Nadya Peek

55 papers A* 16A 5B 3Journal 9Unranked 19
YearRankTypeTitle / Venue / Authors
2026 A* conf
CHI
Blair Subbaraman, Nadya Peek
2025 A* conf
CHI
Gina Clepper, Emma J. McDonnell, Leah Findlater, Nadya Peek
2025 conf
SIGGRAPH Courses
Jennifer Jacobs, Emilie Yu, Mackenzie Leake, Nadya Peek, Hannah Twigg-Smith, Emily Whiting
2025 A* conf
CHI
Blair Subbaraman, Nathaneal Bursch, Nadya Peek
2024 A* conf
CHI
Hannah Twigg-Smith, Emily Whiting, Nadya Peek
2024 J jnl
ACM Trans. Comput. Hum. Interact.
Mare Hirsch, Gabrielle Benabdallah, Jennifer Jacobs, Nadya Peek
2024 conf
CHI Extended Abstracts
Blair Subbaraman, Nadya Peek
2024 A* conf
CHI
Jasper Tran O'Leary, Thrisha Ramesh, Octi Zhang, Nadya Peek
2024 A* conf
CHI
Gabrielle Benabdallah, Nadya Peek
2024 A* conf
UIST
Hannah Twigg-Smith, Yuecheng Peng, Emily Whiting, Nadya Peek
2023 A conf
Conference on Designing Interactive Systems
Blair Subbaraman, Nadya Peek
2023 A* conf
CHI
Danli Luo, Daniela K. Rosner, Nadya Peek
2023 A* conf
UIST
Hannah Twigg-Smith, Nadya Peek
2023 A conf
Conference on Designing Interactive Systems
Blair Subbaraman, Shenna Shim, Nadya Peek
2023 A* conf
CHI
Jasper Tran O'Leary, Gabrielle Benabdallah, Nadya Peek
2023 conf
SCF
Jake Robert Read, Nadya Peek, Neil Gershenfeld
2023 J jnl
XRDS
Jasper Tran O'Leary, Gabrielle Benabdallah, Nadya Peek
2023 A conf
Conference on Designing Interactive Systems
Frikk H. Fossdal, Vinh Nguyen, Rogardt Heldal, Corie L. Cobb, Nadya Peek
2022 A conf
Conference on Designing Interactive Systems
Orlando de Lange, Kellie Dunn, Nadya Peek
2022 J jnl
CoRR
Orlando de Lange, Kellie Dunn, Nadya Peek
2022 conf
SCF
Hannah Twigg-Smith, Nadya Peek
2022 conf
UIST (Adjunct Volume)
Hannah Twigg-Smith, Nadya Peek
2022 conf
SCF
Danli Luo, Nadya Peek
2022 conf
UIST (Adjunct Volume)
Danli Luo, Nadya Peek
2022 conf
SCF
Blair Subbaraman, Nadya Peek
2022 conf
UIST (Adjunct Volume)
Blair Subbaraman, Nadya Peek
2022 conf
SCF
Jasper Tran O'Leary, Eunice Jun, Nadya Peek
2022 ed.
SCF
Adriana Schulz, Jeffrey Lipton, Nadya Peek
2022 conf
SCF
Leo McElroy, Quentin Bolsée, Nadya Peek, Neil Gershenfeld
2022 A conf
Conference on Designing Interactive Systems
Blair Subbaraman, Nadya Peek
2022 J jnl
CoRR
Blair Subbaraman, Nadya Peek
2021 conf
CHI Extended Abstracts
Jasper Tran O'Leary, Khang Lee, Nadya Peek
2021 conf
SCF
Frikk H. Fossdal, Rogardt Heldal, Nadya Peek
2021 conf
CHI Extended Abstracts
Nadya Peek, Jennifer Jacobs, Wendy Ju, Neil Gershenfeld, Tom Igoe
2021 J jnl
IEEE Pervasive Comput.
Florian Michahelles, Nadya Peek, Simon Mayer
2021 A* conf
CHI
Gabrielle Benabdallah, Sam Bourgault, Nadya Peek, Jennifer Jacobs
2021 J jnl
CoRR
Gabrielle Benabdallah, Samuelle Bourgault, Nadya Peek, Jennifer Jacobs
2021 ed.
SCF
Emily Whiting, John Hart, Cynthia Sung, James McCann, Nadya Peek
2021 A* conf
UIST
Jasper Tran O'Leary, Chandrakana Nandi, Khang Lee, Nadya Peek
2021 A* conf
CHI
Hannah Twigg-Smith, Jasper Tran O'Leary, Nadya Peek
2020 J jnl
IEEE Pervasive Comput.
Frikk H. Fossdal, Jens Dyvik, Nadya Peek
2020 B conf
TEI
Frikk H. Fossdal, Jens Dyvik, Jakob Anders Nilsson, Jon Nordby, Torbjørn Nordvik Helgesen, Rogardt Heldal, Nadya Peek
2020 conf
CHI Extended Abstracts
Joshua Vasquez, Hannah Twigg-Smith, Jasper Tran O'Leary, Nadya Peek
2020 A* conf
CHI
Joshua Vasquez, Hannah Twigg-Smith, Jasper Tran O'Leary, Nadya Peek
2020 A* conf
UIST
Danny Leen, Nadya Peek, Raf Ramakers
2020 ed.
SCF
Emily Whiting, John Hart, Cynthia Sung, Nadya Peek, Masoud Akbarzadeh, Daniel Aukes, Adriana Schulz, Hayden Taylor, Jeeeun Kim
2019 conf
UIST (Adjunct Volume)
Jasper Tran O'Leary, Nadya Peek
2019 J jnl
IEEE Pervasive Comput.
Nadya Peek, Stefanie Mueller
2017 A* conf
CHI
Nadya Peek, James Coleman, Ilan E. Moyer, Neil Gershenfeld
2017 B conf
TEI
Nadya Peek, Ilan E. Moyer
2016 J jnl
XRDS
Stefanie Mueller, Nadya Peek
2015 conf
SIGGRAPH Studio
Nadya Peek, James Coleman
2015 conf
SIGGRAPH Studio
Nadya Peek, James Coleman
2009 B conf
TEI
Nadya Peek, David Pitman, Richard The
2007 conf
ESAW
Hylke Buisman, Gijs Kruitbosch, Nadya Peek, Ulle Endriss
tests/unit/test_decompile_modules.py
← Index tests/unit/test_decompile_modules.py python
"""
Unit tests for --decompile-modules flag.

