Caroline Claisse

27 papers A* 7A 4B 4C 1Journal 4Unranked 7
YearRankTypeTitle / Venue / Authors
2026 A* conf
CHI
Ian Graham Johnson, Robert Anderson, Caroline Claisse, Viana Nijia Zhang, Vasilis Vlachokyriakos
2026 A* conf
CHI
Xiaran Song, Caroline Claisse, Andrés Lucero
2025 A conf
Conference on Designing Interactive Systems
Xinglin Sun, Caroline Claisse, Runhua Zhang, Xinyu Wu, Jialin Yuan, Qi Wang
2025 J jnl
CoRR
Xinglin Sun, Caroline Claisse, Runhua Zhang, Xinyu Wu, Jialin Yuan, Qi Wang
2025 A* conf
CHI
Caroline Claisse, Alison K. Osborne, Elizabeth Sillence, Angela Glascott, Alisdair S. Cameron, Abigail C. Durrant
2025 B conf
TEI
Caroline Claisse, David J. Chatting, Sara Wolf, Ben Morris, Abigail C. Durrant
2024 conf
CSCW Companion
C. Estelle Smith, Alemitu Bezabih, Diana Freed, Brett A. Halperin, Sara Wolf, Caroline Claisse, Jingjin Li, Michael Jeffrey Daniel Hoefer, Mohammad Rashidujjaman Rifat
2024 B conf
ECSCW
Vasilis Vlachokyriakos, Ian G. Johnson, Robert Anderson, Caroline Claisse, Viana Nijia Zhang, Pamela Briggs
2024 J jnl
CoRR
Vasilis Vlachokyriakos, Ian G. Johnson, Robert Anderson, Caroline Claisse, Viana Nijia Zhang, Pamela Briggs
2024 A conf
Conference on Designing Interactive Systems (Companion Volume)
Caroline Claisse
2024 A conf
Conference on Designing Interactive Systems (Companion Volume)
Eleni Kallopi Margariti, Caroline Claisse, Sara Nabil, Ben Bridgens, Abigail C. Durrant, David S. Kirk
2024 B conf
TEI
Robert B. Markum, Sara Wolf, Caroline Claisse, Michael Jeffrey Daniel Hoefer
2024 conf
NordiCHI (Adjunct)
Robert B. Markum, Franzisca Maas, Sara Wolf, Brett A. Halperin, Caroline Claisse, Elizabeth A. Buie
2024 conf
CHI Extended Abstracts
Makayla Lewis, Miriam Sturdee, Denise Lengyel, Mauro Toselli, John Miers, Violet Owen, Josh Urban Davis, Swen E. Gaudl, Lanxi Xiao, Ernesto Priego, Kim Snooks, Laia Turmo Vidal, Eli Blevis, Nicola Privato, Patricia Piedade, Corey J. Ford, Nick Bryan-Kinns, Beatriz Severes, Kirsikka Kaipainen, Caroline Claisse, Raksanda Mehnaz Huq, Mirjam Palosaari Eladhari, Anna Troisi, Ana O. Henriques, Ar Grek, Gareth McMurchy, Ray LC, Sara Nabil, Jacinta Jardine, Robert Collins, Andrey V. Vlasov, Yana Knight, Michele Cremaschi, Silvia Carderelli-Gronau, Claudia Núñez-Pacheco, Gisela Reyes-Cruz, Jean-Philippe Rivière
2024 A* conf
CHI
Caroline Claisse, Abigail C. Durrant, Mabel Lie
2023 A* conf
CHI
Caroline Claisse, Abigail C. Durrant
2023 J jnl
Multimodal Technol. Interact.
Laura Maye, Caroline Claisse
2023 C conf
AIES
SJ Bennett, Caroline Claisse, Ewa Luger, Abigail C. Durrant
2022 A* conf
CHI
Caroline Claisse, Bakita Kasadha, Simone Stumpf, Abigail C. Durrant
2022 conf
PDC (2)
Kiersten Hay, Larissa Pschetz, Nantia Koulidou, Caroline Claisse, Thomas Dylan, Billy Dixon, Henry Collingham, Bettina Nissen
2022 conf
CHI Extended Abstracts
Caroline Claisse, Muhammad Umair, Abigail C. Durrant, Charles Windlin, Pavel Karpashevich, Kristina Höök, Vasiliki Tsaknaki, Pedro Sanches, Corina Sas
2020 A* conf
CHI
Caroline Claisse, Daniela Petrelli, Luigina Ciolfi, Nick Dulake, Mark T. Marshall, Abigail C. Durrant
2020 J jnl
Interactions
Patrick A. Tresset, Stephanie M. Wilson, Timothy Neate, Abi Roper, Jane Marshall, Madeline Cruice, Nantia Koulidou, Caroline Claisse, Daniela Petrelli, Luigina Ciolfi, Nick Dulake, Mark T. Marshall
2019 conf
C&T
Danilo Giglitto, Luigina Ciolfi, Caroline Claisse, Eleanor Lockley
2018 conf
DigitalHERITAGE/VSMM
Caroline Claisse, Daniela Petrelli, Nick Dulake, Mark T. Marshall, Luigina Ciolfi
2017 A conf
Conference on Designing Interactive Systems (Companion Volume)
Caroline Claisse
2016 B conf
TEI
Caroline Claisse
redb/extractors/ioc_extractor/ioc_extractor.py
← Index redb/extractors/ioc_extractor/ioc_extractor.py python
"""
IOC Extractor - Extractor class for extracting IOCs from decompilation results.

