Jairo Panetta

42 papers B 1C 8Misc 3Journal 15Unranked 13
YearRankTypeTitle / Venue / Authors
2024 conf
Euro-Par (2)
Pedro H. C. Rigon, Brenda S. Schussler, Alexandre Sardinha, Pedro M. Silva, Fábio Oliveira, Alexandre Carissimi, Jairo Panetta, Filippo Spiga, Arthur Francisco Lorenzon, Philippe O. A. Navaux
2023 J jnl
CoRR
Michael Souza, Luiz Mariano Carvalho, Douglas Adriano Augusto, Jairo Panetta, Paulo Goldfeld, José Roberto Pereira Rodrigues
2021 J jnl
Concurr. Comput. Pract. Exp.
Matheus S. Serpa, Pablo J. Pavan, Eduardo H. M. Cruz, Rodrigo L. Machado, Jairo Panetta, Antônio Azambuja, Alexandre S. Carissimi, Philippe O. A. Navaux
2021 J jnl
J. Comput. Sci.
Leonardo Gasparini, José Roberto Pereira Rodrigues, Douglas Adriano Augusto, Luiz Mariano Carvalho, Cesar Conopoima, Paulo Goldfeld, Jairo Panetta, João Paulo Ramirez, Michael Souza, Mateus O. Figueiredo, Victor M. D. M. Leite
2020 J jnl
CoRR
Carlos Junqueira-Junior, João Luiz F. Azevedo, Jairo Panetta, William R. Wolf, Sami Yamouni
2020 J jnl
Parallel Comput.
Carlos Junqueira-Junior, João Luiz F. Azevedo, Jairo Panetta, William R. Wolf, Sami Yamouni
2020 J jnl
CoRR
Carlos Junqueira-Junior, João Luiz F. Azevedo, Jairo Panetta, William R. Wolf, Sami Yamouni
2019 conf
IPDPS Workshops
Leonardo Gasparini, José Roberto Pereira Rodrigues, Cesar Conopoima, Douglas Adriano Augusto, Michael de Souza, Luiz Mariano Carvalho, Paulo Goldfeld, João Paulo Ramirez, Jairo Panetta
2019 J jnl
Concurr. Comput. Pract. Exp.
Thiago Carrijo Nasciutti, Jairo Panetta, Pedro Pais Lopes
2019 conf
P3HPC@SC
Daniela Ferreira Daniel, Jairo Panetta
2019 J jnl
Int. J. High Perform. Comput. Appl.
Matheus S. Serpa, Eduardo H. M. Cruz, Matthias Diener, Arthur M. Krause, Philippe O. A. Navaux, Jairo Panetta, Albert Farrés, Claudia Rosas, Mauricio Hanzich
2018 conf
WSCAD
Pablo J. Pavan, Matheus S. Serpa, Edson L. Padoin, Lucas Mello Schnorr, Philippe O. A. Navaux, Jairo Panetta
2018 conf
WSCAD (Selected Papers)
Matheus S. Serpa, Eduardo H. M. Cruz, Jairo Panetta, Antônio Azambuja, Alexandre S. Carissimi, Philippe O. A. Navaux
2018 conf
CARLA
Pablo J. Pavan, Matheus S. Serpa, Emmanuell Diaz Carreño, Víctor Martínez, Edson Luiz Padoin, Philippe O. A. Navaux, Jairo Panetta, Jean-François Méhaut
2018 conf
WSCAD
Matheus S. Serpa, Eduardo H. M. Cruz, Jairo Panetta, Philippe O. A. Navaux
2017 J jnl
Concurr. Comput. Pract. Exp.
Manoel Baptista Silva Junior, Jairo Panetta, Stephan Stephany
2017 C conf
SBAC-PAD
Jairo Panetta, Paulo R. P. de Souza Filho, Luiz A. F. Laranjeira, Carlos A. Teixeira
2017 conf
SBAC-PAD (Workshops)
Matheus S. Serpa, Eduardo H. M. Cruz, Matthias Diener, Arthur M. Krause, Albert Farrés, Claudia Rosas, Jairo Panetta, Mauricio Hanzich, Philippe O. A. Navaux
2014 conf
HPCS
Alvaro Luiz Fazenda, Celso L. Mendes, Laxmikant V. Kalé, Jairo Panetta, Eduardo Rocha Rodrigues
2013 J jnl
CoRR
Alvaro Luiz Fazenda, Celso L. Mendes, Laxmikant V. Kalé, Jairo Panetta, Eduardo Rocha Rodrigues
2013 ch.
Parallel Science and Engineering Applications
Eduardo R. Rodrigues, Celso L. Mendes, Jairo Panetta
2013 J jnl
Sci. Comput. Program.
Eduardo Rocha Rodrigues, Philippe Olivier Alexandre Navaux, Jairo Panetta, Celso L. Mendes
2012 J jnl
Int. J. Parallel Program.