Tests that:
1. CLI argument parsing and validation works correctly
2. decompile_modules is threaded through the entire call chain
3. BinaryNinjaDecompiler.analyze_binary() gates extractions per selected modules
4. DecompileBinja.prepare_export_data() filters DB tables per selected modules
"""
import os
import pytest
from unittest.mock import Mock, patch, MagicMock

pytestmark = [pytest.mark.unit]


# ============================================================================
# CLI Argument Parsing Tests
# ============================================================================

class TestDecompileModulesCliArgument:
    """Tests for --decompile-modules CLI argument parsing in start.py."""

    def _parse_args(self, args_list):
        """Helper to parse CLI args without running main()."""
        import argparse

        parser = argparse.ArgumentParser()
        input_group = parser.add_mutually_exclusive_group(required=True)
        input_group.add_argument("--path")
        input_group.add_argument("--s3", action="store_true")
        input_group.add_argument("--s3-solo", metavar="S3_KEY")
        input_group.add_argument("--nomad-job", action="store_true")
        input_group.add_argument("--date", metavar="YYYY-MM-DD")
        input_group.add_argument("--range", nargs=2)
        input_group.add_argument("--analyzed", action="store_true")

        parser.add_argument("--repo")
        parser.add_argument("--index_prefix", default="redb")
        parser.add_argument("-d", "--decompile", action="store_true")
        parser.add_argument("-m", "--modules", default="all")
        parser.add_argument("--decompile-modules", default="all")
        parser.add_argument("--force", action="store_true")
        parser.add_argument("--dry-run", action="store_true")

        return parser.parse_args(args_list)

    def test_decompile_modules_default_all(self):
        """--decompile-modules defaults to 'all'."""
        args = self._parse_args(["--path", "/tmp/test", "--repo", "test"])
        assert args.decompile_modules == "all"

    def test_decompile_modules_single(self):
        """--decompile-modules accepts a single module."""
        args = self._parse_args([
            "--path", "/tmp/test", "--repo", "test",
            "-d", "--decompile-modules", "strings"
        ])
        assert args.decompile_modules == "strings"

    def test_decompile_modules_comma_separated(self):
        """--decompile-modules accepts comma-separated modules."""
        args = self._parse_args([
            "--path", "/tmp/test", "--repo", "test",
            "-d", "--decompile-modules", "cfg,llil,strings"
        ])
        assert args.decompile_modules == "cfg,llil,strings"

    def test_decompile_modules_with_decompile_flag(self):
        """--decompile-modules works with -d flag."""
        args = self._parse_args([
            "--path", "/tmp/test", "--repo", "test",
            "-d", "--decompile-modules", "disassembly"
        ])
        assert args.decompile is True
        assert args.decompile_modules == "disassembly"


