crypto.cms", "asn1crypto.pem", "asn1crypto.x509", "asn1crypto.core",
    # Hashing
    "xxhash", "blake3", "mmh3", "numpy",
    # APK analysis
    "androguard", "androguard.core", "androguard.core.apk",
    "androguard.core.dex", "androguard.core.api_specific_resources",
    "androguard.misc",
    "permhash",
]
for _mod in _heavy_deps:
    if _mod not in sys.modules:
        try:
            __import__(_mod)
        except (ImportError, ModuleNotFoundError):
            sys.modules[_mod] = MagicMock()

# Stub urllib3 with a real Warning subclass (warnings.filterwarnings needs a class)
if "urllib3" not in sys.modules or isinstance(sys.modules.get("urllib3"), MagicMock):
    try:
        import urllib3  # noqa: F401
    except (ImportError, ModuleNotFoundError):
        _urllib3_mod = types.ModuleType("urllib3")
        _urllib3_exc = types.ModuleType("urllib3.exceptions")

        class _InsecureRequestWarning(UserWarning):
            pass

        _urllib3_exc.InsecureRequestWarning = _InsecureRequestWarning
        _urllib3_mod.exceptions = _urllib3_exc
        sys.modules["urllib3"] = _urllib3_mod
        sys.modules["urllib3.exceptions"] = _urllib3_exc

# Provide a functional ppdeep stub (tests call ppdeep.hash() and expect a string).
# Must overwrite the MagicMock that the loop above may have installed.
_ppdeep_existing = sys.modules.get("ppdeep")
if _ppdeep_existing is None or isinstance(_ppdeep_existing, MagicMock):
    _ppdeep_mod = types.ModuleType("ppdeep")
    _ppdeep_mod.__name__ = "ppdeep"

    def _ppdeep_hash(data):
        """Fake ssdeep hash — returns a deterministic placeholder."""
        if isinstance(data, str):
            data = data.encode("utf-8")
        if len(data) < 50:
            return None
        import hashlib
        h = hashlib.md5(data).hexdigest()
        return f"3:{h[:16]}:{h[16:]}"

    _ppdeep_mod.hash = _ppdeep_hash
    sys.modules["ppdeep"] = _ppdeep_mod

# Stub mmh3 if the C extension is not available
_mmh3_existing = sys.modules.get("mmh3")
if _mmh3_existing is None or isinstance(_mmh3_existing, MagicMock):
    _mmh3_mod = types.ModuleType("mmh3")
    _mmh3_mod.__name__ = "mmh3"

    def _mmh3_hash(data, seed=0):
        """Fake MurmurHash3 — deterministic hash using built-in hashlib."""
        import hashlib
        if isinstance(data, str):
            data = data.encode("utf-8")
        seed_bytes = (seed & 0xFFFFFFFF).to_bytes(8, "little")
        h = hashlib.md5(data + seed_bytes).digest()
        return int.from_bytes(h[:4], "little", signed=True)

    _mmh3_mod.hash = _mmh3_hash
    sys.modules["mmh3"] = _mmh3_mod

# Stub tlsh if the C extension is not available
if "tlsh" not in sys.modules:
    try:
        import tlsh as _real_tlsh  # noqa: F401
    except (ImportError, ModuleNotFoundError):
        _tlsh_mock = types.ModuleType("tlsh")
        _tlsh_mock.__name__ = "tlsh"

        def _tlsh_hash(data):
            """Fake TLSH hash — returns a deterministic placeholder.

            Returns empty string for data < 50 bytes or data with very
            low entropy (e.g. repeating patterns), mimicking the real
            TLSH library's "TNULL" behaviour.
            """
            if isinstance(data, str):
                data = data.encode("utf-8")
            if len(data) < 50:
                return ""
            # Real TLSH returns "" for low-entropy input
            if len(set(data)) < 8:
                return ""
            import hashlib
            return "T1" + hashlib.sha256(data).hexdigest()[:70].upper()

        _tlsh_mock.hash = _tlsh_hash
        sys.modules["tlsh"] = _tlsh_mock

# ---------------------------------------------------------------------------
# 2. Stub redb.settings (package) so module-level code never runs
# ---------------------------------------------------------------------------
_settings_mock = MagicMock()
_settings_mock.__name__ = "redb.settings"
sys.modules["redb.settings"] = _settings_mock
sys.modules["redb.settings.elasticsearch"] = MagicMock()
sys.modules["redb.settings.clickhouse"] = MagicMock()

# ---------------------------------------------------------------------------
# 3. Replace redb.extractors with a minimal package that does NOT eagerly
#    import every extractor (and their heavy deps).  Sub-module imports
#    like ``from redb.extractors.database_exporters import ...`` still work
#    because __path__ points to the real package directory.
# ---------------------------------------------------------------------------
_repo_root = Path(__file__).resolve().parents[2]
_extractors_pkg = types.ModuleType("redb.extractors")
_extractors_pkg.__path__ = [str(_repo_root / "redb" / "extractors")]
_extractors_pkg.__package__ = "redb.extractors"
sys.modules["redb.extractors"] = _extractors_pkg

# ---------------------------------------------------------------------------
# 4. Force-import redb submodules so that @patch('redb.workers.xxx'),
#    @patch('redb.queries.xxx'), etc. can resolve at decoration time.
#    This works because all heavy deps are already stubbed above.
# ---------------------------------------------------------------------------
import redb.logging_utils   # noqa: F401, E402
import redb.s3_utils         # noqa: F401, E402
import redb.queries          # noqa: F401, E402
import redb.workers          # noqa: F401, E402
import redb.ingestor         # noqa: F401, E402