Veerle Derudder

18 papers Journal 7Unranked 11
YearRankTypeTitle / Venue / Authors
2023 conf
ISSCC
Pratap Tumkur Renukaswamy, Kristof Vaesen, Nereo Markulic, Veerle Derudder, Dae-Woong Park, Piet Wambacq, Jan Craninckx
2021 J jnl
IEEE Trans. Circuits Syst. I Regul. Pap.
Meng Li, Veerle Derudder, Kaoutar Bertrand, Claude Desset, André Bourdoux
2020 J jnl
CoRR
Altug Süral, E. Göksu Sezer, Ertugrul Kolagasioglu, Veerle Derudder, Kaoutar Bertrand
2018 conf
ISTC
Meng Li, Veerle Derudder, Claude Desset, Andy Dewilde, André Bourdoux, Yanxiang Huang
2017 J jnl
IEEE J. Solid State Circuits
Davide Guermandi, Qixian Shi, Andy Dewilde, Veerle Derudder, Ubaid Ahmad, Annachiara Spagnolo, Ilja Ocket, André Bourdoux, Piet Wambacq, Jan Craninckx, Wim Van Thillo
2016 conf
A-SSCC
Davide Guermandi, Qixian Shi, Andy Dewilde, Veerle Derudder, Ubaid Ahmad, Annachiara Spagnolo, André Bourdoux, Piet Wambacq, Wim Van Thillo
2015 conf
A-SSCC
Meng Li, Jan-Willem Weijers, Veerle Derudder, Ilse Vos, Maxim Rykunov, Steven Dupont, Peter Debacker, Andy Dewilde, Yanxiang Huang, Liesbet Van der Perre, Wim Van Thillo
2007 conf
EUSIPCO
Bruno Bougard, André Bourdoux, Frederik Naessens, Miguel Glassee, Veerle Derudder, Liesbet Van der Perre
2006 J jnl
EURASIP J. Adv. Signal Process.
Jan-Willem Weijers, Veerle Derudder, Sven Janssens, Frederik Petré, André Bourdoux
2006 conf
SiPS
Thomas Schuster, D. N. Bruna, Bruno Bougard, Veerle Derudder, A. Hoffmann, Liesbet Van der Perre
2004 conf
EUSIPCO
Maryse Wouters, André Bourdoux, Stefaan De Rore, Sven Janssens, Veerle Derudder
2003 conf
ICASSP (2)
Andrew Fort, Jan-Willem Weijers, Veerle Derudder, Wolfgang Eberle, André Bourdoux
2003 J jnl
J. VLSI Signal Process.
Bruno Bougard, Liesbet Van der Perre, F. Maessen, Alexandre Giulietti, Veerle Derudder, Francky Catthoor
2002 conf
CICC
Alexandre Giulietti, Bruno Bougard, Veerle Derudder, Steven Dupont, Jan-Willem Weijers, Liesbet Van der Perre
2001 J jnl
IEEE J. Solid State Circuits
Wolfgang Eberle, Veerle Derudder, Geert Vanwijnsberghe, Mario Vergara, Luc Deneire, Liesbet Van der Perre, Marc Engels, Ivo Bolsens, Hugo De Man
1999 J jnl
IEEE Trans. Comput. Aided Des. Integr. Circuits Syst.
Robert Pasko, Patrick Schaumont, Veerle Derudder, Serge Vernalde, Daniela Duracková
1997 conf
ISSS
Robert Pasko, Patrick Schaumont, Veerle Derudder, Daniela Duracková
1992 conf
Synthesis for Control Dominated Circuits
Evagelos Katsadas, Zohair Sahraoui, Maryse Wouters, Veerle Derudder, Ivo Bolsens, Paul Six, Hugo De Man
CLAUDE.md
← Index CLAUDE.md markdown
# CLAUDE.md

This file provides guidance to Claude Code (claude.ai/code) when working with code in this repository.

## Project Overview

REDB (RationalEdge Samples DB) is a malware analysis framework that extracts features from PE (Portable Executable) files and stores them in ClickHouse database for analysis. It provides a comprehensive set of extractors for analyzing binary samples including PE headers, imports, resources, signatures, and decompiled code.

## Common Commands

### Development Setup
```bash
source venv/bin/activate

# Install dependencies
pip install -r requirements.txt

# Run the main application
python start.py --path /path/to/samples --repo sample_repo --index_prefix redb
```

### Analysis Commands
```bash
# Process a single file
python start.py --path /path/to/binary --repo test --index_prefix redb

# Process from S3 storage
python start.py --s3 --repo malpedia --index_prefix redb

# Process from S3 storage but only a subset of a specific repository
python start.py --s3 --repo "vx-itw" --s3-notes "ITW.0138" --index_prefix redb

# Run only decompilation
python start.py --path /path/to/binary --repo test --index_prefix redb --decompile

# Run specific modules
python start.py --path /path/to/binary --repo test --index_prefix redb --modules "BasicPropertiesExtractor,PEFeaturesExtractor"

# Run as Nomad job (for containerized deployment)
python start.py --nomad-job
```

### Testing
There are no formal unit tests. Testing is done by running the extractors on sample files in the `test_files/` directory.

