Jan C. Balzer

15 papers Journal 13Unranked 2
YearRankTypeTitle / Venue / Authors
2025 J jnl
IEEE Access
Kai-Daniel Jenkel, Tobias Kubiczek, Masoud Sakaki, Jan C. Balzer, Niels Benson
2023 J jnl
IEEE Access
Dilyan Damyanov, Tobias Kubiczek, Kevin Kolpatzeck, Andreas Czylwik, Thorsten Schultze, Jan C. Balzer
2022 conf
RFID-TA
Tobias Kubiczek, Xuan Liu, Jan C. Balzer, Xuan Guo, Masoud Sakaki, Yixiong Zhao, Niels Benson
2022 J jnl
IEEE Access
Tobias Kubiczek, Jan C. Balzer
2022 J jnl
IEEE Access
Yixiong Zhao, Jan-Hendrik Buchholz, Thorben Grenter, Xuan Liu, Gerd vom Bögel, Karsten Seidl, Jan C. Balzer
2022 J jnl
IEEE Access
Xuan Liu, Lisa Schmitt, Benedikt Sievert, Jonas Lipka, Chong Geng, Kevin Kolpatzeck, Daniel Erni, Andreas Rennings, Jan C. Balzer, Martin Hoffmann, Andreas Czylwik
2021 J jnl
IEEE Access
Jan Ornik, Masoud Sakaki, Martin Koch, Jan C. Balzer, Niels Benson
2021 J jnl
IEEE Access
Samira Mansourzadeh, Dilyan Damyanov, Tim Vogel, Frank Wulf, Robert B. Kohlhaas, Björn Globisch, Thorsten Schultze, Martin Hoffmann, Jan C. Balzer, Clara J. Saraceno
2021 J jnl
Sensors
Kevin Kolpatzeck, Xuan Liu, Lars Häring, Jan C. Balzer, Andreas Czylwik
2020 conf
OFC
M. Zander, W. Rehbein, Martin Moehrle, Steffen Breuer, D. Franke, Martin Schell, Kevin Kolpatzeck, Jan C. Balzer
2020 J jnl
IEEE Access
Dilyan Damyanov, Aman Batra, Benedikt Friederich, Thomas Kaiser, Thorsten Schultze, Jan C. Balzer
2020 J jnl
IEEE Access
Benedikt Friederich, Dilyan Damyanov, Jan C. Balzer, Thorsten Schultze
2020 J jnl
Sensors
Xuan Liu, Lisa Samfaß, Kevin Kolpatzeck, Lars Häring, Jan C. Balzer, Martin Hoffmann, Andreas Czylwik
2020 J jnl
Sensors
Xuan Liu, Kevin Kolpatzeck, Lars Häring, Jan C. Balzer, Andreas Czylwik
2019 J jnl
IEEE Access
Dilyan Damyanov, Benedikt Friederich, Milad Yahyapour, Nico Vieweg, Anselm Deninger, Kevin Kolpatzeck, Xuan Liu, Andreas Czylwik, Thorsten Schultze, Ingolf Willms, Jan C. Balzer
redb/extractors/decompiler/_archive/ghidra-test.py
← Index redb/extractors/decompiler/_archive/ghidra-test.py python
import subprocess
import json
import os
import tempfile
import uuid
import shutil
import sys
import time


def run_command(cmd, env=None):
    try:
        print(f"Starting command: {' '.join(cmd)}")
        start_time = time.time()
        process = subprocess.Popen(
            cmd, env=env, stdout=subprocess.PIPE, stderr=subprocess.PIPE, text=True
        )

        while True:
            output = process.stdout.readline()
            if output:
                print(output.strip())
            if process.poll() is not None:
                break

        stdout, stderr = process.communicate()
        end_time = time.time()

        print(f"Command finished. Execution time: {end_time - start_time:.2f} seconds")
        print(f"Return code: {process.returncode}")

        if process.returncode != 0:
            print(f"Error output:\n{stderr}")
            return None
        return stdout
    except Exception as e:
        print(f"Error running command {' '.join(cmd)}: {e}")
        return None


def analyze_binary(ghidra_path, binary_path, java_script_path):
    print(f"Ghidra path: {ghidra_path}")
    print(f"Binary path: {binary_path}")
    print(f"Java script path: {java_script_path}")

    # Check if Java script exists
    if not os.path.exists(java_script_path):
        print(f"Error: Java script not found at {java_script_path}")
        return None

    # Set up environment variables
    env = os.environ.copy()
    java_home = "/usr/lib/jvm/java-17-openjdk-amd64"  # Adjust this path if needed
    env["JAVA_HOME"] = java_home
    env["PATH"] = f"{java_home}/bin:{env['PATH']}"
    env["LD_LIBRARY_PATH"] = f"{java_home}/lib:{env.get('LD_LIBRARY_PATH', '')}"

    # Print environment variables for debugging
    print(f"JAVA_HOME: {env['JAVA_HOME']}")
    print(f"PATH: {env['PATH']}")
    print(f"LD_LIBRARY_PATH: {env['LD_LIBRARY_PATH']}")

    # Check Ghidra installation
    analyzeHeadless_path = f"{ghidra_path}/support/analyzeHeadless"
    print(f"analyzeHeadless exists: {os.path.exists(analyzeHeadless_path)}")

    print(f"Binary file exists: {os.path.exists(binary_path)}")

    # Check Java
    java_version = run_command(["java", "-version"], env=env)
    print(f"Java version: {java_version}")

    # Create a temporary project directory
    project_path = tempfile.gettempdir() + "/ghidra_" + str(uuid.uuid4())
    os.makedirs(project_path, exist_ok=True)
    print(f"Created temporary project path: {project_path}")
    output_file = ""

    try:
        # Run Ghidra's headless analyzer
        analyze_cmd = [
            analyzeHeadless_path,
            project_path,
            "TempProject",
            "-import",
            binary_path,
            "-postScript",
            java_script_path,
            "-deleteProject",
        ]

        result = run_command(analyze_cmd, env=env)
        if result is None:
            return None

        # Read the output JSON file
        output_file = "ghidra_output.json"
        if os.path.exists(output_file):
            with open(output_file, "r") as f:
                functions = json.load(f)
            return functions
        else:
            print(
                f"Output file {output_file} not found. Ghidra analysis may have failed."
            )
            # List files in the current directory
            print("Files in the current directory:")
            print("\n".join(os.listdir(".")))
            return None
    finally:
        # Clean up
        if os.path.exists(output_file):
            os.remove(output_file)
        if os.path.exists(project_path):
            shutil.rmtree(project_path)


# Example usage
if __name__ == "__main__":
    # if len(sys.argv) != 4:
    #     print("Usage: python script.py <ghidra_path> <binary_path> <java_script_path>")
    #     sys.exit(1)

    # ghidra_path = sys.argv[1]
    # binary_path = sys.argv[2]
    # java_script_path = sys.argv[3]

    ghidra_path = "/opt/ghidra"
    binary_path = "/home/p4c0/dev/redb/test_files/hello"
    java_script_path = (
        "/opt/ghidra/Ghidra/Features/Base/ghidra_scripts/GhidraDecompilerScript.java"
    )

    functions = analyze_binary(ghidra_path, binary_path, java_script_path)

    if functions:
        print(f"Extracted functions from {binary_path}:")
        for func in functions:
            print(f"\nFunction: {func['name']}")
            print(f"Address: {func['address']}")
            print(f"Decompiled code:\n{func['decompiled']}")
    else:
        print("Failed to extract functions.")