Naoki Fukuta

124 papers B 11C 3Journal 16Unranked 88
YearRankTypeTitle / Venue / Authors
2025 conf
IIAI-AAI-Winter
Azizur Rahman, Naoki Fukuta
2025 J jnl
Frontiers Robotics AI
Daijiro Higashi, Naoki Fukuta, Tsuyoshi Tasaki
2024 conf
IIAI-AAI
Tomoaki Ishiguro, Naoki Fukuta
2024 conf
IIAI-AAI
Md Sabbir Hossain, Naoki Fukuta
2024 conf
IIAI-AAI
Suma Saathvika Duddela, Naoki Fukuta
2024 conf
IIAI-AAI
Ahamad Iftekhar, Naoki Fukuta
2023 conf
IIAI-AAI
Sora Arakawa, Naoki Fukuta
2023 conf
IIAI-AAI
Taichi Motegi, Naoki Fukuta
2023 conf
IIAI-AAI-Winter
Md Sabbir Hossain, Ihsan Ibrahim, Naoki Fukuta
2023 conf
IIAI-AAI
Ryotaro Suzuki, Naoki Fukuta
2023 conf
IIAI-AAI-Winter
Ryotaro Suzuki, Naoki Fukuta
2023 conf
IIAI-AAI
Ritik Rawat, Ihsan Ibrahim, Takaaki Kawai, Naoki Fukuta
2023 conf
IIAI-AAI
Suma Saathvika Duddela, Ihsan Ibrahim, Takaaki Kawai, Naoki Fukuta
2023 conf
IIAI-AAI
Tomoya Mizutani, Naoki Fukuta
2022 conf
IIAI-AAI
Yushin Jinno, Naoki Fukuta
2022 conf
IIAI-AAI
Asmita Kandel, Ihsan Ibrahim, Naoki Fukuta
2022 conf
IIAI-AAI
Das Dipta, Ihsan Ibrahim, Naoki Fukuta
2022 conf
ACAN@IJCAI
Tomoki Kawazoe, Naoki Fukuta
2022 conf
IIAI-AAI-Winter
Yuto Kuguminato, Naoki Fukuta
2021 conf
ICA
Takumi Sato, Tohru Itoh, Naoki Fukuta, Hiroko Watanabe, Kou Hiroe, Satoshi Takayama, Yukiko Higashimoto, Takayo Ogawa, Atsushi Shinjo, Satoshi Wada
2018 conf
IIAI-AAI
Keita Sugiyama, Naoki Fukuta
2018 conf
JIST (Workshops & Posters)
Takuya Adachi, Naoki Fukuta
2018 conf
IIAI-AAI
Takumi Sato, Naoki Fukuta
2018 conf
IIAI-AAI
Takuma Matsushita, Naoki Fukuta
2018 conf
IIAI-AAI
Masaaki Horie, Naoki Fukuta
2018 J jnl
IEICE Trans. Inf. Syst.
Satoshi Kawase, Takayuki Ito, Takanobu Otsuka, Akihisa Sengoku, Shun Shiramatsu, Tokuro Matsuo, Tetsuya Oishi, Rieko Fujita, Naoki Fukuta, Katsuhide Fujita
2018 conf
ICA
Sotaro Tsutsui, Naoki Fukuta
2018 conf
OM@ISWC
Takuya Adachi, Naoki Fukuta
2018 conf
JIST (Workshops & Posters)
Naoki Yamada, Naoki Fukuta
2018 conf
ICA
Masahiro Nishi, Naoki Fukuta
2018 conf
JIST (Workshops & Posters)
Takuya Adachi, Naoki Fukuta
2018 conf
IIAI-AAI
Sho Oishi, Naoki Fukuta
2018 conf
IIAI-AAI
Nurul Firdaus, Takuya Adachi, Naoki Fukuta
2018 ed.
JIST (Workshops & Posters)
Rathachai Chawuthai, Seiji Koide, Naoki Fukuta, Takeshi Morita, Hanmin Jung, Shinichi Nagano
2017 conf
ICA
Naoki Fukuta, Naoki Yamada
2017 conf
ICA
Takumi Sato, Naoki Fukuta
2017 conf
ACIT/CSII/BCD
Tokuro Matsuo, Takanobu Otsuka, Tetsuya Oishi, Rieko Fujita, Takayuki Ito, Akihisa Sengoku, Shun Shiramatsu, Naoki Fukuta, Katsuhide Fujita, Hidekazu Iwamoto
2017 B conf
WI
Takuya Adachi, Naoki Fukuta
2017 J jnl
Int. J. Crowd Sci.
Takayuki Ito, Takanobu Otsuka, Satoshi Kawase, Akihisa Sengoku, Shun Shiramatsu, Takanori Ito, Eizo Hideshima, Tokuro Matsuo, Tetsuya Oishi, Rieko Fujita, Naoki Fukuta, Katsuhide Fujita
2017 B conf
WI
Sho Oishi, Naoki Fukuta
