Jan Broeckhove

86 papers B 6C 7Misc 11Journal 28Unranked 33
YearRankTypeTitle / Venue / Authors
2020 J jnl
Internet Things
Yorick De Bock, Siegfried Mercelis, Jan Broeckhove, Peter Hellinckx
2020 conf
ICCS (1)
Elise J. Kuylen, Jori Liesenborgs, Jan Broeckhove, Niel Hens
2019 conf
ICCS (1)
Elise J. Kuylen, Lander Willem, Niel Hens, Jan Broeckhove
2018 J jnl
Simul.
Ben Cardoen, Stijn Manhaeve, Yentl Van Tendeloo, Jan Broeckhove
2018 J jnl
SIGBED Rev.
Yorick De Bock, Sebastian Altmeyer, Thomas Huybrechts, Jan Broeckhove, Peter Hellinckx
2017 Misc conf
ICCS
Elise J. Kuylen, Gerrit T. S. Beemster, Jan Broeckhove, Dirk De Vos
2017 Misc conf
ICCS
Elise J. Kuylen, Sean Stijven, Jan Broeckhove, Lander Willem
2016 conf
SpringSim (TMS-DEVS)
Ben Cardoen, Stijn Manhaeve, Tim Tuijn, Yentl Van Tendeloo, Kurt Vanmechelen, Hans Vangheluwe, Jan Broeckhove
2016 conf
EWiLi
Yorick De Bock, Sebastian Altmeyer, Jan Broeckhove, Peter Hellinckx
2015 conf
3PGCIC
Yorick De Bock, Jan Broeckhove, Peter Hellinckx
2015 J jnl
Future Gener. Comput. Syst.
Ruben Van den Bossche, Kurt Vanmechelen, Jan Broeckhove
2015 J jnl
IEEE Trans. Serv. Comput.
Sam Verboven, Kurt Vanmechelen, Jan Broeckhove
2015 J jnl
BMC Bioinform.
Lander Willem, Sean Stijven, Engelbert Tijskens, Philippe Beutels, Niel Hens, Jan Broeckhove
2015 J jnl
J. Comput. Sci.
Dirk De Vos, Emil De Borger, Jan Broeckhove, Gerrit T. S. Beemster
2015 conf
HSB
Delphine Draelants, Przemyslaw Klosiewicz, Jan Broeckhove, Wim Vanroose
2014 J jnl
PLoS Comput. Biol.
Lander Willem, Sean Stijven, Ekaterina Vladislavleva, Jan Broeckhove, Philippe Beutels, Niel Hens
2014 J jnl
Future Gener. Comput. Syst.
Wim Depoorter, Kurt Vanmechelen, Jan Broeckhove
2014 conf
IEEE CLOUD
Ruben Van den Bossche, Kurt Vanmechelen, Jan Broeckhove
2014 J jnl
PLoS Comput. Biol.
Dirk De Vos, Kris Vissenberg, Jan Broeckhove, Gerrit T. S. Beemster
2014 J jnl
Concurr. Comput. Pract. Exp.
Silas De Munck, Kurt Vanmechelen, Jan Broeckhove
2013 J jnl
Comput. Phys. Commun.
Jan Broeckhove, Kurt Vanmechelen
2013 J jnl
Future Gener. Comput. Syst.
Sam Verboven, Kurt Vanmechelen, Jan Broeckhove
2013 J jnl
Simul. Model. Pract. Theory
Kurt Vanmechelen, Silas De Munck, Jan Broeckhove
2013 J jnl
Future Gener. Comput. Syst.
Ruben Van den Bossche, Kurt Vanmechelen, Jan Broeckhove
2013 conf
GPTP
Sean Stijven, Ruben Van den Bossche, Ekaterina Vladislavleva, Kurt Vanmechelen, Jan Broeckhove, Mark E. Kotanchek
2013 conf
3PGCIC
Nills Franssens, Jan Broeckhove, Peter Hellinckx
2012 B conf
CCGRID
Kurt Vanmechelen, Silas De Munck, Jan Broeckhove
2012 conf
GECON
Wim Depoorter, Kurt Vanmechelen, Jan Broeckhove
2012 conf
3PGCIC
Ramadan Arfa, Peter Hellinckx, Jan Broeckhove
2011 conf
GECON
Joris Roovers, Kurt Vanmechelen, Jan Broeckhove
2011 J jnl
Future Gener. Comput. Syst.
Ruben Van den Bossche, Kurt Vanmechelen, Jan Broeckhove
2011 J jnl
J. Grid Comput.
Kurt Vanmechelen, Wim Depoorter, Jan Broeckhove
2011 C conf
CloudCom
Ruben Van den Bossche, Kurt Vanmechelen, Jan Broeckhove
2011 conf
SimuTools
Silas De Munck, Kurt Vanmechelen, Jan Broeckhove
2010 B conf
CCGRID
Ruben Van den Bossche, Kurt Vanmechelen, Jan Broeckhove
2010 J jnl
J. Comput. Appl. Math.
Jan Broeckhove, Przemyslaw Klosiewicz, Wim Vanroose
2010 conf
IEEE CLOUD
Ruben Van den Bossche, Kurt Vanmechelen, Jan Broeckhove
2010 conf
SimuTools
Silas De Munck, Kurt Vanmechelen, Jan Broeckhove
2010 C conf
JSSPP
Sam Verboven, Kurt Vanmechelen, Jan Broeckhove
2010 J jnl
CoRR
Khalid Abdelkader, Jan Broeckhove, Kurt Vanmechelen
2009 C conf
AICCSA
Khalid Abdelkader, Jan Broeckhove, Kurt Vanmechelen
2009 B conf
CCGRID
Wim Depoorter, Ruben Van den Bossche, Kurt Vanmechelen, Jan Broeckhove
2009 conf
ICCS (1)
Silas De Munck, Kurt Vanmechelen, Jan Broeckhove
2009 J jnl
Concurr. Comput. Pract. Exp.