# ============================================================================
# Validation Tests
# ============================================================================

class TestDecompileModulesValidation:
    """Tests for --decompile-modules validation logic in start.py."""

    def test_valid_modules_set_parsing(self):
        """Valid comma-separated modules are parsed into a set."""
        VALID = {"all", "decompilation", "disassembly", "cfg", "llil", "strings"}
        raw = "cfg,llil,strings"
        modules_set = {m.strip() for m in raw.split(",")}
        invalid = modules_set - VALID
        assert invalid == set()
        assert modules_set == {"cfg", "llil", "strings"}

    def test_invalid_module_detected(self):
        """Invalid module names are detected."""
        VALID = {"all", "decompilation", "disassembly", "cfg", "llil", "strings"}
        raw = "cfg,invalid_module"
        modules_set = {m.strip() for m in raw.split(",")}
        invalid = modules_set - VALID
        assert invalid == {"invalid_module"}

    def test_all_keyword_as_set(self):
        """'all' is parsed into {'all'} set."""
        raw = "all"
        if raw == "all":
            modules_set = {"all"}
        assert modules_set == {"all"}

    def test_whitespace_handling(self):
        """Whitespace around module names is stripped."""
        raw = " cfg , llil , strings "
        modules_set = {m.strip() for m in raw.split(",")}
        assert modules_set == {"cfg", "llil", "strings"}


# ============================================================================
# Ingestor Parameter Storage Tests
# ============================================================================

class TestIngestorDecompileModules:
    """Tests that Ingestor stores decompile_modules correctly."""

    @patch('builtins.open', MagicMock())
    @patch('redb.ingestor.multiprocessing')
    @patch('redb.ingestor.datetime')
    def test_ingestor_stores_decompile_modules(self, mock_datetime, mock_mp):
        """Ingestor stores the decompile_modules set."""
        mock_mp.Manager.return_value.dict = Mock(side_effect=[{}, {}])
        mock_datetime.today.return_value.strftime.return_value = "20260222"

        from redb.ingestor import Ingestor
        ingestor = Ingestor(
            path="/tmp/test", repository="test", index_prefix="redb",
            decompile_modules={"cfg", "strings"}
        )
        assert ingestor.decompile_modules == {"cfg", "strings"}

    @patch('builtins.open', MagicMock())
    @patch('redb.ingestor.multiprocessing')
    @patch('redb.ingestor.datetime')
    def test_ingestor_defaults_to_all(self, mock_datetime, mock_mp):
        """Ingestor defaults decompile_modules to {'all'} when not provided."""
        mock_mp.Manager.return_value.dict = Mock(side_effect=[{}, {}])
        mock_datetime.today.return_value.strftime.return_value = "20260222"

        from redb.ingestor import Ingestor
        ingestor = Ingestor(
            path="/tmp/test", repository="test", index_prefix="redb"
        )
        assert ingestor.decompile_modules == {"all"}

    @patch('builtins.open', MagicMock())
    @patch('redb.ingestor.multiprocessing')
    @patch('redb.ingestor.datetime')
    def test_ingestor_none_defaults_to_all(self, mock_datetime, mock_mp):
        """Ingestor converts None decompile_modules to {'all'}."""
        mock_mp.Manager.return_value.dict = Mock(side_effect=[{}, {}])
        mock_datetime.today.return_value.strftime.return_value = "20260222"

        from redb.ingestor import Ingestor
        ingestor = Ingestor(
            path="/tmp/test", repository="test", index_prefix="redb",
            decompile_modules=None
        )
        assert ingestor.decompile_modules == {"all"}


# ============================================================================
# Function Chain Threading Tests
# ============================================================================

class TestDecompileModulesThreading:
    """Tests that decompile_modules is correctly threaded through the call chain."""

    @patch('redb.workers.process_binary_file')
    @patch('redb.workers.is_binary_file', return_value=True)
    def test_process_file_internal_passes_decompile_modules(self, mock_is_binary, mock_process):
        """_process_file_internal passes decompile_modules to process_binary_file."""
        from redb.ingestor import _process_file_internal

        mock_process.return_value = (Mock(), "pebin")
        logger = Mock()
        modules = {"cfg", "strings"}

        _process_file_internal(
            "/tmp/test.bin", False, "redb", logger,
            decompile_modules=modules
        )

        mock_process.assert_called_once()
        call_kwargs = mock_process.call_args[1]
        assert call_kwargs["decompile_modules"] == modules

    @patch('redb.workers.process_binary_file')
    @patch('redb.workers.is_binary_file', return_value=True)
    def test_process_file_internal_default_decompile_modules_none(self, mock_is_binary, mock_process):
        """_process_file_internal defaults decompile_modules to None."""
        from redb.ingestor import _process_file_internal

        mock_process.return_value = (Mock(), "pebin")
        logger = Mock()

