30 open-source projects similar to mandiant/flare-floss, ranked by shared indexed features. Tags may describe platforms or build tools rather than the same primary purpose. Check each project’s use case, license, and deployment requirements before treating it as a replacement.
This project is a binary static analysis tool designed to recover hidden and non-standard encoded strings from compiled binaries. It functions as a malware analysis utility and string decryptor, extracting obfuscated text to reveal concealed program behavior without executing the code. The tool automates the recovery of embedded strings through a combination of emulated instruction execution and abstract syntax tree evaluation. It utilizes pattern-based heuristic detection to identify obfuscation routines and employs cross-platform binary parsing to process multiple executable formats. The s
de4dot is a .NET deobfuscator and unpacker designed to reverse obfuscation and restore readable code and metadata within .NET assemblies. It functions as a bytecode analyzer that simplifies control flow, strips anti-debugging protections, and extracts original payloads from packed executable wrappers. The project distinguishes itself through a modular deobfuscation pipeline and a sandbox environment used for dynamic string decryption, which executes decryption methods to replace encrypted strings with plain-text values. It can identify specific obfuscation tools through pattern-based binary a
de4dot is a .NET deobfuscator, unpacker, and assembly analysis tool. It is designed to remove obfuscation layers, restore metadata, and simplify bytecode control flow to transform protected binaries back into human-readable code. The project features specialized systems for decrypting strings and constants using both static and dynamic analysis. It identifies specific protection tools through pattern-based detection and strips anti-analysis protections, such as tamper detection and anti-debugging code. The tool provides a suite of reverse engineering capabilities, including binary wrapper un
YARA is a pattern matching engine and binary analysis tool used to identify and classify malware samples. It functions as a malware research framework that allows for the definition of file descriptions and detection rules to find indicators of compromise within binaries. The system enables the creation of custom detection rules using strings, wildcards, and regular expressions. These rules use boolean logic to match textual or binary patterns, allowing for the classification of files into specific malware families and the automation of threat intelligence. The engine utilizes Aho-Corasick s
Retdec is an LLVM-based machine code decompiler and static binary analysis tool designed for binary reverse engineering. It translates binary executable code into high-level representations to facilitate the reconstruction of program logic from compiled machine code. The system utilizes a retargetable frontend architecture and a multi-stage lifting pipeline to convert raw bytes into a common intermediate language. It differentiates custom program logic from known library code through signature-based identification and provides utilities for binary symbol demangling to restore human-readable n
This project is a cybersecurity educational resource and courseware designed for malware analysis and reverse engineering. It provides a structured curriculum of lessons, labs, and guided projects focused on detecting and understanding the behavior of malicious software. The resource includes a lab guide for building isolated virtual machine environments to safely execute and study malware. It covers the setup of a specialized toolchain consisting of disassemblers and debuggers used to analyze compiled machine code. The training material covers both static analysis, which examines binary cod
This project is a structured course and instructional guide focused on x64 Windows reverse engineering. It provides a curriculum for analyzing and decompiling Windows binaries through the study of assembly language and operating system internals. The material covers Windows binary analysis and malware analysis, with a specific focus on interpreting x64 machine code to recover original program logic. It guides the user through the process of tracing program behavior and logging function calls to understand how binaries operate. The technical scope includes assembly-level decompilation, debugg
radare2 is a reverse engineering framework and binary analysis toolset. It functions as a multi-architecture disassembler, low-level binary debugger, and hexadecimal editor for inspecting executable structures and interpreting machine code when original source files are unavailable. The framework provides capabilities for decompiling machine instructions, performing symbolic analysis, and diffing binary files to identify structural changes across versions. It also includes a digital forensic analyzer and disk analyzer for browsing filesystem formats in userland. The toolset supports binary p
This project is a comprehensive, community-driven directory of open-source tools, datasets, and documentation for malware analysis and cybersecurity research. It serves as a centralized index for security professionals and researchers to locate resources for investigating, reverse engineering, and analyzing malicious software. The directory organizes information through a structured taxonomy, covering specialized domains such as memory forensics, network traffic inspection, and honeypot threat research. By aggregating links to external utilities and frameworks, it provides a platform-agnostic
Binsider is a collection of specialized toolsets for hexadecimal editing, ELF structural analysis, system call tracing, and execution performance profiling. It provides a suite of utilities designed for binary reverse engineering, encompassing both static structural analysis and dynamic runtime monitoring of compiled binaries. The project distinguishes itself by combining low-level binary manipulation, such as a hex editor for raw byte modification, with an ELF binary analysis tool for inspecting file structures and metadata. It also includes a Linux system call tracer for observing dynamic b