Kurt Vanmechelen, Wim Depoorter, Jan Broeckhove
2009 C conf
AICCSA
Ramadan Arfa, Jan Broeckhove
2009 Misc conf
CISIS
Peter Hellinckx, Sam Verboven, Frans Arickx, Jan Broeckhove
2009 J jnl
Int. J. Grid Util. Comput.
Khalid Abdelkader, Jan Broeckhove
2009 ch.
Parallel Programming, Models and Applications in Grid and P2P Systems
Peter Hellinckx, Sam Verboven, Frans Arickx, Jan Broeckhove
2009 J jnl
Comput. Phys. Commun.
Przemyslaw Klosiewicz, Jan Broeckhove, Wim Vanroose
2008 conf
ICCS (1)
Kurt Vanmechelen, Wim Depoorter, Jan Broeckhove
2008 C conf
AICCSA
Khalid Abdelkader, Jan Broeckhove, Kurt Vanmechelen
2008 conf
Euro-Par
Sam Verboven, Peter Hellinckx, Jan Broeckhove, Frans Arickx
2008 B conf
CCGRID
Kurt Vanmechelen, Wim Depoorter, Jan Broeckhove
2008 Misc conf
CISIS
Khalid Abdelkader, Jan Broeckhove
2008 C conf
APSCC
Sam Verboven, Peter Hellinckx, Frans Arickx, Jan Broeckhove
2008 conf
Euro-Par
Wim Depoorter, Nils De Moor, Kurt Vanmechelen, Jan Broeckhove
2007 conf
GECON
Kurt Vanmechelen, Jan Broeckhove
2007 J jnl
Future Gener. Comput. Syst.
Gunther Stuer, Kurt Vanmechelen, Jan Broeckhove
2007 J jnl
Int. J. Web Grid Serv.
Peter Hellinckx, Frans Arickx, Jan Broeckhove, Gunther Stuer
2006 conf
PVM/MPI
David Dewolfs, Jan Broeckhove, Vaidy S. Sunderam, Graham E. Fagg
2006 B conf
CCGRID
Peter Hellinckx, Gunther Stuer, Wouter Hendrickx, Frans Arickx, Jan Broeckhove
2005 conf
PVM/MPI
David Dewolfs, Dawid Kurzyniec, Vaidy S. Sunderam, Jan Broeckhove, Tom Dhaene, Graham E. Fagg
2005 Misc conf
International Conference on Computational Science (2)
Dirk Gorissen, Gunther Stuer, Kurt Vanmechelen, Jan Broeckhove
2005 conf
EGC
Kurt Vanmechelen, Jan Broeckhove
2005 J jnl
Future Gener. Comput. Syst.
Gunther Stuer, Vaidy S. Sunderam, Jan Broeckhove
2005 Misc conf
International Conference on Computational Science (2)
Peter Hellinckx, Kurt Vanmechelen, Gunther Stuer, Frans Arickx, Jan Broeckhove
2004 conf
IASTED Conf. on Software Engineering
Wouter Hendrickx, Gunther Stuer, Jan Broeckhove, Tom Dhaene, David Dewolfs
2004 conf
Parallel and Distributed Computing and Networks
David Dewolfs, Gunther Stuer, Frederic Hancke, Peter Hellinckx, Jan Broeckhove, Frans Arickx, Tom Dhaene
2004 Misc conf
International Conference on Computational Science
Dirk Deschrijver, Tom Dhaene, Jan Broeckhove
2004 conf
VECPAR
Frederic Hancke, Tom Dhaene, Jan Broeckhove
2004 B conf
MASCOTS
Frederic Hancke, Tom Dhaene, Jan Broeckhove
2004 J jnl
Comput. Artif. Intell.
Gunther Stuer, Jan Broeckhove, Vaidy S. Sunderam
2004 Misc conf
International Conference on Computational Science
Gunther Stuer, Vaidy S. Sunderam, Jan Broeckhove
2004 conf
ICCSA (4)
Jan Broeckhove, Kurt Vanmechelen
2003 conf
Applied Informatics
Gunther Stuer, Jan Broeckhove, Frans Arickx
2003 Misc conf
International Conference on Computational Science
Gunther Stuer, Jan Broeckhove, Frans Arickx
2003 J jnl
Internet Res.
Gunther Stuer, Jan Broeckhove, Frans Arickx
2002 Misc conf
International Conference on Computational Science (2)
Gunther Stuer, Frans Arickx, Jan Broeckhove
2001 Misc conf
International Conference on Computational Science (1)
Gunther Stuer, Jan Broeckhove, Frans Arickx
2000 conf
ESM
S. Dehandtschutter, O. Verberckmoes, Frans Arickx, Jan Broeckhove
1999 conf
PARCO
Gunther Stuer, Frans Arickx, Jan Broeckhove
1998 conf
HPCN Europe
Kris Demuynck, Jan Broeckhove, Frans Arickx
1998 J jnl
Future Gener. Comput. Syst.
Kris Demuynck, Jan Broeckhove, Frans Arickx
1998 C conf
Computer Graphics International
Kris Demuynck, Jan Broeckhove, Frans Arickx
1997 conf
PVM/MPI
Kris Demuynck, Jan Broeckhove, Frans Arickx
1996 conf
HPCN Europe
Kris Demuynck, Jan Broeckhove, Frans Arickx
tests/unit/test_apk_code_analyzer.py
← Index tests/unit/test_apk_code_analyzer.py python
"""
Unit tests for APK code analysis components.

