Xiang Meng

55 papers A* 2A 3B 6C 2Journal 30Unranked 12
YearRankTypeTitle / Venue / Authors
2026 J jnl
CoRR
Mehdi Makni, Xiang Meng, Rahul Mazumder
2026 J jnl
Appl. Soft Comput.
Xiang Meng, Yan Pei
2026 J jnl
CoRR
Yi Ren, Yukun Wang, Xiang Meng, Guoyao Cheng, Baokang Peng, Lining Zhang, Yibo Lin, Runsheng Wang, Guangyu Sun
2026 J jnl
IEEE Commun. Lett.
Xinzhao Zhou, Fangfang Liu, Xiang Meng, Kuiyuan Ding, Yang Yang
2025 conf
NLPCC (3)
Lijuan Zhou, Mengqi Wu, Xiang Meng, Changyong Niu
2025 J jnl
Expert Syst. Appl.
Lijuan Zhou, Jianing Mao, Xinhang Xu, Xinran Li, Xiang Meng
2025 J jnl
IEEE Internet Things J.
Xiang Meng, Mondher Bouazizi, Zhaojie Li, Tomoaki Ohtsuki
2025 conf
ICONIP (1)
Xiang Meng, Zhaoyang Hai, Xiabi Liu, Yan Pei
2025 J jnl
IEEE Trans. Inf. Forensics Secur.
Hang Zhang, Dong Wei, Nan Jiang, Meng Zhang, Xiang Meng, Yang Yang, Weiqing Huang
2025 J jnl
NeuroImage
Zhengping Pu, Hongna Huang, Man Li, Hongyan Li, Xiaoyan Shen, Lizhao Du, Qingfeng Wu, Xiaomei Fang, Xiang Meng, Qin Ni, Guorong Li, Donghong Cui
2025 J jnl
CoRR
Yachao Liang, Min Yu, Gang Li, Jianguo Jiang, Boquan Li, Feng Yu, Ning Zhang, Xiang Meng, Weiqing Huang
2025 conf
ICC
Xiang Meng, Mondher Bouazizi, Tomoaki Ohtsuki
2025 J jnl
CoRR
Xiang Meng, Mehdi Makni, Rahul Mazumder
2025 J jnl
IEEE Control. Syst. Lett.
Pu Yang, Haifeng Zhang, Xiang Meng, Qinchuan Li
2025 J jnl
IEEE J. Sel. Top. Appl. Earth Obs. Remote. Sens.
Yulong Ding, Ximin Cui, Zhengchao Chen, Zeqing Wang, Debao Yuan, Xiang Meng, Xuan Yang, Yue Xu, Xiangyu Tian
2025 J jnl
PeerJ Comput. Sci.
Xiang Meng, Zhaobing Liu
2024 conf
ICC
Xiang Meng, Mondher Bouazizi, Tomoaki Ohtsuki
2024 B conf
IJCNN
Lijuan Zhou, Xiang Meng, Chenglong Zhang, Changyong Niu
2024 conf
IFIP Int. Conf. Digital Forensics
Jiawen Wang, Boquan Li, Min Yu, Kam-Pui Chow, Jianguo Jiang, Fuqiang Du, Xiang Meng, Weiqing Huang
2024 J jnl
Sensors
Hang Xue, Xiping Xu, Xiang Meng
2024 B conf
CEC
Xiang Meng, Yan Pei, Hideyuki Takagi
2024 B conf
SMC
Yi Ding, Xiang Meng, Yan Pei, Jianqiang Li
2024 A conf
ECAI
Ran Liu, Ming Liu, Min Yu, Jianguo Jiang, Gang Li, Dan Zhang, Jingyuan Li, Xiang Meng, Weiqing Huang
2024 J jnl
CoRR
Ran Liu, Ming Liu, Min Yu, Jianguo Jiang, Gang Li, Dan Zhang, Jingyuan Li, Xiang Meng, Weiqing Huang
2024 J jnl
CoRR
Xiang Meng
2024 J jnl
IEEE Trans Autom. Sci. Eng.
Xiang Meng, Zhangguo Yu, Xuechao Chen, Zelin Huang, Fei Meng, Qiang Huang
2024 J jnl
IEEE Access
Weirong Shao, Mondher Bouazizi, Xiang Meng, Tomoaki Ohtsuki
2024 A* conf
NeurIPS
Yachao Liang, Min Yu, Gang Li, Jianguo Jiang, Boquan Li, Feng Yu, Ning Zhang, Xiang Meng, Weiqing Huang
2024 conf
MILCOM
Gengwang Li, Min Yu, Dongliang Fang, Gang Li, Xiang Meng, Jianguo Jiang, Weiqing Huang
