Haima Yang

21 papers Journal 20Unranked 1
YearRankTypeTitle / Venue / Authors
2025 J jnl
CoRR
Xing Hu, Haodong Chen, Qianqian Duan, Danfeng Hong, Ruijiao Li, Huiliang Shang, Linghua Jiang, Haima Yang, Dawei Zhang
2025 J jnl
Int. J. Gaming Comput. Mediat. Simulations
Damin Ding, Yueyang Zhao, Jingru Zhang, Jin Liu, Jun Liu, Haima Yang, Hongli Shan, Zhiwen Zhou
2025 J jnl
IEEE Geosci. Remote. Sens. Lett.
Haima Yang, Yufeng Dai, Jin Liu, Jun Li, Dawei Zhang, Haibin Sun, Zhongyang Jiang, Xinyu Li
2025 J jnl
CoRR
Xing Hu, Xiangcheng Liu, Danfeng Hong, Qianqian Duan, Linghua Jiang, Haima Yang, Dawei Zhang
2024 J jnl
Remote. Sens.
Haibin Sun, Yicheng Wang, Zhipei Sun, Shaowei Wang, Shengli Sun, Jianxin Jia, Changhui Jiang, Peilun Hu, Haima Yang, Xing Yang, Mika Karjalainen, Juha Hyyppä, Yuwei Chen
2024 J jnl
Biomed. Signal Process. Control.
Jun Li, Zhijie Shi, Jialiang Zhu, Jin Liu, Lihua Qiu, Yeye Song, Liqun Wang, Yuling Li, Yongliang Liu, Dawei Zhang, Haima Yang, Le Fu
2024 J jnl
J. Imaging Inform. Medicine
Jie Ying, Xin Jing, Feng Gao, Jiejun Cheng, Le Fu, Haima Yang
2024 J jnl
Multim. Tools Appl.
Linfei Wu, Jin Liu, Haima Yang, Bo Huang, Haishan Liu, Shaowei Cheng
2023 J jnl
Multim. Tools Appl.
Wencheng Xu, Jie Ying, Haima Yang, Jin Liu, Xing Hu
2023 J jnl
J. Aerosp. Inf. Syst.
Jie Ying, Han Li, Haima Yang, Yifan Jiang
2023 J jnl
Comput. Biol. Medicine
Jie Ying, Wei Huang, Le Fu, Haima Yang, Jiangzihao Cheng
2021 J jnl
Comput. Biol. Medicine
Xueliang Zhu, Jie Ying, Haima Yang, Le Fu, Boyang Li, Bin Jiang
2021 J jnl
Vis. Comput.
Congcong Liu, Jie Ying, Haima Yang, Xing Hu, Jin Liu
2020 J jnl
J. Sensors
Zihao Yu, Jin Liu, Haima Yang, Bo Huang, Yumei Jian
2020 J jnl
Neurocomputing
Xing Hu, Jian Dai, Yingping Huang, Haima Yang, Liang Zhang, Wenming Chen, Genke Yang, Dawei Zhang
2020 J jnl
Symmetry
Fengyu Yin, Jin Liu, Haima Yang, Aleksey Kudreyko, Bo Huang
2020 J jnl
Symmetry
Meiying Li, Jin Liu, Haima Yang, Wanqing Song, Zihao Yu
2019 J jnl
IEEE Access
Yuting Xu, Haima Yang, Jun Li, Jin Liu, Naixue Xiong
2019 J jnl
IEEE Access
Pengcheng Zhang, Jin Liu, Haima Yang, Luo Yu
2018 J jnl
EURASIP J. Adv. Signal Process.
Xing Hu, Yingping Huang, Qianqian Duan, Wenyan Ci, Jian Dai, Haima Yang
2009 conf
ROBIO
Jin Liu, Haima Yang, Yan Yue
tests/unit/test_decompile_strings.py
← Index tests/unit/test_decompile_strings.py python
"""Unit tests for bninja/analysis/strings.py — StringAnalysis."""
import pytest
import math
from unittest.mock import MagicMock


# StringAnalysis has no binaryninja imports, just collections and math
from redb.extractors.decompiler.bninja.analysis.strings import StringAnalysis


# ============================================================================
# Helper mocks
# ============================================================================

class MockStringEntry:
    """Mock for a Binary Ninja string reference."""
    def __init__(self, value, raw=None, start=0, length=0, type_name="Utf8String"):
        self.value = value
        self.raw = raw if raw is not None else (value.encode("utf-8") if isinstance(value, str) else value)
        self.start = start
        self.length = length if length else len(self.raw)
        self.type = MagicMock()
        self.type.name = type_name


class MockBinaryView:
    """Mock binary view with a strings list."""
    def __init__(self, strings=None):
        self.strings = strings or []


# ============================================================================
# 6a. StringAnalysis
# ============================================================================


class TestStringAnalysisEntropy:
    def setup_method(self):
        self.sa = StringAnalysis(bv=MockBinaryView(), functions=[])

    def test_entropy_empty_string(self):
        assert self.sa.entropy("") == 0.0

    def test_entropy_single_char(self):
        assert self.sa.entropy("aaaa") == 0.0

    def test_entropy_uniform_distribution(self):
        # "abcd" -> 4 unique chars, each p=1/4, entropy = log2(4) = 2.0
        result = self.sa.entropy("abcd")
        assert result == pytest.approx(2.0)

    def test_entropy_binary_string(self):
        # "ab" -> 2 unique chars, each p=1/2, entropy = log2(2) = 1.0
        result = self.sa.entropy("ab")
        assert result == pytest.approx(1.0)


class TestStringAnalysisAnalyze:
    def test_analyze_deduplication(self):
        """Duplicate (string, encoding) pairs -> only first kept."""
        entries = [
            MockStringEntry("hello", start=100, type_name="Utf8String"),
            MockStringEntry("hello", start=200, type_name="Utf8String"),
        ]
        bv = MockBinaryView(strings=entries)
        sa = StringAnalysis(bv=bv, functions=[])
        result = sa.analyze()
        assert len(result) == 1
        assert result[0]["string_offset"] == 100

    def test_analyze_sorted_by_address(self):
        """First occurrence (lowest offset) is the one kept."""
        entries = [
            MockStringEntry("world", start=500, type_name="Utf8String"),
            MockStringEntry("world", start=100, type_name="Utf8String"),
        ]
        bv = MockBinaryView(strings=entries)
        sa = StringAnalysis(bv=bv, functions=[])
        result = sa.analyze()
        assert len(result) == 1
        # The analyze() sorts by start, so 100 comes first
        assert result[0]["string_offset"] == 100

    def test_analyze_empty_bv(self):
        bv = MockBinaryView(strings=[])
        sa = StringAnalysis(bv=bv, functions=[])
        result = sa.analyze()
        assert result == []

    def test_analyze_output_schema(self):
        entries = [MockStringEntry("test_string", start=0, type_name="Utf8String")]
        bv = MockBinaryView(strings=entries)
        sa = StringAnalysis(bv=bv, functions=[])
        result = sa.analyze()
        assert len(result) == 1
        r = result[0]
        required_keys = [
            "string",
            "string_raw",
            "string_encoding",
            "string_offset",
            "string_length",
            "string_raw_length",
            "string_entropy",
        ]
        for key in required_keys:
            assert key in r, f"Missing key: {key}"