Raimar J. Scherer

42 papers C 10Misc 4Journal 16Unranked 12
YearRankTypeTitle / Venue / Authors
2025 J jnl
J. Inf. Technol. Constr.
Nidhal Al-Sadoon, Raimar J. Scherer, Karsten Menzel
2023 J jnl
Remote. Sens.
Andreas Ellinger, Christian Woerner, Raimar J. Scherer
2022 J jnl
CoRR
Fangzheng Lin, Jiesheng Yang, Jiangpeng Shu, Raimar J. Scherer
2021 J jnl
CoRR
Fangzheng Lin, Jiesheng Yang, Jiangpeng Shu, Raimar J. Scherer
2021 conf
LDAC
Al-Hakam Hamdan, Peter Katranuschkov, Raimar J. Scherer
2020 Misc conf
WSC
Michael Polter, Peter Katranuschkov, Raimar J. Scherer
2020 conf
LDAC
Al-Hakam Hamdan, Raimar J. Scherer
2020 conf
EuroMed
Klaus Luig, Dino Mustedanagic, Dieter Jansen, Sebastian Fuchs, Robert Schülbe, Peter Katranuschkov, Al-Hakam Hamdan, Christoph Franzen, Kristin Hiemann, Raimar J. Scherer
2019 conf
LDAC
Al-Hakam Hamdan, Mathias Bonduel, Raimar J. Scherer
2018 J jnl
Adv. Eng. Informatics
Raimar J. Scherer, Peter Katranuschkov
2018 Misc conf
WSC
Raimar J. Scherer, Ngoc Trung Luu, Peter Katranuschkov, Sven Spieckermann, Ilka Habenicht, Byron Protopsaltis, Theodora Pappou
2017 Misc conf
WSC
Yaseen Srewil, Raimar J. Scherer
2017 J jnl
Int. J. Simul. Process. Model.
Ali Ismail, Yaseen Srewil, Raimar J. Scherer
2015 J jnl
J. Inf. Technol. Constr.
Helga Tauscher, Raimar J. Scherer
2015 C conf
PRO-VE
Mario Gürtler, Ken Baumgärtel, Raimar J. Scherer
2014 C conf
PRO-VE
Ali Ismail, Yaseen Srewil, Raimar J. Scherer
2013 C ed.
PRO-VE
Luis M. Camarinha-Matos, Raimar J. Scherer
2013 C conf
PRO-VE
Yaseen Srewil, Raimar J. Scherer
2013 C conf
PRO-VE
Eko Nityantoro, Raimar J. Scherer
2012 J jnl
Adv. Eng. Informatics
Alexander Benevolenskiy, K. Roos, Peter Katranuschkov, Raimar J. Scherer
2012 C conf
PRO-VE
Frank Hilbert, Raimar J. Scherer
2011 J jnl
Adv. Eng. Informatics
Raimar J. Scherer, Sven-Eric Schapke
2011 J jnl
Int. J. Intell. Inf. Technol.
Thorsten Dollmann, Peter Loos, Michael Fellmann, Oliver Thomas, Andreas Hoheisel, Peter Katranuschkov, Raimar J. Scherer
2011 C conf
WETICE
Sebastian Fuchs, Mathias Kadolsky, Raimar J. Scherer
2011 conf
FAVO
Frank Hilbert, Raimar J. Scherer, Larissa Araujo
2011 C conf
PRO-VE
Raimar J. Scherer, Wael Sharmak
2011 Misc conf
WSC
Raimar J. Scherer, Ali Ismail
2009 conf
AMCIS
Thorsten Dollmann, Michael Fellmann, Oliver Thomas, Peter Loos, Andreas Hoheisel, Peter Katranuschkov, Raimar J. Scherer
2008 conf
Virtual Enterprises and Collaborative Networks
Wael Sharmak, Sven-Eric Schapke, Raimar J. Scherer
2007 conf
Virtual Enterprises and Collaborative Networks
K. Umut Gökçe, Raimar J. Scherer, H. Attila Dikbas
2006 conf
EG-ICE
Raimar J. Scherer, Peter Katranuschkov
2006 J jnl
J. Inf. Technol. Constr.
Martin Keller, Raimar J. Scherer, Karsten Menzel, Thomas Theling, Dominik Vanderhaeghen, Peter Loos
2005 C conf
PRO-VE
Martin Keller, Karsten Menzel, Raimar J. Scherer
2003 J jnl
J. Inf. Technol. Constr.
Peter Katranuschkov, Alexander Gehre, Raimar J. Scherer
2003 J jnl
Adv. Eng. Informatics
Michael Eisfeld, Raimar J. Scherer
2003 conf
International Conference on Internet Computing
Ziga Turk, Tomo Cerovsek, Raimar J. Scherer
2003 J jnl
J. Inf. Technol. Constr.
Matthias Weise, Peter Katranuschkov, Thomas Liebich, Raimar J. Scherer
2003 C conf
PRO-VE
Martin Keller, Karsten Menzel, Raimar J. Scherer
2001 J jnl
J. Inf. Technol. Constr.
Peter Katranuschkov, Raimar J. Scherer, Ziga Turk
1998 conf
AI in Structural Engineering
Raimar J. Scherer
1998 conf
BASYS
Raimar J. Scherer, Peter Katranuschkov
1997 J jnl
Artif. Intell. Eng.
M. Hauser, Raimar J. Scherer
Docker-README.md
← Index Docker-README.md markdown
# REDB Docker Setup