        _process_file_internal("/tmp/test.bin", False, "redb", logger)

        call_kwargs = mock_process.call_args[1]
        assert call_kwargs["decompile_modules"] is None

    @patch('redb.workers._process_file_internal')
    def test_process_file_passes_decompile_modules(self, mock_internal):
        """process_file passes decompile_modules to _process_file_internal."""
        from redb.workers import process_file

        mock_internal.return_value = (Mock(), "pebin")
        modules = {"llil", "disassembly"}

        with patch('redb.workers.setup_direct_logger', return_value=Mock()):
            process_file(
                "/tmp/test.bin", False, "redb", "/tmp/log", 1, 1,
                decompile_modules=modules
            )

        mock_internal.assert_called_once()
        call_kwargs = mock_internal.call_args[1]
        assert call_kwargs["decompile_modules"] == modules

    @patch('redb.workers._process_file_internal')
    def test_process_s3_file_passes_decompile_modules(self, mock_internal):
        """process_s3_file passes decompile_modules to _process_file_internal."""
        from redb.workers import process_s3_file

        mock_internal.return_value = (Mock(), "pebin")
        modules = {"cfg"}

        with patch('redb.workers.setup_direct_logger', return_value=Mock()), \
             patch('redb.workers.download_s3_object', return_value="/tmp/downloaded.bin"):
            process_s3_file(
                "bucket", "key", "/tmp", False, "redb", "/tmp/log", 1, 1,
                decompile_modules=modules
            )

        mock_internal.assert_called_once()
        call_kwargs = mock_internal.call_args[1]
        assert call_kwargs["decompile_modules"] == modules

    @patch('redb.workers.process_binary_file')
    def test_process_zip_passes_decompile_modules(self, mock_process):
        """process_zip_file passes decompile_modules to process_binary_file."""
        from redb.workers import process_zip_file

        mock_process.return_value = (Mock(), "pebin")
        logger = Mock()
        modules = {"strings", "decompilation"}

        import tempfile
        import zipfile

        with tempfile.NamedTemporaryFile(suffix=".zip", delete=False) as tmp:
            tmp_path = tmp.name

        try:
            with zipfile.ZipFile(tmp_path, 'w') as zf:
                zf.writestr("test.bin", b"\x00" * 100)

            process_zip_file(
                tmp_path, False, "redb", logger, "all",
                decompile_modules=modules
            )

            mock_process.assert_called_once()
            call_kwargs = mock_process.call_args[1]
            assert call_kwargs["decompile_modules"] == modules
        finally:
            os.unlink(tmp_path)

    @patch('redb.workers.process_binary_file')
    def test_process_7zip_passes_decompile_modules(self, mock_process):
        """process_7zip_file passes decompile_modules to process_binary_file."""
        from redb.workers import process_7zip_file

        mock_process.return_value = (Mock(), "pebin")
        logger = Mock()
        modules = {"cfg", "llil"}

        with patch('redb.workers.py7zr') as mock_py7zr:
            mock_zf = Mock()
            mock_py7zr.SevenZipFile.return_value.__enter__ = Mock(return_value=mock_zf)
            mock_py7zr.SevenZipFile.return_value.__exit__ = Mock(return_value=False)

            def fake_extractall(path):
                dest = os.path.join(path, "test.bin")
                with open(dest, "wb") as f:
                    f.write(b"\x00" * 100)

            mock_zf.extractall = fake_extractall

            process_7zip_file(
                "/tmp/test.7z", False, "redb", logger, "all",
                decompile_modules=modules
            )

            if mock_process.called:
                call_kwargs = mock_process.call_args[1]
                assert call_kwargs["decompile_modules"] == modules

    def test_worker_unpacks_decompile_modules(self):
        """worker() correctly unpacks decompile_modules from args tuple."""
        from redb.workers import worker

        modules = {"strings", "cfg"}

        with patch('redb.workers.process_file') as mock_pf, \
             patch('redb.workers.signal'), \
             patch('redb.workers.gc'):
            mock_pf.return_value = (Mock(), "pebin")

            args = (
                "/tmp/test.bin",  # filepath
                True,             # decompile
                "redb",           # index_prefix
                "/tmp/log",       # log_file
                1,                # file_number
                10,               # total_files
                "all",            # selected_modules
                False,            # dry_run
                False,            # yara_scan
                False,            # with_yara
                False,            # force
                modules,          # decompile_modules
            )

            worker(args)

            mock_pf.assert_called_once()
            call_kwargs = mock_pf.call_args[1]
            assert call_kwargs["decompile_modules"] == modules


