Rajan L. Joshi

19 papers B 3C 2Journal 9Unranked 5
YearRankTypeTitle / Venue / Authors
2016 J jnl
IEEE Trans. Circuits Syst. Video Technol.
Jizheng Xu, Rajan L. Joshi, Robert A. Cohen
2016 J jnl
IEEE J. Emerg. Sel. Topics Circuits Syst.
Wei Pu, Marta Karczewicz, Rajan L. Joshi, Vadim Seregin, Feng Zou, Joel Sole, Yu-Chen Sun, Tzu-Der Chuang, PoLin Lai, Shan Liu, Shih-Ta Hsiang, Jing Ye, Yu-Wen Huang
2015 B conf
DCC
Xiaoyu Xiu, Yuwen He, Rajan L. Joshi, Marta Karczewicz, Patrice Onno, Christophe Gisquet, Guillaume Laroche
2014 B conf
ICIP
Liwei Guo, Wei Pu, Feng Zou, Joel Sole, Marta Karczewicz, Rajan L. Joshi
2013 C conf
VCIP
Li Zhang, Je-Won Kang, Xin Zhao, Ying Chen, Rajan L. Joshi
2013 B conf
DCC
Jianle Chen, Krishnakanth Rapaka, Xiang Li, Vadim Seregin, Liwei Guo, Marta Karczewicz, Geert Van der Auwera, Joel Sole, Xianglin Wang, Chengjie Tu, Ying Chen, Rajan L. Joshi
2012 J jnl
IEEE Trans. Circuits Syst. Video Technol.
Joel Sole, Rajan L. Joshi, Nguyen Nguyen, Tianying Ji, Marta Karczewicz, Gordon Clare, Félix Henry, Alberto Duenas
2012 C conf
PCS
Joel Sole, Rajan L. Joshi, Wei-Jung Chien, Marta Karczewicz
2011 conf
Visual Information Processing and Communication
Marta Karczewicz, Peisong Chen, Rajan L. Joshi, Xianglin Wang, Wei-Jung Chien, Rahul Panchal, Muhammed Z. Coban, In Suk Chong, Yuriy A. Reznik
2010 J jnl
IEEE Trans. Circuits Syst. Video Technol.
Marta Karczewicz, Peisong Chen, Rajan L. Joshi, Xianglin Wang, Wei-Jung Chien, Rahul Panchal, Yuriy A. Reznik, Muhammed Z. Coban, In Suk Chong
2010 J jnl
IEEE Trans. Circuits Syst. Video Technol.
Thomas Wiegand, Jens-Rainer Ohm, Gary J. Sullivan, Woojin Han, Rajan L. Joshi, Thiow Keng Tan, Kemal Ugur
2003 conf
PICS
Kevin E. Spaulding, Geoffrey J. Woolfe, Rajan L. Joshi
2002 J jnl
Signal Process. Image Commun.
Majid Rabbani, Rajan L. Joshi
1997 J jnl
IEEE Trans. Image Process.
Rajan L. Joshi, Hamid Jafarkhani, James H. Kasner, Thomas R. Fischer, Nariman Farvardin, Michael W. Marcellin, Roberto H. Bamberger
1996 conf
ICIP (3)
Rajan L. Joshi, Mohan Vishwanath
1995 J jnl
IEEE Signal Process. Lett.
Rajan L. Joshi, Thomas R. Fischer
1995 J jnl
IEEE Trans. Circuits Syst. Video Technol.
Rajan L. Joshi, Valerie J. Crump, Thomas R. Fischer
1995 conf
ICIP (3)
Rajan L. Joshi, Thomas R. Fischer, Roberto H. Bamberger
1994 conf
ICIP (2)
Rajan L. Joshi, Thomas R. Fischer, Roberto H. Bamberger
tests/unit/test_decompile_utils.py
← Index tests/unit/test_decompile_utils.py python
"""Unit tests for decompiler utility modules:
- bninja/utils/hashes.py
- bninja/utils/json_encoder.py
- bninja/analysis/low_level_normalization.py
"""
import hashlib
import json
import pytest