2023 A* conf
STOC
Hamed Hatami, Kaave Hosseini, Xiang Meng
2023 conf
IFIP Int. Conf. Digital Forensics
Yuanyuan Wang, Gengwang Li, Min Yu, Kam-Pui Chow, Jianguo Jiang, Xiang Meng, Weiqing Huang
2023 J jnl
Comput. Secur.
Haitian Yang, Xiang Meng, Xuan Zhao, Yan Wang, Yuejun Liu, Xiaoyu Kang, Jiahui Shen, Weiqing Huang
2023 conf
CNIOT
Yiqi Lv, Xiang Meng, Yong Luo, Yan Pei
2023 J jnl
CoRR
Lijuan Zhou, Xiang Meng, Zhihuan Liu, Mengqi Wu, Zhimin Gao, Pichao Wang
2023 conf
IPSN
Murtadha Aldeer, David Waterworth, Parth Jain, Xiang Meng, Richard P. Martin, Jorge Ortiz
2023 J jnl
Sensors
Kaifeng Ma, Xiang Meng, Mengshu Hao, Guiping Huang, Qingfeng Hu, Peipei He
2022 J jnl
Electron. Colloquium Comput. Complex.
Hamed Hatami, Kaave Hosseini, Xiang Meng
2022 J jnl
IEEE Trans. Ind. Electron.
Qi Li, Xiang Meng, Fei Gao, Guorui Zhang, Weirong Chen
2022 B conf
SMC
Xiang Meng, Yi Ding, Yan Pei
2022 J jnl
Remote. Sens.
Lu Xie, Xiang Meng, Xiaodi Zhao, Liyong Fu, Ram P. Sharma, Hua Sun
2022 B conf
PIMRC
Yuemei Wu, Dong Wei, Qiaoyu Zhang, Weiqing Huang, Xiang Meng
2022 C conf
ISCC
Yuemei Wu, Dong Wei, Jing Li, Weiqing Huang, Xiang Meng
2021 J jnl
IEEE Trans. Ind. Electron.
Xiang Meng, Qi Li, Tao Huang, Xiaofeng Wang, Guorui Zhang, Weirong Chen
2021 conf
PRICAI (3)
Ruwen Bai, Xiang Meng, Bo Meng, Miao Jiang, Junxing Ren, Yang Yang, Min Li, Degang Sun
2021 J jnl
IEEE Trans. Ind. Electron.
Guorui Zhang, Qi Li, Weirong Chen, Xiang Meng
2020 A conf
IROS
Ethan K. Gordon, Xiang Meng, Tapomayukh Bhattacharjee, Matt Barnes, Siddhartha S. Srinivasa
2020 J jnl
Remote. Sens.
Liyong Fu, Guangshuang Duan, Qiaolin Ye, Xiang Meng, Peng Luo, Ram P. Sharma, Hua Sun, Guangxing Wang, Qingwang Liu
2020 B conf
DCC
Xiang Meng, Xiaofeng Huang, Haibing Yin, Shengsheng Zheng, Shiqi Wang
2019 J jnl
IEEE Access
Xiang Meng, Qi Li, Guorui Zhang, Tianhong Wang, Weirong Chen, Taiqiang Cao
2019 C conf
VCIP
Xiaofeng Huang, Kanghao Wang, Haibing Yin, Shengsheng Zheng, Xiang Meng, Shengping Zhang
2019 J jnl
CoRR
Ethan K. Gordon, Xiang Meng, Matt Barnes, Tapomayukh Bhattacharjee, Siddhartha S. Srinivasa
2019 A conf
ICME
Fan Ma, Haoyun Yang, Haibing Yin, Xiaofeng Huang, Chenggang Yan, Xiang Meng
2019 conf
ARSO
Xiang Meng, Zhangguo Yu, Gao Huang, Xuechao Chen, Weijie Qi, Qiang Huang, Bo Su
2017 J jnl
J. Sensors
Yuxiang Yang, Xiang Meng, Mingyu Gao
2016 conf
ISIE
Mingyu Gao, Zhong Li, Xiang Meng, Zhiwei He, Jiye Huang, Ke Yin
redb/extractors/apk_extractors/apk_signature.py
← Index redb/extractors/apk_extractors/apk_signature.py python
import hashlib
import inspect
from datetime import datetime, timezone
from typing import Any, Optional, Tuple