2017 J jnl
IEICE Trans. Inf. Syst.
Naoki Yamada, Yuji Yamagata, Naoki Fukuta
2017 conf
IIAI-AAI
Kanji Watanabe, Naoki Fukuta
2016 B conf
WI
Sho Oishi, Naoki Fukuta
2016 conf
KICSS
Takayuki Ito, Takanobu Otsuka, Satoshi Kawase, Akihisa Sengoku, Shun Shiramatsu, Tokuro Matsuo, Tetsuya Oishi, Rieko Fujita, Naoki Fukuta, Katsuhide Fujita
2016 conf
ICA
Naoki Yamada, Yuji Yamagata, Naoki Fukuta
2016 ed.
ANAC@AAMAS
Naoki Fukuta, Takayuki Ito, Minjie Zhang, Katsuhide Fujita, Valentin Robu
2016 conf
IIAI-AAI
Hettiarachchige Dona Nidhana Harshika, Naoki Yamada, Masahiro Nishi, Kihaya Sugiura, Naoki Fukuta
2016 conf
ICA
Naoki Fukuta
2016 conf
WI Workshops
Naoki Yamada, Naoki Fukuta
2016 conf
WI Workshops
Sho Oishi, Naoki Fukuta
2016 conf
ICA
Naoki Fukuta
2016 conf
ICA
Sho Oishi, Naoki Fukuta
2016 conf
OM@ISWC
Takuya Adachi, Naoki Fukuta
2016 conf
WI Workshops
Takuya Adachi, Naoki Yamada, Naoki Fukuta
2015 C ed.
ICIS
Takayuki Ito, Yanggon Kim, Naoki Fukuta
2015 conf
KICSS
Naoki Fukuta
2015 J jnl
J. Inf. Process.
Yuji Yamagata, Naoki Fukuta
2015 C conf
ICIS
Yuji Yamagata, Naoki Fukuta
2015 ch.
Next Frontier in Agent-Based Complex Automated Negotiation
Takafumi Ishikawa, Naoki Fukuta
2015 ch.
Next Frontier in Agent-Based Complex Automated Negotiation
Yoshinori Tsuruhashi, Naoki Fukuta
2015 conf
IIAI-AAI
Naoki Fukuta
2014 conf
IIAI-AAI
Yuji Yamagata, Naoki Fukuta
2014 J jnl
J. Adv. Comput. Intell. Intell. Informatics
Yoshihito Sano, Naoki Fukuta
2014 conf
ANAC@AAMAS
Yoshihito Sano, Yoshiaki Kadono, Naoki Fukuta
2014 conf
IIAI-AAI
Yoshihito Sano, Yoshiaki Kadono, Naoki Fukuta
2014 conf
SOCA
Yoshihito Sano, Yoshiaki Kadono, Naoki Fukuta
2014 conf
IIAI-AAI
Naoki Fukuta
2014 conf
JIST (Workshops & Posters)
Yoshiaki Kadono, Naoki Fukuta
2014 conf
SOCA
Naoki Fukuta
2014 conf
ISWC (Posters & Demos)
Yuji Yamagata, Naoki Fukuta
2014 B conf
PRICAI
Yoshiaki Kadono, Naoki Fukuta
2013 B conf
PRIMA
Yoshinori Tsuruhashi, Naoki Fukuta
2013 conf
IIAI-AAI
Yoshihito Sano, Naoki Fukuta
2013 conf
Web Intelligence/IAT Workshops
Naoki Fukuta
2013 conf
SOCA
Naoki Fukuta
2013 J jnl
Inf. Media Technol.
Naoki Fukuta
2013 J jnl
J. Inf. Process.
Naoki Fukuta
2013 conf
JIST
Takahisa Fujino, Naoki Fukuta
2012 J jnl
Inf. Media Technol.
Naoki Fukuta
2012 J jnl
J. Inf. Process.
Naoki Fukuta
2012 conf
Web Intelligence/IAT Workshops
Naoki Fukuta, Takayuki Ito
2012 J jnl
Inf. Media Technol.
Masaharu Hirota, Naoki Fukuta, Shohei Yokoyama, Hiroshi Ishikawa
2012 J jnl
J. Inf. Process.
Masaharu Hirota, Naoki Fukuta, Shohei Yokoyama, Hiroshi Ishikawa
2012 conf
IIAI-AAI
Takahisa Fujino, Naoki Fukuta
2012 conf
SIGSPATIAL/GIS
Motohiro Shirai, Masaharu Hirota, Shohei Yokoyama, Naoki Fukuta, Hiroshi Ishikawa
2012 B conf
AINA
Daniel L. Kovacs, Wuyungerile Li, Naoki Fukuta, Takashi Watanabe
2012 conf
SOCA
Naoki Fukuta, Takayuki Ito
2012 conf
