plugins/reverse-engineering/skills/anti-reversing-techniques/SKILL.md
Understand anti-reversing, obfuscation, and protection techniques encountered during software analysis. Use this skill when analyzing malware evasion techniques, when implementing anti-debugging protections for CTF challenges, when reverse engineering packed binaries, or when building security research tools that need to detect virtualized environments.
npx skillsauth add wshobson/agents anti-reversing-techniquesInstall this skill globally with one command. Works with Claude Code, Cursor, and Windsurf.
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AUTHORIZED USE ONLY: This skill contains dual-use security techniques. Before proceeding with any bypass or analysis:
- Verify authorization: Confirm you have explicit written permission from the software owner, or are operating within a legitimate security context (CTF, authorized pentest, malware analysis, security research)
- Document scope: Ensure your activities fall within the defined scope of your authorization
- Legal compliance: Understand that unauthorized bypassing of software protection may violate laws (CFAA, DMCA anti-circumvention, etc.)
Legitimate use cases: Malware analysis, authorized penetration testing, CTF competitions, academic security research, analyzing software you own/have rights to
Understanding protection mechanisms encountered during authorized software analysis, security research, and malware analysis. This knowledge helps analysts bypass protections to complete legitimate analysis tasks.
For advanced techniques, see references/advanced-techniques.md
What you provide:
What this skill produces:
Detailed pattern documentation lives in references/details.md. Read that file when the navigation tier above is insufficient.
Detection technique works on x86 but not ARM
RDTSC and CPUID are x86-only. On ARM, use MRS x0, PMCCNTR_EL0 (requires kernel PMU access) or clock_gettime(CLOCK_MONOTONIC). PEB/TEB do not exist on ARM — replace with /proc/self/status (Linux) or task_info (macOS). Rebuild detection logic with platform-specific APIs.
False positive on legitimate debugger or analysis tool
Timing checks fire when Process Monitor or AV hooks inflate syscall latency. Calibrate the threshold at startup: measure the guarded path 3 times and use mean + 3*stddev. For ptrace checks, verify the TracerPid comm name via /proc/<pid>/comm before exiting — it may be an unrelated monitoring tool, not a debugger.
Bypass patch causes crash instead of continuing execution
Before NOPing a conditional jump, trace the "detected" branch fully. If it initializes or frees heap state needed later, patching the jump skips that setup and corrupts state. Instead, patch the comparison operand to the expected "clean" value, or use x64dbg's "Set condition to always false" on the breakpoint rather than modifying bytes.
binary-analysis-patterns — static and dynamic analysis workflows for ELF/PE/Mach-Omemory-forensics — process memory acquisition, artifact extraction, and live analysisprotocol-reverse-engineering — decoding custom binary protocols and encrypted network traffictools
Install and operate Hermes Tweet, a Hermes Agent plugin for X/Twitter research, timeline reading, tweet analysis, and approval-gated private or state-changing operations. Use this skill when installing Hermes Tweet, researching X/Twitter accounts, monitoring launch signals, investigating mentions, auditing giveaways, or preparing gated X operations. Use proactively when a Hermes Agent workflow needs current X/Twitter context. Requires XQUIK_API_KEY for read and action tools.
testing
Audit and rewrite prose so it stops reading as machine-generated. Use this skill when asked to remove AI-isms, clean up AI writing, edit a draft for AI tells, audit a README, changelog, release note, PR description, or blog post for machine-sounding prose, or make text sound less like AI. Supports a detect-only mode, a rewrite mode, and an edit-in-place mode, with optional voice and context profiles.
development
Python design patterns including KISS, Separation of Concerns, Single Responsibility, and composition over inheritance. Use this skill when designing a new service or component from scratch and choosing how to layer responsibilities, when refactoring a God class or monolithic function that has grown too large, when deciding whether to add a new abstraction or live with duplication, when evaluating a pull request for structural issues like tight coupling or leaking internal types, when choosing between inheritance and composition for a new class hierarchy, or when a codebase is becoming hard to test because of entangled I/O and business logic.
development
This skill should be used when the user asks to "optimize a prompt", "improve prompt performance", "design a prompt template", "write better prompts", "debug prompt issues", "use chain-of-thought", "structured prompting", "few-shot prompting", or wants to apply advanced prompt engineering patterns for production LLM applications.