Jairo Panetta, Thiago Teixeira, Paulo R. P. de Souza Filho, Carlos A. da Cunha Filho, David Sotelo, Fernando M. Roxo da Motta, Silvio Sinedino Pinheiro, Andre L. Romanelli Rosa, Luiz Rodolpho Monnerat, Leandro T. Carneiro, Carlos H. B. de Albrecht
2012 conf
SCCC
Carla Osthoff, Roberto Pinto Souto, Pedro Leite da Silva Dias, Jairo Panetta, Pedro Pais Lopes
2012 J jnl
Int. J. Inf. Technol. Commun. Convergence
Carla Osthoff, Francieli Zanon Boito, Rodrigo Virote Kassick, Laércio Lima Pilla, Philippe Olivier Alexandre Navaux, Claudio Schepke, Jairo Panetta, Pablo Javier Grunmann, Nicolas Maillard, Pedro Leite da Silva Dias, Robert L. Walko
2012 C ed.
SBAC-PAD
Jairo Panetta, José E. Moreira, David A. Padua, Philippe O. A. Navaux
2012 conf
WSCAD-SSC
Alvaro Luiz Fazenda, Eduardo Rocha Rodrigues, Simone S. Tomita, Jairo Panetta, Celso L. Mendes
2011 J jnl
Int. J. High Perform. Syst. Archit.
Alvaro Luiz Fazenda, Jairo Panetta, Daniel M. Katsurayama, Luiz Flavio Rodrigues, Luis F. G. Motta, Philippe Olivier Alexandre Navaux
2011 C conf
ISPA
Carla Osthoff, Pablo Javier Grunmann, Francieli Zanon Boito, Rodrigo Kassick, Laércio Lima Pilla, Philippe Olivier Alexandre Navaux, Claudio Schepke, Jairo Panetta, Nicolas Maillard, Pedro Leite da Silva Dias, Robert L. Walko
2010 C conf
SBAC-PAD
Eduardo Rocha Rodrigues, Philippe Olivier Alexandre Navaux, Jairo Panetta, Alvaro Luiz Fazenda, Celso L. Mendes, Laxmikant V. Kalé
2010 Misc conf
SAC
Eduardo Rocha Rodrigues, Philippe Olivier Alexandre Navaux, Jairo Panetta, Celso L. Mendes
2010 conf
SBAC-PAD (Workshops)
Carla Osthoff, Claudio Schepke, Jairo Panetta, Pablo Javier Grunmann, Nicolas Maillard, Philippe O. A. Navaux, Pedro Leite da Silva Dias, Pedro Pais Lopes
2010 Misc conf
HiPC
Eduardo Rocha Rodrigues, Philippe Olivier Alexandre Navaux, Jairo Panetta, Celso L. Mendes, Laxmikant V. Kalé
2009 C conf
SBAC-PAD
Jairo Panetta, Thiago Teixeira, Paulo R. P. de Souza Filho, Carlos A. da Cunha Filho, David Sotelo, Fernando M. Roxo da Motta, Silvio Sinedino Pinheiro, Ivan Pedrosa Junior, Andre L. Romanelli Rosa, Luiz Rodolpho Monnerat, Leandro T. Carneiro, Carlos H. B. de Albrecht
2009 C conf
ISCC
Eduardo Rocha Rodrigues, Felipe Lopes Madruga, Philippe Olivier Alexandre Navaux, Jairo Panetta
2007 C conf
SBAC-PAD
Jairo Panetta, Paulo R. P. de Souza Filho, Carlos A. da Cunha Filho, Fernando M. Roxo da Motta, Silvio Sinedino Pinheiro, Ivan Pedrosa Junior, Andre L. Romanelli Rosa, Luiz Rodolpho Monnerat, Leandro T. Carneiro, Carlos H. B. de Albrecht
2007 B conf
CCGRID
Roberto Pinto Souto, Rafael Bohrer Ávila, Philippe Olivier Alexandre Navaux, M. X. Py, Tiarajú Asmuz Diverio, Haroldo F. de Campos Velho, Stephan Stephany, Airam Jonatas Preto, Jairo Panetta, Eduardo Rocha Rodrigues, E. S. Almeida, Pedro Leite da Silva Dias, A. W. Gandu
2006 C conf
SBAC-PAD
Alvaro Luiz Fazenda, Eduardo Hidenori Enari, Luiz Flavio Rodrigues, Jairo Panetta
2005 Misc conf
International Conference on Computational Science (1)
Ulisses Kendi Hayashida, Kunio Okuda, Jairo Panetta, Siang Wun Song
1986 J jnl
Parallel Comput.
Dennis Gannon, Jairo Panetta
1985
Jairo Panetta
1985 conf
COMPCON
Dennis Gannon, Stephan V. Bechtolsheim, Alejandro A. Kapauan, Jairo Panetta, Ko-Yang Wang
redb/extractors/decompiler/bninja/analysis/disassembly.py
← Index redb/extractors/decompiler/bninja/analysis/disassembly.py python
import re
import time