This document describes the Docker containerization for the REDB malware analysis framework.

## Overview

REDB has been containerized as a single unified image that supports both feature extraction and decompilation analysis. The container is stateless, processes files from S3 or local mounts, and exports results to ClickHouse database or via API callbacks.

## Architecture

- **Single Unified Container**: One image handles both feature extraction and decompilation
- **Runtime Tool Installation**: Tools (CAPA, DIE, Binary Ninja) installed at runtime from host snapshots
- **Stateless Processing**: No persistent storage required between runs
- **Multiple Invocation Modes**: Supports `--nomad-job`, `--s3`, `--s3-solo`, and `--path` modes
- **External Dependencies**: Connects to external ClickHouse and S3 services

## Files Structure

```
├── Dockerfile                 # Single unified container definition
├── docker-build.sh            # Build script with Docker Desktop bug workaround
├── docker-push.sh             # Push script to registry
├── test-docker.sh             # Container testing script
├── test-nomad.sh              # Nomad job mode testing
├── .dockerignore              # Build context exclusions
└── scripts/
    └── setup-and-run.sh       # Runtime tool setup entrypoint
```

## Tool Installation Strategy

The container uses a **runtime installation** approach:

1. **Base Image**: Contains Python dependencies and REDB code
2. **Runtime Setup**: `scripts/setup-and-run.sh` configures tools at container start
3. **Host Snapshots**: Binary Ninja installed from `/opt/binaryninja` if available
4. **System Tools**: CAPA and DIE expected at `/usr/bin/capa` and `/usr/bin/nfdc`

## Build and Run

### 1. Build Container

```bash
# Build unified image
./docker-build.sh

# Manual build
docker build --platform linux/amd64 -f Dockerfile -t redb:latest .
```

### 2. Run Modes

#### Nomad Job Mode (Primary)
```bash
# Feature extraction
docker run --rm \
  -e JOB_ID="analysis_001" \
  -e S3_KEY="samples/malware.exe" \
  -e S3_BUCKET="malware-bucket" \
  -e WORKER_TYPE="feature_extraction" \
  -e CALLBACK_URL="https://api.example.com/callbacks" \
  -e ANALYSIS_MODULES="BasicPropertiesExtractor,PEFeaturesExtractor" \
  -e CLICKHOUSE_HOST="clickhouse.example.com" \
  -e S3_ENDPOINT="s3.example.com" \
  -e S3_ACCESS_KEY="your-key" \
  -e S3_SECRET_KEY="your-secret" \
  redb:latest python3 start.py --nomad-job

# Decompilation (same container, different flags)
docker run --rm \
  -e JOB_ID="analysis_002" \
  -e S3_KEY="samples/malware.exe" \
  -e S3_BUCKET="malware-bucket" \
  -e WORKER_TYPE="decompilation" \
  -e CALLBACK_URL="https://api.example.com/callbacks" \
  -e ANALYSIS_MODULES="all" \
  -v /opt/binaryninja:/opt/binaryninja:ro \
  redb:latest python3 start.py --nomad-job --decompile
```

#### S3 Solo Mode
```bash
# Process single sample by S3 key (standard sharded path)
docker run --rm \
  -e S3_BUCKET="samples-bucket" \
  -e CLICKHOUSE_HOST="clickhouse.example.com" \
  -e S3_ENDPOINT="s3.example.com" \
  -e INDEX_PREFIX="redb" \
  -e REPO="test-analysis" \
  redb:latest python3 start.py --s3-solo "09/f7/09f7d02a3c2382199458c98a62b045145ee54ab6aba86166aecf3d10c3c1444c.zip"

# Process private sample (with prepath)
docker run --rm \
  -e S3_BUCKET="samples-bucket" \
  -e CLICKHOUSE_HOST="clickhouse.example.com" \
  -e S3_ENDPOINT="s3.example.com" \
  -e INDEX_PREFIX="redb" \
  -e REPO="test-analysis" \
  redb:latest python3 start.py --s3-solo "private/ab/cd/abcd1234567890abcdef1234567890abcdef1234567890abcdef123456.zip"
```