ISWC (Posters & Demos)
Takahisa Fujino, Naoki Fukuta
2011 ed.
PRIMA Workshops
Quan Bai, Naoki Fukuta
2011 conf
PRIMA Workshops
Naoki Fukuta, Takayuki Ito
2011 B conf
CEC
Naoki Fukuta, Takayuki Ito
2011 conf
IAT
Naoki Fukuta
2010 conf
ACIS-ICIS
Naoki Fukuta
2010 J jnl
Int. J. Intell. Inf. Database Syst.
Naoki Fukuta, Takayuki Ito
2010 ch.
Computer and Information Science
Masaharu Hirota, Shohei Yokoyama, Naoki Fukuta, Hiroshi Ishikawa
2010 conf
ACIS-ICIS
Akihiro Okamoto, Shohei Yokoyama, Naoki Fukuta, Hiroshi Ishikawa
2009 conf
ICAART (Revised Selected Papers)
Naoki Fukuta, Takayuki Ito
2009 B conf
ICAART
Naoki Fukuta, Takayuki Ito
2009 J jnl
Web Intell. Agent Syst.
Naoki Fukuta, Takayuki Ito
2008 J jnl
IEICE Trans. Inf. Syst.
Takeshi Morita, Naoki Fukuta, Noriaki Izumi, Takahira Yamaguchi
2008 B conf
PRIMA
Naoki Fukuta, Takayuki Ito
2008 conf
PAKM
Naoki Fukuta, Ken Satoh, Takahira Yamaguchi
2008 conf
Web Intelligence/IAT Workshops
Naoki Fukuta, Takayuki Ito
2007 B conf
PRIMA
Naoki Fukuta, Takayuki Ito
2007 conf
IAT
Naoki Fukuta, Takayuki Ito
2007 conf
DEECS
Naoki Fukuta, Takayuki Ito
2007 C conf
IEA/AIE
Naoki Fukuta, Takayuki Ito
2006 J jnl
IEICE Trans. Inf. Syst.
Takeshi Morita, Noriaki Izumi, Naoki Fukuta, Takahira Yamaguchi
2006 conf
ASWC
Takeshi Morita, Naoki Fukuta, Noriaki Izumi, Takahira Yamaguchi
2006 conf
PAKM
Yuya Takabayashi, Harutaka Niwa, Mitsuharu Taneda, Naoki Fukuta, Takahira Yamaguchi
2006 conf
IAT
Naoki Fukuta, Takayuki Ito
2005 conf
SAINT Workshops
Naoki Fukuta, Tetsuya Osawa, Tadashi Iijima, Takahira Yamaguchi
2005 conf
Web Intelligence
Naoki Fukuta, Tetsuya Osawa, Tadashi Iijima, Takahira Yamaguchi
2004 conf
PAKM
Satoshi Minegishi, Naoki Fukuta, Tadashi Iijima, Takahira Yamaguchi
2004 conf
EON
Takeshi Morita, Yoshihiro Shigeta, Naoki Sugiura, Naoki Fukuta, Noriaki Izumi, Takahira Yamaguchi
2004 conf
PAKM
Takafumi Yamaya, Toramatsu Shintani, Tadachika Ozono, Yusuke Hiraoka, Hiromitsu Hattori, Takayuki Ito, Naoki Fukuta, Kyoji Umemura
2004 conf
ESWS
Naoki Sugiura, Yoshihiro Shigeta, Naoki Fukuta, Noriaki Izumi, Takahira Yamaguchi
2003 conf
EON
Naoki Sugiura, Masaki Kurematsu, Naoki Fukuta, Noriaki Izumi, Takahira Yamaguchi
2001 conf
WWW Posters
Naoki Fukuta, Takayuki Ito, Toramatsu Shintani
2001 conf
INAP (LNCS Volume)
Naoki Fukuta, Nobuaki Mizutani, Tadachika Ozono, Toramatsu Shintani
2001 conf
INAP
Naoki Fukuta, Nobuaki Mizutani, Tadachika Ozono, Toramatsu Shintani
2000 conf
PRICAI Workshops
Naoki Fukuta, Takayuki Ito, Toramatsu Shintani
2000 conf
ICMAS
Takayuki Ito, Naoki Fukuta, Toramatsu Shintani, Katia P. Sycara
2000 B conf
PRICAI
Takayuki Ito, Naoki Fukuta, Ryota Yamada, Toramatsu Shintani, Katia P. Sycara
redb/extractors/yara.py
← Index redb/extractors/yara.py python
"""
YARA Extractor - Scans binary files with YARA rules and stores matches in ClickHouse.

