Karl Magnus Petersson

31 papers B 1Journal 29Unranked 1
YearRankTypeTitle / Venue / Authors
2018 B conf
IJCNN
Renato C. Duarte, Marvin Uhlmann, Dick den van Broek, Hartmut Fitz, Karl Magnus Petersson, Abigail Morrison
2017 J jnl
Cogn. Sci.
Susana Silva, Vasiliki Folia, Peter Hagoort, Karl Magnus Petersson
2013 J jnl
NeuroImage
Attila Andics, James M. McQueen, Karl Magnus Petersson
2012 J jnl
Brain Connect.
René Scheeringa, Karl Magnus Petersson, Andreas Kleinschmidt, Ole Jensen, Marcel C. M. Bastiaansen
2012 J jnl
Cogn. Sci.
Julia Uddén, Martin Ingvar, Peter Hagoort, Karl Magnus Petersson
2010 J jnl
NeuroImage
Tineke M. Snijders, Karl Magnus Petersson, Peter Hagoort
2010 J jnl
NeuroImage
Attila Andics, James M. McQueen, Karl Magnus Petersson, Viktor Gál, Gábor Rudas, Zoltán Vidnyánszky
2009 J jnl
NeuroImage
Shaozheng Qin, Mark Rijpkema, Indira Tendolkar, Carinne Piekema, Erno J. Hermans, Marek Binder, Karl Magnus Petersson, Jing Luo, Guillén Fernández
2009 J jnl
NeuroImage
René Scheeringa, Karl Magnus Petersson, Robert Oostenveld, David G. Norris, Peter Hagoort, Marcel C. M. Bastiaansen
2009 J jnl
J. Cogn. Neurosci.
Cathelijne M. J. Y. Tesink, Karl Magnus Petersson, Jos J. A. Van Berkum, Danielle van den Brink, Jan K. Buitelaar, Peter Hagoort
2009 J jnl
J. Cogn. Neurosci.
Laura Menenti, Karl Magnus Petersson, René Scheeringa, Peter Hagoort
2007 J jnl
NeuroImage
Mante S. Nieuwland, Karl Magnus Petersson, Jos J. A. Van Berkum
2007 J jnl
NeuroImage
Shaozheng Qin, Carinne Piekema, Karl Magnus Petersson, Buxin Han, Jing Luo, Guillén Fernández
2006 J jnl
NeuroImage
Karl Magnus Petersson, Jens Gisselgård, Monica Gretzer, Martin Ingvar
2006 J jnl
NeuroImage
Christian Forkstam, Peter Hagoort, Guillén Fernández, Martin Ingvar, Karl Magnus Petersson
2006 J jnl
NeuroImage
Katrina Carlsson, Jesper Andersson, Predrag Petrovic, Karl Magnus Petersson, Arne Öhman, Martin Ingvar
2006 J jnl
NeuroImage
Carinne Piekema, Roy P. C. Kessels, Rogier B. Mars, Karl Magnus Petersson, Guillén Fernández
2005 J jnl
Neurocomputing
Karl Magnus Petersson
2005 J jnl
NeuroImage
Brian Nils Lundstrom, Martin Ingvar, Karl Magnus Petersson
2004 J jnl
NeuroImage
Olga Meulenbroek, Karl Magnus Petersson, Nicol Voermans, Bernd Weber, Guillén Fernández
2004 J jnl
Cogn. Sci.
Karl Magnus Petersson, Christian Forkstam, Martin Ingvar
2004 J jnl
NeuroImage
Predrag Petrovic, Karl Magnus Petersson, Per Hansson, Martin Ingvar
2004 J jnl
NeuroImage
Jens Gisselgård, Karl Magnus Petersson, Martin Ingvar
2003 J jnl
NeuroImage
Karl Magnus Petersson, Johan Sandblom, Christina Elfgren, Martin Ingvar
2003 J jnl
NeuroImage
Brian Nils Lundstrom, Karl Magnus Petersson, Jesper Andersson, Mikael Johansson, Peter Fransson, Martin Ingvar
2002 J jnl
NeuroImage
Predrag Petrovic, Karl Magnus Petersson, Per Hansson, Martin Ingvar
2002 J jnl
NeuroImage
Peter Fransson, Klaus-Dietmar Merboldt, Karl Magnus Petersson, Martin Ingvar, Jens Frahm
2001 J jnl
NeuroImage
Lars Nyberg, Karl Magnus Petersson, Lars-Göran Nilsson, Johan Sandblom, Carola Åberg, Martin Ingvar
2001 J jnl
Neurocomputing
Anders Sandberg, Anders Lansner, Karl Magnus Petersson
2000 J jnl
Neurocomputing
Anders Sandberg, Anders Lansner, Karl Magnus Petersson, Örjan Ekeberg
2000 conf
ANNIMAB
Anders Lansner, Anders Sandberg, Karl Magnus Petersson, Martin Ingvar
redb/extractors/decompiler/apk/jadx_wrapper.py
← Index redb/extractors/decompiler/apk/jadx_wrapper.py python
"""JADX decompiler subprocess wrapper.

Manages JADX subprocess execution for Java decompilation,
following the CAPA extractor subprocess pattern.
"""

import os
import re
import signal
import subprocess
from typing import Dict, Optional


class JADXDecompiler:
    """Subprocess wrapper for JADX Java decompilation."""

    def __init__(self, jadx_path: str = None, timeout: int = None, log=None):
        self.jadx_path = jadx_path or os.getenv("JADX_PATH", "jadx")
        self.timeout = timeout or int(os.getenv("JADX_TIMEOUT", "300"))
        self.log = log

    def decompile(self, apk_path: str, output_dir: str) -> bool:
        """Run JADX decompilation on an APK file.