Angr is a binary analysis framework and static analysis tool used for reverse engineering compiled binaries. It serves as a binary decompiler and a lifting platform that translates machine code into a common intermediate representation to enable cross-architecture analysis. The framework integrates a symbolic execution engine and constraint solvers to determine the inputs required to reach specific program states. It also employs untrusted code sandboxing to isolate guest code from the host environment during analysis. Its capabilities cover control flow and data flow analysis, including the
RetDec is a reverse engineering framework and static binary analysis tool. Its primary purpose is to function as an LLVM-based machine code decompiler that translates binary machine code from multiple architectures into high-level C source code. The system employs a multi-stage lifting pipeline to recover program logic, using an intermediate representation to apply optimizations before emitting source code. It distinguishes itself through the ability to identify compilers and packers, perform executable unpacking, and reconstruct class hierarchies and original program structures. The framewo
This project is a comprehensive technical guide and course for reverse engineering iOS applications. It serves as a manual for dissecting mobile binaries using disassembly and debugging tools to analyze internal application logic and behavior. The material functions as a reference for ARM assembly and Objective-C theories, providing the necessary framework to translate low-level machine code into human-readable logic. It combines theoretical study with practical exercises to validate the use of reverse engineering tools on real-world binaries. The scope covers static binary analysis, dynamic
dex2jar is an Android dex decompiler and reverse engineering tool designed to convert Dalvik executable bytecode into Java class files. It functions as a bytecode converter that transforms compiled Android binaries into a format compatible with standard Java analysis tools. The project facilitates Android app decompilation and Java bytecode recovery by translating executable files into readable structures. This allows for the analysis of application logic and the identification of security vulnerabilities or malicious behavior during Android malware analysis. The tool performs static bytecod
ScyllaHide is an anti-debugger bypass plugin and reverse engineering tool designed to hide a debugger from a target application. It functions as a user-mode API hooking library and DLL injection framework that prevents programs from detecting and closing themselves when being analyzed. The project enables malware analysis and the study of protected software by neutralizing security defenses. It achieves this by intercepting and modifying system library responses to deceive applications about their execution environment. The utility employs several technical methods to maintain stealth, inclu
pyinstxtractor is a PyInstaller executable unpacker and Python bytecode recovery tool. It functions as a helper for decompiling compiled Python binaries by extracting bundled binaries and bytecode from executables created with PyInstaller. The project includes a bytecode decryptor to remove encryption from extracted files and a header repair tool that restores corrupted headers. These capabilities ensure that extracted compiled files are compatible with bytecode decompilation software. The utility covers reverse engineering of Python applications, supporting malware analysis workflows throug
Jadx is a comprehensive Java decompilation suite designed to transform compiled binary application files into readable source code. It functions as a static analysis workbench, providing a graphical interface for navigating, searching, and inspecting the internal logic of complex software packages. By utilizing a bytecode-to-Java pipeline, the project reconstructs high-level logical structures from low-level binary instructions, making it a primary tool for Android application reverse engineering. The project distinguishes itself through a sophisticated control flow reconstruction engine and
Phasar is a static analysis framework designed for the inspection of software logic through the processing of compiler intermediate representations. It provides a modular pipeline for building program representations, including call graphs, control flow graphs, and type hierarchies, which serve as the foundation for deep structural analysis of software behavior. The framework specializes in interprocedural data flow analysis and pointer alias resolution, enabling the tracking of information movement across function boundaries and the identification of indirect memory access patterns. By lever
Apkleaks is a static analysis tool and security auditor designed to extract hardcoded secrets, API endpoints, and sensitive data from Android application packages. It operates as a secret scanner that analyzes compiled binaries without executing them to identify potential information leaks and insecure endpoints. The tool utilizes a regex-based data extraction engine to identify sensitive strings within decompiled code. It supports customization through JSON-defined search patterns and provides configuration flags to tune the behavior of the underlying disassembler. The analysis pipeline enc
Android Classyshark is a binary analysis toolset designed to extract structural data from Android executable files. It functions as a bytecode viewer and binary XML parser to analyze compiled Java and Android binaries. The project converts binary XML files into readable formats for the inspection of application manifests, layouts, and resource files. It also provides the ability to analyze class interfaces, members, and dependency counts without requiring access to the original source code. The toolset supports static analysis and the export of binary information into plain text formats for