This extractor uses the yara-x library to scan samples against a collection of
YARA rules located in the 'yara/' folder at the project root.

Supports both:
- Pre-compiled rules (.yarac) for faster loading
- Source rules (.yar/.yara) compiled on-the-fly

Schema Design:
- yara_rules: Rule metadata stored once per unique rule (deduplicated by rule_id)
- yara_matches: Sample-rule matches with binary sha256 for efficiency
"""
import inspect
import json
import os
import re
import threading
import time
from datetime import datetime, timezone
from pathlib import Path
from typing import Any, Dict, List, Optional, Tuple

import xxhash
import yara_x

from redb.extractors.enum import Tag
from redb.extractors.extractor import Extractor
from redb.models.dataclasses import YaraMatch, YaraRule


# Default compiled rules filename (can be overridden via YARA_COMPILED_RULES env var)
COMPILED_RULES_FILENAME = os.getenv("YARA_COMPILED_RULES", "compiled_rules.yarac")

# Default source collection name
DEFAULT_SOURCE_COLLECTION = os.getenv("YARA_SOURCE_COLLECTION", "default")


def canonicalize_rule(rule_text: str) -> str:
    """
    Canonicalize YARA rule text for consistent hashing.

    Strips comments and normalizes whitespace, but excludes metadata
    so rules with same logic but different metadata get the same ID.
    """
    # Strip single-line comments
    text = re.sub(r'//.*$', '', rule_text, flags=re.MULTILINE)
    # Strip multi-line comments
    text = re.sub(r'/\*.*?\*/', '', text, flags=re.DOTALL)
    # Strip meta section (keep only strings/condition)
    text = re.sub(r'meta\s*:\s*[^}]+(?=strings|condition|})', '', text, flags=re.DOTALL)
    # Normalize whitespace
    text = ' '.join(text.split())
    return text


def generate_rule_id(rule_text: str) -> int:
    """
    Generate a unique rule_id from canonicalized rule content.

    Returns:
        UInt64 hash of the canonical rule content
    """
    canonical = canonicalize_rule(rule_text)
    return xxhash.xxh64(canonical.encode('utf-8')).intdigest()


def sha256_hex_to_binary(hex_str: str) -> bytes:
    """Convert SHA256 hex string to binary (32 bytes)."""
    return bytes.fromhex(hex_str)


def sha256_binary_to_hex(binary: bytes) -> str:
    """Convert SHA256 binary (32 bytes) to hex string."""
    return binary.hex()


def parse_yara_rules(file_content: str) -> List[Dict[str, Any]]:
    """
    Parse individual YARA rules from file content.

    Handles files with multiple rules and extracts:
    - rule_name: The rule identifier
    - rule_tags: List of tags (from 'rule Name : tag1 tag2 {')
    - rule_meta: Dict of metadata key-value pairs
    - rule_text: Full rule source code

    Args:
        file_content: Raw content of a .yar/.yara file

    Returns:
        List of dicts, each containing rule_name, rule_tags, rule_meta, rule_text
    """
    rules = []

    # Pattern to match rule declarations: rule Name or rule Name : tags
    # We need to find rule boundaries by tracking braces
    rule_pattern = re.compile(
        r'(?:^|\n)\s*((?:private\s+|global\s+)*rule\s+(\w+)\s*(?::\s*([^{]*))?\s*\{)',
        re.MULTILINE
    )

    matches = list(rule_pattern.finditer(file_content))

    for i, match in enumerate(matches):
        rule_start = match.start(1)  # Start of 'rule ...'
        rule_name = match.group(2)
        tags_str = match.group(3) or ""
        rule_tags = [t.strip() for t in tags_str.split() if t.strip()]

        # Find the matching closing brace by counting braces
        brace_count = 0
        rule_end = match.end()
        in_string = False
        escape_next = False

        for j, char in enumerate(file_content[match.end() - 1:], start=match.end() - 1):
            if escape_next:
                escape_next = False
                continue
            if char == '\\':
                escape_next = True
                continue
            if char == '"' and not escape_next:
                in_string = not in_string
                continue
            if in_string:
                continue
            if char == '{':
                brace_count += 1
            elif char == '}':
                brace_count -= 1
                if brace_count == 0:
                    rule_end = j + 1
                    break

        rule_text = file_content[rule_start:rule_end].strip()

        # Extract metadata from rule
        meta = {}
        meta_match = re.search(
            r'meta\s*:\s*(.*?)(?=strings\s*:|condition\s*:|$)',
            rule_text,
            re.DOTALL
        )
        if meta_match:
            meta_text = meta_match.group(1)
            for line in meta_text.strip().split('\n'):
                if '=' in line:
                    key, _, value = line.partition('=')
                    key = key.strip()
                    value = value.strip().strip('"\'')
                    if key and not key.startswith('//'):
                        meta[key] = value

        rules.append({
            'rule_name': rule_name,
            'rule_tags': rule_tags,
            'rule_meta': meta,
            'rule_text': rule_text,
        })

    return rules


class YaraBatchInsertBuffer:
    """
    Thread-safe buffer for batching YARA match inserts.

