Oleg B. Makarevich

40 papers B 1C 34Unranked 5
YearRankTypeTitle / Venue / Authors
2019 C conf
SIN
Elena Basan, Oleg B. Makarevich, Evgeny Abramov, Dmitry Popov
2019 conf
CyberC
Elena Basan, Alexander S. Basan, Oleg B. Makarevich
2019 C ed.
SIN
Oleg B. Makarevich, Dmitry Popov, Ludmila K. Babenko, Pete Burnap, Atilla Elçi, Ron Poet, Jaideep Vaidya, Mehmet A. Orgun, Manoj Singh Gaur, Rajveer Singh Shekhawat
2019 C conf
SIN
Vitaly V. Lapshichyov, Oleg B. Makarevich
2018 C conf
SIN
Maxim Pismensky, Elena Basan, Oleg B. Makarevich
2018 C conf
SIN
Elena Basan, Oleg B. Makarevich, Alexandr S. Basan
2018 C conf
SIN
Elena Basan, Oleg B. Makarevich, Andrew Stepenkin
2018 conf
CyberC
Elena Basan, Alexander S. Basan, Oleg B. Makarevich
2017 conf
CyberC
Alexander S. Basan, Elena Basan, Oleg B. Makarevich
2017 C conf
SIN
Liudmila Babenko, Ilya Pisarev, Oleg B. Makarevich
2017 C conf
SIN
Alexander S. Basan, Elena Basan, Oleg B. Makarevich
2017 C ed.
SIN
Rajveer Singh Shekhawat, Manoj Singh Gaur, Atilla Elçi, Jaideep Vaidya, Oleg B. Makarevich, Ron Poet, Mehmet A. Orgun, Vijaypal S. Dhaka, Manoj Kumar Bohra, Virender Singh, Ludmila K. Babenko, Naghmeh Moradpoor Sheykhkanloo, Behnam Rahnama
2016 C conf
SIN
Alexandr S. Basan, Elena Basan, Oleg B. Makarevich
2016 conf
CyberC
Alexander S. Basan, Elena Basan, Oleg B. Makarevich
2015 conf
CyberC
Elena Basan, Oleg B. Makarevich
2015 C conf
SIN
Philipp Burtyka, Oleg B. Makarevich
2015 C ed.
SIN
Oleg B. Makarevich, Ron Poet, Atilla Elçi, Manoj Singh Gaur, Mehmet A. Orgun, Ludmila K. Babenko, Md Sadek Ferdous, Anthony T. S. Ho, Vijay Laxmi, Josef Pieprzyk
2015 C conf
SIN
Ludmila K. Babenko, Philipp Burtyka, Oleg B. Makarevich, Alina Trepacheva
2015 C conf
SIN
Evgeny Sergeevich Abramov, Elena Basan, Oleg B. Makarevich
2014 C conf
SIN
Artem Garkusha, Evgeny Sergeevich Abramov, Oleg B. Makarevich
2014 C conf
SIN
Ludmila K. Babenko, Oleg B. Makarevich, Dmitry Bespalov, Roman Chesnokov, Yaroslav Trubnikov
2014 C conf
SIN
Philipp Burtyka, Oleg B. Makarevich
2013 C conf
SIN
Evgeny Sergeevich Abramov, Elena Basan, Oleg B. Makarevich
2013 C conf
SIN
Dmitry Rublev, Vladimir Fedorov, Oleg B. Makarevich
2013 C conf
SIN
Ludmila K. Babenko, Alexandr S. Basan, Oleg B. Makarevich
2013 C ed.
SIN
Atilla Elçi, Manoj Singh Gaur, Mehmet A. Orgun, Oleg B. Makarevich
2013 C conf
SIN
Oleg B. Makarevich, Irina V. Mashkina, Alina Sentsova
2013 C conf
SIN
Evgeny Sergeevich Abramov, Maxim Kobilev, Oleg B. Makarevich
2012 C ed.
SIN
Manoj Singh Gaur, Atilla Elçi, Oleg B. Makarevich, Mehmet A. Orgun, Virendra Singh
2012 C conf
SIN
Evgeny Sergeevich Abramov, Elena Barannik, Oleg B. Makarevich
2011 C conf
SIN
Evgeny Sergeevich Abramov, Artem Viktorovich Andreev, Denis Valerievich Mordvin, Oleg B. Makarevich
2011 C ed.
SIN
Mehmet A. Orgun, Atilla Elçi, Oleg B. Makarevich, Sorin A. Huss, Josef Pieprzyk, Lyudmila K. Babenko, Alexander G. Chefranov, Rajan Shankaran
2010 C conf
SIN
Evgeny Sergeevich Abramov, Denis Valerievich Mordvin, Oleg B. Makarevich
2010 C conf
SIN
Dmitry Rublev, Vladimir Fedorov, Oleg B. Makarevich
2010 C ed.
SIN
Oleg B. Makarevich, Atilla Elçi, Mehmet A. Orgun, Sorin A. Huss, Ludmila K. Babenko, Alexander G. Chefranov, Vijay Varadharajan
2009 C conf
SIN
Alexandr S. Basan, Lyudmila K. Babenko, Oleg B. Makarevich
2009 C conf
SIN
Dmitry Rublev, Vladimir Fedorov, Oleg B. Makarevich, Anatolij Chumachenko
2009 C ed.
SIN
Atilla Elçi, Oleg B. Makarevich, Mehmet A. Orgun, Alexander G. Chefranov, Josef Pieprzyk, Yuri Anatolievich Bryukhomitsky, Siddika Berna Örs
2009 C conf
SIN
Oleg B. Makarevich, Lyudmila K. Babenko
2001 B conf
PaCT
Lyudmila K. Babenko, Alexander G. Chefranov, P. A. Fedorov, A. Yu. Korobko, Oleg B. Makarevich
redb/extractors/decompiler/bninja/analysis/cfg.py
← Index redb/extractors/decompiler/bninja/analysis/cfg.py python
from binaryninja.enums import LowLevelILOperation as LLIL_OP

