RajaRajan Balraj

13 papers B 4Journal 4Unranked 5
YearRankTypeTitle / Venue / Authors
2014 J jnl
IEEE Commun. Lett.
Stanislaus Iwelski, Biljana Badic, Zijian Bai, RajaRajan Balraj, C. Kuo, Erfan Majeed, Tobias Scholand, Guido Horst Bruck, Peter Jung
2014 B conf
WCNC
Stanislaus Iwelski, Zijian Bai, Erfan Majeed, Guido Horst Bruck, Peter Jung, Biljana Badic, Tobias Scholand, RajaRajan Balraj, Chun-Hsuan Kuo
2014 B conf
PIMRC
Stanislaus Iwelski, Zijian Bai, Erfan Majeed, Guido Horst Bruck, Peter Jung, Biljana Badic, Tobias Scholand, RajaRajan Balraj, Chun-Hsuan Kuo
2014 conf
VTC Spring
Stanislaus Iwelski, Zijian Bai, Erfan Majeed, Guido Horst Bruck, Peter Jung, Biljana Badic, Tobias Scholand, RajaRajan Balraj, Chun-Hsuan Kuo
2013 conf
VTC Spring
Zijian Bai, Stanislaus Iwelski, Guido Horst Bruck, Peter Jung, Biljana Badic, Tobias Scholand, RajaRajan Balraj
2013 J jnl
IEEE Commun. Lett.
Zijian Bai, Biljana Badic, RajaRajan Balraj, Stanislaus Iwelski, Tobias Scholand, Guido Horst Bruck, Peter Jung
2012 conf
VTC Spring
Biljana Badic, RajaRajan Balraj, Tobias Scholand, Zijian Bai, Stanislaus Iwelski
2012 B conf
WCNC
Biljana Badic, RajaRajan Balraj, Tobias Scholand, Zijian Bai, Stanislaus Iwelski
2012 B conf
PIMRC
Zijian Bai, Biljana Badic, Stanislaus Iwelski, RajaRajan Balraj, Tobias Scholand, Guido Horst Bruck, Peter Jung
2012 conf
WCNC Workshops
Andrea F. Cattoni, H. T. Nguyen, Jonathan Duplicy, Deepaknath Tandur, Biljana Badic, RajaRajan Balraj, Florian Kaltenberger, Imran Latif, Ankit Bhamri, Guillaume Vivier, I. Z. Kovacsk, Péter Horváth
2011 J jnl
EURASIP J. Wirel. Commun. Netw.
Jonathan Duplicy, Biljana Badic, RajaRajan Balraj, Rizwan Ghaffar, Péter Horváth, Florian Kaltenberger, Raymond Knopp, István Z. Kovács, Hung Tuan Nguyen, Deepaknath Tandur, Guillaume Vivier
2011 J jnl
IEEE Commun. Lett.
Zijian Bai, Biljana Badic, Stanislaus Iwelski, Tobias Scholand, RajaRajan Balraj, Guido Horst Bruck, Peter Jung
2011 conf
ICUMT
Zijian Bai, Stanislaus Iwelski, Guido Horst Bruck, Peter Jung, Biljana Badic, Tobias Scholand, RajaRajan Balraj
redb/extractors/decompiler/bninja/similarity/minhasher.py
← Index redb/extractors/decompiler/bninja/similarity/minhasher.py python
import logging
import random
from enum import Enum

from ..analysis.medium_level_normalization import MediumLevelNormalization

try:
    from .minhashcustom import MinHashCustom
    from ..analysis.low_level_normalization import LowLevelNormalization
except ImportError:
    # Fallback to absolute imports (for multiprocessing spawned processes)
    from redb.extractors.decompiler.bninja.similarity.minhashcustom import MinHashCustom
    from redb.extractors.decompiler.bninja.analysis.low_level_normalization import LowLevelNormalization

## Values for this configuration were extracted from https://github.com/danielplohmann/mcrit/blob/main/mcrit/config/MinHashConfig.py#L10
# Length in number of Shingles of which a minhash consists
# this value represents the length of sha256sum hash truncated
MINHASH_SIGNATURE_LENGTH: int = 64
# Number of bits per signature element (1-32 bits)
MINHASH_SIGNATURE_BITS: int = 8


class TokenKind(Enum):
    LLIL = "llil"
    TYPED_LLIL = "typed_llil"
    MLIL = "mlil"
    TYPED_MLIL = "typed_mlil"


class MinHasher:
    # stick to the default method
    MINHASH_STRATEGY_HASH_ALL = 1

    def __init__(self, seed, il_function, kind: TokenKind = TokenKind.LLIL):
        self._minhash_seeds = []
        self.il_func = il_function
        self.kind = kind
        self._minhash_permutation = []
        self._signature_segments = []
        self._initMinhashing(seed)

    def _initMinhashing(self, MINHASH_SEED=None):
        random.seed(MINHASH_SEED)
        # init sequence of seeds
        self._minhash_seeds = [
            random.randint(0, MinHashCustom.getHashMax()) for _ in range(MINHASH_SIGNATURE_LENGTH)
        ]

    def make_ngrams(self, tokens, n=3):
        """Take the ngrams of the IL we try to pass into the functions"""
        return [tuple(tokens[i:i+n]) for i in range(len(tokens) - n + 1)]

    def _extract_tokens(self):
        """Extract the IL tokens from the IL function, picking the right
        normalizer (LLIL/MLIL) and the right normalization mode
        (skeleton/typed) based on self.kind."""
        if self.kind in (TokenKind.LLIL, TokenKind.TYPED_LLIL):
            normalizer = LowLevelNormalization()
        elif self.kind in (TokenKind.MLIL, TokenKind.TYPED_MLIL):
            normalizer = MediumLevelNormalization()
        else:
            raise ValueError(f"Unsupported token kind: {self.kind}")

        # typed variants include operand type info, skeleton variants don't
        if self.kind in (TokenKind.TYPED_LLIL, TokenKind.TYPED_MLIL):
            normalize = normalizer.normalize_instr_with_operands
        else:
            normalize = normalizer.normalize_instruction_all_levels

        instructions = []
        for basic_block in self.il_func.basic_blocks:
            for il in basic_block:
                instructions.append(normalize(il))

        return instructions

    def calculateMinHash(self):
        """Calculate hash function every time, then take minimum shingle per shingler"""
        minhash_result = MinHashCustom(minhash_bits=MINHASH_SIGNATURE_BITS)
        minhash_signature = []

        tokens = self._extract_tokens()
        shingles = self.make_ngrams(tokens, n=3)

        # Functions with fewer than 3 IL instructions can't produce n-grams
        # Return empty minhash for such small functions (thunks, stubs, etc.)
        # Triggered by 39d8ad95b0323c37bd3134ab93ac4af44c66a1a8443a41c1ac02cec19bb2816a
        if not shingles:
            return []

        # Generate the MinHash
        for seed in self._minhash_seeds:
            hashed_shingles = [
                self.shingle_hash(shingle, seed) for shingle in shingles
            ]
            min_value = min(hashed_shingles)

            if MINHASH_SIGNATURE_BITS < 32:
                min_value %= (2 ** MINHASH_SIGNATURE_BITS)

            minhash_signature.append(min_value)

        minhash_result.setMinHash(minhash_signature)
        return minhash_result.getMinHashInt()

    def shingle_hash(self, shingle, hash_seed=0):
        """Produce a single 32bit UINT hash for a given shingle"""
        return MinHashCustom.hashData(shingle, hash_seed)