Kamil Wereszczynski

34 papers B 1C 8Misc 1Journal 5Unranked 19
YearRankTypeTitle / Venue / Authors
2025 J jnl
IEEE Trans. Computers
Onyeka Josephine Nwobodo, Godlove Suila Kuaban, Valery Nkemeni, Kamil Wereszczynski, Krzysztof A. Cyran
2025 C conf
CoDIT
Kamil Wereszczynski, Agnieszka Michalczuk, Krzysztof A. Cyran
2025 conf
ICCS (Workshops 6)
Onyeka Josephine Nwobodo, Godlove Suila Kuaban, Kamil Wereszczynski, Krzysztof A. Cyran
2025 C conf
CoDIT
Krzysztof Werner, Kamil Wereszczynski, Agnieszka Michalczuk, Michal Kordasz, Rafal Potempa, Krzysztof A. Cyran
2025 C conf
CoDIT
Rafal Potempa, Michal Kordasz, Sundas Naqeeb Khan, Krzysztof Werner, Kamil Wereszczynski, Krzysztof Siminski, Krzysztof A. Cyran
2025 J jnl
CoRR
Rafal Potempa, Michal Kordasz, Sundas Naqeeb Khan, Krzysztof Werner, Kamil Wereszczynski, Krzysztof Siminski, Krzysztof A. Cyran
2025 C conf
CoDIT
Anna Danilowicz, Piotr Bartosz, Maja Wolak, Jakub Sarno, Agnieszka Michalczuk, Kamil Wereszczynski, Krzysztof A. Cyran
2025 conf
AICS-CoLInS
Vita Kashtan, Volodymyr V. Hnatushenko, Dmytro Babets, Krzysztof A. Cyran, Kamil Wereszczynski
2025 C conf
CoDIT
Andrii Kolb, Serhii D. Prykhodchenko, Kamil Wereszczynski, Krzysztof A. Cyran
2025 C conf
CoDIT
Serhii Aleksieienko, Dmytro Babets, Kamil Wereszczynski, Krzysztof A. Cyran
2025 C conf
CoDIT
Michal Kordasz, Krzysztof Werner, Sundas Naqeeb Khan, Rafal Potempa, Kamil Wereszczynski, Krzysztof A. Cyran
2025 C conf
CoDIT
Onyeka Josephine Nwobodo, Michal Kordasz, Kamil Wereszczynski, Krzysztof Adam Cyran
2024 J jnl
IEEE Access
Onyeka Josephine Nwobodo, Kamil Wereszczynski, Godlove Suila Kuaban, Przemyslaw Skurowski, Krzysztof A. Cyran
2024 conf
ICCS (7)
Onyeka Josephine Nwobodo, Godlove Suila Kuaban, Tomasz Kukuczka, Kamil Wereszczynski, Krzysztof A. Cyran
2023 B conf
KES
Onyeka Josephine Nwobodo, Kamil Wereszczynski, Krzysztof A. Cyran
2023 J jnl
CoRR
Krzysztof Werner, Kamil Wereszczynski, Rafal Potempa, Krzysztof A. Cyran
2023 conf
ICCS (1)
Onyeka Josephine Nwobodo, Kamil Wereszczynski, Krzysztof A. Cyran
2022 conf
ICCS (4)
Krzysztof Werner, Kamil Wereszczynski, Agnieszka Michalczuk
2021 conf
ICCS (5)
Kamil Wereszczynski, Agnieszka Michalczuk, Pawel Foszner, Dominik Golba, Michal Cogiel, Michal Staniszewski
2020 J jnl
Sensors
Michal Staniszewski, Pawel Foszner, Karol Kostorz, Agnieszka Michalczuk, Kamil Wereszczynski, Michal Cogiel, Dominik Golba, Konrad Wojciechowski, Andrzej Polanski
2018 conf
ACIIDS (2)
Marek Kulbacki, Jakub Segen, Slawomir Wojciechowski, Kamil Wereszczynski, Jerzy Pawel Nowacki, Aldona Drabik, Konrad Wojciechowski
2017 conf
ACIIDS (2)
Agnieszka Michalczuk, Kamil Wereszczynski, Jakub Segen, Henryk Josinski, Konrad Wojciechowski, Artur Bak, Slawomir Wojciechowski, Aldona Drabik, Marek Kulbacki
2017 conf
ACIIDS (2)
Kamil Wereszczynski, Agnieszka Michalczuk, Jakub Segen, Magdalena Pawlyta, Artur Bak, Jerzy Pawel Nowacki, Marek Kulbacki
2017 conf
EUROCON
Agnieszka Michalczuk, Kamil Wereszczynski, Adam Switonski, Henryk Josinski, Konrad Wojciechowski
2016 conf
ACIIDS (2)
Jakub Segen, Kamil Wereszczynski, Marek Kulbacki, Artur Bak, Marzena Wojciechowska
2016 conf
ACIIDS (2)
Michal Staniszewski, Mateusz Kloszczyk, Jakub Segen, Kamil Wereszczynski, Aldona Drabik, Marek Kulbacki
2016 conf
ACIIDS (2)
Artur Bak, Marek Kulbacki, Jakub Segen, Dawid Swiatkowski, Kamil Wereszczynski
2016 conf
ACIIDS (2)
Slawomir Wojciechowski, Marek Kulbacki, Jakub Segen, Rafal Wycislok, Artur Bak, Kamil Wereszczynski, Konrad W. Wojciechowski
2016 conf
ACIIDS (2)
Marek Kulbacki, Kamil Wereszczynski, Jakub Segen, Michal Sachajko, Artur Bak
2015 conf
ACIIDS (2)
Adam Gudys, Kamil Wereszczynski, Jakub Segen, Marek Kulbacki, Aldona Drabik
2015 conf
ACIIDS (2)
Kamil Wereszczynski, Jakub Segen, Marek Kulbacki, Konrad W. Wojciechowski, Pawel Mielnik, Marcin Fojcik
2015 conf
ACIIDS (2)
Jakub Segen, Marek Kulbacki, Kamil Wereszczynski
2014 Misc conf
ICCVG
Kamil Wereszczynski, Jakub Segen, Marek Kulbacki, Pawel Mielnik, Marcin Fojcik, Konrad W. Wojciechowski
2014 conf
ACIIDS (2)
Marek Kulbacki, Jakub Segen, Kamil Wereszczynski, Adam Gudys
redb/extractors/js_extractors/scripts/js-xray-runner.js
← Index redb/extractors/js_extractors/scripts/js-xray-runner.js javascript
#!/usr/bin/env node
// Bridge between the Python JS pipeline and @nodesecure/js-x-ray.
//
// Usage: node js-xray-runner.js <path-to-js-file>
//   stdout  one JSON object: {"obfuscator": <name|null>, "warnings": [...]}
//   stderr  human-readable error on failure
//   exit 0  analysis ran (the file may still be benign — see "obfuscator")
//   exit 1  the file could not be read or analysed
//
// Each warning is emitted as {kind, value} so the Python side can tag
// supporting signals (encoded-literal, short-identifiers, suspicious-literal,
// unsafe-stmt) without having to mirror js-x-ray's whole schema.
//
// js-x-ray ≥7 ships as an ES module, which CommonJS `require()` cannot load
// from a `.js` script — the dynamic `import()` below is what makes the
// bridge work without renaming the file to `.mjs` or adding `"type":
// "module"` to package.json (which would break tools that still
// `require()` from this directory).

