Viliam Simko

24 papers A 1B 3C 1Misc 1Journal 3Unranked 15
YearRankTypeTitle / Venue / Authors
2019 J jnl
Electron. Mark.
Kevin Laubis, Marcel Konstantinov, Viliam Simko, Alexander Gröschel, Christof Weinhardt
2018 B conf
EKAW
Nicole Merkle, Stefan Zander, Viliam Simko
2018 conf
IESS
Kevin Laubis, Florian Knöll, Verena Zeidler, Viliam Simko
2018 Misc conf
SEMANTiCS
Matthias T. Frank, Sebastian R. Bader, Viliam Simko, Stefan Zander
2018 B conf
ICWE
Matthias T. Frank, Viliam Simko
2017 conf
ITAT
Florian Knöll, Viliam Simko
2017 conf
HICSS
Kevin Laubis, Viliam Simko, Alexander Schuller, Christof Weinhardt
2017 conf
GISTAM
Patrick Wiener, Viliam Simko, Jens Nimis
2016 B conf
ICPE
Piotr Rygielski, Viliam Simko, Felix Sittner, Doris Aschenbrenner, Samuel Kounev, Klaus Schilling
2016 conf
SIGSPATIAL/GIS
Patrick Wiener, Manuel Stein, Daniel Seebacher, Julian Bruns, Matthias Frank, Viliam Simko, Stefan Zander, Jens Nimis
2016 conf
UIC/ATC/ScalCom/CBDCom/IoP/SmartWorld
Kevin Laubis, Viliam Simko, Alexander Schuller
2016 C conf
ICIS
Kevin Laubis, Viliam Simko, Alexander Schuller
2016 conf
GI-Jahrestagung
Kevin Laubis, Viliam Simko, Christof Weinhardt
2015 conf
ESOCC Workshops
Kevin Laubis, Viliam Simko, Alexander Schuller
2015 J jnl
Comput. J.
Viliam Simko, David Hauzar, Petr Hnetynka, Tomás Bures, Frantisek Plásil
2015 conf
EUROMICRO-SEAA
Jirí Vinárek, Viliam Simko, Petr Hnetynka
2014 A conf
SEAMS
Ivan Dario Paez Anaya, Viliam Simko, Johann Bourcier, Noël Plouzeau, Jean-Marc Jézéquel
2014 conf
CBD
Kahina Hamadache, Paraskevi Zerva, Ariana Polyviou, Viliam Simko, Rustem Dautov, Fotis Gonidis, Ivan Dario Paez Anaya
2014 conf
EOMAS@CAiSE
Jirí Vinárek, Petr Hnetynka, Viliam Simko, Petr Kroha
2012 conf
EUROMICRO-SEAA
Viliam Simko, Petr Hnetynka, Tomás Bures, Frantisek Plásil
2012 J jnl
Multim. Tools Appl.
Andrzej Glowacz, Michal Grega, Mikolaj Leszczuk, Zdzislaw Papir, Piotr Romaniak, Pawel Fornalski, Michal Lutwin, Jürgen Enge, Tabea Lurk, Viliam Simko
2011 conf
FACS
Viliam Simko, David Hauzar, Tomás Bures, Petr Hnetynka, Frantisek Plásil
2009 conf
DEXA Workshops
Andree Lüdtke, Björn Gottfried, Otthein Herzog, George T. Ioannidis, Michael Leszczukz, Viliam Simko
2009 conf
FMN
Juergen Enge, Andrzej Glowacz, Michal Grega, Mikolaj Leszczuk, Zdzislaw Papir, Piotr Romaniak, Viliam Simko
tests/unit/conftest_binja_stubs.py
← Index tests/unit/conftest_binja_stubs.py python
"""Stubs for binaryninja module so decompiler unit tests can import
without a Binary Ninja license."""