Tests APKCodeAnalyzer, LibraryFilter, SmaliParser, method enumeration,
library filtering, and method key matching. All external tools are mocked.
"""
import os
import tempfile
import textwrap

import pytest
from unittest.mock import MagicMock, patch, PropertyMock

pytestmark = [pytest.mark.unit, pytest.mark.apk, pytest.mark.decompile]


def _has_mmh3():
    try:
        import mmh3  # noqa: F401
        return True
    except ImportError:
        return False


# ============================================================================
# LibraryFilter Tests
# ============================================================================

class TestLibraryFilter:
    """Tests for package-based library filtering."""

    def test_default_prefixes_loaded(self):
        from redb.extractors.decompiler.apk.library_filter import LibraryFilter
        lf = LibraryFilter()
        assert lf.is_library("android.app.Activity")
        assert lf.is_library("androidx.core.app.NotificationCompat")

    def test_user_class_not_filtered(self):
        from redb.extractors.decompiler.apk.library_filter import LibraryFilter
        lf = LibraryFilter()
        assert not lf.is_library("com.example.myapp.MainActivity")
        assert not lf.is_library("org.myorg.MyClass")

    def test_dalvik_descriptor_format(self):
        from redb.extractors.decompiler.apk.library_filter import LibraryFilter
        lf = LibraryFilter()
        assert lf.is_library("Landroid/app/Activity;")
        assert lf.is_library("Landroidx/core/app/NotificationCompat;")
        assert not lf.is_library("Lcom/example/myapp/MainActivity;")

    def test_custom_prefixes(self):
        from redb.extractors.decompiler.apk.library_filter import LibraryFilter
        lf = LibraryFilter(prefixes=["com.custom."])
        assert lf.is_library("com.custom.SomeClass")
        assert not lf.is_library("android.app.Activity")

    def test_env_var_override(self):
        from redb.extractors.decompiler.apk.library_filter import LibraryFilter
        with patch.dict(os.environ, {"APK_LIBRARY_PREFIXES": "my.lib.,other.lib."}):
            lf = LibraryFilter()
            assert lf.is_library("my.lib.SomeClass")
            assert lf.is_library("other.lib.AnotherClass")
            assert not lf.is_library("android.app.Activity")

    def test_filter_stats(self):
        from redb.extractors.decompiler.apk.library_filter import LibraryFilter
        lf = LibraryFilter()
        lf.is_library("android.app.Activity")
        lf.is_library("com.example.MyClass")
        lf.is_library("kotlin.Unit")
        stats = lf.get_filter_stats()
        assert stats["library"] == 2
        assert stats["user"] == 1

    def test_normalize_class_name(self):
        from redb.extractors.decompiler.apk.library_filter import LibraryFilter
        assert LibraryFilter._normalize_class_name("Lcom/example/Foo;") == "com.example.Foo"
        assert LibraryFilter._normalize_class_name("com.example.Foo") == "com.example.Foo"
        assert LibraryFilter._normalize_class_name("com/example/Foo") == "com.example.Foo"

    def test_google_libraries_filtered(self):
        from redb.extractors.decompiler.apk.library_filter import LibraryFilter
        lf = LibraryFilter()
        assert lf.is_library("com.google.android.gms.ads.AdView")
        assert lf.is_library("com.google.firebase.messaging.FirebaseMessagingService")
        assert lf.is_library("com.google.gson.Gson")

    def test_kotlin_filtered(self):
        from redb.extractors.decompiler.apk.library_filter import LibraryFilter
        lf = LibraryFilter()
        assert lf.is_library("kotlin.Unit")
        assert lf.is_library("kotlinx.coroutines.CoroutineScope")

    def test_third_party_libs_filtered(self):
        from redb.extractors.decompiler.apk.library_filter import LibraryFilter
        lf = LibraryFilter()
        assert lf.is_library("com.squareup.okhttp3.OkHttpClient")
        assert lf.is_library("io.reactivex.Observable")
        assert lf.is_library("org.apache.commons.io.IOUtils")

    def test_empty_class_name(self):
        from redb.extractors.decompiler.apk.library_filter import LibraryFilter
        lf = LibraryFilter()
        assert not lf.is_library("")


# ============================================================================
# SmaliParser Tests
# ============================================================================

class TestSmaliParser:
    """Tests for smali file parsing."""

    SAMPLE_SMALI = textwrap.dedent("""\
        .class public Lcom/example/MyClass;
        .super Ljava/lang/Object;

        .method public constructor <init>()V
            .registers 1
            invoke-direct {p0}, Ljava/lang/Object;-><init>()V
            return-void
        .end method

        .method public onCreate(Landroid/os/Bundle;)V
            .registers 4
            .param p1, "savedInstanceState"

            .line 10
            invoke-super {p0, p1}, Landroid/app/Activity;->onCreate(Landroid/os/Bundle;)V
            const/high16 v0, 0x7f090000
            invoke-virtual {p0, v0}, Lcom/example/MyClass;->setContentView(I)V
            const-string v1, "hello"
            invoke-virtual {p0, v1}, Lcom/example/MyClass;->log(Ljava/lang/String;)V
            return-void
        .end method

        .method public abstract doSomething()V
        .end method

        .method public native nativeMethod()V
        .end method
    """)

    def test_parse_smali_content(self):
        from redb.extractors.decompiler.apk.smali_parser import SmaliParser
        methods = SmaliParser._parse_smali_content(self.SAMPLE_SMALI)
        # abstract and native should be skipped
        assert len(methods) == 2

    def test_method_names_extracted(self):
        from redb.extractors.decompiler.apk.smali_parser import SmaliParser
        methods = SmaliParser._parse_smali_content(self.SAMPLE_SMALI)
        names = {m.method_name for m in methods}
        assert "<init>" in names
        assert "onCreate" in names

    def test_class_name_extracted(self):
        from redb.extractors.decompiler.apk.smali_parser import SmaliParser
        methods = SmaliParser._parse_smali_content(self.SAMPLE_SMALI)
        for m in methods:
            assert m.class_name == "Lcom/example/MyClass;"

    def test_method_signature(self):
        from redb.extractors.decompiler.apk.smali_parser import SmaliParser
        methods = SmaliParser._parse_smali_content(self.SAMPLE_SMALI)
        oncreate = [m for m in methods if m.method_name == "onCreate"][0]
        assert oncreate.method_signature == "(Landroid/os/Bundle;)V"

    def test_instruction_count(self):
        from redb.extractors.decompiler.apk.smali_parser import SmaliParser
        methods = SmaliParser._parse_smali_content(self.SAMPLE_SMALI)
        oncreate = [m for m in methods if m.method_name == "onCreate"][0]
        # invoke-super, const/high16, invoke-virtual, const-string, invoke-virtual, return-void
        assert oncreate.instruction_count == 6

    def test_register_count(self):
        from redb.extractors.decompiler.apk.smali_parser import SmaliParser
        methods = SmaliParser._parse_smali_content(self.SAMPLE_SMALI)
        oncreate = [m for m in methods if m.method_name == "onCreate"][0]
        assert oncreate.register_count == 4

    def test_register_count_locals_directive(self):
        """apktool outputs .locals by default, not .registers."""
        from redb.extractors.decompiler.apk.smali_parser import SmaliParser
        smali_with_locals = textwrap.dedent("""\
            .class public Lcom/example/Locals;
            .super Ljava/lang/Object;