    Collects matches from multiple samples and flushes to ClickHouse
    when batch_size is reached or flush_interval expires.
    """

    def __init__(
        self,
        exporter,
        index_prefix: str,
        batch_size: int = 1000,
        flush_interval: int = 30,
    ):
        self.exporter = exporter
        self.index_prefix = index_prefix
        self.batch_size = batch_size
        self.flush_interval = flush_interval

        self.matches_buffer: List[List] = []
        self.rules_buffer: Dict[int, List] = {}  # rule_id -> rule_data (deduplicated)
        self.lock = threading.Lock()
        self.last_flush = time.time()

        # Start background flush timer
        self._stop_timer = False
        self._timer_thread = threading.Thread(target=self._flush_timer, daemon=True)
        self._timer_thread.start()

    def add(self, sha256_binary: bytes, matches: List[Tuple], rules: Dict[int, List]) -> None:
        """
        Add matches and rules to buffer.

        Args:
            sha256_binary: Binary SHA256 (32 bytes)
            matches: List of match tuples (sha256_binary, rule_id, rule_name, scan_date, match_strings)
            rules: Dict of rule_id -> rule_data tuples
        """
        with self.lock:
            self.matches_buffer.extend(matches)
            # Merge rules (deduplicated by rule_id)
            for rule_id, rule_data in rules.items():
                if rule_id not in self.rules_buffer:
                    self.rules_buffer[rule_id] = rule_data

            if len(self.matches_buffer) >= self.batch_size:
                self._flush_locked()

    def _flush_locked(self) -> None:
        """Flush buffer (must hold lock)."""
        if not self.matches_buffer:
            return

        try:
            # Insert rules first (deduplicated)
            if self.rules_buffer:
                rules_data = list(self.rules_buffer.values())
                self.exporter.batch_insert(
                    table='yara_rules',
                    rows=rules_data,
                    column_names=[
                        'rule_id', 'rule_name', 'source_collection',
                        'ingested_at', 'rule_text', 'rule_meta', 'rule_tags'
                    ],
                    column_type_names=[
                        'UInt64', 'String', 'LowCardinality(String)',
                        "DateTime64(3, 'UTC')", 'String', 'JSON', 'Array(LowCardinality(String))'
                    ]
                )

            # Insert matches
            self.exporter.batch_insert(
                table='yara_matches',
                rows=self.matches_buffer,
                column_names=[
                    'sha256', 'rule_id', 'rule_name',
                    'scan_date', 'match_strings'
                ],
                column_type_names=[
                    'FixedString(32)', 'UInt64', 'LowCardinality(String)',
                    "DateTime64(3, 'UTC')", 'Array(String)'
                ]
            )

            print(f"[YARA] Flushed {len(self.matches_buffer)} matches and {len(self.rules_buffer)} rules")

        except Exception as e:
            print(f"[YARA] Error flushing batch: {e}")

        # Clear buffers
        self.matches_buffer = []
        self.rules_buffer = {}
        self.last_flush = time.time()

    def flush(self) -> None:
        """Public flush (acquires lock)."""
        with self.lock:
            self._flush_locked()

    def _flush_timer(self) -> None:
        """Background timer for periodic flushes."""
        while not self._stop_timer:
            time.sleep(5)  # Check every 5 seconds
            with self.lock:
                if time.time() - self.last_flush > self.flush_interval and self.matches_buffer:
                    self._flush_locked()

    def stop(self) -> None:
        """Stop the background timer and flush remaining data."""
        self._stop_timer = True
        self.flush()


class YaraExtractor(Extractor):
    """
    Extractor that scans binary files with YARA rules.

    The YARA rules are loaded from the 'yara/' folder at the project root.
    Each matching rule is stored in ClickHouse with its metadata.

    Supports pre-compiled rules for faster loading:
    - If 'yara/compiled_rules.yarac' exists, it will be loaded directly
    - Otherwise, all .yar/.yara files are compiled and cached in memory
    - Use YaraExtractor.compile_and_save() to pre-compile rules
    """

    # Class-level cache for compiled YARA rules
    _compiled_rules = None
    _rules_path = None

    def __init__(
        self,
        filepath: str,
        log: Any,
        exporters: Optional[List] = None,
        index_prefix: Optional[str] = None,
        known_benign: bool = False,
        known_malicious: bool = False,
    ):
        super().__init__(
            filepath,
            log,
            exporters,
            index_prefix,
            known_benign,
            known_malicious,
        )
        self.matches: List[YaraMatch] = []
        self.rules: Dict[str, YaraRule] = {}  # rule_name -> YaraRule (deduplicated)