# Support both package and standalone imports
try:
    from . import cfg_features
except ImportError:
    from redb.extractors.decompiler.bninja.analysis import cfg_features


# ---------------------------------------------------------------------------
# Task 2.2: Build LLIL operation maps at import time using real enum values
# ---------------------------------------------------------------------------

# Prime product map: LLIL operation integer value -> small prime
cfg_features.LLIL_OP_PRIMES = {
    # SET_REG, SET_REG_SPLIT
    LLIL_OP.LLIL_SET_REG.value: 2,
    LLIL_OP.LLIL_SET_REG_SPLIT.value: 2,
    # SET_FLAG
    LLIL_OP.LLIL_SET_FLAG.value: 3,
    # LOAD
    LLIL_OP.LLIL_LOAD.value: 5,
    # STORE
    LLIL_OP.LLIL_STORE.value: 7,
    # PUSH, POP
    LLIL_OP.LLIL_PUSH.value: 11,
    LLIL_OP.LLIL_POP.value: 13,
    # CALL, TAILCALL, SYSCALL
    LLIL_OP.LLIL_CALL.value: 17,
    LLIL_OP.LLIL_TAILCALL.value: 17,
    LLIL_OP.LLIL_SYSCALL.value: 19,
    # RET, NORET
    LLIL_OP.LLIL_RET.value: 23,
    LLIL_OP.LLIL_NORET.value: 23,
    # IF, GOTO
    LLIL_OP.LLIL_IF.value: 29,
    LLIL_OP.LLIL_GOTO.value: 31,
    # ADD, SUB
    LLIL_OP.LLIL_ADD.value: 37,
    LLIL_OP.LLIL_SUB.value: 41,
    # AND, OR, XOR
    LLIL_OP.LLIL_AND.value: 43,
    LLIL_OP.LLIL_OR.value: 47,
    LLIL_OP.LLIL_XOR.value: 53,
    # LSL, LSR, ASR, ROL, ROR
    LLIL_OP.LLIL_LSL.value: 59,
    LLIL_OP.LLIL_LSR.value: 61,
    LLIL_OP.LLIL_ASR.value: 67,
    LLIL_OP.LLIL_ROL.value: 71,
    LLIL_OP.LLIL_ROR.value: 73,
    # MUL, DIVU, DIVS, MODU, MODS
    LLIL_OP.LLIL_MUL.value: 79,
    LLIL_OP.LLIL_DIVU.value: 83,
    LLIL_OP.LLIL_DIVS.value: 83,
    LLIL_OP.LLIL_MODU.value: 89,
    LLIL_OP.LLIL_MODS.value: 89,
    # NEG, NOT
    LLIL_OP.LLIL_NEG.value: 97,
    LLIL_OP.LLIL_NOT.value: 101,
    # CMP_E, CMP_NE, CMP_SLT, CMP_ULT, CMP_SLE, CMP_ULE
    # CMP_SGT, CMP_UGT, CMP_SGE, CMP_UGE
    LLIL_OP.LLIL_CMP_E.value: 103,
    LLIL_OP.LLIL_CMP_NE.value: 103,
    LLIL_OP.LLIL_CMP_SLT.value: 107,
    LLIL_OP.LLIL_CMP_ULT.value: 107,
    LLIL_OP.LLIL_CMP_SLE.value: 109,
    LLIL_OP.LLIL_CMP_ULE.value: 109,
    LLIL_OP.LLIL_CMP_SGT.value: 113,
    LLIL_OP.LLIL_CMP_UGT.value: 113,
    LLIL_OP.LLIL_CMP_SGE.value: 127,
    LLIL_OP.LLIL_CMP_UGE.value: 127,
    # NOP
    LLIL_OP.LLIL_NOP.value: 1,
    # SX, ZX, LOW_PART, BOOL_TO_INT
    LLIL_OP.LLIL_SX.value: 131,
    LLIL_OP.LLIL_ZX.value: 137,
    LLIL_OP.LLIL_LOW_PART.value: 139,
    LLIL_OP.LLIL_BOOL_TO_INT.value: 149,
    # JUMP, JUMP_TO
    LLIL_OP.LLIL_JUMP.value: 151,
    LLIL_OP.LLIL_JUMP_TO.value: 151,
}