from redb.extractors.enum import Tag
from redb.extractors.apk_extractor import APKExtractor
from redb.models.dataclasses import APKCertificate, APKCodeSigningInfo


# OID to RFC 4514 short name mapping
_OID_SHORT_NAMES = {
    '2.5.4.3': 'CN', '2.5.4.6': 'C', '2.5.4.7': 'L', '2.5.4.8': 'ST',
    '2.5.4.10': 'O', '2.5.4.11': 'OU', '1.2.840.113549.1.9.1': 'E',
    '2.5.4.5': 'SERIALNUMBER', '2.5.4.12': 'T', '2.5.4.42': 'GN',
    '2.5.4.4': 'SN', '2.5.4.9': 'STREET', '2.5.4.17': 'POSTALCODE',
}


def _asn1_name_to_rfc4514(name):
    """Convert an asn1crypto x509.Name to RFC 4514 string (CN=..., O=...)."""
    parts = []
    for rdn in name.chosen:
        for attr in rdn:
            oid = attr['type'].dotted
            val = attr['value'].native
            short = _OID_SHORT_NAMES.get(oid, oid)
            parts.append(f'{short}={val}')
    return ', '.join(parts)


class APKSignatureExtractor(APKExtractor):

    def __init__(
        self, filepath, log, exporters=None, index_prefix=None,
        known_benign=False, known_malicious=False,
        apk=None,
    ):
        super().__init__(
            filepath, log, exporters, index_prefix,
            known_benign, known_malicious, apk,
        )
        self.signing_info = None
        self.log.debug(inspect.currentframe().f_code.co_name)

    def tag(self):
        return Tag.APK_SIGNATURE.value

    def _detect_signature_schemes(self):
        """Detect which APK signature schemes are present."""
        schemes = []
        try:
            if self.apk.is_signed_v1():
                schemes.append(1)
        except Exception:
            pass
        try:
            if self.apk.is_signed_v2():
                schemes.append(2)
        except Exception:
            pass
        try:
            if self.apk.is_signed_v3():
                schemes.append(3)
        except Exception:
            pass
        return schemes

    def _extract_certificate_info(self, cert, source_scheme=None):
        """Extract certificate details from an androguard certificate object."""
        try:
            # Subject and Issuer — asn1crypto doesn't have rfc4514_string, convert manually
            subject = _asn1_name_to_rfc4514(cert.subject)
            issuer = _asn1_name_to_rfc4514(cert.issuer)

            # Serial number
            serial = str(cert.serial_number)

            # Validity
            valid_from = cert.not_valid_before
            valid_to = cert.not_valid_after
            if isinstance(valid_from, datetime):
                valid_from = valid_from.strftime("%Y-%m-%d %H:%M:%S")
            else:
                valid_from = str(valid_from)
            if isinstance(valid_to, datetime):
                valid_to = valid_to.strftime("%Y-%m-%d %H:%M:%S")
            else:
                valid_to = str(valid_to)