# ============================================================================
# 1a. hashes.py
# ============================================================================

from redb.extractors.decompiler.bninja.utils.hashes import (
    calculate_md5,
    calculate_sha256,
    calculate_tlsh,
)


class TestCalculateMD5:
    def test_calculate_md5_known_value(self):
        expected = hashlib.md5(b"test").hexdigest()
        assert calculate_md5("test") == expected

    def test_calculate_md5_empty(self):
        expected = hashlib.md5(b"").hexdigest()
        assert calculate_md5("") == expected


class TestCalculateSHA256:
    def test_calculate_sha256_known_value(self):
        expected = hashlib.sha256(b"hello world").hexdigest()
        assert calculate_sha256("hello world") == expected

    def test_calculate_sha256_empty_string(self):
        result = calculate_sha256("")
        assert len(result) == 64
        assert all(c in "0123456789abcdef" for c in result)


class TestCalculateTLSH:
    def test_calculate_tlsh_long_data(self):
        # TLSH requires >= 50 bytes
        data = "A" * 100
        result = calculate_tlsh(data)
        assert result is not None
        assert isinstance(result, str)

    def test_calculate_tlsh_short_data(self):
        data = "A" * 10
        result = calculate_tlsh(data)
        assert result is None

    def test_calculate_tlsh_deterministic(self):
        data = "x" * 200
        assert calculate_tlsh(data) == calculate_tlsh(data)



# ============================================================================
# 1b. json_encoder.py
# ============================================================================

from redb.extractors.decompiler.bninja.utils.json_encoder import BinaryNinjaEncoder


class TestBinaryNinjaEncoder:
    def test_encode_value_confidence_object(self):
        obj = type("VC", (), {"value": 42, "confidence": 255})()
        result = json.dumps(obj, cls=BinaryNinjaEncoder)
        assert json.loads(result) == 42

    def test_encode_str_fallback(self):
        obj = type("Obj", (), {"__str__": lambda self: "custom_repr"})()
        result = json.dumps(obj, cls=BinaryNinjaEncoder)
        assert json.loads(result) == "custom_repr"

    def test_encode_normal_types(self):
        data = {"a": 1, "b": [2, 3], "c": "hello"}
        result = json.dumps(data, cls=BinaryNinjaEncoder)
        assert json.loads(result) == data

    def test_encode_set_via_str(self):
        # Python sets have __str__, so BinaryNinjaEncoder converts them
        # to their string repr instead of raising TypeError.
        result = json.dumps(set([1, 2, 3]), cls=BinaryNinjaEncoder)
        parsed = json.loads(result)
        assert isinstance(parsed, str)
        assert "1" in parsed


# ============================================================================
# 1c. low_level_normalization.py
# ============================================================================

from redb.extractors.decompiler.bninja.analysis.low_level_normalization import (
    LowLevelNormalization,
)


class MockIL:
    """Mock IL node for normalization tests."""
    def __init__(self, operation, operands=None):
        self.operation = operation
        self.operands = operands or []


class TestLowLevelNormalization:
    def setup_method(self):
        self.normalizer = LowLevelNormalization()

    def test_normalize_single_instruction(self):
        node = MockIL(operation=5)
        result = self.normalizer.normalize_instruction_all_levels(node)
        assert result == [5]

    def test_normalize_nested_operands(self):
        child1 = MockIL(operation=10)
        child2 = MockIL(operation=20)
        root = MockIL(operation=1, operands=[child1, child2])
        result = self.normalizer.normalize_instruction_all_levels(root)
        assert result == [1, 10, 20]

    def test_normalize_empty_operands(self):
        node = MockIL(operation=42, operands=[])
        result = self.normalizer.normalize_instruction_all_levels(node)
        assert result == [42]

    def test_normalize_list_operands(self):
        # Simulates phi-node style list operands
        inner = MockIL(operation=99)
        node = MockIL(operation=7, operands=[[inner]])
        result = self.normalizer.normalize_instruction_all_levels(node)
        assert result == [7, 99]

    def test_normalize_none_input(self):
        result = self.normalizer.normalize_instruction_all_levels(None)
        assert result == []