const fs = require("fs");
const path = require("path");

function fail(msg) {
  process.stderr.write(msg + "\n");
  process.exit(1);
}

async function main() {
  const target = process.argv[2];
  if (!target) fail("usage: js-xray-runner.js <file>");

  let source;
  try {
    source = fs.readFileSync(target, "utf8");
  } catch (e) {
    fail(`read failed: ${e.message}`);
  }

  // The legacy `runASTAnalysis` function is deprecated (removed in v8); the
  // current API is the `AstAnalyser` class. Both produce a result with the
  // same `warnings` shape, so the rest of the bridge is unchanged.
  let AstAnalyser;
  try {
    ({ AstAnalyser } = await import("@nodesecure/js-x-ray"));
  } catch (e) {
    fail(`@nodesecure/js-x-ray not installed (run \`npm install\` in ${path.dirname(__filename)}): ${e.message}`);
  }

  // js-x-ray defaults to module-mode parsing, which rejects scripts that
  // (legally) use reserved words as identifiers, top-level `return`, etc.
  // A lot of real-world JS malware is script-style (WScript/HTA bodies,
  // pasted snippets) — retrying in script mode catches those without
  // pulling in a more lenient parser. Both attempts share the same
  // analyser; only the parse mode flips. If both fail, the original error
  // (module-mode) is reported because that's the more informative one for
  // genuinely broken sources.
  let result;
  const analyser = new AstAnalyser();
  let firstErr;
  try {
    result = await analyser.analyse(source, { module: true });
  } catch (e) {
    firstErr = e;
    try {
      result = await analyser.analyse(source, { module: false });
    } catch (e2) {
      fail(`js-x-ray analysis failed: ${firstErr.message}`);
    }
  }

  const warnings = (result.warnings || []).map((w) => ({
    kind: w.kind,
    value: w.value !== undefined ? w.value : null,
  }));

  // js-x-ray flags the obfuscator family in a warning whose kind is
  // "obfuscated-code" and whose value names the family (jsfuck, obfuscator.io,
  // freejsobfuscator, morse, jjencode, ...). Absent => not detected.
  const obfWarning = warnings.find((w) => w.kind === "obfuscated-code");
  const obfuscator = obfWarning ? obfWarning.value : null;

  // js-x-ray runs its own AST internally with a modern parser, so its
  // identifier-length average is the only path the Python pipeline has to
  // that signal on ES2015+ sources — pyjsparser is ES5.1-only and silently
  // drops to 0 the moment it hits destructuring, classes, optional chaining,
  // etc. Surfacing this lets the heuristic's `avg_identifier_length<2`
  // strong signal fire on real obfuscator.io output. `null` when the value
  // is missing or non-numeric (defensive — older js-x-ray builds may differ).
  const idsLengthAvg =
    typeof result.idsLengthAvg === "number" && !Number.isNaN(result.idsLengthAvg)
      ? result.idsLengthAvg
      : null;

  process.stdout.write(JSON.stringify({ obfuscator, warnings, idsLengthAvg }));
}

main().catch((e) => fail(e.message || String(e)));