Hannu Laaksonen

33 papers C 1Journal 20Unranked 12
YearRankTypeTitle / Venue / Authors
2026 J jnl
IEEE Access
Tareq Anwar Shikdar, Hannu Laaksonen
2024 J jnl
IEEE Access
Hannu Laaksonen, Hosna Khajeh, Nikos D. Hatziargyriou
2024 J jnl
Expert Syst. Appl.
Meysam Pashaei, Hasan Rastegar, Seyed Farhad Zandrazavi, Kimmo Kauhaniemi, Hannu Laaksonen
2023 J jnl
IEEE Access
Hannu Laaksonen
2023 conf
ISGT EUROPE
Hannu Laaksonen, Hosna Khajeh, Nikos D. Hatziargyriou
2022 conf
ISGT-Europe
Chethan Parthasarathy, Hannu Laaksonen, Ilari Alaperä
2022 J jnl
IEEE Access
Elahe Doroudchi, Hosna Khajeh, Hannu Laaksonen
2022 J jnl
IEEE Access
Mahdi Shahparasti, Hannu Laaksonen, Kimmo Kauhaniemi, Panu Lauttamus, Stefan Strandberg, Jan Strandberg
2022 J jnl
IEEE Access
Sara Haghifam, Hannu Laaksonen, Miadreza Shafie-khah
2022 J jnl
IEEE Access
Mahoor Ebrahimi, Amin Shokri Gazafroudi, Hannu Laaksonen, Miadreza Shafie-khah
2022 J jnl
IEEE Access
Hannu Laaksonen
2021 J jnl
IEEE Access
Hosna Khajeh, Hooman Firoozi, Mohammad Reza Hesamzadeh, Hannu Laaksonen, Miadreza Shafie-khah
2021 conf
ISGT Asia
Chethan Parthasarathy, Hannu Laaksonen, Prathamesh Halagi
2021 conf
ISGT-Europe
Hooman Firoozi, Hosna Khajeh, Hannu Laaksonen
2021 J jnl
IEEE Access
Hannu Laaksonen, Chethan Parthasarathy, Hosna Khajeh, Miadreza Shafie-khah, Nikos D. Hatziargyriou
2021 J jnl
IEEE Access
Mahoor Ebrahimi, Amin Shokri Gazafroudi, Mahan Ebrahimi, Hannu Laaksonen, Miadreza Shafie-khah, João P. S. Catalão
2021 J jnl
NeuroImage
Ana-Sofía Hincapié Casas, Tarek Lajnef, Annalisa Pascarella, Hélène Guiraud-Vinatea, Hannu Laaksonen, Dimitri J. Bayle, Karim Jerbi, Véronique Boulenger
2021 J jnl
IEEE Access
Hosna Khajeh, Amin Shokri Gazafroudi, Hannu Laaksonen, Miadreza Shafie-khah, Pierluigi Siano, João P. S. Catalão
2021 conf
ISGT-Europe
Hossein Hafezi, Hannu Laaksonen, Kimmo Kauhaniemi, Panu Lauttamus, Stefan Strandberg
2020 J jnl
J. Electr. Comput. Eng.
Katja Sirviö, Mike Mekkanen, Kimmo Kauhaniemi, Hannu Laaksonen, Ari Salo, Felipe Castro, Davood Babazadeh
2020 conf
ISGT
Chethan Parthasarathy, Hossein Hafezi, Hannu Laaksonen
2020 J jnl
IEEE Access
Hooman Firoozi, Hosna Khajeh, Hannu Laaksonen
2020 J jnl
IEEE Access
Khaled Syfullah Fuad, Hossein Hafezi, Kimmo Kauhaniemi, Hannu Laaksonen
2019 conf
ISGT Europe
Katja Sirviö, Mike Mekkanen, Kimmo Kauhaniemi, Hannu Laaksonen, Ari Salo, Felipe Castro, Shoaib Ansari, Davood Babazadeh
2019 conf
ICAT
Yeray Mezquita Martín, Amin Shokri Gazafroudi, Juan M. Corchado, Miadreza Shafie-khah, Hannu Laaksonen, Aida Kamisalic
2019 C conf
IECON
Katja Sirviö, Mike Mekkanen, Kimmo Kauhaniemi, Hannu Laaksonen, Ari Salo, Felipe Castro, Shoaib Ansari, Davood Babazadeh
2018 conf
ISGT Europe
Hannu Laaksonen, Petri Hovila
2018 conf
ISGT Europe
Katja Sirviö, Lasse Valkkila, Hannu Laaksonen, Kimmo Kauhaniemi, Arto Rajala
2014 J jnl
IEEE Trans. Smart Grid
Hannu Laaksonen, Dmitry Ishchenko, Alexandre Oudalov
2012 J jnl
NeuroImage
Hannu Laaksonen, Jan Kujala, Annika Hultén, Mia Liljeström, Riitta Salmelin
2012 conf
ISGT Europe
Hannu Laaksonen
2010 conf
ISGT Europe
Hannu Laaksonen, Kimmo Kauhaniemi
2008 J jnl
NeuroImage
Hannu Laaksonen, Jan Kujala, Riitta Salmelin
redb/extractors/js_extractors/js_context.py
← Index redb/extractors/js_extractors/js_context.py python
"""Per-sample shared state for the JavaScript extractor pipeline.

