Manfred Berroth

40 papers C 5Journal 11Unranked 24
YearRankTypeTitle / Venue / Authors
2025 conf
PRIME
Raphael Nägele, Jakob Finkbeiner, Manuel Wittlinger, Markus Grözing, Manfred Berroth, Georg Rademacher
2025 J jnl
IEEE Solid State Circuits Lett.
Jakob Finkbeiner, Raphael Nägele, Manuel Wittlinger, Markus Grözing, Manfred Berroth, Georg Rademacher
2024 conf
OFC
Christian Schweikert, Simon Nau, Niklas Hoppe, Wolfgang Vogel, Manfred Berroth, Georg Rademacher
2024 J jnl
IEEE J. Solid State Circuits
Daniel Widmann, Tobias Tannert, Xuan-Quang Du, Thomas Veigel, Markus Grözing, Manfred Berroth
2024 conf
AICAS
Jakob Finkbeiner, Raphael Nägele, Markus Grözing, Manfred Berroth, Georg Rademacher
2024 conf
AICAS
Raphael Nägele, Jakob Finkbeiner, Markus Grözing, Manfred Berroth, Georg Rademacher
2023 J jnl
IEEE Trans. Circuits Syst. I Regul. Pap.
Raphael Nägele, Jakob Finkbeiner, Valentin Stadtlander, Markus Grözing, Manfred Berroth
2023 J jnl
IEEE Trans. Circuits Syst. I Regul. Pap.
Daniel Widmann, Markus Grözing, Manfred Berroth
2023 conf
PRIME
Manuel Wittlinger, Markus Grözing, Manfred Berroth
2022 conf
NEWCAS
Raphael Nägele, Jakob Finkbeiner, Markus Grözing, Manfred Berroth
2022 conf
NEWCAS
Jakob Finkbeiner, Raphael Nägele, Markus Grözing, Manfred Berroth
2022 C conf
ISCAS
Sefa Özbek, Shuo Wang, Serafin B. Fischer, Markus Grözing, Joachim N. Burghartz, Jan Hesselbarth, Manfred Berroth
2022 C conf
ISCAS
Daniel Widmann, Raphael Nägele, Markus Grözing, Manfred Berroth
2022 J jnl
IEEE J. Solid State Circuits
Philipp Thomas, Jakob Finkbeiner, Markus Grözing, Manfred Berroth
2021 J jnl
IEEE J. Solid State Circuits
Philipp Thomas, Tobias Tannert, Markus Grözing, Manfred Berroth, Qian Hu, Fred Buchali
2021 C conf
ISCAS
Philipp Thomas, Markus Grözing, Manfred Berroth
2021 conf
BCICTS
Tobias Tannert, Markus Grözing, Manfred Berroth, Christian Schmidt, Jung Han Choi, Christoph Caspar, Jonathan Schostak, Volker Jungnickel, Ronald Freund, Holger Rücker
2021 conf
BCICTS
Philipp Thomas, Markus Grözing, Manfred Berroth
2021 conf
ECOC
Karsten Schuh, Qian Hu, Roman Dischler, Vahid Aref, Fred Buchali, Son Thai Le, Michael Collisi, Michael Möller, Horst Hettrich, Rolf Schmid, Xuan-Quang Du, Markus Grözing, Manfred Berroth
2020 conf
BCICTS
Philipp Thomas, Tobias Tannert, Markus Grözing, Manfred Berroth
2020 conf
ICECS
Philipp Thomas, Markus Grözing, Manfred Berroth
2019 conf
OFC
Fred Buchali, Karsten Schuh, Son Thai Le, Xuan-Quang Du, Markus Grozing, Manfred Berroth
2018 J jnl
Integr.
Sefa Özbek, Golzar Alavi, Johannes Digel, Markus Grözing, Joachim N. Burghartz, Manfred Berroth
2018 conf
BCICTS
Xuan-Quang Du, Markus Grozing, Manfred Berroth
2018 conf
PRIME
S. Kelz, Thomas Veigel, Markus Grozing, Manfred Berroth
2018 conf
PRIME
Robert Bieg, Martin Schmidt, Markus Grozing, Manfred Berroth
2018 conf
BCICTS
Philipp Thomas, Matthias Buck, Markus Grözing, Manfred Berroth, J. Rauscher, Michael Epp, M. Schlumpp
2018 conf
MWSCAS
Christian Schmidt, Patrick Zielonka, Volker Jungnickel, Ronald Freund, Tobias Tannert, Markus Grozing, Manfred Berroth, Friedel Gerfers
2018 conf
ECOC
Helmut Fedder, Steffen Oesterwind, Markus Wick, Fabian Olbrich, Peter Michler, Thomas Veigel, Manfred Berroth, Michael Schlagmuller
2017 C conf
ISCAS
Robert Bieg, Martin Schmidt, Markus Grozing, Manfred Berroth
2014 conf
ISIC
Felix Lang, Markus Grozing, Manfred Berroth
2014 conf
OFC
Thomas Fohn, Wolfgang Vogel, Martin Schmidt, Manfred Berroth, Joerg Butschke, Florian Letzkus
2011 C conf
ISCAS
Martin Schmidt, Sebastian Haug, Markus Grozing, Manfred Berroth
2003 conf
ESSCIRC
Rui Tao, Manfred Berroth
2003 conf
ESSCIRC
Rui Tao, Manfred Berroth
2003 conf
ESSCIRC
Markus Grozing, Bernd Phillip, Manfred Berroth
1998 J jnl
IEEE Trans. Very Large Scale Integr. Syst.
Andreas Thiede, Zhi-Gong Wang, Michael Schlechtweg, Manfred Lang, Petra Leber, Zhihao Lao, Ulrich Nowotny, Volker Hurm, Michaela Rieger-Motzer, Manfred Ludwig, Martin Sedler, Klaus Köhler, Wolfgang Bronner, Jochen Hornung, Axel Hülsmann, Gudrun Kaufel, Bryan Raynor, Joachim Schneider, Theo Jakobus, Jürgen Schroth, Manfred Berroth
1994 J jnl
IEEE J. Solid State Circuits
Zhi-Gong Wang, Manfred Berroth, Ulrich Nowotny, Peter Hofmann, Axel Hiilsmann, Klaus Köhler, Brian Raynor, Joachim Schneider
1993 J jnl
IEEE J. Solid State Circuits
Andreas Thiede, Manfred Berroth, Ulrich Nowotny, Jorg Seibel, Roland Bosch, Klaus Köhler, Brian Raynor, Joachim Schneider
1993 J jnl
IEEE J. Solid State Circuits
Zhi-Gong Wang, Manfred Berroth, Ulrich Nowotny, Manfred Ludwig, Peter Hofmann, Axel Hülsmann, Klaus Köhler, Brian Raynor, Joachim Schneider
redb/extractors/extractor.py
← Index redb/extractors/extractor.py python
import hashlib
import inspect
from abc import ABCMeta, abstractmethod
from dataclasses import asdict
from functools import cached_property
from datetime import datetime, timezone
import math
from typing import Counter, List, Optional, Dict, Any, Tuple
from redb import settings
from redb.models.dataclasses import Hash
from .database_exporters import DatabaseExporter, ElasticsearchExporter, ClickHouseExporter, PrintExporter