            # Thumbprints
            cert_der = cert.dump()
            thumbprint_sha1 = hashlib.sha1(cert_der).hexdigest()
            thumbprint_sha256 = hashlib.sha256(cert_der).hexdigest()

            # Algorithm
            algorithm = None
            try:
                algorithm = cert.hash_algo
            except Exception:
                try:
                    algorithm = cert.signature_algo
                except Exception:
                    pass

            # Key size
            key_size = None
            try:
                pub_key = cert.public_key
                if hasattr(pub_key, 'bit_size'):
                    key_size = pub_key.bit_size
                elif hasattr(pub_key, 'key_size'):
                    key_size = pub_key.key_size
            except Exception:
                pass

            # Self-signed check
            is_self_signed = cert.subject == cert.issuer

            return APKCertificate(
                subject=subject,
                issuer=issuer,
                serial_number=serial,
                valid_from=valid_from,
                valid_to=valid_to,
                thumbprint_sha1=thumbprint_sha1,
                thumbprint_sha256=thumbprint_sha256,
                algorithm=algorithm,
                key_size=key_size,
                is_self_signed=is_self_signed,
                certificate_source_scheme=source_scheme,
            )
        except Exception as e:
            self.log.error(f"Error extracting certificate info: {e}")
            return None

    def _get_signer_certificate(self, schemes) -> Tuple[Optional[APKCertificate], Optional[str]]:
        """Identify the actual signer certificate using V3>V2>V1 priority.

        V2/V3: certificates[0] is the signer per spec.
        V1: androguard's get_certificate() does SignerInfo matching internally.

        Returns (signer_cert_info, source_scheme) or (None, None).
        """
        # V3 takes priority (Android 9+)
        if 3 in schemes:
            try:
                certs = self.apk.get_certificates_v3()
                if certs:
                    cert_info = self._extract_certificate_info(certs[0], source_scheme='v3')
                    if cert_info:
                        return cert_info, 'v3'
            except Exception as e:
                self.log.debug(f"V3 signer extraction failed: {e}")

        # V2 next (Android 7.0+)
        if 2 in schemes:
            try:
                certs = self.apk.get_certificates_v2()
                if certs:
                    cert_info = self._extract_certificate_info(certs[0], source_scheme='v2')
                    if cert_info:
                        return cert_info, 'v2'
            except Exception as e:
                self.log.debug(f"V2 signer extraction failed: {e}")

        # V1 fallback — androguard does SignerInfo.issuerAndSerialNumber matching
        if 1 in schemes:
            try:
                names = self.apk.get_signature_names()
                if names:
                    cert = self.apk.get_certificate(names[0])
                    if cert:
                        cert_info = self._extract_certificate_info(cert, source_scheme='v1')
                        if cert_info:
                            return cert_info, 'v1'
            except Exception as e:
                self.log.debug(f"V1 signer extraction failed: {e}")

        return None, None

    def _extract_all_certificates(self, schemes):
        """Extract all certificates with their source scheme tracked.

        Uses scheme-specific methods to preserve source information,
        deduplicating by thumbprint_sha1 and merging source schemes.
        """
        # cert thumbprint -> (APKCertificate, set of source schemes)
        seen = {}

        for scheme_num, method_name in [
            (3, 'get_certificates_v3'),
            (2, 'get_certificates_v2'),
            (1, 'get_certificates_v1'),
        ]:
            if scheme_num not in schemes:
                continue
            try:
                method = getattr(self.apk, method_name, None)
                if method is None:
                    continue
                certs = method()
                if not certs:
                    continue
                for cert in certs:
                    cert_info = self._extract_certificate_info(cert, source_scheme=f'v{scheme_num}')
                    if cert_info:
                        key = cert_info.thumbprint_sha1
                        if key in seen:
                            # Merge source schemes
                            existing_cert, existing_schemes = seen[key]
                            existing_schemes.add(f'v{scheme_num}')
                        else:
                            seen[key] = (cert_info, {f'v{scheme_num}'})
            except Exception as e:
                self.log.warning(f"Error extracting v{scheme_num} certificates: {e}")