This extractor works with in-memory data from DecompileBinja, following the
standard Extractor pattern to support both ClickHouse and PrintExporter (dry-run).

Usage:
    # After DecompileBinja completes:
    ioc_extractor = IOCExtractorFromResults(
        analysis_results=decompiler.analysis_results,
        sha256=sha256,
        log=logger,
        exporters=exporters,
        index_prefix=index_prefix
    )
    ioc_extractor.export_data()
"""

import inspect
from datetime import datetime, timezone
from pathlib import Path
from typing import Any, List, Dict, Optional

from redb.extractors.enum import Tag
from redb.extractors.database_exporters import DatabaseExporter

# Import the IOCScraper and related classes from standalone module
from redb.extractors.ioc_extractor.standalone_ioc_extractor import (
    IOCScraper,
    IOCType,
    SourceType,
    ExtractedIOC,
)
from typing import Set


class IOCExtractorFromResults:
    """
    Extracts IOCs from in-memory decompilation results.

    This follows a simplified Extractor pattern but doesn't inherit from Extractor
    since it doesn't read from a binary file - instead it takes already-processed
    analysis results from DecompileBinja.
    """

    def __init__(
        self,
        analysis_results: Dict[str, Any],
        sha256: str,
        log: Any,
        exporters: Optional[List[DatabaseExporter]] = None,
        index_prefix: Optional[str] = None,
        tld_file: Optional[Path] = None,
        suppress_types: Optional[Set[IOCType]] = None,
        js_context: bool = False,
    ):
        """
        Initialize IOC Extractor with analysis results.

        Args:
            analysis_results: Dict containing 'strings' and 'decompiled' lists from DecompileBinja
            sha256: Sample SHA256 hash
            log: Logger instance
            exporters: List of database exporters (ClickHouse, Print, etc.)
            index_prefix: Index prefix for database
            tld_file: Optional path to TLD list file
            js_context: When True, the underlying IOCScraper rejects FQDN
                candidates that match JS object-access syntax (see
                JS_FP_TLDS / JS_FP_SLDS). Set this for the JS pipeline only;
                APK suppresses FQDN entirely via suppress_types and binary
                callers leave it disabled.
        """
        self.log = log
        self.log.debug(f"Creating {self.__class__.__name__}")
        self.analysis_results = analysis_results
        self.sha256 = sha256
        self.exporters = exporters or []
        self.index_prefix = index_prefix
        self.scraper = IOCScraper(
            tld_file, suppress_types=suppress_types, js_context=js_context,
        )
        self.extracted_iocs: List[ExtractedIOC] = []

    def extract(self) -> List[ExtractedIOC]:
        """
        Extract IOCs from strings and decompiled functions in analysis_results.