            .method public doWork()V
                .locals 3
                const/4 v0, 0x0
                const/4 v1, 0x1
                add-int v2, v0, v1
                return-void
            .end method
        """)
        methods = SmaliParser._parse_smali_content(smali_with_locals)
        assert len(methods) == 1
        assert methods[0].register_count == 3

    def test_abstract_native_skipped(self):
        from redb.extractors.decompiler.apk.smali_parser import SmaliParser
        methods = SmaliParser._parse_smali_content(self.SAMPLE_SMALI)
        names = {m.method_name for m in methods}
        assert "doSomething" not in names
        assert "nativeMethod" not in names

    def test_normalize_smali_body(self):
        from redb.extractors.decompiler.apk.smali_parser import SmaliParser
        body = textwrap.dedent("""\
            .registers 4
            .line 10
            # comment
            invoke-super {p0, p1}, Landroid/app/Activity;->onCreate(Landroid/os/Bundle;)V

            const-string v1, "hello"
        """)
        normalized = SmaliParser.normalize_smali_body(body)
        assert ".line" not in normalized
        assert "# comment" not in normalized
        assert "invoke-super" in normalized
        assert "const-string" in normalized

    def test_count_instructions(self):
        from redb.extractors.decompiler.apk.smali_parser import SmaliParser
        body = textwrap.dedent("""\
            .registers 4
            .param p1, "x"
            invoke-virtual {p0}, Lcom/example/Foo;->bar()V
            const/4 v0, 0x0
            :label_0
            if-eqz v0, :label_1
            return-void
            :label_1
            goto :label_0
        """)
        assert SmaliParser.count_instructions(body) == 5

    def test_make_method_key(self):
        from redb.extractors.decompiler.apk.smali_parser import SmaliParser
        key = SmaliParser.make_method_key(
            "Lcom/example/Foo;", "bar", "(I)V"
        )
        assert key == "Lcom/example/Foo;->bar(I)V"

    def test_parse_smali_file(self):
        from redb.extractors.decompiler.apk.smali_parser import SmaliParser
        with tempfile.NamedTemporaryFile(
            mode="w", suffix=".smali", delete=False
        ) as f:
            f.write(self.SAMPLE_SMALI)
            f.flush()
            try:
                methods = SmaliParser.parse_smali_file(f.name)
                assert len(methods) == 2
            finally:
                os.unlink(f.name)

    def test_parse_smali_directory(self):
        from redb.extractors.decompiler.apk.smali_parser import SmaliParser
        with tempfile.TemporaryDirectory() as tmpdir:
            # Create nested dir structure
            pkg_dir = os.path.join(tmpdir, "com", "example")
            os.makedirs(pkg_dir)
            with open(os.path.join(pkg_dir, "MyClass.smali"), "w") as f:
                f.write(self.SAMPLE_SMALI)

            result = SmaliParser.parse_smali_directory(tmpdir)
            assert len(result) == 2
            # Check keys are in expected format
            for key in result:
                assert "->" in key

    def test_empty_smali_file(self):
        from redb.extractors.decompiler.apk.smali_parser import SmaliParser
        methods = SmaliParser._parse_smali_content("")
        assert methods == []

    def test_class_only_no_methods(self):
        from redb.extractors.decompiler.apk.smali_parser import SmaliParser
        content = ".class public Lcom/example/Empty;\n.super Ljava/lang/Object;\n"
        methods = SmaliParser._parse_smali_content(content)
        assert methods == []


# ============================================================================
# MethodExtractor Tests (Hashing, Obfuscation, Type Conversion)
# ============================================================================

class TestMethodExtractor:
    """Tests for method-level content extraction and hashing."""

    def test_compute_sha256(self):
        from redb.extractors.decompiler.apk.method_extractor import compute_sha256
        h = compute_sha256("test content")
        assert len(h) == 64
        assert h == compute_sha256("test content")  # deterministic

    def test_compute_sha256_different_input(self):
        from redb.extractors.decompiler.apk.method_extractor import compute_sha256
        assert compute_sha256("a") != compute_sha256("b")

    def test_compute_ssdeep_short_input(self):
        from redb.extractors.decompiler.apk.method_extractor import compute_ssdeep
        result = compute_ssdeep("short")
        assert result is None

    def test_compute_ssdeep_long_input(self):
        from redb.extractors.decompiler.apk.method_extractor import compute_ssdeep
        result = compute_ssdeep("x" * 200)
        # May be None depending on entropy, but shouldn't crash
        assert result is None or isinstance(result, str)

    def test_compute_tlsh_short_input(self):
        from redb.extractors.decompiler.apk.method_extractor import compute_tlsh
        result = compute_tlsh("short")
        assert result is None

    def test_compute_tlsh_long_input(self):
        from redb.extractors.decompiler.apk.method_extractor import compute_tlsh
        data = "".join(chr(i % 256) for i in range(200))
        result = compute_tlsh(data)
        assert result is None or isinstance(result, str)

    def test_compute_minhash_returns_none_without_mmh3(self):
        from unittest.mock import patch
        from redb.extractors.decompiler.apk.method_extractor import compute_minhash
        with patch.dict("sys.modules", {"mmh3": None}):
            # Force reimport to hit ImportError
            import importlib
            import redb.extractors.decompiler.apk.method_extractor as mod
            importlib.reload(mod)
            result = mod.compute_minhash("line1\nline2\nline3\nline4")
            # mmh3 may or may not be available; just check it doesn't crash
            assert result is None or isinstance(result, list)
            importlib.reload(mod)  # restore

    def test_compute_minhash_too_few_lines(self):
        from redb.extractors.decompiler.apk.method_extractor import compute_minhash
        result = compute_minhash("invoke-direct {v0}, Lfoo;->bar()V")
        # Only 1 instruction line, need at least 3 for 3-grams
        assert result is None

