Vihar P. Georgiev

21 papers A 1Journal 7Unranked 13
YearRankTypeTitle / Venue / Authors
2024 conf
VDAT
Navneet Gandhi, Rajeewa Kumar Jaisawal, P. N. Kondekar, Ankit Dixit, Naveen Kumar, Vihar P. Georgiev, Navjeet Bagga
2024 J jnl
IEEE Access
Naveen Kumar, Rakshita Pritam Singh Dhar, Janwa El Maiss, Vihar P. Georgiev, César Pascual García
2023 J jnl
CoRR
Preslav Aleksandrov, Ali Rezaei, Nikolas Xeni, Tapas Dutta, Asen Asenov, Vihar P. Georgiev
2023 conf
SENSORS
Navneet Gandhi, Rajeewa Kumar Jaisawal, Sunil Rathore, P. N. Kondekar, Ankit Dixit, Naveen Kumar, Vihar P. Georgiev, Navjeet Bagga
2023 conf
SENSORS
Shashank Mishra, Dina Anna John, Naveen Kumar, Beena Rai, Vihar P. Georgiev
2022 J jnl
IEEE Trans. Very Large Scale Integr. Syst.
Rongmei Chen, Lin Chen, Jie Liang, Yuanqing Cheng, Souhir Elloumi, Jaehyun Lee, Kangwei Xu, Vihar P. Georgiev, Kai Ni, Peter Debacker, Asen Asenov, Aida Todri-Sanial
2022 J jnl
IEEE Trans. Very Large Scale Integr. Syst.
Rongmei Chen, Lin Chen, Jie Liang, Yuanqing Cheng, Souhir Elloumi, Jaehyun Lee, Kangwei Xu, Vihar P. Georgiev, Kai Ni, Peter Debacker, Asen Asenov, Aida Todri-Sanial
2022 J jnl
Sensors
Rajendra P. Shukla, J. G. Bomer, Daniel Wijnperle, Naveen Kumar, Vihar P. Georgiev, Aruna Chandra Singh, Sivashankar Krishnamoorthy, César Pascual García, Sergii Pud, Wouter Olthuis
2021 J jnl
Sensors
Cristina Medina-Bailon, Naveen Kumar, Rakshita Pritam Singh Dhar, Ilina Todorova, Damien Lenoble, Vihar P. Georgiev, César Pascual García
2021 conf
ASICON
Tapas Dutta, Cristina Medina-Bailon, Ali Rezaei, Daniel Nagy, Fikru Adamu-Lema, Nikolas Xeni, Yassine Abourrig, Naveen Kumar, Vihar P. Georgiev, Asen Asenov
2019 conf
ASICON
Toufik Sadi, Oves Badami, Vihar P. Georgiev, Jie Ding, Asen Asenov
2019 conf
LSSC
Toufik Sadi, Oves Badami, Vihar P. Georgiev, Asen Asenov
2019 conf
LSSC
Cristina Medina-Bailon, Carlos Sampedro, José Luis Padilla, Luca Donetti, Vihar P. Georgiev, Francisco Gámiz, Asen Asenov
2018 conf
DRC
Vihar P. Georgiev
2018 conf
NMA
Cristina Medina-Bailon, Toufik Sadi, Carlos Sampedro, José Luis Padilla, Luca Donetti, Vihar P. Georgiev, Francisco Gámiz, Asen Asenov
2018 A conf
DATE
Benjamin Uhlig, Jie Liang, Jaehyun Lee, Raphael Ramos, Abitha Dhavamani, Nicole Nagy, Jean Dijon, Hanako Okuno, Dipankar Kalita, Vihar P. Georgiev, Asen Asenov, Salvatore M. Amoroso, Liping Wang, Campbell Millar, F. Konemann, Bernd Gotsmann, Goncalo Goncalves, Bingan Chen, Reeturaj Pandey, R. Chen, Aida Todri-Sanial
2016 conf
ISQED
A. Asenov, Yangang Wang, Binjie Cheng, Xingsheng Wang, Plamen Asenov, Talib Al-Ameri, Vihar P. Georgiev
2015 J jnl
Microelectron. Reliab.
Louis Gerrer, Vihar P. Georgiev, Salvatore M. Amoroso, Ewan Towie, A. Asenov
2014 conf
ESSDERC
Vihar P. Georgiev, Salvatore M. Amoroso, Laia Vila-Nadal, Cristoph Busche, Leroy Cronin, Asen Asenov
2014 conf
NMA
Vihar P. Georgiev, Asen Asenov
2013 conf
ESSDERC
Vihar P. Georgiev, Stanislav Markov, Laia Vila-Nadal, Cristoph Busche, Leroy Cronin, Asen Asenov
redb/extractors/macho_extractor.py
← Index redb/extractors/macho_extractor.py python
import logging
from abc import ABCMeta, abstractmethod
import inspect
import sys
import os

import machofile

from redb.extractors.extractor import Extractor

logger = logging.getLogger(__name__)


@abstractmethod
class MachOExtractor(Extractor, metaclass=ABCMeta):

    def __init__(
        self,
        filepath,
        log,
        exporters=None,
        index_prefix=None,
        elastic_index=None,
        known_benign=False,
        known_malicious=False,
        macho=None,
    ):
        # Read binary and parse machofile BEFORE calling super().__init__
        # This avoids reading the file twice
        with open(filepath, "rb") as f:
            binary_data = f.read()