    @classmethod
    def get_yara_rules_path(cls) -> Path:
        """Get the path to the YARA rules directory."""
        # Default to 'yara/' in project root
        project_root = Path(__file__).parent.parent.parent
        default_path = project_root / "yara"

        # Allow override via environment variable
        rules_path = os.getenv("YARA_RULES_PATH", str(default_path))
        return Path(rules_path)

    @classmethod
    def get_compiled_rules_path(cls) -> Path:
        """Get the path to the pre-compiled rules file."""
        return cls.get_yara_rules_path() / COMPILED_RULES_FILENAME

    @classmethod
    def load_compiled_rules(cls) -> Optional[yara_x.Rules]:
        """
        Load pre-compiled YARA rules from .yarac file.

        Returns:
            Compiled Rules object or None if file doesn't exist
        """
        compiled_path = cls.get_compiled_rules_path()
        if not compiled_path.exists():
            return None

        try:
            with open(compiled_path, "rb") as f:
                rules = yara_x.Rules.deserialize_from(f)
            # Only log in debug mode (non-prod) to avoid spamming in bulk processing
            if os.getenv("SERVER_ENV") != "prod":
                print(f"[DEBUG] Loaded pre-compiled YARA rules from {compiled_path}")
            return rules
        except Exception as e:
            print(f"[WARNING] Failed to load compiled rules from {compiled_path}: {e}")
            return None

    @classmethod
    def compile_rules_from_source(cls) -> Optional[yara_x.Rules]:
        """
        Compile all YARA rules from source .yar/.yara files.

        Returns:
            Compiled Rules object or None if no rules found
        """
        rules_path = cls.get_yara_rules_path()

        if not rules_path.exists():
            return None

        # Find all .yar and .yara files recursively
        rule_files = []
        for ext in ["*.yar", "*.yara"]:
            rule_files.extend(rules_path.rglob(ext))

        if not rule_files:
            return None

        print(f"[INFO] Compiling {len(rule_files)} YARA rule files from {rules_path}")

        # Compile all rules using yara-x compiler
        compiler = yara_x.Compiler()
        compiled_count = 0
        failed_count = 0

        for rule_file in rule_files:
            try:
                with open(rule_file, "r", encoding="utf-8") as f:
                    rule_content = f.read()
                # Use the relative path from rules_path as namespace
                namespace = str(rule_file.relative_to(rules_path).parent)
                if namespace == ".":
                    namespace = "default"
                compiler.new_namespace(namespace)
                compiler.add_source(rule_content)
                compiled_count += 1
            except Exception as e:
                # Log warning but continue with other rules
                print(f"[WARNING] Failed to compile YARA rule {rule_file}: {e}")
                failed_count += 1
                continue

        try:
            rules = compiler.build()
            print(f"[INFO] Successfully compiled {compiled_count} rule files ({failed_count} failed)")
            return rules
        except Exception as e:
            print(f"[ERROR] Failed to build YARA rules: {e}")
            return None

    @classmethod
    def compile_rules(cls, force_reload: bool = False) -> Optional[yara_x.Rules]:
        """
        Get compiled YARA rules, loading from cache, .yarac file, or compiling from source.

        Priority:
        1. Return cached rules if available
        2. Load pre-compiled .yarac file if it exists
        3. Compile from source .yar/.yara files

        Args:
            force_reload: If True, ignore cache and reload rules

        Returns:
            Compiled YARA rules or None if no rules found
        """
        rules_path = cls.get_yara_rules_path()

        # Return cached rules if available and path hasn't changed
        if (
            cls._compiled_rules is not None
            and cls._rules_path == rules_path
            and not force_reload
        ):
            return cls._compiled_rules

        # Try loading pre-compiled rules first
        rules = cls.load_compiled_rules()

        # If no pre-compiled rules, compile from source
        if rules is None:
            rules = cls.compile_rules_from_source()

        # Cache the rules
        if rules is not None:
            cls._compiled_rules = rules
            cls._rules_path = rules_path

        return rules

    @classmethod
    def compile_and_save(cls, output_path: Optional[Path] = None) -> bool:
        """
        Compile all YARA rules from source and save to a .yarac file.

        This is useful for pre-compiling rules for faster loading in production.

        Args:
            output_path: Path to save compiled rules (default: yara/compiled_rules.yarac)

        Returns:
            True if successful, False otherwise
        """
        if output_path is None:
            output_path = cls.get_compiled_rules_path()

        # Force compile from source
        rules = cls.compile_rules_from_source()
        if rules is None:
            print("[ERROR] No rules to compile")
            return False

        try:
            # Ensure parent directory exists
            output_path.parent.mkdir(parents=True, exist_ok=True)

            with open(output_path, "wb") as f:
                rules.serialize_into(f)

            print(f"[INFO] Saved compiled YARA rules to {output_path}")
            return True
        except Exception as e:
            print(f"[ERROR] Failed to save compiled rules: {e}")
            return False

    def _extract_yara_matches(self) -> Tuple[List[YaraMatch], Dict[str, YaraRule]]:
        """
        Scan the binary with compiled YARA rules.