# Category map: LLIL operation integer value -> category index
_ARITHMETIC = {
    LLIL_OP.LLIL_ADD, LLIL_OP.LLIL_ADC, LLIL_OP.LLIL_SUB, LLIL_OP.LLIL_SBB,
    LLIL_OP.LLIL_MUL, LLIL_OP.LLIL_MULU_DP, LLIL_OP.LLIL_MULS_DP,
    LLIL_OP.LLIL_DIVU, LLIL_OP.LLIL_DIVU_DP, LLIL_OP.LLIL_DIVS,
    LLIL_OP.LLIL_DIVS_DP, LLIL_OP.LLIL_MODU, LLIL_OP.LLIL_MODS,
    LLIL_OP.LLIL_NEG,
}
_LOGIC = {
    LLIL_OP.LLIL_AND, LLIL_OP.LLIL_OR, LLIL_OP.LLIL_XOR, LLIL_OP.LLIL_NOT,
    LLIL_OP.LLIL_LSL, LLIL_OP.LLIL_LSR, LLIL_OP.LLIL_ASR,
    LLIL_OP.LLIL_ROL, LLIL_OP.LLIL_RLC, LLIL_OP.LLIL_ROR, LLIL_OP.LLIL_RRC,
}
_TRANSFER = {
    LLIL_OP.LLIL_SET_REG, LLIL_OP.LLIL_SET_REG_SPLIT, LLIL_OP.LLIL_SET_FLAG,
    LLIL_OP.LLIL_GOTO, LLIL_OP.LLIL_IF, LLIL_OP.LLIL_JUMP, LLIL_OP.LLIL_JUMP_TO,
    LLIL_OP.LLIL_RET, LLIL_OP.LLIL_NORET, LLIL_OP.LLIL_PUSH, LLIL_OP.LLIL_POP,
}
_CALL = {
    LLIL_OP.LLIL_CALL, LLIL_OP.LLIL_TAILCALL, LLIL_OP.LLIL_SYSCALL,
}
_COMPARISON = {
    LLIL_OP.LLIL_CMP_E, LLIL_OP.LLIL_CMP_NE,
    LLIL_OP.LLIL_CMP_SLT, LLIL_OP.LLIL_CMP_ULT,
    LLIL_OP.LLIL_CMP_SLE, LLIL_OP.LLIL_CMP_ULE,
    LLIL_OP.LLIL_CMP_SGE, LLIL_OP.LLIL_CMP_UGE,
    LLIL_OP.LLIL_CMP_SGT, LLIL_OP.LLIL_CMP_UGT,
    LLIL_OP.LLIL_TEST_BIT, LLIL_OP.LLIL_FLAG_COND,
}
_MEMORY = {
    LLIL_OP.LLIL_LOAD, LLIL_OP.LLIL_STORE,
}

cfg_features.LLIL_OP_CATEGORIES = {}
for _op in _ARITHMETIC:
    cfg_features.LLIL_OP_CATEGORIES[_op.value] = cfg_features.CAT_ARITHMETIC
for _op in _LOGIC:
    cfg_features.LLIL_OP_CATEGORIES[_op.value] = cfg_features.CAT_LOGIC
for _op in _TRANSFER:
    cfg_features.LLIL_OP_CATEGORIES[_op.value] = cfg_features.CAT_TRANSFER
for _op in _CALL:
    cfg_features.LLIL_OP_CATEGORIES[_op.value] = cfg_features.CAT_CALL
for _op in _COMPARISON:
    cfg_features.LLIL_OP_CATEGORIES[_op.value] = cfg_features.CAT_COMPARISON
for _op in _MEMORY:
    cfg_features.LLIL_OP_CATEGORIES[_op.value] = cfg_features.CAT_MEMORY