import binaryninja
from binaryninja.enums import (
    InstructionTextTokenType,
)

# Support both package and standalone imports
try:
    from ..function_type import FunctionTypeAnalysis
    from ..utils.hashes import calculate_sha256
except ImportError:
    # Fallback to absolute imports (for multiprocessing spawned processes)
    from redb.extractors.decompiler.bninja.function_type import FunctionTypeAnalysis
    from redb.extractors.decompiler.bninja.utils.hashes import calculate_sha256


class DisassemblyAnalysis:
    INVALID_STACK_SIZE = -1

    def __init__(self, arch, function, bv, logger):
        self.arch = arch
        self.function = function
        self.bv = bv
        self.logger = logger
        if self.function is not None and hasattr(self.function, "instructions"):
            self.instructions = self.function.instructions
        else:
            self.instructions = []
        self.errors = []
        return

    def log_error(
        self, message, function_name, address, exception=None, error_location="unknown"
    ):
        """Log an error during processing."""
        error_msg = f"Error in function {function_name} at {address}: {message}"
        if exception:
            error_msg += f" - {str(exception)}"
        self.logger.error(error_msg)

        # Add to errors list
        error = {
            "function_name": function_name,
            "function_address": str(address),
            "error_location": error_location,
            "error_message": message,
            "error_details": str(exception) if exception else "",
            "error_type": type(exception).__name__ if exception else "Unknown",
            "timestamp": int(time.time() * 1000),
        }
        self.errors.append(error)

    def get_json(self):
        try:
            # Build disassembly string and normalized versions
            disassembly_builder = [[], []]  # Address and instruction text

            # Create a dictionary mapping addresses to instruction tokens
            instr_tokens_by_addr = {}
            for instr_tokens, addr in self.instructions:
                instr_tokens_by_addr[addr] = instr_tokens

            addresses = sorted(instr_tokens_by_addr.keys())
            for address in addresses:
                # Original disassembly with addresses
                # instr_tokens, address = instruction
                instr_tokens = instr_tokens_by_addr[address]
                disassembly_builder[0].append(address)
                disassembly_builder[1].append("".join(map(str, instr_tokens)))

            # Join with newlines
            disassembly_str = "\n".join(disassembly_builder[1])
            disassembly_with_addresses = "\n".join(
                f"{hex(address)}: {instr_text}"
                for address, instr_text in zip(
                    disassembly_builder[0], disassembly_builder[1], strict=False
                )
            )

            disassembly_json = {
                "disassembled_function_hash": calculate_sha256(disassembly_str),
                "disassembled_function": disassembly_with_addresses,
                "disassembled_function_no_addresses": disassembly_str,
                "disassembled_function_name": self.function.name,
                "disassembled_function_address": self.function.start,
                "instructions_count": len(instr_tokens_by_addr.keys()),
                "function_type": FunctionTypeAnalysis(self.function)
                .get_function_type()
                .name,
            }

            # Add additional metrics
            type_frequencies = self.collect_instruction_types()
            disassembly_json["instructions_types"] = list(type_frequencies.keys())
            disassembly_json["control_flow_count"] = (
                self.count_control_flow_instructions()
            )
            disassembly_json["memory_access_pattern"] = self.collect_memory_patterns()
            disassembly_json["register_usage"] = self.collect_register_usage()
            disassembly_json["data_references_count"] = self.count_data_references()
            disassembly_json["max_block_size"] = self.compute_max_block_size()
            disassembly_json["num_calls"] = self.compute_num_calls()
            disassembly_json["stack_size"] = self.estimate_stack_size()

            return disassembly_json, self.errors

        except Exception as e:
            self.log_error(
                "Failed to collect instruction types",
                self.function.name,
                self.function.start,
                e,
                "collect_instruction_types",
            )
            raise ValueError(e) from e

    def collect_instruction_types(self):
        """Collect instruction type frequencies from a function."""
        type_frequencies = {}

        try:
            # Iterate through all instructions in the function
            for instruction in self.instructions:
                instr_tokens = instruction[0]  # Get the instruction tokens