        # Build final list with merged source schemes
        result = []
        for cert_info, source_schemes in seen.values():
            cert_info.certificate_source_scheme = ','.join(sorted(source_schemes))
            result.append(cert_info)

        return result

    def extract(self):
        if not self._is_valid_apk():
            self.log.error(f"Invalid APK for {self.hash.sha256}")
            return None

        schemes = self._detect_signature_schemes()
        is_signed = len(schemes) > 0

        # Extract all certificates with source scheme tracking
        certificates = self._extract_all_certificates(schemes)

        # Identify the actual signer using V3>V2>V1 priority
        signer_cert, signer_scheme = self._get_signer_certificate(schemes)

        apk_signer_subject = signer_cert.subject if signer_cert else None
        apk_signer_issuer = signer_cert.issuer if signer_cert else None

        self.signing_info = APKCodeSigningInfo(
            _id=self.sha256,
            is_signed=is_signed,
            signature_scheme_versions=schemes,
            number_of_certificates=len(certificates),
            x509_certificates=certificates if certificates else None,
            apk_signer_subject=apk_signer_subject,
            apk_signer_issuer=apk_signer_issuer,
        )
        return self.signing_info

    def prepare_export_data(self, exporter_type: str) -> Any:
        if exporter_type == "ClickHouseExporter":
            if not self.signing_info:
                return None

            current_time = datetime.now(timezone.utc)
            sig = self.signing_info

            # Signature summary table
            signature_data = [[
                self.sha256,
                int(sig.is_signed),
                sig.signature_scheme_versions,
                sig.number_of_certificates,
                sig.apk_signer_subject,
                sig.apk_signer_issuer,
                current_time,
            ]]

            # Certificates table (one row per certificate)
            certificates_data = []
            if sig.x509_certificates:
                for cert in sig.x509_certificates:
                    certificates_data.append([
                        self.sha256,
                        cert.subject,
                        cert.issuer,
                        cert.serial_number,
                        datetime.strptime(cert.valid_from, "%Y-%m-%d %H:%M:%S") if cert.valid_from else None,
                        datetime.strptime(cert.valid_to, "%Y-%m-%d %H:%M:%S") if cert.valid_to else None,
                        cert.thumbprint_sha1,
                        cert.algorithm,
                        cert.key_size,
                        int(cert.is_self_signed),
                        cert.certificate_source_scheme,
                        current_time,
                    ])

            return {
                'multi_table': True,
                'signature': {
                    'table': 'redb_apk_signature',
                    'data': signature_data,
                    'column_names': [
                        'sha256',
                        'is_signed', 'signature_scheme_versions',
                        'number_of_certificates',
                        'apk_signer_subject', 'apk_signer_issuer',
                        'analysis_date',
                    ],
                    'column_type_names': [
                        'FixedString(64)',
                        'UInt8', 'Array(UInt8)',
                        'UInt8',
                        'Nullable(String)', 'Nullable(String)',
                        "DateTime64(3, 'UTC')",
                    ],
                },
                'certificates': {
                    'table': 'redb_apk_certificates',
                    'data': certificates_data,
                    'column_names': [
                        'sha256', 'certificate_subject', 'certificate_issuer',
                        'certificate_serial_number',
                        'certificate_valid_from', 'certificate_valid_to',
                        'certificate_thumbprint',
                        'certificate_algorithm', 'key_size', 'is_self_signed',
                        'certificate_source_scheme',
                        'analysis_date',
                    ],
                    'column_type_names': [
                        'FixedString(64)', 'String', 'String', 'String',
                        "DateTime64(3, 'UTC')", "DateTime64(3, 'UTC')",
                        'FixedString(40)',
                        'LowCardinality(String)', 'Nullable(UInt16)', 'UInt8',
                        'LowCardinality(String)',
                        "DateTime64(3, 'UTC')",
                    ],
                },
            }

    def get_clickhouse_table(self) -> str:
        return "redb_apk_signature"