# ============================================================================
# BinaryNinjaDecompiler._module_selected() Tests
# ============================================================================

class TestModuleSelected:
    """Tests for BinaryNinjaDecompiler._module_selected() helper."""

    def _make_decompiler(self, decompile_modules):
        """Create a minimal BinaryNinjaDecompiler-like object for testing _module_selected."""

        class FakeDecompiler:
            def __init__(self, modules):
                self.decompile_modules = modules

            def _module_selected(self, module_name):
                return "all" in self.decompile_modules or module_name in self.decompile_modules

        return FakeDecompiler(decompile_modules)

    def test_all_selects_everything(self):
        d = self._make_decompiler({"all"})
        assert d._module_selected("strings") is True
        assert d._module_selected("decompilation") is True
        assert d._module_selected("disassembly") is True
        assert d._module_selected("cfg") is True
        assert d._module_selected("llil") is True

    def test_specific_module_selected(self):
        d = self._make_decompiler({"cfg", "strings"})
        assert d._module_selected("cfg") is True
        assert d._module_selected("strings") is True
        assert d._module_selected("decompilation") is False
        assert d._module_selected("disassembly") is False
        assert d._module_selected("llil") is False

    def test_empty_set_selects_nothing(self):
        d = self._make_decompiler(set())
        assert d._module_selected("strings") is False
        assert d._module_selected("decompilation") is False

    def test_single_module(self):
        d = self._make_decompiler({"llil"})
        assert d._module_selected("llil") is True
        assert d._module_selected("cfg") is False
        assert d._module_selected("strings") is False


# ============================================================================
# analyze_binary() Selective Execution Tests
# ============================================================================

class TestAnalyzeBinaryGating:
    """Tests that analyze_binary() gates extraction per decompile_modules.

    Uses a FakeDecompiler to test the gating logic without importing binaryninja.
    """

    def _make_analyze_binary_runner(self, decompile_modules):
        """Create a test harness that simulates the gating logic of analyze_binary()."""
        run_all = "all" in decompile_modules
        run_strings = run_all or "strings" in decompile_modules
        run_decompilation = run_all or "decompilation" in decompile_modules
        run_disassembly = run_all or "disassembly" in decompile_modules
        run_llil = run_all or "llil" in decompile_modules
        run_cfg = run_all or "cfg" in decompile_modules
        need_per_function = run_decompilation or run_disassembly or run_llil or run_cfg

        return {
            "run_strings": run_strings,
            "run_decompilation": run_decompilation,
            "run_disassembly": run_disassembly,
            "run_llil": run_llil,
            "run_cfg": run_cfg,
            "need_per_function": need_per_function,
        }

    def test_all_runs_everything(self):
        r = self._make_analyze_binary_runner({"all"})
        assert r["run_strings"] is True
        assert r["run_decompilation"] is True
        assert r["run_disassembly"] is True
        assert r["run_llil"] is True
        assert r["run_cfg"] is True
        assert r["need_per_function"] is True

    def test_strings_only_skips_per_function_loop(self):
        """Selecting only 'strings' should skip the per-function loop entirely."""
        r = self._make_analyze_binary_runner({"strings"})
        assert r["run_strings"] is True
        assert r["run_decompilation"] is False
        assert r["run_disassembly"] is False
        assert r["run_llil"] is False
        assert r["run_cfg"] is False
        assert r["need_per_function"] is False

    def test_cfg_only_runs_cfg_and_disassembly_in_loop(self):
        """Selecting only 'cfg' should run the per-function loop but skip decompilation/llil/strings."""
        r = self._make_analyze_binary_runner({"cfg"})
        assert r["run_strings"] is False
        assert r["run_decompilation"] is False
        assert r["run_disassembly"] is False  # Not selected (but backbone runs anyway in real code)
        assert r["run_llil"] is False
        assert r["run_cfg"] is True
        assert r["need_per_function"] is True

    def test_decompilation_only(self):
        r = self._make_analyze_binary_runner({"decompilation"})
        assert r["run_decompilation"] is True
        assert r["run_strings"] is False
        assert r["run_cfg"] is False
        assert r["run_llil"] is False
        assert r["need_per_function"] is True

    def test_multiple_modules(self):
        r = self._make_analyze_binary_runner({"cfg", "llil", "strings"})
        assert r["run_strings"] is True
        assert r["run_cfg"] is True
        assert r["run_llil"] is True
        assert r["run_decompilation"] is False
        assert r["run_disassembly"] is False
        assert r["need_per_function"] is True

    def test_disassembly_only(self):
        r = self._make_analyze_binary_runner({"disassembly"})
        assert r["run_disassembly"] is True
        assert r["run_decompilation"] is False
        assert r["run_strings"] is False
        assert r["run_cfg"] is False
        assert r["run_llil"] is False
        assert r["need_per_function"] is True


# ============================================================================
# prepare_export_data() Table Filtering Tests
# ============================================================================

class TestPrepareExportDataFiltering:
    """Tests that prepare_export_data() only includes tables for selected modules.