        Returns:
            Tuple of (matches list, rules dict) for each matching rule
        """
        self.log.debug(inspect.currentframe().f_code.co_name)

        compiled_rules = self.compile_rules()
        if compiled_rules is None:
            self.log.warning("No YARA rules found or compiled")
            return [], {}

        matches = []
        rules = {}

        try:
            # Scan the binary data
            scan_results = compiled_rules.scan(self.binary)

            # Process each matching rule
            for rule in scan_results.matching_rules:
                rule_name = rule.identifier

                # Extract rule metadata and store rule (deduplicated by name)
                if rule_name not in rules:
                    meta = {}
                    for identifier, value in rule.metadata:
                        meta[identifier] = str(value)
                    rules[rule_name] = YaraRule(
                        rule_name=rule_name,
                        rule_tags=list(rule.tags),
                        rule_meta=meta,
                    )

                # Extract matched string identifiers
                matched_strings = []
                for pattern in rule.patterns:
                    for match in pattern.matches:
                        matched_strings.append(pattern.identifier)

                # Remove duplicates from matched strings
                matched_strings = list(set(matched_strings))

                yara_match = YaraMatch(
                    rule_name=rule_name,
                    match_strings=matched_strings,
                )
                matches.append(yara_match)

                self.log.debug(
                    f"YARA match: {rule_name} (tags: {list(rule.tags)})"
                )

        except Exception as e:
            self.log.error(f"Error scanning with YARA: {e}")
            return [], {}

        return matches, rules

    def extract(self) -> Optional[List[YaraMatch]]:
        """
        Extract YARA matches from the binary.

        Returns:
            List of YaraMatch objects or None on error
        """
        self.log.debug(inspect.currentframe().f_code.co_name)
        try:
            self.matches, self.rules = self._extract_yara_matches()
            return self.matches if self.matches else None
        except Exception as e:
            self.log.error(f"Error extracting YARA matches: {e}")
            return None

    def tag(self) -> str:
        """Return the tag for this extractor."""
        return Tag.YARA.value

    def get_clickhouse_table(self) -> str:
        """Return the ClickHouse table name for YARA matches."""
        return "yara_matches"

    def get_clickhouse_tables(self) -> Dict[str, str]:
        """Return all ClickHouse table names for multi-table support."""
        return {
            'rules': 'yara_rules',
            'matches': 'yara_matches',
        }

    def prepare_export_data(self, exporter_type: str) -> Any:
        """
        Prepare data for export to the specified exporter type.

        Uses optimized normalized schema with two tables:
        - yara_rules: Rule metadata with rule_id (UInt64 hash)
        - yara_matches: Matches with binary sha256 (32 bytes) and rule_id

        Args:
            exporter_type: The type of exporter (e.g., 'ClickHouseExporter')

        Returns:
            Data formatted for the specified exporter
        """

        if exporter_type == "ClickHouseExporter":
            if not self.matches:
                return None

            current_time = datetime.now(timezone.utc)
            source_collection = DEFAULT_SOURCE_COLLECTION

            # Convert sha256 hex to binary (32 bytes)
            sha256_binary = sha256_hex_to_binary(self.sha256)

            # Build rules data from self.rules (deduplicated by rule_id)
            rules_data = {}  # rule_id -> rule_data
            for rule_name, rule in self.rules.items():
                rule_content = f"rule {rule_name} {{ }}"  # Simplified for now
                rule_id = generate_rule_id(rule_content)
                if rule_id not in rules_data:
                    rules_data[rule_id] = [
                        rule_id,
                        rule.rule_name,
                        source_collection,
                        current_time,  # ingested_at
                        "",  # rule_text (empty for now, populated during sync)
                        json.dumps(rule.rule_meta),
                        rule.rule_tags,
                    ]