    @pytest.mark.skipif(
        not _has_mmh3(), reason="mmh3 not installed"
    )
    def test_compute_minhash_deterministic(self):
        from redb.extractors.decompiler.apk.method_extractor import compute_minhash
        smali = (
            "invoke-direct {v1}, Ljava/lang/Object;-><init>()V\n"
            "const-string v0, \"hello\"\n"
            "iput-object v0, v1, LA;->a:Ljava/lang/String;\n"
            "return-void"
        )
        sig1 = compute_minhash(smali)
        sig2 = compute_minhash(smali)
        assert sig1 is not None
        assert sig1 == sig2

    @pytest.mark.skipif(
        not _has_mmh3(), reason="mmh3 not installed"
    )
    def test_compute_minhash_signature_length(self):
        from redb.extractors.decompiler.apk.method_extractor import compute_minhash
        smali = (
            "invoke-direct {v1}, Ljava/lang/Object;-><init>()V\n"
            "const-string v0, \"hello\"\n"
            "iput-object v0, v1, LA;->a:Ljava/lang/String;\n"
            "return-void"
        )
        sig = compute_minhash(smali)
        assert sig is not None
        assert len(sig) == 64  # SIGNATURE_LENGTH

    @pytest.mark.skipif(
        not _has_mmh3(), reason="mmh3 not installed"
    )
    def test_compute_minhash_value_range(self):
        from redb.extractors.decompiler.apk.method_extractor import compute_minhash
        smali = (
            "invoke-direct {v1}, Ljava/lang/Object;-><init>()V\n"
            "const-string v0, \"hello\"\n"
            "iput-object v0, v1, LA;->a:Ljava/lang/String;\n"
            "return-void"
        )
        sig = compute_minhash(smali)
        assert sig is not None
        for val in sig:
            assert 0 <= val < 256  # 8-bit values

    @pytest.mark.skipif(
        not _has_mmh3(), reason="mmh3 not installed"
    )
    def test_compute_minhash_different_inputs_differ(self):
        from redb.extractors.decompiler.apk.method_extractor import compute_minhash
        smali_a = (
            "invoke-direct {v1}, Ljava/lang/Object;-><init>()V\n"
            "const-string v0, \"hello\"\n"
            "iput-object v0, v1, LA;->a:Ljava/lang/String;\n"
            "return-void"
        )
        smali_b = (
            "sget-object v0, Ljava/lang/System;->out:Ljava/io/PrintStream;\n"
            "const-string v1, \"world\"\n"
            "invoke-virtual {v0, v1}, Ljava/io/PrintStream;->println(Ljava/lang/String;)V\n"
            "return-void"
        )
        sig_a = compute_minhash(smali_a)
        sig_b = compute_minhash(smali_b)
        assert sig_a is not None
        assert sig_b is not None
        assert sig_a != sig_b

    @pytest.mark.skipif(
        not _has_mmh3(), reason="mmh3 not installed"
    )
    def test_compute_minhash_skips_directives_and_labels(self):
        from redb.extractors.decompiler.apk.method_extractor import compute_minhash
        # Directives and labels should be filtered out
        smali = (
            ".registers 3\n"
            ":start\n"
            "invoke-direct {v1}, Ljava/lang/Object;-><init>()V\n"
            ".line 10\n"
            "const-string v0, \"hello\"\n"
            "iput-object v0, v1, LA;->a:Ljava/lang/String;\n"
            "return-void"
        )
        smali_clean = (
            "invoke-direct {v1}, Ljava/lang/Object;-><init>()V\n"
            "const-string v0, \"hello\"\n"
            "iput-object v0, v1, LA;->a:Ljava/lang/String;\n"
            "return-void"
        )
        sig_with_directives = compute_minhash(smali)
        sig_clean = compute_minhash(smali_clean)
        assert sig_with_directives == sig_clean

    def test_dalvik_to_java_class(self):
        from redb.extractors.decompiler.apk.method_extractor import dalvik_to_java_class
        assert dalvik_to_java_class("Lcom/example/Foo;") == "com.example.Foo"
        assert dalvik_to_java_class("com.example.Foo") == "com.example.Foo"

    def test_dalvik_type_to_java(self):
        from redb.extractors.decompiler.apk.method_extractor import dalvik_type_to_java
        assert dalvik_type_to_java("V") == "void"
        assert dalvik_type_to_java("I") == "int"
        assert dalvik_type_to_java("Z") == "boolean"
        assert dalvik_type_to_java("Ljava/lang/String;") == "String"
        assert dalvik_type_to_java("[I") == "int[]"
        assert dalvik_type_to_java("[Ljava/lang/String;") == "String[]"

    def test_dalvik_to_java_prototype(self):
        from redb.extractors.decompiler.apk.method_extractor import dalvik_to_java_prototype
        result = dalvik_to_java_prototype("onCreate", "(Landroid/os/Bundle;)V")
        assert result == "void onCreate(Bundle)"

    def test_dalvik_to_java_prototype_no_params(self):
        from redb.extractors.decompiler.apk.method_extractor import dalvik_to_java_prototype
        result = dalvik_to_java_prototype("toString", "()Ljava/lang/String;")
        assert result == "String toString()"

    def test_dalvik_to_java_prototype_multiple_params(self):
        from redb.extractors.decompiler.apk.method_extractor import dalvik_to_java_prototype
        result = dalvik_to_java_prototype("foo", "(ILjava/lang/String;Z)V")
        assert result == "void foo(int, String, boolean)"