        # Parse machofile with binary data
        self.macho = macho if macho else self._generate_machofile_object(binary_data)

        # Extract hashes from machofile to pass to parent
        precomputed_hashes = None
        if self.macho:
            try:
                general_info = self.macho.get_general_info()
                if general_info:
                    # For FAT binaries, get_general_info() returns dict with 'fat' key
                    # For single-arch, it returns the info directly
                    if 'fat' in general_info:
                        fat_info = general_info['fat']
                        precomputed_hashes = {
                            'MD5': fat_info.get('MD5'),
                            'SHA1': fat_info.get('SHA1'),
                            'SHA256': fat_info.get('SHA256'),
                        }
                    else:
                        precomputed_hashes = {
                            'MD5': general_info.get('MD5'),
                            'SHA1': general_info.get('SHA1'),
                            'SHA256': general_info.get('SHA256'),
                        }
            except Exception as e:
                logger.debug(f"Could not get hashes from machofile: {e}")

        super().__init__(
            filepath,
            log,
            exporters,
            index_prefix,
            elastic_index,
            known_benign,
            known_malicious,
            precomputed_hashes=precomputed_hashes,
        )

        # Store binary data so base class doesn't re-read
        self._binary_data = binary_data

    @property
    def binary(self):
        """Override to use already-read binary data."""
        return self._binary_data

    def _generate_machofile_object(self, binary_data):
        """Generate and parse a machofile object from binary data."""
        macho = None
        try:
            macho = machofile.UniversalMachO(data=binary_data)
            if not macho:
                raise Exception("Empty file?")

            # Parse the MachO object once during initialization
            macho.parse()

        except Exception as e:
            logger.error(f"Format error parsing MachO: {e}")
        return macho

    # def _is_macho_file(self):
    #     """Check if the file is a valid Mach-O binary."""
    #     try:
    #         if not self.macho:
    #             return False
            
    #         # For Universal/FAT binaries, check if any architecture is valid
    #         if hasattr(self.macho, 'is_fat') and self.macho.is_fat:
    #             return len(self.macho.architectures) > 0
    #         else:
    #             # Single architecture binary
    #             return hasattr(self.macho, 'macho') and self.macho.macho is not None
    #     except Exception as e:
    #         self.log.error(f"Error checking Mach-O file: {e}")
    #         return False

    def _is_signed(self):
        """Check if the Mach-O binary is code signed using new API."""
        try:
            if not self.macho:
                return False

            # Get architectures using new API
            architectures = self.macho.get_architectures()

            # For each architecture, check if signed
            for arch in architectures:
                try:
                    signature_info = self.macho.get_code_signature_info(arch=arch)
                    if signature_info and signature_info.get('signed', False):
                        return True
                except Exception:
                    continue

            return False
        except Exception as e:
            self.log.error(f"Error checking Mach-O signature: {e}")
            return False

    def _get_architectures(self):
        """Get list of architectures in the Mach-O binary using new API."""
        try:
            if not self.macho:
                return []

            # Use new API method
            architectures = self.macho.get_architectures()
            return architectures if architectures else []
        except Exception as e:
            self.log.error(f"Error getting architectures: {e}")
            return []

    # def _get_macho_for_arch(self, arch_name=None):
    #     """Get MachO instance for specific architecture or default."""
    #     try:
    #         if not self.macho:
    #             return None
            
    #         if hasattr(self.macho, 'is_fat') and self.macho.is_fat:
    #             if arch_name:
    #                 return self.macho.architectures.get(arch_name)
    #             else:
    #                 # Return first available architecture
    #                 return next(iter(self.macho.architectures.values())) if self.macho.architectures else None
    #         else:
    #             # Single architecture binary
    #             return self.macho.macho if hasattr(self.macho, 'macho') else None
    #     except Exception as e:
    #         self.log.error(f"Error getting MachO for architecture: {e}")
    #         return None

    # def _get_formatted_header_values(self, header):
    #     """Get both raw and human-readable header values."""
    #     try:
    #         macho_instance = self._get_macho_for_arch()
    #         if not macho_instance:
    #             return None
            
    #         # Parse the MachO if not already parsed
    #         if not hasattr(macho_instance, 'header') or not macho_instance.header:
    #             macho_instance.parse()
            
    #         # Get human-readable values using machofile's formatting methods
    #         magic_str = macho_instance.format_magic_value(header.get('magic', 0))
            
    #         # Simple CPU type mapping since CPU_TYPE_MAP is not exposed
    #         cputype = header.get('cputype', 0)
    #         if cputype == 0x7:
    #             cputype_str = "x86"
    #         elif cputype == 0x1000007:
    #             cputype_str = "x86_64"
    #         elif cputype == 0xC:
    #             cputype_str = "ARM"
    #         elif cputype == 0x100000C:
    #             cputype_str = "ARM 64-bit"
    #         else:
    #             cputype_str = str(cputype)
            
    #         cpusubtype_str = macho_instance.decode_cpusubtype(header.get('cputype', 0), header.get('cpusubtype', 0))
    #         filetype_str = macho_instance.format_file_type(header.get('filetype', 0))
    #         flags_str = macho_instance.decode_flags(header.get('flags', 0))
            
    #         return {
    #             'raw': {
    #                 'magic': header.get('magic', 0),
    #                 'cputype': header.get('cputype', 0),
    #                 'cpusubtype': header.get('cpusubtype', 0),
    #                 'filetype': header.get('filetype', 0),
    #                 'flags': header.get('flags', 0),
    #             },
    #             'formatted': {
    #                 'magic_str': magic_str,
    #                 'cputype_str': cputype_str,
    #                 'cpusubtype_str': cpusubtype_str,
    #                 'filetype_str': filetype_str,
    #                 'flags_str': flags_str,
    #             }
    #         }
    #     except Exception as e:
    #         self.log.error(f"Error formatting header values: {e}")
    #         return None