## Architecture Overview

### Core Components

1. **Ingestor (`redb/ingestor.py`)**: Main orchestrator that handles file processing, multiprocessing, and coordinates extractors
2. **Extractors (`redb/extractors/`)**: Modular analysis components that extract specific features
3. **Database Exporters (`redb/extractors/database_exporters.py`)**: Handle data export to ClickHouse
4. **Settings (`redb/settings/`)**: Configuration management for database connections

### Extractor Architecture

All extractors inherit from the base `Extractor` class and implement:
- `extract()`: Main analysis logic
- `prepare_export_data()`: Format data for database export
- `get_clickhouse_table()`: Return target table name

Available extractors:
- **General**: BasicPropertiesExtractor, HashExtractor, DIEExtractor, CAPAExtractor
- **PE-specific**: PEFeaturesExtractor, PEImportExtractor, PEResourceExtractor, PEOverlayExtractor, PESectionExtractor, PESignatureExtractor, PEDotNetExtractor, PEInconstistencyTestsExtractor, PEExtraFindings
- **ELF**: ELFFeaturesExtractor, ELFSegmentExtractor, ELFSectionExtractor, ELFDependencyExtractor, ELFSymbolExtractor, ELFImportExtractor, ELFExportExtractor, ELFRelocationExtractor, ELFNotesExtractor
- **Mach-O**: MachOFeaturesExtractor, MachOSegmentExtractor, MachOImportExtractor, MachOExportExtractor, MachODylibExtractor, MachOSignatureExtractor
- **APK**: APKFeaturesExtractor, APKManifestExtractor, APKPermissionsExtractor, APKSignatureExtractor, APKDexExtractor, APKResourceExtractor, APKNativeLibExtractor, APKInconsistencyTestsExtractor
- **Decompilation**: DecompileBinja, DecompileAPK

### Database Schema

The project uses a comprehensive ClickHouse schema defined in `redb/redb_schema.yml` with tables for:
- Basic properties (`redb_basic_properties`)
- PE features (`redb_pe_features`, `redb_pe_imports`, `redb_pe_sections`, etc.)
- Decompiled code (`code_binja_decompiled_functions_content`, `code_binja_decompiled_functions_references`)
- CAPA analysis (`redb_capa`, `redb_capa_capabilities`)

Full schema documentation is available in `docs/database_schema.md`.

### Processing Modes

1. **Analysis Mode**: Extracts features using selected modules
2. **Decompile Mode**: Uses Binary Ninja for code decompilation
3. **S3 Mode**: Fetches samples from S3 storage based on catalog queries
4. **Nomad Job Mode**: Processes single jobs using environment variables for containerized deployment

### Configuration

Environment variables are used for configuration:
- Database connection: `CLICKHOUSE_HOST`, `CLICKHOUSE_PORT`, `CLICKHOUSE_USER`, `CLICKHOUSE_PASSWORD`
- S3 storage: `S3_ENDPOINT`, `S3_ACCESS_KEY`, `S3_SECRET_KEY`
- Processing: `BATCH_SIZE`, `REDB_TIMEOUT`, `DECOMPILE_WORKER_TIMEOUT`
- Nomad jobs: `JOB_ID`, `S3_KEY`, `S3_BUCKET`, `WORKER_TYPE`, `CALLBACK_URL`, `ANALYSIS_MODULES`

## Important Implementation Details

### Multiprocessing
- Uses `spawn` method for multiprocessing to avoid memory issues
- Worker processes have timeout handlers to prevent hanging
- Supports both batch processing and streaming processing modes

### Memory Management
- Implements aggressive garbage collection between batches
- Monitors swap usage and restarts worker pools when needed
- Kills stuck processes automatically

### Error Handling
- Comprehensive logging with per-file context
- Graceful handling of corrupted or unsupported files
- Automatic retry logic for database operations

### Security Context
This is a defensive security tool for malware analysis. It processes potentially malicious files in a controlled environment to extract features for detection and analysis purposes.

## Development Notes

- The codebase is optimized for processing large batches of malware samples
- Extractors are designed to be modular and can be run individually or in combination
- Database schema supports both normalized and denormalized views for different query patterns
- S3 integration allows for scalable processing of large malware repositories