        Returns True on success, False on failure.
        """
        cmd = [
            self.jadx_path,
            "--no-res",
            "--no-imports",
            "--threads-count", "2",
            "--output-dir", output_dir,
            apk_path,
        ]

        try:
            process = subprocess.Popen(
                cmd,
                stdout=subprocess.PIPE,
                stderr=subprocess.PIPE,
                text=True,
                preexec_fn=os.setsid,
            )

            try:
                stdout, stderr = process.communicate(timeout=self.timeout)
                if process.returncode != 0:
                    if self.log:
                        self.log.warning(
                            f"JADX returned non-zero exit code {process.returncode}: "
                            f"{stderr[:500] if stderr else 'no stderr'}"
                        )
                    # JADX may still produce partial output on non-zero exit
                    return os.path.isdir(os.path.join(output_dir, "sources"))
                return True

            except subprocess.TimeoutExpired:
                if self.log:
                    self.log.error(
                        f"JADX timed out after {self.timeout}s"
                    )
                # Kill the process group
                try:
                    os.killpg(os.getpgid(process.pid), signal.SIGTERM)
                    process.wait(timeout=3)
                except (ProcessLookupError, subprocess.TimeoutExpired):
                    try:
                        os.killpg(os.getpgid(process.pid), signal.SIGKILL)
                    except ProcessLookupError:
                        pass
                return False

        except FileNotFoundError:
            if self.log:
                self.log.error(
                    f"JADX not found at '{self.jadx_path}'. "
                    "Install JADX or set JADX_PATH env var."
                )
            return False
        except Exception as e:
            if self.log:
                self.log.error(f"JADX execution error: {e}")
            return False

    def parse_java_methods(self, output_dir: str) -> Dict[str, str]:
        """Parse JADX output into per-method Java source.

        Returns dict keyed by 'package.ClassName.methodName(ParamType1, ParamType2)'.
        """
        sources_dir = os.path.join(output_dir, "sources")
        if not os.path.isdir(sources_dir):
            return {}

        methods = {}
        for root, _dirs, files in os.walk(sources_dir):
            for fname in files:
                if not fname.endswith(".java"):
                    continue
                fpath = os.path.join(root, fname)
                try:
                    with open(fpath, "r", encoding="utf-8", errors="replace") as f:
                        content = f.read()

                    # Derive the fully qualified class name from file path
                    rel_path = os.path.relpath(fpath, sources_dir)
                    class_fqn = rel_path.replace(os.sep, ".").replace("/", ".")
                    if class_fqn.endswith(".java"):
                        class_fqn = class_fqn[:-5]

                    file_methods = self._extract_methods_from_java(
                        content, class_fqn
                    )
                    methods.update(file_methods)

                except Exception:
                    continue

        return methods

    def _extract_methods_from_java(
        self, source: str, class_fqn: str
    ) -> Dict[str, str]:
        """Extract individual methods from a Java source file.

        Uses brace-depth tracking to find method boundaries.
        """
        methods = {}
        lines = source.split("\n")
        i = 0

        while i < len(lines):
            line = lines[i]
            match = self._is_method_declaration(line)
            if match:
                method_name, param_types = match
                # Track brace depth to find method end
                start_line = i
                brace_depth = 0
                found_open = False

                for j in range(i, len(lines)):
                    for ch in lines[j]:
                        if ch == "{":
                            brace_depth += 1
                            found_open = True
                        elif ch == "}":
                            brace_depth -= 1

                    if found_open and brace_depth == 0:
                        method_body = "\n".join(lines[start_line : j + 1])
                        key = f"{class_fqn}.{method_name}({param_types})"
                        methods[key] = method_body
                        i = j + 1
                        break
                else:
                    i += 1
            else:
                i += 1

        return methods

    # Regex for method declarations (not constructors, not class/interface decl)
    _METHOD_DECL_RE = re.compile(
        r"^\s*(?:(?:public|private|protected|static|final|synchronized|"
        r"native|abstract|strictfp)\s+)*"
        r"(?:[\w<>\[\]?.]+\s+)"  # return type
        r"(\w+)"  # method name
        r"\s*\(([^)]*)\)"  # parameters
        r"(?:\s*throws\s+[\w.,\s]+)?"
        r"\s*\{"
    )

    def _is_method_declaration(self, line: str) -> Optional[tuple]:
        """Check if a line is a method declaration.

        Returns (method_name, param_types_str) or None.
        """
        m = self._METHOD_DECL_RE.match(line)
        if not m:
            return None

        method_name = m.group(1)
        params_raw = m.group(2).strip()

        # Skip class-level blocks
        if method_name in ("if", "for", "while", "switch", "try", "catch"):
            return None

        # Extract just the type names from parameters
        if not params_raw:
            return (method_name, "")

        param_types = []
        for param in params_raw.split(","):
            param = param.strip()
            if not param:
                continue
            parts = param.split()
            # Last non-annotation token before the variable name is the type
            # Simple heuristic: type is second-to-last, name is last
            if len(parts) >= 2:
                param_types.append(parts[-2])
            elif len(parts) == 1:
                param_types.append(parts[0])

        return (method_name, ", ".join(param_types))