    def test_detect_obfuscation_short_name(self):
        from redb.extractors.decompiler.apk.method_extractor import detect_obfuscation_indicators
        result = detect_obfuscation_indicators("a", "Lcom/example/Foo;", "", 10)
        assert result["short_method_name"] is True
        result = detect_obfuscation_indicators("onCreate", "Lcom/example/Foo;", "", 10)
        assert result["short_method_name"] is False

    def test_detect_obfuscation_short_class(self):
        from redb.extractors.decompiler.apk.method_extractor import detect_obfuscation_indicators
        result = detect_obfuscation_indicators("foo", "Lcom/example/a;", "", 10)
        assert result["short_class_name"] is True
        result = detect_obfuscation_indicators("foo", "Lcom/example/MainActivity;", "", 10)
        assert result["short_class_name"] is False

    def test_detect_reflection_calls(self):
        from redb.extractors.decompiler.apk.method_extractor import detect_obfuscation_indicators
        smali = "invoke-virtual {v0}, Ljava/lang/reflect/Method;->invoke(Ljava/lang/Object;[Ljava/lang/Object;)Ljava/lang/Object;"
        result = detect_obfuscation_indicators("foo", "Lcom/Foo;", smali, 10)
        assert result["has_reflection_calls"] is True

    def test_detect_no_reflection(self):
        from redb.extractors.decompiler.apk.method_extractor import detect_obfuscation_indicators
        smali = "invoke-virtual {p0}, Lcom/example/Foo;->bar()V"
        result = detect_obfuscation_indicators("foo", "Lcom/Foo;", smali, 10)
        assert result["has_reflection_calls"] is False

    def test_detect_string_encryption(self):
        from redb.extractors.decompiler.apk.method_extractor import detect_obfuscation_indicators
        smali = 'const-string v0, "encrypted"\n    invoke-static {v0}, Lcom/example/Crypto;->decrypt(Ljava/lang/String;)Ljava/lang/String;'
        result = detect_obfuscation_indicators("foo", "Lcom/Foo;", smali, 10)
        assert result["has_string_encryption"] is True

    def test_detect_excessive_goto(self):
        from redb.extractors.decompiler.apk.method_extractor import detect_obfuscation_indicators
        smali = "\n".join(["goto :label_0"] * 20)
        result = detect_obfuscation_indicators("foo", "Lcom/Foo;", smali, 30)
        # threshold = max(5, 30*0.15) = 5, 20 > 5
        assert result["excessive_goto_count"] is True

    def test_detect_no_excessive_goto(self):
        from redb.extractors.decompiler.apk.method_extractor import detect_obfuscation_indicators
        smali = "goto :label_0\nreturn-void"
        result = detect_obfuscation_indicators("foo", "Lcom/Foo;", smali, 100)
        assert result["excessive_goto_count"] is False

    def test_parse_dalvik_params_empty(self):
        from redb.extractors.decompiler.apk.method_extractor import _parse_dalvik_params
        assert _parse_dalvik_params("") == []

    def test_parse_dalvik_params_primitives(self):
        from redb.extractors.decompiler.apk.method_extractor import _parse_dalvik_params
        result = _parse_dalvik_params("IZJ")
        assert result == ["I", "Z", "J"]

    def test_parse_dalvik_params_object(self):
        from redb.extractors.decompiler.apk.method_extractor import _parse_dalvik_params
        result = _parse_dalvik_params("Ljava/lang/String;")
        assert result == ["Ljava/lang/String;"]

    def test_parse_dalvik_params_mixed(self):
        from redb.extractors.decompiler.apk.method_extractor import _parse_dalvik_params
        result = _parse_dalvik_params("ILjava/lang/String;Z")
        assert result == ["I", "Ljava/lang/String;", "Z"]

    def test_parse_dalvik_params_array(self):
        from redb.extractors.decompiler.apk.method_extractor import _parse_dalvik_params
        result = _parse_dalvik_params("[I[Ljava/lang/String;")
        assert result == ["[I", "[Ljava/lang/String;"]


# ============================================================================
# APKCodeAnalyzer Tests (mocked tools)
# ============================================================================

class TestAPKCodeAnalyzer:
    """Tests for the APKCodeAnalyzer orchestration."""

    def test_init_defaults(self):
        from redb.extractors.decompiler.apk.analyzer import APKCodeAnalyzer
        analyzer = APKCodeAnalyzer("/fake/path.apk")
        assert analyzer.filepath == "/fake/path.apk"
        assert analyzer.timeout == 600
        assert analyzer.min_instructions == 5

    def test_init_custom_timeout(self):
        from redb.extractors.decompiler.apk.analyzer import APKCodeAnalyzer
        analyzer = APKCodeAnalyzer("/fake/path.apk", timeout=300)
        assert analyzer.timeout == 300

    def test_init_min_instructions_env(self):
        from redb.extractors.decompiler.apk.analyzer import APKCodeAnalyzer
        with patch.dict(os.environ, {"APK_MIN_METHOD_INSTRUCTIONS": "10"}):
            analyzer = APKCodeAnalyzer("/fake/path.apk")
            assert analyzer.min_instructions == 10

    @patch("redb.extractors.decompiler.apk.analyzer.APKCodeAnalyzer._run_androguard")
    @patch.object(
        __import__("redb.extractors.decompiler.apk.apktool_wrapper", fromlist=["ApktoolDisassembler"]).ApktoolDisassembler,
        "disassemble",
        return_value=False,
    )
    @patch.object(
        __import__("redb.extractors.decompiler.apk.jadx_wrapper", fromlist=["JADXDecompiler"]).JADXDecompiler,
        "decompile",
        return_value=False,
    )
    def test_extract_returns_dict_keys(self, mock_jadx, mock_apktool, mock_androguard):
        from redb.extractors.decompiler.apk.analyzer import APKCodeAnalyzer
        mock_analysis = MagicMock()
        mock_analysis.get_methods.return_value = []
        mock_androguard.return_value = (MagicMock(), [], mock_analysis)

        analyzer = APKCodeAnalyzer("/fake/path.apk", log=MagicMock())
        results = analyzer.extract()

        assert "decompiled_content" in results
        assert "decompiled_refs" in results
        assert "smali_content" in results
        assert "smali_refs" in results
        assert "similarity_metrics" in results
        assert "strings" in results
        assert "analysis_errors" in results
        analyzer.cleanup()