        Returns:
            List of ExtractedIOC objects
        """
        self.log.debug(inspect.currentframe().f_code.co_name)
        self.extracted_iocs = []

        # Extract from strings
        strings_count = self._extract_from_strings()

        # Extract from decompiled functions
        functions_count = self._extract_from_decompiled()

        # Extract from text-based artefact surfaces (JS, PowerShell, etc.)
        text_count = self._extract_from_text()

        self.log.info(
            f"Extracted {len(self.extracted_iocs)} IOCs for {self.sha256[:16]}... "
            f"(strings: {strings_count}, functions: {functions_count}, "
            f"text: {text_count})"
        )

        return self.extracted_iocs

    def _extract_from_strings(self) -> int:
        """Extract IOCs from sample's strings."""
        count = 0
        strings = self.analysis_results.get("strings", [])

        for s in strings:
            string_value = s.get("string", "")
            string_offset = s.get("string_offset", 0)

            if isinstance(string_value, bytes):
                string_value = string_value.decode('utf-8', errors='replace')

            for ioc in self.scraper.scrape(string_value, SourceType.STRING, str(string_offset)):
                self.extracted_iocs.append(ioc)
                count += 1

        return count

    def _extract_from_decompiled(self) -> int:
        """Extract IOCs from sample's decompiled functions.

        Supports both Binja format (key: "decompiled", fields: "decompiled_function",
        "decompiled_function_hash", "function_type") and APK format (key:
        "decompiled_content", fields: "decompiled_method", "decompiled_method_hash",
        "method_type").
        """
        count = 0

        # Binja format
        decompiled = self.analysis_results.get("decompiled", [])
        for func in decompiled:
            func_type = func.get("function_type", "UNKNOWN")
            if func_type in ("LIBRARY", "THUNK"):
                continue

            func_content = func.get("decompiled_function", "")
            func_hash = func.get("decompiled_function_hash", "unknown")

            if isinstance(func_content, bytes):
                func_content = func_content.decode('utf-8', errors='replace')

            for ioc in self.scraper.scrape(func_content, SourceType.DECOMPILED_FUNCTION, func_hash):
                self.extracted_iocs.append(ioc)
                count += 1

        # APK format (decompiled_content with method-level fields)
        decompiled_content = self.analysis_results.get("decompiled_content", [])
        for func in decompiled_content:
            func_type = func.get("method_type", "UNKNOWN")
            if func_type in ("LIBRARY", "THUNK"):
                continue

            func_content = func.get("decompiled_method", "")
            func_hash = func.get("decompiled_method_hash", "unknown")

            if isinstance(func_content, bytes):
                func_content = func_content.decode('utf-8', errors='replace')

            for ioc in self.scraper.scrape(func_content, SourceType.DECOMPILED_FUNCTION, func_hash):
                self.extracted_iocs.append(ioc)
                count += 1

        return count

    def _extract_from_text(self) -> int:
        """Extract IOCs from text-based artefact surfaces.

        Walks `analysis_results["text_raw"]` and `analysis_results["text_normalized"]`,
        each a list of `{"content": str, "content_hash": str}` dicts. Each
        list is routed through its own SourceType (`TEXT_RAW` /
        `TEXT_NORMALIZED`) so analysts can distinguish IOCs that were already
        present in the raw source from those exposed only after normalisation
        (deobfuscation/beautification). Generic across text-based formats —
        used by JS today, intended for PowerShell, Python, email body,
        extracted PDF/Office text in the future.
        """
        count = 0

        for key, source_type in (
            ("text_raw", SourceType.TEXT_RAW),
            ("text_normalized", SourceType.TEXT_NORMALIZED),
        ):
            for entry in self.analysis_results.get(key, []):
                content = entry.get("content", "")
                content_hash = entry.get("content_hash", "unknown")

                if isinstance(content, bytes):
                    content = content.decode('utf-8', errors='replace')

                for ioc in self.scraper.scrape(content, source_type, content_hash):
                    self.extracted_iocs.append(ioc)
                    count += 1

        return count

    def prepare_export_data(self, exporter_type: str) -> Any:
        """
        Prepare data for specific export type.