            # Build matches data
            matches_data = []
            for match in self.matches:
                rule_content = f"rule {match.rule_name} {{ }}"
                rule_id = generate_rule_id(rule_content)

                matches_data.append([
                    sha256_binary,  # Binary sha256 (32 bytes)
                    rule_id,
                    match.rule_name,
                    current_time,  # scan_date
                    match.match_strings,
                ])

            return {
                'multi_table': True,
                'rules': {
                    'table': 'yara_rules',
                    'data': list(rules_data.values()),
                    'column_names': [
                        'rule_id',
                        'rule_name',
                        'source_collection',
                        'ingested_at',
                        'rule_text',
                        'rule_meta',
                        'rule_tags',
                    ],
                    'column_type_names': [
                        'UInt64',
                        'String',
                        'LowCardinality(String)',
                        "DateTime64(3, 'UTC')",
                        'String',
                        'JSON',
                        'Array(LowCardinality(String))',
                    ],
                },
                'matches': {
                    'table': 'yara_matches',
                    'data': matches_data,
                    'column_names': [
                        'sha256',
                        'rule_id',
                        'rule_name',
                        'scan_date',
                        'match_strings',
                    ],
                    'column_type_names': [
                        'FixedString(32)',  # Binary sha256
                        'UInt64',
                        'LowCardinality(String)',
                        "DateTime64(3, 'UTC')",
                        'Array(String)',
                    ],
                },
            }

        return None


def sync_rules_to_db(source_collection: str = None) -> bool:
    """
    Sync all YARA rules from source files to the database.

    This ensures all rules exist in yara_rules table before scanning begins.
    Should be run before batch scanning or in container initialization.

    Args:
        source_collection: Source collection name (default from env)

    Returns:
        True if successful, False otherwise
    """
    from redb import settings

    source_collection = source_collection or DEFAULT_SOURCE_COLLECTION
    rules_path = YaraExtractor.get_yara_rules_path()

    if not rules_path.exists():
        print(f"[ERROR] Rules path does not exist: {rules_path}")
        return False

    # Find all rule files
    rule_files = []
    for ext in ["*.yar", "*.yara"]:
        rule_files.extend(rules_path.rglob(ext))

    if not rule_files:
        print(f"[INFO] No rule files found in {rules_path}")
        return True

    print(f"[INFO] Syncing {len(rule_files)} rule files to database...")

    current_time = datetime.now(timezone.utc)
    rules_data = []
    total_rules = 0

    for rule_file in rule_files:
        try:
            with open(rule_file, "r", encoding="utf-8") as f:
                file_content = f.read()

            # Parse individual rules from file (handles multiple rules per file)
            parsed_rules = parse_yara_rules(file_content)

            for rule in parsed_rules:
                rule_id = generate_rule_id(rule['rule_text'])

                rules_data.append([
                    rule_id,
                    rule['rule_name'],
                    source_collection,
                    current_time,
                    rule['rule_text'],
                    json.dumps(rule['rule_meta']),
                    rule['rule_tags'],
                ])
                total_rules += 1

        except Exception as e:
            print(f"[WARNING] Failed to parse rule file {rule_file}: {e}")
            continue

    print(f"[INFO] Parsed {total_rules} individual rules from {len(rule_files)} files")

    if not rules_data:
        print("[INFO] No rules to sync")
        return True

    # Insert rules to database
    try:
        client = settings.create_clickhouse_client()
        table = "yara_rules"

        client.insert(
            table,
            rules_data,
            column_names=[
                'rule_id', 'rule_name', 'source_collection',
                'ingested_at', 'rule_text', 'rule_meta', 'rule_tags'
            ],
            column_type_names=[
                'UInt64', 'String', 'LowCardinality(String)',
                "DateTime64(3, 'UTC')", 'String', 'JSON', 'Array(LowCardinality(String))'
            ]
        )

        print(f"[INFO] Successfully synced {len(rules_data)} rules to {table}")
        client.close()
        return True

    except Exception as e:
        print(f"[ERROR] Failed to sync rules to database: {e}")
        return False


# CLI utility for pre-compiling rules and syncing
if __name__ == "__main__":
    import argparse

    parser = argparse.ArgumentParser(description="YARA Rules Management Utility")
    parser.add_argument(
        "--compile",
        action="store_true",
        help="Compile all YARA rules and save to .yarac file",
    )
    parser.add_argument(
        "--sync-rules",
        action="store_true",
        help="Sync all YARA rules to the database (run before batch scanning)",
    )
    parser.add_argument(
        "--output",
        type=str,
        help="Output path for compiled rules (default: yara/compiled_rules.yarac)",
    )
    parser.add_argument(
        "--rules-path",
        type=str,
        help="Path to YARA rules directory (default: yara/)",
    )
    parser.add_argument(
        "--source-collection",
        type=str,
        help="Source collection name for rules (default: from YARA_SOURCE_COLLECTION env)",
    )

    args = parser.parse_args()

    if args.rules_path:
        os.environ["YARA_RULES_PATH"] = args.rules_path

    if args.compile:
        output_path = Path(args.output) if args.output else None
        success = YaraExtractor.compile_and_save(output_path)
        if not success:
            exit(1)

    if args.sync_rules:
        success = sync_rules_to_db(args.source_collection)
        if not success:
            exit(1)

    if not args.compile and not args.sync_rules:
        parser.print_help()