import sys
from unittest.mock import MagicMock
from enum import IntEnum


# Stub binaryninja.enums
class BranchType(IntEnum):
    UnconditionalBranch = 0
    FalseBranch = 1
    TrueBranch = 2
    CallDestination = 3
    FunctionReturn = 4
    SystemCall = 5
    IndirectBranch = 6
    ExceptionBranch = 7
    UnresolvedBranch = 8
    UserDefinedBranch = 9


class InstructionTextTokenType(IntEnum):
    TextToken = 0
    InstructionToken = 1
    RegisterToken = 2
    IntegerToken = 3
    PossibleAddressToken = 4
    BeginMemoryOperandToken = 10
    EndMemoryOperandToken = 11
    FloatingPointToken = 12
    AnnotationToken = 13
    CodeRelativeAddressToken = 14
    ArgumentNameToken = 15
    HexDumpByteValueToken = 16
    HexDumpSkippedByteToken = 17
    HexDumpInvalidByteToken = 18
    HexDumpTextToken = 19
    OpcodeToken = 20
    StringToken = 21
    CharacterConstantToken = 22
    KeywordToken = 23
    TypeNameToken = 24
    FieldNameToken = 25
    NameSpaceToken = 26
    NameSpaceSeparatorToken = 27
    TagToken = 28
    StructOffsetToken = 29
    StructOffsetByteValueToken = 30
    StructureHexDumpTextToken = 31
    GotoLabelToken = 32
    CommentToken = 33
    PossibleValueToken = 34
    PossibleValueTypeToken = 35
    ArrayIndexToken = 36
    IndentationToken = 37
    UnknownMemoryToken = 38
    EnumerationMemberToken = 39
    OperationToken = 40
    BaseStructureOffsetToken = 41
    BaseStructureSeparatorToken = 42
    BraceToken = 43
    PlainTextToken = 44
    CollapsedInformationToken = 45


class SymbolType(IntEnum):
    FunctionSymbol = 0
    ImportAddressSymbol = 1
    ImportedFunctionSymbol = 2
    DataSymbol = 3
    ImportedDataSymbol = 4
    ExternalSymbol = 5
    LibraryFunctionSymbol = 6
    SymbolicFunctionSymbol = 7
    LocalLabelSymbol = 8


class HighLevelILOperation(IntEnum):
    HLIL_NOP = 0
    HLIL_ADD = 1
    HLIL_SUB = 2
    HLIL_MUL = 3
    HLIL_DIVS = 4
    HLIL_NEG = 5
    HLIL_NOT = 6
    HLIL_AND = 7
    HLIL_OR = 8
    HLIL_XOR = 9
    HLIL_LSR = 10
    HLIL_LSL = 11
    HLIL_MODS = 12
    HLIL_IF = 13
    HLIL_GOTO = 14
    HLIL_RET = 15
    HLIL_ASSIGN = 16
    HLIL_CALL = 17
    HLIL_VAR = 18
    HLIL_CONST = 19
    HLIL_BLOCK = 20


class LowLevelILOperation(IntEnum):
    LLIL_NOP = 0
    LLIL_SET_REG = 1
    LLIL_SET_REG_SPLIT = 2
    LLIL_SET_FLAG = 3
    LLIL_LOAD = 4
    LLIL_STORE = 5
    LLIL_PUSH = 6
    LLIL_POP = 7
    LLIL_REG = 8
    LLIL_CONST = 9
    LLIL_CONST_PTR = 10
    LLIL_FLAG = 11
    LLIL_FLAG_BIT = 12
    LLIL_ADD = 13
    LLIL_ADC = 14
    LLIL_SUB = 15
    LLIL_SBB = 16
    LLIL_AND = 17
    LLIL_OR = 18
    LLIL_XOR = 19
    LLIL_LSL = 20
    LLIL_LSR = 21
    LLIL_ASR = 22
    LLIL_ROL = 23
    LLIL_RLC = 24
    LLIL_ROR = 25
    LLIL_RRC = 26
    LLIL_MUL = 27
    LLIL_MULU_DP = 28
    LLIL_MULS_DP = 29
    LLIL_DIVU = 30
    LLIL_DIVU_DP = 31
    LLIL_DIVS = 32
    LLIL_DIVS_DP = 33
    LLIL_MODU = 34
    LLIL_MODS = 35
    LLIL_NEG = 36
    LLIL_NOT = 37
    LLIL_SX = 38
    LLIL_ZX = 39
    LLIL_LOW_PART = 40
    LLIL_JUMP = 41
    LLIL_JUMP_TO = 42
    LLIL_CALL = 43
    LLIL_CALL_SSA = 44
    LLIL_RET = 45
    LLIL_NORET = 46
    LLIL_IF = 47
    LLIL_GOTO = 48
    LLIL_FLAG_COND = 49
    LLIL_CMP_E = 50
    LLIL_CMP_NE = 51
    LLIL_CMP_SLT = 52
    LLIL_CMP_ULT = 53
    LLIL_CMP_SLE = 54
    LLIL_CMP_ULE = 55
    LLIL_CMP_SGE = 56
    LLIL_CMP_UGE = 57
    LLIL_CMP_SGT = 58
    LLIL_CMP_UGT = 59
    LLIL_TEST_BIT = 60
    LLIL_BOOL_TO_INT = 61
    LLIL_TAILCALL = 62
    LLIL_SYSCALL = 63
    LLIL_BP = 64
    LLIL_TRAP = 65
    LLIL_UNDEF = 66
    LLIL_UNIMPL = 67
    LLIL_UNIMPL_MEM = 68