    Simulates the filtering logic from DecompileBinja.prepare_export_data()
    without importing binaryninja.
    """

    def _get_export_tables(self, decompile_modules):
        """Simulate the table selection logic from prepare_export_data()."""
        run_all = "all" in decompile_modules
        run_decompilation = run_all or "decompilation" in decompile_modules
        run_disassembly = run_all or "disassembly" in decompile_modules
        run_llil = run_all or "llil" in decompile_modules
        run_cfg = run_all or "cfg" in decompile_modules
        run_strings = run_all or "strings" in decompile_modules

        tables = set()
        if run_decompilation:
            tables.update(["decompiled_content", "decompiled_refs"])
        if run_disassembly:
            tables.update(["disassembled_content", "disassembled_refs", "function_similarity_metrics"])
        if run_llil:
            tables.update(["llil_content", "llil_refs"])
        if run_cfg:
            tables.update(["cfg_functions"])
        if run_strings:
            tables.update(["strings_raw"])
        # Errors always included if per-function loop ran
        if run_decompilation or run_disassembly or run_llil or run_cfg:
            tables.add("function_analysis_errors")

        return tables

    def test_all_includes_all_tables(self):
        tables = self._get_export_tables({"all"})
        assert "decompiled_content" in tables
        assert "decompiled_refs" in tables
        assert "disassembled_content" in tables
        assert "disassembled_refs" in tables
        assert "function_similarity_metrics" in tables
        assert "llil_content" in tables
        assert "llil_refs" in tables
        assert "cfg_functions" in tables
        assert "strings_raw" in tables
        assert "function_analysis_errors" in tables

    def test_strings_only_includes_only_strings(self):
        tables = self._get_export_tables({"strings"})
        assert tables == {"strings_raw"}

    def test_cfg_only_includes_cfg_and_errors(self):
        tables = self._get_export_tables({"cfg"})
        assert tables == {"cfg_functions", "function_analysis_errors"}

    def test_decompilation_only_tables(self):
        tables = self._get_export_tables({"decompilation"})
        assert tables == {"decompiled_content", "decompiled_refs", "function_analysis_errors"}

    def test_disassembly_only_tables(self):
        tables = self._get_export_tables({"disassembly"})
        assert tables == {
            "disassembled_content", "disassembled_refs",
            "function_similarity_metrics", "function_analysis_errors"
        }

    def test_llil_only_tables(self):
        tables = self._get_export_tables({"llil"})
        assert tables == {"llil_content", "llil_refs", "function_analysis_errors"}

    def test_combined_cfg_strings_tables(self):
        tables = self._get_export_tables({"cfg", "strings"})
        assert tables == {"cfg_functions", "strings_raw", "function_analysis_errors"}

    def test_no_errors_table_for_strings_only(self):
        """Error table should NOT be included when only strings is selected (no per-function loop)."""
        tables = self._get_export_tables({"strings"})
        assert "function_analysis_errors" not in tables


# ============================================================================
# DecompileBinja Parameter Acceptance Tests
# ============================================================================

class TestDecompileBinjaDecompileModules:
    """Tests that DecompileBinja accepts and stores decompile_modules.

    Since DecompileBinja imports binaryninja (which requires blake3 etc),
    we test the default/init logic in isolation.
    """

    def test_default_decompile_modules(self):
        """decompile_modules defaults to {'all'} when None."""
        modules = None
        result = modules or {"all"}
        assert result == {"all"}

    def test_explicit_decompile_modules(self):
        """Explicit decompile_modules is preserved."""
        modules = {"cfg", "llil"}
        result = modules or {"all"}
        assert result == {"cfg", "llil"}

    def test_empty_set_becomes_all(self):
        """Empty set is falsy and defaults to {'all'}."""
        modules = set()
        result = modules or {"all"}
        assert result == {"all"}


# ============================================================================
# Integration-Style: analyze_binary() Per-Function Gating (Logic Tests)
# ============================================================================

class TestAnalyzeBinaryPerFunctionGating:
    """Test that the per-function extraction gating produces correct results structures.