#### Local Files Mode
```bash
# Mount local samples
docker run --rm \
  -v /path/to/samples:/samples:ro \
  -v ./logs:/app/logs \
  -e CLICKHOUSE_HOST="clickhouse.example.com" \
  redb:latest python3 start.py --path /samples --repo local_test --index_prefix redb
```

## Environment Variables

### Required for Nomad Job Mode
- `JOB_ID` - Unique job identifier
- `S3_KEY` - S3 object key for sample
- `S3_BUCKET` - S3 bucket name
- `WORKER_TYPE` - "feature_extraction" or "decompilation"
- `CALLBACK_URL` - API endpoint for results
- `ANALYSIS_MODULES` - Comma-separated extractor list or "all"

### Database Configuration
- `CLICKHOUSE_HOST` - ClickHouse server hostname
- `CLICKHOUSE_PORT` - Port (default: 8123)
- `CLICKHOUSE_USER` - Database user (default: default)
- `CLICKHOUSE_PASSWORD` - Database password
- `CLICKHOUSE_DATABASE` - Database name (default: default)

### S3 Configuration
- `S3_ENDPOINT` - S3 endpoint URL
- `S3_ACCESS_KEY` - S3 access key
- `S3_SECRET_KEY` - S3 secret key
- `S3_SECURE` - "true" or "false" for HTTPS

### Processing Configuration
- `INDEX_PREFIX` - Database table prefix (default: redb)
- `REPO` - Repository identifier for this analysis batch
- `BATCH_SIZE` - Processing batch size (default: 10)
- `REDB_TIMEOUT` - Analysis timeout in seconds (default: 300)

### Tool Timeouts
- `CAPA_TIMEOUT` - CAPA analysis timeout (default: 300)
- `DIE_TIMEOUT` - DIE analysis timeout (default: 180)
- `BINJA_TIMEOUT` - Binary Ninja timeout (default: 1200)
- `DECOMPILE_EXTRACTOR_TIMEOUT` - Decompilation timeout (default: 2580)

## Binary Ninja Setup

For decompilation capabilities, mount Binary Ninja from host:

```bash
# Mount Binary Ninja installation
-v /opt/binaryninja:/opt/binaryninja:ro

# Mount license file
-v /path/to/license.dat:/home/analyzer/.binaryninja/license.dat:ro
```

The container will automatically detect and configure Binary Ninja at runtime.

## Registry Deployment

### Push to Registry
```bash
# Tag and push
./docker-push.sh

# Or manually
docker tag redb:latest your-registry/redb:latest
docker push your-registry/redb:latest
```

### Pull and Run
```bash
docker pull your-registry/redb:latest
docker run your-registry/redb:latest python3 start.py --nomad-job
```

## Testing

### Container Functionality Test
```bash
# Test with S3 key (standard sharded path)
./test-docker.sh "09/f7/09f7d02a3c2382199458c98a62b045145ee54ab6aba86166aecf3d10c3c1444c.zip"

# Test with private sample S3 key
./test-docker.sh "private/ab/cd/abcd1234567890abcdef1234567890abcdef1234567890abcdef123456.zip"
```

### Nomad Job Architecture Test
```bash
# Test Nomad job mode
./test-nomad.sh
```

## Development

### Interactive Container
```bash
# Debug container interactively
docker run -it --entrypoint /bin/bash redb:latest

# Check tool availability
docker run --rm redb:latest which python3
docker run --rm redb:latest ls -la /usr/bin/capa
```

### Build Troubleshooting

The build script includes workarounds for Docker Desktop bugs:

```bash
# If build hangs at "exporting to image", press Ctrl+C
# The image will still be created and tagged automatically
./docker-build.sh
```

### Container Logs
```bash
# View logs from mounted directory
docker run -v ./logs:/app/logs redb:latest python3 start.py --path /samples
tail -f logs/*.txt
```

## Production Notes

### Resource Requirements
- **Memory**: 2-4GB recommended (8GB for decompilation)
- **CPU**: 2+ cores recommended
- **Disk**: Minimal (stateless container)
- **Network**: Access to ClickHouse and S3 services

### Security
- Container runs as non-root user `analyzer` (UID 1000)
- Sample files should be mounted read-only
- No persistent state between container runs
- Isolated processing environment for malware analysis

### Deployment Architecture

This container is designed for:
- **Nomad job dispatch**: Single-use containers processing one sample each
- **Kubernetes jobs**: Batch processing with external orchestration
- **CI/CD pipelines**: Automated analysis in build systems
- **Development**: Local testing and debugging

The unified container approach means the same image handles both feature extraction and decompilation - the difference is only in the command-line flags used when starting the container.