class AnalysisState(IntEnum):
    IdleState = 0
    DisassembleState = 1
    AnalyzeState = 2


def install_binja_stubs():
    """Install binaryninja module stubs into sys.modules.
    Call this BEFORE importing any decompiler modules.
    Idempotent — returns the existing mock if already installed.
    """
    if "binaryninja" in sys.modules and not isinstance(sys.modules["binaryninja"], MagicMock):
        return sys.modules["binaryninja"]
    if "binaryninja" in sys.modules and hasattr(sys.modules["binaryninja"], "_redb_stub"):
        return sys.modules["binaryninja"]

    # Create the main mock
    bn_mock = MagicMock()
    bn_mock._redb_stub = True

    # Wire up enums as real enums (not mocks)
    enums_mod = MagicMock()
    enums_mod.BranchType = BranchType
    enums_mod.InstructionTextTokenType = InstructionTextTokenType
    enums_mod.SymbolType = SymbolType
    enums_mod.HighLevelILOperation = HighLevelILOperation
    enums_mod.LowLevelILOperation = LowLevelILOperation
    enums_mod.AnalysisState = AnalysisState

    bn_mock.enums = enums_mod
    bn_mock.enums.BranchType = BranchType
    bn_mock.enums.InstructionTextTokenType = InstructionTextTokenType
    bn_mock.enums.SymbolType = SymbolType
    bn_mock.enums.HighLevelILOperation = HighLevelILOperation
    bn_mock.enums.LowLevelILOperation = LowLevelILOperation
    bn_mock.enums.AnalysisState = AnalysisState

    # LowLevelILOperation on the top-level module
    bn_mock.LowLevelILOperation = LowLevelILOperation
    bn_mock.LowLevelILInstruction = MagicMock

    # highlevelil sub-module
    hlil_mod = MagicMock()
    hlil_mod.HighLevelILInstruction = type("HighLevelILInstruction", (), {})
    bn_mock.highlevelil = hlil_mod

    # lowlevelil sub-module
    llil_mod = MagicMock()
    llil_mod.LowLevelILAdd = type("LowLevelILAdd", (), {})
    llil_mod.LowLevelILConst = type("LowLevelILConst", (), {})
    llil_mod.LowLevelILConstPtr = type("LowLevelILConstPtr", (), {})
    llil_mod.LowLevelILLoad = type("LowLevelILLoad", (), {})
    llil_mod.LowLevelILLsl = type("LowLevelILLsl", (), {})
    llil_mod.LowLevelILMul = type("LowLevelILMul", (), {})
    llil_mod.LowLevelILPop = type("LowLevelILPop", (), {})
    llil_mod.LowLevelILPush = type("LowLevelILPush", (), {})
    llil_mod.LowLevelILReg = type("LowLevelILReg", (), {})
    llil_mod.LowLevelILStore = type("LowLevelILStore", (), {})
    llil_mod.LowLevelILSub = type("LowLevelILSub", (), {})
    bn_mock.lowlevelil = llil_mod