    These test the logic patterns from analyze_binary() using mock data,
    verifying that:
    - Unselected modules produce empty result lists
    - Selected modules produce populated result lists
    - Disassembly always runs when any per-function module is selected
    - Cross-linkage None handling works when counterparts are skipped
    """

    def _simulate_per_function_results(self, decompile_modules, num_functions=3):
        """Simulate the per-function extraction loop from analyze_binary().

        Returns results dict with the same structure as analyze_binary().
        """
        run_all = "all" in decompile_modules
        run_strings = run_all or "strings" in decompile_modules
        run_decompilation = run_all or "decompilation" in decompile_modules
        run_disassembly = run_all or "disassembly" in decompile_modules
        run_llil = run_all or "llil" in decompile_modules
        run_cfg = run_all or "cfg" in decompile_modules
        need_per_function = run_decompilation or run_disassembly or run_llil or run_cfg

        results = {
            "decompiled": [],
            "disassembled": [],
            "cfg": [],
            "llil": [],
            "errors": [],
            "strings": [],
        }

        if run_strings:
            results["strings"] = [{"string": f"str_{i}"} for i in range(5)]

        if not need_per_function:
            return results

        for i in range(num_functions):
            hlil_json = {"decompiled_function_hash": f"hlil_{i}"} if run_decompilation else None
            disass_json = {"disassembled_function_hash": f"disass_{i}", "disassembled_function_name": f"func_{i}", "disassembled_function_address": i * 100}  # always
            cfg_json = {"function_address": i * 100, "cyclomatic_complexity": 5} if run_cfg else None
            lowlevel_json = {"sha256_llil": f"llil_{i}", "tlsh_llil": "def", "minhash": [1, 2]} if run_llil else None

            # Simulate cross-linkage (same pattern as real code)
            if hlil_json and disass_json:
                hlil_json["disassembled_function_hash"] = disass_json["disassembled_function_hash"]
                disass_json["decompiled_function_hash"] = hlil_json["decompiled_function_hash"]
                results["decompiled"].append(hlil_json)
                if run_disassembly:
                    results["disassembled"].append(disass_json)
            elif hlil_json:
                hlil_json["disassembled_function_hash"] = None
                results["decompiled"].append(hlil_json)
            elif disass_json:
                disass_json["decompiled_function_hash"] = None
                if run_disassembly:
                    results["disassembled"].append(disass_json)

            if lowlevel_json and disass_json:
                lowlevel_json["disassembled_function_hash"] = disass_json["disassembled_function_hash"]
                disass_json["tlsh_llil"] = lowlevel_json.get("tlsh_llil")
                disass_json["minhash"] = lowlevel_json.get("minhash")
            elif lowlevel_json:
                lowlevel_json["disassembled_function_hash"] = None
            elif disass_json:
                disass_json["tlsh_llil"] = None
                disass_json["minhash"] = None

            if lowlevel_json:
                results["llil"].append(lowlevel_json)

            if cfg_json and disass_json:
                cfg_json["disassembled_function_hash"] = disass_json["disassembled_function_hash"]
                disass_json["cyclomatic_complexity"] = cfg_json.get("cyclomatic_complexity")
                results["cfg"].append(cfg_json)
            elif cfg_json:
                cfg_json["disassembled_function_hash"] = None
                results["cfg"].append(cfg_json)

            if disass_json and "cyclomatic_complexity" not in disass_json:
                disass_json["cyclomatic_complexity"] = None

        return results

    def test_all_populates_everything(self):
        r = self._simulate_per_function_results({"all"}, 3)
        assert len(r["decompiled"]) == 3
        assert len(r["disassembled"]) == 3
        assert len(r["cfg"]) == 3
        assert len(r["llil"]) == 3
        assert len(r["strings"]) == 5

    def test_strings_only_populates_strings(self):
        r = self._simulate_per_function_results({"strings"}, 3)
        assert len(r["strings"]) == 5
        assert len(r["decompiled"]) == 0
        assert len(r["disassembled"]) == 0
        assert len(r["cfg"]) == 0
        assert len(r["llil"]) == 0

    def test_cfg_only_populates_cfg_no_disassembly_export(self):
        """With only 'cfg' selected, cfg list is populated but disassembled is empty
        (disassembly runs internally but not exported)."""
        r = self._simulate_per_function_results({"cfg"}, 3)
        assert len(r["cfg"]) == 3
        assert len(r["disassembled"]) == 0  # Not selected for export
        assert len(r["decompiled"]) == 0
        assert len(r["llil"]) == 0
        assert len(r["strings"]) == 0

    def test_cfg_has_disassembled_function_hash_linkage(self):
        """CFG entries get disassembled_function_hash from backbone disassembly."""
        r = self._simulate_per_function_results({"cfg"}, 2)
        for cfg in r["cfg"]:
            assert cfg["disassembled_function_hash"] is not None
            assert cfg["disassembled_function_hash"].startswith("disass_")