        Returns tuple for ClickHouse or list of dicts for Print/Elasticsearch.
        """
        self.log.debug(inspect.currentframe().f_code.co_name)

        if not self.extracted_iocs:
            return None

        now = datetime.now(timezone.utc)

        if exporter_type == "ClickHouseExporter":
            data = [
                [
                    self.sha256,
                    ioc.ioc_type.value,
                    ioc.ioc_value,
                    ioc.source_type.value,
                    ioc.source_identifier,
                    now,
                ]
                for ioc in self.extracted_iocs
            ]

            column_names = [
                "sha256",
                "ioc_type",
                "ioc_value",
                "source_type",
                "source_identifier",
                "extracted_at",
            ]

            column_type_names = [
                "FixedString(64)",
                "Enum8('ipv4'=1, 'ipv6'=2, 'fqdn'=3, 'url'=4, 'email'=5, 'server'=6, "
                "'hash_md5'=10, 'hash_sha1'=11, 'hash_sha256'=12, 'cve'=20, 'cwe'=21, 'cpe'=22, "
                "'crypto_btc'=30, 'crypto_eth'=31, 'crypto_xrp'=32, 'crypto_bch'=33, "
                "'crypto_ada'=34, 'crypto_substrate'=35, 'path_linux'=40, 'path_windows'=41, "
                "'registry_key'=42, 'onion'=50)",
                "String",
                "Enum8('decompiled_function'=1, 'disassembled_function'=2, 'string'=3, "
                "'text_raw'=4, 'text_normalized'=5)",
                "String",
                "DateTime64(3, 'UTC')",
            ]

            return (data, column_names, column_type_names)

        else:
            # For PrintExporter and others - return list of dicts
            return [
                {
                    "sha256": self.sha256,
                    "ioc_type": ioc.ioc_type.value,
                    "ioc_value": ioc.ioc_value,
                    "source_type": ioc.source_type.value,
                    "source_identifier": ioc.source_identifier,
                    "extracted_at": now.isoformat(),
                }
                for ioc in self.extracted_iocs
            ]

    def get_clickhouse_table(self) -> str:
        """Return the ClickHouse table name for IOCs."""
        return "redb_iocs"

    def tag(self) -> str:
        """Return the tag for this extractor."""
        return Tag.IOC.value if hasattr(Tag, 'IOC') else "ioc"

    def export_data(self) -> bool:
        """
        Export extracted IOCs to all configured exporters.

        Returns:
            True if export succeeded, False if failed, None if no data
        """
        self.log.debug(inspect.currentframe().f_code.co_name)

        # First extract the IOCs
        extracted = self.extract()

        if not extracted:
            self.log.debug("No IOCs extracted, skipping export")
            return None

        success = True

        from redb.extractors.database_exporters import PrintExporter, ClickHouseExporter

        for exporter in self.exporters:
            try:
                if isinstance(exporter, PrintExporter):
                    # For PrintExporter, pass the list of dicts
                    export_data = self.prepare_export_data("PrintExporter")
                    success &= exporter.export(export_data)

                elif isinstance(exporter, ClickHouseExporter):
                    # For ClickHouse, pass tuple with table info
                    export_data = self.prepare_export_data("ClickHouseExporter")
                    if export_data:
                        success &= exporter.export(
                            export_data,
                            table=self.get_clickhouse_table(),
                            column_names=export_data[1],
                            column_type_names=export_data[2]
                        )

            except Exception as e:
                self.log.error(f"Error exporting IOCs to {exporter.__class__.__name__}: {e}")
                success = False

        return success