A `JSContext` is built exactly once per JS sample (in `workers.py`) and threaded
into every extractor that runs against that sample. It owns the disk read, the
decoded source text, the line-split cache, the Shannon text-entropy figure, the
shared `scan_source()` results, and the pyjsparser AST. Each of those is
computed lazily through `cached_property` so an extractor that doesn't need a
particular artefact does not pay for it.

Without this object, every JS extractor instance redoes the same disk read,
decode, scan, and (for any consumer) AST parse. With it, every extractor
shares one set of results.

`JSExtractor.__init__` accepts the context via a `context=` kwarg; if absent
(e.g. unit tests instantiating an extractor directly with `source=...`) it
builds a fresh context from the constructor arguments. Either path produces a
fully-populated context, so extractor code can always rely on
`self._context.scan` / `self._context.ast` / etc.
"""

from __future__ import annotations

import math
from collections import Counter
from dataclasses import dataclass
from functools import cached_property
from typing import Any, Dict, List, Optional

import chardet

from redb.extractors.js_extractors.js_patterns import scan_source


def decode_source(raw_bytes: bytes) -> str:
    """Decode raw JS bytes to text, honouring BOMs and falling back to chardet.

    Mirrors the historical `JSExtractor._decode_source` logic so existing tests
    continue to round-trip identically.
    """
    if not raw_bytes:
        return ""

    if raw_bytes[:3] == b"\xef\xbb\xbf":
        return raw_bytes[3:].decode("utf-8", errors="replace")
    if raw_bytes[:2] in (b"\xff\xfe", b"\xfe\xff"):
        return raw_bytes.decode("utf-16", errors="replace")

    try:
        return raw_bytes.decode("utf-8")
    except UnicodeDecodeError:
        pass

    try:
        detected = chardet.detect(raw_bytes)
        if detected and detected.get("encoding"):
            return raw_bytes.decode(detected["encoding"], errors="replace")
    except Exception:
        pass

    return raw_bytes.decode("latin-1", errors="replace")


def _text_entropy(text: str) -> float:
    """Shannon entropy of the character distribution of `text`, rounded to 4dp."""
    if not text:
        return 0.0
    counter = Counter(text)
    length = len(text)
    entropy = 0.0
    for count in counter.values():
        p = count / length
        if p > 0:
            entropy -= p * math.log2(p)
    return round(entropy, 4)


@dataclass
class JSContext:
    """Shared raw materials for one JS sample, consumed by every JS extractor.

    Cheap attributes (raw_bytes, source) are populated eagerly by the factory.
    Expensive ones (scan, ast) are cached_property — computed on first access
    and reused across every extractor that holds the same context.