    def test_decompilation_only_has_none_disassembly_linkage_when_no_disasm(self):
        """When only decompilation selected, disassembled still runs (backbone)
        so linkage is still available."""
        r = self._simulate_per_function_results({"decompilation"}, 2)
        assert len(r["decompiled"]) == 2
        # Disassembly runs as backbone, so linkage hash is present
        for d in r["decompiled"]:
            assert d["disassembled_function_hash"] is not None

    def test_disassembly_without_llil_has_none_fuzzy_hashes(self):
        """When LLIL is not selected, disassembly records have None fuzzy hashes."""
        r = self._simulate_per_function_results({"disassembly"}, 2)
        for d in r["disassembled"]:
            assert d["tlsh_llil"] is None
            assert d["minhash"] is None

    def test_disassembly_without_decompilation_has_none_decompiled_hash(self):
        """When decompilation is not selected, disassembly has None decompiled_function_hash."""
        r = self._simulate_per_function_results({"disassembly"}, 2)
        for d in r["disassembled"]:
            assert d["decompiled_function_hash"] is None

    def test_disassembly_without_cfg_has_none_cyclomatic(self):
        """When CFG is not selected, disassembly has None cyclomatic_complexity."""
        r = self._simulate_per_function_results({"disassembly"}, 2)
        for d in r["disassembled"]:
            assert d["cyclomatic_complexity"] is None

    def test_all_linkage_populated(self):
        """When all modules run, all cross-linkage fields are populated."""
        r = self._simulate_per_function_results({"all"}, 2)
        for d in r["disassembled"]:
            assert d["decompiled_function_hash"] is not None
            assert d["tlsh_llil"] is not None
            assert d["cyclomatic_complexity"] is not None
        for h in r["decompiled"]:
            assert h["disassembled_function_hash"] is not None
        for c in r["cfg"]:
            assert c["disassembled_function_hash"] is not None
        for ll in r["llil"]:
            assert ll["disassembled_function_hash"] is not None


# ============================================================================
# IOC Extraction Gating by decompile_modules
# ============================================================================

class TestIOCExtractionGating:
    """Tests that IOC extraction only runs when its data sources are present.

    IOCExtractorFromResults consumes in-memory analysis_results['strings']
    and analysis_results['decompiled']. It runs automatically (implicit
    dependency) when 'decompilation' or 'strings' modules produce data.
    It is NOT a standalone selectable module.
    """

    @staticmethod
    def _is_ioc_relevant(decompile_modules):
        """Replicate the gating logic from workers.py."""
        return (
            not decompile_modules
            or "all" in decompile_modules
            or "decompilation" in decompile_modules
            or "strings" in decompile_modules
        )

    def test_all_triggers_ioc(self):
        assert self._is_ioc_relevant({"all"}) is True

    def test_decompilation_triggers_ioc(self):
        assert self._is_ioc_relevant({"decompilation"}) is True

    def test_strings_triggers_ioc(self):
        assert self._is_ioc_relevant({"strings"}) is True

    def test_decompilation_and_strings_triggers_ioc(self):
        assert self._is_ioc_relevant({"decompilation", "strings"}) is True

    def test_cfg_only_skips_ioc(self):
        assert self._is_ioc_relevant({"cfg"}) is False

    def test_disassembly_only_skips_ioc(self):
        assert self._is_ioc_relevant({"disassembly"}) is False

    def test_llil_only_skips_ioc(self):
        assert self._is_ioc_relevant({"llil"}) is False

    def test_cfg_and_disassembly_skips_ioc(self):
        assert self._is_ioc_relevant({"cfg", "disassembly"}) is False

    def test_cfg_and_llil_skips_ioc(self):
        assert self._is_ioc_relevant({"cfg", "llil"}) is False

    def test_cfg_and_decompilation_triggers_ioc(self):
        """If decompilation is included alongside cfg, IOC should run."""
        assert self._is_ioc_relevant({"cfg", "decompilation"}) is True

    def test_disassembly_and_strings_triggers_ioc(self):
        """If strings is included alongside disassembly, IOC should run."""
        assert self._is_ioc_relevant({"disassembly", "strings"}) is True

    def test_none_modules_triggers_ioc(self):
        """When decompile_modules is None (default), IOC should run."""
        assert self._is_ioc_relevant(None) is True

    def test_empty_set_triggers_ioc(self):
        """When decompile_modules is empty set, IOC should run (falsy)."""
        assert self._is_ioc_relevant(set()) is True