    # mediumlevelil sub-module
    mlil_mod = MagicMock()
    mlil_mod.MediumLevelILConst = type("MediumLevelILConst", (), {})
    mlil_mod.MediumLevelILConstPtr = type("MediumLevelILConstPtr", (), {})
    bn_mock.mediumlevelil = mlil_mod

    sys.modules["binaryninja"] = bn_mock
    sys.modules["binaryninja.enums"] = enums_mod
    sys.modules["binaryninja.lowlevelil"] = llil_mod
    sys.modules["binaryninja.highlevelil"] = hlil_mod
    sys.modules["binaryninja.mediumlevelil"] = mlil_mod

    return bn_mock


# ============================================================================
# Mock Factories
# ============================================================================

class MockToken:
    """Mock for instruction text tokens."""
    def __init__(self, text, token_type=None):
        self.text = text
        if token_type is None:
            self.type = InstructionTextTokenType.TextToken
        else:
            self.type = token_type

    def __str__(self):
        return self.text


class MockDisassemblyLine:
    """Mock for a disassembly text line."""
    def __init__(self, tokens=None):
        self.tokens = tokens or []

    def __str__(self):
        return "".join(t.text for t in self.tokens)


class MockEdge:
    """Mock for a basic block edge."""
    def __init__(self, source=None, target=None, edge_type=None):
        self.source = source
        self.target = target
        self.type = edge_type


class MockBasicBlock:
    """Mock for a basic block."""
    def __init__(
        self,
        start=0,
        end=0,
        disassembly_text=None,
        outgoing_edges=None,
        incoming_edges=None,
        dominators=None,
        post_dominators=None,
        dominance_frontier=None,
        dominator_tree_children=None,
        instruction_count=None,
    ):
        self.start = start
        self.end = end
        self.disassembly_text = disassembly_text or []
        self.outgoing_edges = outgoing_edges or []
        self.incoming_edges = incoming_edges or []
        self.dominators = dominators if dominators is not None else [self]
        self.post_dominators = post_dominators if post_dominators is not None else [self]
        self.dominance_frontier = dominance_frontier if dominance_frontier is not None else set()
        self.dominator_tree_children = dominator_tree_children or []
        self.instruction_count = instruction_count if instruction_count is not None else len(self.disassembly_text)

    def __iter__(self):
        return iter(self.disassembly_text)


class MockFunction:
    """Mock for a Binary Ninja function."""
    def __init__(
        self,
        name="sub_1000",
        start=0x1000,
        basic_blocks=None,
        instructions=None,
        hlil=None,
        llil=None,
        mlil=None,
        symbol=None,
        is_thunk=False,
        stack_adjustment=0,
        call_sites=None,
        caller_sites=None,
        low_level_il=None,
    ):
        self.name = name
        self.start = start
        self.basic_blocks = basic_blocks or []
        self._instructions = instructions or []
        self.hlil = hlil
        self.llil = llil
        self.mlil = mlil
        self.symbol = symbol
        self.is_thunk = is_thunk
        self.stack_adjustment = stack_adjustment
        self.call_sites = call_sites or []
        self.caller_sites = caller_sites or []
        self.low_level_il = low_level_il

    @property
    def instructions(self):
        return iter(self._instructions)

    def get_basic_block_at(self, addr):
        for bb in self.basic_blocks:
            if bb.start <= addr < bb.end or bb.start == addr:
                return bb
        return self.basic_blocks[0] if self.basic_blocks else None

    def get_regs_read_by(self, addr, arch):
        return []

    def get_regs_written_by(self, addr, arch):
        return []

    def __str__(self):
        return f"uint64_t {self.name}()"


class MockBinaryView:
    """Mock for a Binary Ninja binary view."""
    def __init__(
        self,
        functions=None,
        strings=None,
        arch=None,
    ):
        self.functions = functions or []
        self.strings = strings or []
        self.arch = arch

    def get_segment_at(self, addr):
        return None

    def get_section_at(self, addr):
        return None

    def get_symbol_at(self, addr):
        return None

    def get_functions_at(self, addr):
        return []

    def get_string_at(self, addr):
        return None

    def get_data_var_at(self, addr):
        return None


class MockSymbol:
    """Mock for a Binary Ninja symbol."""
    def __init__(self, symbol_type=None, name="unknown"):
        self.type = symbol_type if symbol_type is not None else SymbolType.FunctionSymbol
        self.name = name
        self.full_name = name


class MockILInstruction:
    """Mock for an IL instruction (LLIL/HLIL)."""
    def __init__(self, operation, operands=None, address=0):
        self.operation = operation
        self.operands = operands or []
        self.address = address


class MockStringEntry:
    """Mock for a Binary Ninja string reference."""
    def __init__(self, value, raw=None, start=0, length=0, string_type=None):
        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 = string_type or MockStringType("Utf8String")


class MockStringType:
    """Mock for string type."""
    def __init__(self, name="Utf8String"):
        self.name = name