                # Extract the mnemonic from the instruction tokens
                mnemonic = None
                for token in instr_tokens:
                    if token.type == InstructionTextTokenType.InstructionToken:
                        mnemonic = token.text
                        break

                if not mnemonic:
                    continue

                # Use normalize_opcode to get standardized opcode
                normalized = self.normalize_opcode(mnemonic)

                # Get category from opcode_categories or use the instruction type directly
                category = self.arch.opcode_categories.get(normalized)
                if category:
                    self._increment_frequency(type_frequencies, category)

        except Exception as e:
            self.log_error(
                "Failed to collect instruction types",
                self.function.name,
                self.function.start,
                e,
                "collect_instruction_types",
            )

        return type_frequencies

    def normalize_opcode(self, opcode):
        return opcode.upper()

    def collect_memory_patterns(self):
        """Collect memory access patterns from a function."""
        patterns = []
        try:
            for instruction in self.instructions:
                instr_tokens = instruction[0]

                # We need to capture memory operands between BeginMemoryOperandToken and EndMemoryOperandToken
                in_memory_operand = False
                memory_operand_text = ""

                for token in instr_tokens:
                    if token.type == InstructionTextTokenType.BeginMemoryOperandToken:
                        in_memory_operand = True
                        memory_operand_text = ""
                    elif token.type == InstructionTextTokenType.EndMemoryOperandToken:
                        in_memory_operand = False

                        # Process the captured memory operand text
                        if memory_operand_text:
                            # Categorize memory access pattern
                            if (
                                "+" in memory_operand_text
                                and "*" in memory_operand_text
                            ):
                                if "MEM_SCALED_INDEX" not in patterns:
                                    patterns.append("MEM_SCALED_INDEX")
                            elif (
                                "+" in memory_operand_text or "-" in memory_operand_text
                            ):
                                if "MEM_BASE_OFFSET" not in patterns:
                                    patterns.append("MEM_BASE_OFFSET")
                            else:
                                if "MEM_DIRECT" not in patterns:
                                    patterns.append("MEM_DIRECT")

                            # Check for stack accesses
                            if any(
                                reg in memory_operand_text
                                for reg in ["SP", "BP", "ESP", "EBP", "RSP", "RBP"]
                            ):
                                if "MEM_STACK" not in patterns:
                                    patterns.append("MEM_STACK")
                            # Check for string operations
                            elif (
                                any(
                                    reg in memory_operand_text
                                    for reg in ["SI", "DI", "ESI", "EDI", "RSI", "RDI"]
                                )
                                and "MEM_STRING" not in patterns
                            ):
                                patterns.append("MEM_STRING")
                    elif in_memory_operand:
                        # Accumulate token text while inside a memory operand
                        memory_operand_text += token.text
        except Exception as e:
            self.log_error(
                "Failed to collect memory patterns",
                self.function.name,
                self.function.start,
                e,
                "collect_memory_patterns",
            )
        return patterns

    def collect_register_usage(self):
        """Collect register usage from a function."""
        registers = []
        try:
            # Define register groups we're interested in tracking
            register_groups = {
                "GPR": [
                    "RAX",
                    "RBX",
                    "RCX",
                    "RDX",
                    "R9",
                    "R10",
                    "R11",
                    "R12",
                    "R13",
                    "R14",
                    "R15",
                    "EAX",
                    "EBX",
                    "ECX",
                    "EDX",
                    "R9D",
                    "R10D",
                    "R11D",
                    "R12D",
                    "R13D",
                    "R14D",
                    "AX",
                    "BX",
                    "CX",
                    "DX",
                ],
                "GPR_INDEX": ["RSI", "RDI", "ESI", "EDI", "SI", "DI"],
                "GPR_STACK": ["RSP", "RBP", "ESP", "EBP", "SP", "BP"],
                "SIMD": ["XMM", "YMM", "ZMM"],
                "FPU": ["ST", "ST0", "ST1", "ST2", "ST3", "ST4", "ST5", "ST6", "ST7"],
                "FLAGS": ["FLAGS", "EFLAGS", "RFLAGS"],
                "CONTROL_REGISTER": ["CR0", "CR2", "CR3", "CR4", "CR8"],
                "DEBUG_REGISTER": ["DR0", "DR1", "DR2", "DR3", "DR6", "DR7"],
            }