class Extractor(metaclass=ABCMeta):
    def __init__(
        self,
        filepath: str,
        log: Any,
        exporters: Optional[List[DatabaseExporter]] = None,
        index_prefix: Optional[str] = None,
        source: Optional[str] = None,
        elastic_index: Optional[str] = None,
        known_benign: bool = False,
        known_malicious: bool = False,
        precomputed_hashes: Optional[Dict[str, str]] = None,
    ):
        self.log = log
        self.log.debug(f"Creating {self.__class__.__name__}")
        self.filepath = filepath
        self.source = source
        self.exporters = exporters or []
        self.index_prefix = index_prefix if index_prefix else settings.ELASTIC_BINARIES_COLLECTION
        self.elastic_index = self.index_prefix + (elastic_index if elastic_index else "")
        self.known_benign = known_benign
        self.known_malicious = known_malicious

        # Use precomputed hashes if provided (e.g., from machofile, pefile)
        # Otherwise compute them from binary
        if precomputed_hashes:
            self.md5 = precomputed_hashes.get('md5') or precomputed_hashes.get('MD5')
            self.sha1 = precomputed_hashes.get('sha1') or precomputed_hashes.get('SHA1')
            self.sha256 = precomputed_hashes.get('sha256') or precomputed_hashes.get('SHA256')
        else:
            self.md5 = hashlib.md5(self.binary).hexdigest()
            self.sha1 = hashlib.sha1(self.binary).hexdigest()
            self.sha256 = hashlib.sha256(self.binary).hexdigest()
        self.hash = Hash(self.md5, self.sha1, self.sha256)

    @cached_property
    def binary(self):
        with open(self.filepath, "rb") as f:
            data = f.read()
        return data

    @property
    @abstractmethod
    def tag(self):
        pass

    @abstractmethod
    def extract(self):
        """
        this method defines the extracted data
        """

    @staticmethod
    def process_binary_string(s):
        # Remove \x00 padding
        s = s.rstrip(b"\x00")

        # Check if there are any non-printable characters
        has_non_printable = any(byte < 32 or byte > 126 for byte in s)

        if not has_non_printable:
            # If all characters are printable, decode the string
            return s.decode()
        else:
            # If there are non-printable characters, represent them as \xDD
            return "".join(
                [
                    f"\\x{byte:02x}" if byte < 32 or byte > 126 else chr(byte)
                    for byte in s
                ]
            )