pe-sieve is a set of diagnostic tools for scanning Windows process memory to identify malicious implants, shellcode, and hooks. It functions as an in-memory implant detector, malware unpacker, and process callstack analyzer designed to locate and dump memory patches and injected code from running processes. The project identifies advanced evasion techniques, such as process hollowing and reflective injection, by verifying portable executable structures in memory. It distinguishes itself by analyzing process callstacks to detect anomalies and redirections and by reconstructing executable heade
Cuckoo is an open-source automated malware analysis system that executes suspicious files inside isolated virtual machines and produces structured behavioral reports. The platform captures system calls, file operations, and network activity during execution, compiling them into comprehensive analysis documents for programmatic consumption. The system operates through a modular analysis pipeline that processes behavioral data, applying YARA signature patterns against captured artifacts to identify known malware families. Each analysis run starts from a clean virtual machine snapshot to ensure
This project is a red teaming knowledge base and offensive security playbook designed to simulate adversary behavior. It serves as a comprehensive collection of technical guides and tactics for executing red team operations. The repository provides detailed instructions for Active Directory exploitation, including Kerberos abuse and domain privilege escalation. It covers defense evasion through API unhooking and payload obfuscation, as well as Windows internals research involving the manipulation of kernel objects and system memory. The capability surface extends to network penetration testi
Flare-VM is a Windows malware analysis environment consisting of installation scripts that automate the provisioning of a virtual machine. It provides a comprehensive suite of reverse engineering tools, including decompilers and debuggers, along with the necessary system configurations and environment variables for security research. The project functions as a virtual machine image orchestrator, allowing for the automated creation, management, and export of specialized analysis appliances. It features configuration-driven tool selection and the ability to extend installation logic through cus
Flare-VM is a collection of scripts and an orchestrator designed to automate the installation and configuration of a reverse engineering toolset on Windows virtual machines. It functions as a provisioning system that deploys a consistent environment for malware analysis and security research on guest operating systems. The project utilizes a configuration manager and a graphical interface to allow for the selection of specific software packages and environment variables. It employs a curated manifest to manage the installation of compatible security tools and modifies system registries and ta
This project is a set of specialized utilities for generating malformed documents, obfuscating payloads, and crafting specific attack vectors to evaluate the resilience of security scanners. It functions as a PDF fuzzing framework and security testing tool designed to create PDF files with embedded payloads for verifying how document viewers and web applications handle vulnerabilities. The toolkit provides capabilities for encoding and hiding malicious content to test the detection effectiveness of security scanners. It includes a security payload generator for crafting specific attack vector
This project is a curated repository of remote access trojan binaries and malware samples. It serves as a structured analysis dataset and security research toolset designed for studying the behavior and inner workings of remote administration tools. The collection provides a versioned archive of malware samples and backdoor interfaces, with specific categorizations for target platforms including Windows and Android. It organizes these binaries to facilitate the study of malware evolution and the identification of technical patterns. The repository covers several security research areas, incl
pwndbg is a GDB plugin and binary analysis framework designed for reverse engineering, exploit development, and low-level program analysis. It extends the core functionality of the debugger to provide advanced memory inspection and automation tools. The project distinguishes itself with specialized capabilities for heap analysis across glibc, jemalloc, and musl, as well as a comprehensive kernel debugging toolkit for inspecting Linux kernel tasks and slab allocators. It includes an integrated ROP gadget searcher for constructing exploit chains and an LLM-powered debugging assistant that provi
This project is a curated archive and cybersecurity research dataset of raw source code from various malware families. It serves as a malware analysis library designed to help researchers study the inner workings of different threats and identify attack patterns across multiple platforms and programming languages. The repository supports security research by providing raw text distribution of original source code. This allows for the study of platform vulnerabilities, threat intelligence gathering, and the development of security products and detection signatures. The collection is organized
Mobile Security Framework is an automated security testing platform designed for the analysis of Android, iOS, and Windows mobile application binaries. It functions as a comprehensive suite for identifying security vulnerabilities, privacy risks, and malicious code within mobile software packages. The framework distinguishes itself by combining static and dynamic analysis techniques to evaluate application behavior. It performs static inspection of source code and binaries to detect insecure patterns, while simultaneously utilizing dynamic instrumentation and containerized sandboxing to monit