# Set of CALL operation values for counting
_CALL_OPS = {op.value for op in _CALL}


# ---------------------------------------------------------------------------
# Task 2.1 + 2.3: Rewritten CFGAnalysis
# ---------------------------------------------------------------------------

class CFGAnalysis:
    def __init__(self, function, llil_function=None):
        self.function = function
        self.llil_function = llil_function

    def extract_function_cfg(self):
        """Extract function-level CFG features as a flat dictionary."""

        if self.function is None:
            return None

        blocks = list(self.function.basic_blocks)
        if not blocks:
            return None

        n = len(blocks)

        # 1. Build index-based adjacency from Binary Ninja blocks
        addr_to_idx = {b.start: i for i, b in enumerate(blocks)}
        successors = [[] for _ in range(n)]
        predecessors = [[] for _ in range(n)]
        for i, block in enumerate(blocks):
            for edge in block.outgoing_edges:
                if edge.target is None:
                    continue
                target_idx = addr_to_idx.get(edge.target.start)
                if target_idx is not None:
                    successors[i].append(target_idx)
                    predecessors[target_idx].append(i)

        # 2. BFS order (reusable across multiple features)
        bfs = cfg_features.bfs_order(successors, n)

        # 3. Collect per-block LLIL operations (for prime product + ACFG features)
        block_llil_ops = self._collect_block_llil_ops(blocks, addr_to_idx, n)
        all_llil_ops = [op for block_ops in block_llil_ops for op in block_ops]

        # 4. Structural counts
        edge_count = sum(len(s) for s in successors)
        total_llil = sum(len(ops) for ops in block_llil_ops)
        call_count = sum(
            1 for ops in block_llil_ops for op in ops
            if op in _CALL_OPS
        )

        # 5. Compute all features
        bb_features = cfg_features.build_block_features(block_llil_ops, successors, n)

        return {
            "cfg_topology_hash": cfg_features.compute_topology_hash(successors, bfs, n),
            "block_count": n,
            "edge_count": edge_count,
            "llil_total_operations": total_llil,
            "call_count": call_count,
            "cyclomatic_complexity": edge_count - n + 2,
            "loop_count": cfg_features.count_back_edges(successors, n),
            "max_depth": cfg_features.bfs_max_depth(successors, n),
            "max_fan_out": max((len(s) for s in successors), default=0),
            "md_index_topdown": cfg_features.compute_md_index_topdown(successors, predecessors, bfs),
            "md_index_bottomup": cfg_features.compute_md_index_bottomup(successors, predecessors, n),
            "prime_product_llil": cfg_features.compute_prime_product(all_llil_ops),
            "cfg_feature_tlsh": cfg_features.compute_cfg_feature_tlsh(bb_features, bfs),
            "wl_minhash": cfg_features.compute_wl_minhash(successors, predecessors, bb_features, n),
            "bb_features": bb_features,
            "cfg_adjacency": cfg_features.pack_adjacency(successors),
        }

    def _collect_block_llil_ops(self, blocks, addr_to_idx, n):
        """
        Collect LLIL operation integers per native basic block.
        Walks the full expression tree of each instruction so that
        nested operations (e.g. ADD inside SET_REG) are captured.
        Returns list of n lists, one per block.
        """
        block_ops = [[] for _ in range(n)]

        if self.llil_function is None:
            return block_ops

        try:
            for llil_block in self.llil_function.basic_blocks:
                # Map LLIL block to native block via source_block
                if llil_block.source_block is not None:
                    native_idx = addr_to_idx.get(llil_block.source_block.start)
                    if native_idx is not None:
                        for instr in llil_block:
                            self._walk_llil_ops(instr, block_ops[native_idx])
        except Exception:
            pass  # Return empty ops — LLIL-dependent fields will be 0/null

        return block_ops

    @staticmethod
    def _walk_llil_ops(expr, ops_list):
        """Collect operation values from an LLIL expression tree iteratively."""
        stack = [expr]
        while stack:
            node = stack.pop()
            if hasattr(node, 'operation'):
                ops_list.append(node.operation.value)
            if hasattr(node, 'operands'):
                for operand in node.operands:
                    if hasattr(operand, 'operation'):
                        stack.append(operand)