    @patch("redb.extractors.decompiler.apk.analyzer.APKCodeAnalyzer._run_androguard")
    def test_extract_androguard_failure(self, mock_androguard):
        from redb.extractors.decompiler.apk.analyzer import APKCodeAnalyzer
        mock_androguard.side_effect = Exception("Analysis failed")

        analyzer = APKCodeAnalyzer("/fake/path.apk", log=MagicMock())
        results = analyzer.extract()

        assert len(results["analysis_errors"]) > 0
        analyzer.cleanup()

    def test_cleanup_removes_temp_dirs(self):
        from redb.extractors.decompiler.apk.analyzer import APKCodeAnalyzer
        analyzer = APKCodeAnalyzer("/fake/path.apk")
        tmpdir = tempfile.mkdtemp()
        analyzer._temp_dirs.append(tmpdir)
        assert os.path.isdir(tmpdir)
        analyzer.cleanup()
        assert not os.path.isdir(tmpdir)

    def test_normalize_java(self):
        from redb.extractors.decompiler.apk.analyzer import _normalize_java
        source = "  public void foo() {\n    int x = 1;\n  }\n"
        normalized = _normalize_java(source)
        assert normalized == "public void foo() {\nint x = 1;\n}"


class TestNormalizeAndroguardOperands:
    """Tests for androguard-to-apktool output normalization."""

    def test_invoke_adds_braces(self):
        from redb.extractors.decompiler.apk.analyzer import _normalize_androguard_operands
        result = _normalize_androguard_operands(
            "invoke-direct",
            "v1, Ljava/lang/Object;-><init>()V"
        )
        assert result == "{v1}, Ljava/lang/Object;-><init>()V"

    def test_invoke_virtual_multiple_regs(self):
        from redb.extractors.decompiler.apk.analyzer import _normalize_androguard_operands
        result = _normalize_androguard_operands(
            "invoke-virtual",
            "v0, v1, Ljava/lang/String;->equals(Ljava/lang/Object;)Z"
        )
        assert result == "{v0, v1}, Ljava/lang/String;->equals(Ljava/lang/Object;)Z"

    def test_invoke_static_no_regs(self):
        from redb.extractors.decompiler.apk.analyzer import _normalize_androguard_operands
        # invoke-static with no register args (rare but possible)
        result = _normalize_androguard_operands(
            "invoke-static",
            "Ljava/lang/System;->gc()V"
        )
        # First part starts with L, so no registers to wrap
        assert result == "Ljava/lang/System;->gc()V"

    def test_invoke_range(self):
        from redb.extractors.decompiler.apk.analyzer import _normalize_androguard_operands
        result = _normalize_androguard_operands(
            "invoke-virtual/range",
            "v3, v4, v5, Landroid/util/Log;->d(Ljava/lang/String; Ljava/lang/String;)I"
        )
        assert result == "{v3, v4, v5}, Landroid/util/Log;->d(Ljava/lang/String; Ljava/lang/String;)I"

    def test_iget_field_colon(self):
        from redb.extractors.decompiler.apk.analyzer import _normalize_androguard_operands
        result = _normalize_androguard_operands(
            "iget-object",
            "v0, v4, LF;->a Ljava/lang/String;"
        )
        assert result == "v0, v4, LF;->a:Ljava/lang/String;"

    def test_iput_field_colon(self):
        from redb.extractors.decompiler.apk.analyzer import _normalize_androguard_operands
        result = _normalize_androguard_operands(
            "iput-object",
            "v0, v1, LA;->b Ljava/lang/String;"
        )
        assert result == "v0, v1, LA;->b:Ljava/lang/String;"

    def test_sget_primitive_field(self):
        from redb.extractors.decompiler.apk.analyzer import _normalize_androguard_operands
        result = _normalize_androguard_operands(
            "sget",
            "v0, Lcom/Foo;->count I"
        )
        assert result == "v0, Lcom/Foo;->count:I"

    def test_sput_array_field(self):
        from redb.extractors.decompiler.apk.analyzer import _normalize_androguard_operands
        result = _normalize_androguard_operands(
            "sput-object",
            "v0, Lcom/Foo;->data [B"
        )
        assert result == "v0, Lcom/Foo;->data:[B"

    def test_non_invoke_non_field_passthrough(self):
        from redb.extractors.decompiler.apk.analyzer import _normalize_androguard_operands
        result = _normalize_androguard_operands(
            "const-string",
            'v0, "hello world"'
        )
        assert result == 'v0, "hello world"'

    def test_move_passthrough(self):
        from redb.extractors.decompiler.apk.analyzer import _normalize_androguard_operands
        result = _normalize_androguard_operands("move", "v0, v4")
        assert result == "v0, v4"

    def test_goto_passthrough(self):
        from redb.extractors.decompiler.apk.analyzer import _normalize_androguard_operands
        result = _normalize_androguard_operands("goto", "+005h")
        assert result == "+005h"


class TestSmaliCFG:
    """Tests for smali CFG construction and metrics computation."""