            # Extract registers from instructions
            for instruction in self.instructions:
                instr_tokens = instruction[0]
                for token in instr_tokens:
                    if token.type == InstructionTextTokenType.RegisterToken:
                        reg = token.text.upper()
                        # Check which group this register belongs to
                        for group, regs in register_groups.items():
                            # if any(r in reg for r in regs) or any(reg.startswith(r) for r in regs):
                            if any(reg == r or reg.startswith(r) for r in regs):
                                if group not in registers:
                                    registers.append(group)
                                break
        except Exception as e:
            self.log_error(
                "Failed to collect register usage",
                self.function.name,
                self.function.start,
                e,
                "collect_register_usage",
            )
        return registers

    def count_data_references(self):
        """Count the number of data references in a function."""
        count = 0
        try:

            if self.function.mlil is None:
                return 0

            for block in self.function.mlil:
                for instr in block:
                    instr_str = str(instr)
                    logged = False
                    src = None

                    # Check for constant dereferencing or symbolic refs
                    if hasattr(instr, "src"):
                        src = instr.src
                        if isinstance(
                            src,
                            (
                                binaryninja.mediumlevelil.MediumLevelILConstPtr,
                                binaryninja.mediumlevelil.MediumLevelILConst,
                            ),
                        ):
                            count += 1
                            logged = True

                    # Check full string for hardcoded addresses or symbol-like tokens
                    if re.search(r"\b0x[0-9A-Fa-f]{3,}\b", instr_str) and not logged:
                        count += 1
                        logged = True

                    if "_" in instr_str and not logged:
                        count += 1
                        logged = True

                    # Only check for MediumLevelILConstPtr if src exists
                    if src is not None and isinstance(
                        src, binaryninja.mediumlevelil.MediumLevelILConstPtr
                    ):
                        addr = src.constant
                        # Check if address is in data sections
                        segment = self.bv.get_segment_at(addr)
                        if segment and segment.writable:
                            # print(f"[{function.name}] Matched data section reference in: {instr_str}")
                            count += 1
                            logged = True
        except Exception as e:
            self.logger.warning(
                f"Failed to use MLIL for counting data references in {self.function.name} at {self.function.start}: {e}"
            )
        return count

    def compute_max_block_size(self):
        """Compute the maximum basic block size in a function."""
        max_size = 0
        if self.function is None:
            return 0

        for block in self.function.basic_blocks:
            try:
                # Count instructions in this block using the direct length approach
                # This avoids UTF-8 decoding issues entirely
                block_size = block.instruction_count
                max_size = max(max_size, block_size)
            except Exception as e:
                self.log_error(
                    f"[HandledError] computing max block size: {e}",
                    self.function.name,
                    self.function.start,
                    e,
                    "compute_max_block_size",
                )
        return max_size

    def count_control_flow_instructions(self):
        """Count the number of control flow instructions in a function."""
        count = 0
        try:
            for instruction in self.instructions:
                instr_tokens = instruction[0]
                if self.arch.is_control_flow_instruction(instr_tokens):
                    count += 1
        except Exception as e:
            self.log_error(
                "Failed to count control flow instructions",
                self.function.name,
                self.function.start,
                e,
                "count_control_flow_instructions",
            )
        return count

    def compute_num_calls(self) -> int:
        """Compute the number of call instructions in a function."""
        num_calls = 0
        try:
            for instruction in self.instructions:
                instr_tokens = instruction[0]
                # Extract the mnemonic
                for token in instr_tokens:
                    if token.type == InstructionTextTokenType.InstructionToken:
                        if token.text.upper() == "CALL":
                            num_calls += 1
                        break
        except Exception as e:
            self.log_error(
                "Failed to compute number of calls",
                self.function.name,
                self.function.start,
                e,
                "compute_num_calls",
            )
        return num_calls

    def _increment_frequency(self, frequencies, type_name):
        """Increment the frequency count for an instruction type."""
        if type_name in frequencies:
            frequencies[type_name] += 1
        else:
            frequencies[type_name] = 1

    def estimate_stack_size(self):
        """Estimate the stack size used by a function."""
        try:
            # Binary Ninja provides a stack adjustment value for functions
            # Need to convert OffsetWithConfidence to a plain integer
            stack_adjust = self.function.stack_adjustment
            if hasattr(stack_adjust, "value"):  # Handle OffsetWithConfidence objects
                return stack_adjust.value
            return stack_adjust
        except Exception as e:
            self.log_error(
                "Failed to estimate stack size",
                self.function.name,
                self.function.start,
                e,
                "estimate_stack_size",
            )
            return self.INVALID_STACK_SIZE