    @staticmethod
    def remove_non_utf8(binary_string):
        decoded = b""
        for i in range(len(binary_string)):
            try:
                # Try to decode each byte
                char = binary_string[i : i + 1].decode("utf-8")
                decoded += char.encode("utf-8")
            except UnicodeDecodeError:
                # Skip this byte if it can't be decoded
                continue
        return decoded

    def calculate_entropy(self, data):
        """Calculate the entropy of a chunk of data.
        Based on pefile.SectionStructure.entropy_H.
        """
        # self.log.debug(inspect.currentframe().f_code.co_name)
        if not data:
            return 0.0

        if type(data) == str:
            counts = Counter(data)
            frequencies = ((i / len(data)) for i in counts.values())
            return - sum(f * math.log(f, 2) for f in frequencies)
        else:
            occurences = Counter(bytearray(data))
            entropy = 0
            for x in occurences.values():
                p_x = float(x) / len(data)
                entropy -= p_x * math.log(p_x, 2)
            return entropy

    @abstractmethod
    def prepare_export_data(self, exporter_type: str) -> Tuple[List[Any], List[str], List[str]]:
        """
        Prepare data for specific export type
        Returns:
            Tuple containing:
            - data: List of values to insert
            - column_names: List of column names
            - column_type_names: List of column types
        """
        pass

    def export_data(self):
        """Export data to all configured exporters

        Returns:
            True: Export succeeded
            False: Export failed (actual error)
            None: No data to export (not an error, e.g., no overlay, no signature)
        """
        self.log.debug(inspect.currentframe().f_code.co_name)
        success = True
        extracted_data = self.extract()

        if extracted_data is None:
            self.log.debug("extract() returned None, skipping export")
            return None  # No data to export, not a failure
            
        for exporter in self.exporters:
            if isinstance(exporter, PrintExporter):
                # For PrintExporter, we pass the extracted data directly
                success &= exporter.export(extracted_data)
            else:
                # Get the data prepared for this specific exporter type
                export_data = self.prepare_export_data(exporter.__class__.__name__)
                
                if export_data is None:
                    self.log.debug(f"prepare_export_data returned None for {exporter.__class__.__name__}")
                    return False
                
                if isinstance(exporter, ElasticsearchExporter):
                    success &= exporter.export(
                        export_data,
                        index=self.elastic_index,
                        tag=self.tag(),
                        hashes=asdict(self.hash),
                        known_benign=self.known_benign,
                        known_malicious=self.known_malicious
                    )
                elif isinstance(exporter, ClickHouseExporter):
                    # For ClickHouse, we need to pass the table name and the prepared data
                    success &= exporter.export(
                        export_data,
                        table=self.get_clickhouse_table(),
                        # Add these parameters explicitly
                        column_names=export_data[1] if isinstance(export_data, tuple) else None,
                        column_type_names=export_data[2] if isinstance(export_data, tuple) else None
                    )
                
        return success

    @abstractmethod
    def get_clickhouse_table(self) -> str:
        """Return the appropriate ClickHouse table name"""
        pass
    # def export_to_elastic(self, list_of_dataclasses, tag=None):
    #     self.log.debug(inspect.currentframe().f_code.co_name)

    #     if not isinstance(list_of_dataclasses, list):
    #         self.log.error("Called export_to_elastic wrongly")

    #     now_t = datetime.now(timezone.utc).strftime("%Y-%m-%d %H:%M:%S")
    #     for dataclass_ in list_of_dataclasses:
    #         if not settings.ELASTIC_CLIENT.ping():
    #             self.log.error("[CONNECTION ERROR] ping to elastic failed")
            
    #         # Convert dataclass to dict and filter out None values
    #         document = {k: v for k, v in asdict(dataclass_).items() if v is not None}
            
    #         if tag:
    #             document["tag"] = [tag, self.tag()]
    #         else:
    #             document["tag"] = self.tag()
    #         hashes = asdict(self.hash)
    #         document |= hashes
    #         document["timestamp_utc"] = now_t
    #         # document["source"] = self.source
    #         document["known_benign"] = self.known_benign
    #         document["known_malicious"] = self.known_malicious

    #         if "_id" in document:
    #             tmp_id = document.pop("_id") + document["sha256"]
    #             _id = hashlib.sha256(tmp_id.encode()).hexdigest()
    #         else:
    #             _id = document["sha256"]

    #         # self.log.debug(f"[DEBUG] about to export {type(document)} {document}")
    #         try:
    #             doc_dump = json.dumps(document)
    #         except TypeError as e:
    #             self.log.error(
    #                 f"Failed export of document. " f"full document: {document}"
    #             )
    #             raise e

    #         # body={"doc": doc_dump,
    #         #       "doc_as_upsert": True  # Create the document if it doesn't exist
    #         # }

    #         # Check if the index exists, and create it if it doesn't
    #         # if not settings.ELASTIC_CLIENT.indices.exists(index=self.elastic_index):
    #         #     settings.ELASTIC_CLIENT.indices.create(index=self.elastic_index)
    #         # pprint(doc_dump) #DEBUG
    #         # print("[DEBUG] _id: " + _id)
    #         # print("[DEBUG] index: " + self.elastic_index)
    #         settings.ELASTIC_CLIENT.index(
    #             index=self.elastic_index, id=_id, document=doc_dump
    #         )