    def test_empty_body(self):
        from redb.extractors.decompiler.apk.smali_cfg import compute_cfg_metrics
        m = compute_cfg_metrics("")
        assert m.block_count == 0
        assert m.cyclomatic_complexity == 1

    def test_linear_method_apktool(self):
        """Single basic block — no branches."""
        from redb.extractors.decompiler.apk.smali_cfg import compute_cfg_metrics
        smali = textwrap.dedent("""\
            .registers 2
            invoke-direct {v1}, Ljava/lang/Object;-><init>()V
            const-string v0, "hello"
            iput-object v0, v1, LA;->a:Ljava/lang/String;
            return-void
        """)
        m = compute_cfg_metrics(smali)
        assert m.block_count == 1
        assert m.edge_count == 0
        assert m.cyclomatic_complexity == 1
        assert m.loop_count == 0
        assert m.max_depth == 0
        assert m.max_fan_out == 0

    def test_linear_method_androguard(self):
        """Single basic block — androguard format (no labels/directives)."""
        from redb.extractors.decompiler.apk.smali_cfg import compute_cfg_metrics
        smali = (
            "    invoke-direct {v1}, Ljava/lang/Object;-><init>()V\n"
            "    const-string v0, \"hello\"\n"
            "    iput-object v0, v1, LA;->a:Ljava/lang/String;\n"
            "    return-void"
        )
        m = compute_cfg_metrics(smali)
        assert m.block_count == 1
        assert m.edge_count == 0
        assert m.cyclomatic_complexity == 1

    def test_if_branch_apktool(self):
        """Diamond pattern: if-else with two paths merging."""
        from redb.extractors.decompiler.apk.smali_cfg import compute_cfg_metrics
        smali = textwrap.dedent("""\
            .registers 2
            const/4 v0, 0x0
            if-eqz v0, :cond_0
            const/4 v0, 0x1
            goto :goto_0
            :cond_0
            const/4 v0, 0x2
            :goto_0
            return v0
        """)
        m = compute_cfg_metrics(smali)
        # Blocks: [const,if] [const,goto] [const] [return]
        assert m.block_count == 4
        assert m.cyclomatic_complexity == 2  # E - N + 2
        assert m.loop_count == 0
        assert m.max_fan_out == 2  # if-branch has 2 successors

    def test_loop_apktool(self):
        """Simple loop: goto back to earlier label."""
        from redb.extractors.decompiler.apk.smali_cfg import compute_cfg_metrics
        smali = textwrap.dedent("""\
            .registers 2
            const/4 v0, 0x0
            :loop_start
            add-int/lit8 v0, v0, 0x1
            const/16 v1, 0xa
            if-lt v0, v1, :loop_start
            return v0
        """)
        m = compute_cfg_metrics(smali)
        assert m.loop_count == 1  # back edge from if-lt to loop_start
        assert m.cyclomatic_complexity >= 2

    def test_if_branch_androguard(self):
        """If-else in androguard offset format."""
        from redb.extractors.decompiler.apk.smali_cfg import compute_cfg_metrics
        smali = (
            "    const/4 v0, 0x0\n"
            "    if-eqz v0, +2h\n"        # skip 2 instructions ahead
            "    const/4 v0, 0x1\n"
            "    goto +1h\n"               # skip 1 ahead
            "    const/4 v0, 0x2\n"
            "    return v0"
        )
        m = compute_cfg_metrics(smali)
        assert m.block_count >= 3
        assert m.cyclomatic_complexity >= 2

    def test_multiple_if_branches(self):
        """Multiple if-branches increase cyclomatic complexity."""
        from redb.extractors.decompiler.apk.smali_cfg import compute_cfg_metrics
        smali = textwrap.dedent("""\
            .registers 3
            if-eqz v0, :cond_0
            if-eqz v1, :cond_1
            const/4 v2, 0x0
            goto :end
            :cond_0
            const/4 v2, 0x1
            goto :end
            :cond_1
            const/4 v2, 0x2
            :end
            return v2
        """)
        m = compute_cfg_metrics(smali)
        # Two if-branches: CC should be >= 3
        assert m.cyclomatic_complexity >= 3

    def test_return_terminates_block(self):
        """Return instruction terminates block with no successor."""
        from redb.extractors.decompiler.apk.smali_cfg import compute_cfg_metrics
        smali = textwrap.dedent("""\
            .registers 1
            const/4 v0, 0x0
            return v0
        """)
        m = compute_cfg_metrics(smali)
        assert m.block_count == 1
        assert m.edge_count == 0

    def test_throw_terminates_block(self):
        """Throw instruction terminates block with no successor."""
        from redb.extractors.decompiler.apk.smali_cfg import compute_cfg_metrics
        smali = textwrap.dedent("""\
            .registers 1
            new-instance v0, Ljava/lang/RuntimeException;
            invoke-direct {v0}, Ljava/lang/RuntimeException;-><init>()V
            throw v0
        """)
        m = compute_cfg_metrics(smali)
        assert m.block_count == 1
        assert m.edge_count == 0

    def test_max_depth_linear_chain(self):
        """Chain of blocks gives increasing depth."""
        from redb.extractors.decompiler.apk.smali_cfg import compute_cfg_metrics
        # 3 blocks chained: entry -> if -> fall-through -> return
        smali = textwrap.dedent("""\
            .registers 2
            const/4 v0, 0x0
            if-nez v0, :cond_0
            const/4 v0, 0x1
            :cond_0
            return v0
        """)
        m = compute_cfg_metrics(smali)
        assert m.max_depth >= 1

    def test_nested_loop_apktool(self):
        """Nested loop: two back edges."""
        from redb.extractors.decompiler.apk.smali_cfg import compute_cfg_metrics
        smali = textwrap.dedent("""\
            .registers 3
            const/4 v0, 0x0
            :outer
            const/4 v1, 0x0
            :inner
            add-int/lit8 v1, v1, 0x1
            if-lt v1, v2, :inner
            add-int/lit8 v0, v0, 0x1
            if-lt v0, v2, :outer
            return-void
        """)
        m = compute_cfg_metrics(smali)
        assert m.loop_count == 2

    def test_consistency_formula(self):
        """Verify E - N + 2 formula matches cyclomatic_complexity."""
        from redb.extractors.decompiler.apk.smali_cfg import compute_cfg_metrics
        smali = textwrap.dedent("""\
            .registers 2
            const/4 v0, 0x0
            if-eqz v0, :cond_0
            const/4 v0, 0x1
            goto :goto_0
            :cond_0
            const/4 v0, 0x2
            :goto_0
            return v0
        """)
        m = compute_cfg_metrics(smali)
        expected_cc = m.edge_count - m.block_count + 2
        assert m.cyclomatic_complexity == max(1, expected_cc)