    `content_type` is the magika label (e.g. `"javascript"`) carried alongside
    the source so the new code_text_content writer (and any future generic
    text-content writer) can record it without re-running magika. Defaults to
    `"javascript"` because by construction this context type is JS-specific;
    workers.py supplies the actual magika value when it builds the context.
    """

    filepath: str
    raw_bytes: bytes
    source: str
    log: Any = None
    content_type: str = "javascript"
    # Populated by JSStringsExtractor.extract() (the decoded/reconstructed
    # strings — hex/unicode/charcode/base64/concat unpacked into plaintext).
    # Read post-loop by the IOC plumbing in workers.py so any IOCs hidden
    # behind those encodings get scraped from the decoded form. Stays None
    # if JSStringsExtractor didn't run for this sample.
    decoded_strings: Optional[list] = None

    @cached_property
    def lines(self) -> List[str]:
        return self.source.splitlines() if self.source else []

    @cached_property
    def text_entropy(self) -> float:
        return _text_entropy(self.source)

    @cached_property
    def scan(self) -> Dict[str, Dict[str, object]]:
        """Result of running scan_source() exactly once over self.source."""
        return scan_source(self.source) if self.source else {}

    @cached_property
    def ast(self) -> Optional[Any]:
        """Lazy pyjsparser AST. Returns None if the parser is missing or fails.

        Extractors should treat None AST as "fall back to regex" — every
        AST-consuming extractor already handles that path.
        """
        if not self.source:
            return None
        try:
            import pyjsparser
            return pyjsparser.parse(self.source)
        except ImportError:
            if self.log is not None:
                self.log.debug("pyjsparser not installed, AST analysis skipped")
        except Exception as e:
            if self.log is not None:
                self.log.warning(f"AST parsing failed for {self.filepath}: {e}")
        return None

    @cached_property
    def deobfuscated(self) -> "tuple[Optional[str], Optional[str]]":
        """Run the configured JS deobfuscator (with jsbeautifier fallback) once
        per sample and cache the result. Returns `(text, normalizer_used)` or
        `(None, None)` if neither path produced output.

        Computed lazily on first access — samples whose pipeline never reads
        this don't pay the subprocess cost.
        """
        from redb.extractors.js_extractors.js_deobfuscator import deobfuscate
        return deobfuscate(self.source, self.log)

    @cached_property
    def scan_deobfuscated(self) -> Dict[str, Dict[str, object]]:
        """Result of running scan_source() exactly once over the deobfuscated
        text, keyed by PATTERNS only (FEATURE_PATTERNS are not consulted by
        the dual-pass consumers). Empty dict when there is no deobfuscated
        text or it equals the raw source.

        Two extractors consume the post-deobf API surface:
        `JSSuspiciousAPIsExtractor` (for revealed_by_deobf rows) and
        `JSDeobfuscationExtractor` (for the new_apis_found diff). Caching here
        means we scan the deobfuscated text once instead of twice per sample.
        """
        from redb.extractors.js_extractors.js_patterns import PATTERNS
        deobf_text, _ = self.deobfuscated
        if not deobf_text or deobf_text == self.source:
            return {}
        return scan_source(deobf_text, patterns=(PATTERNS,))

    @cached_property
    def xray(self):
        """Run @nodesecure/js-x-ray once per sample and cache the result.

        Returns an `XRayResult` (always — the function collapses every failure
        path to an empty result so callers don't have to special-case missing
        Node, missing package, timeouts, or parse errors). The
        `JSFeaturesExtractor` reads it for the obfuscator family name and for
        corroborating warning kinds; the heuristic falls back cleanly when
        `xray.obfuscator is None`.
        """
        from redb.extractors.js_extractors.js_xray import run
        return run(self.source, self.log)

    @classmethod
    def from_path(
        cls,
        filepath: str,
        log: Any = None,
        source: Optional[str] = None,
        raw_bytes: Optional[bytes] = None,
        content_type: str = "javascript",
    ) -> "JSContext":
        """Build a context from disk. `raw_bytes` and `source` are optional
        overrides — useful when the caller has already read or decoded the file.
        `content_type` is the magika label workers.py dispatched on; it lands
        on the context for the code_text_content writer to record.
        """
        if raw_bytes is None:
            with open(filepath, "rb") as f:
                raw_bytes = f.read()
        if source is None:
            source = decode_source(raw_bytes)
        return cls(
            filepath=filepath,
            raw_bytes=raw_bytes,
            source=source,
            log=log,
            content_type=content_type,
        )