Skill Codex
Beginner-friendly reverse-engineering workflow for Hardware Breakpoint Observation. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
r0crawl_skills is a massive reverse-engineering skill arsenal for web, Android, iOS, Frida, native binaries, protocols, malware, firmware, and anti-analysis—built for beginners, tuned for pros, and engineered for reproducible results.
Skill Codex
Beginner-friendly reverse-engineering workflow for Hardware Breakpoint Observation. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Skill Codex
Beginner-friendly workflow for Executable anonymous mappings, memfd, JIT pages, decrypted code, and runtime reconstruction. Extracts general methods and evidence practices without depending on any author, private repository, personal path, secret, or branded prompt. Use when a reverse-engineering task needs reliable…
Skill Codex
Beginner-friendly reverse-engineering workflow for Hotel Travel Risk Reversing. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Skill Codex
Beginner-friendly reverse-engineering workflow for Hybrid Webview Reversing. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Skill Codex
Beginner-friendly reverse-engineering workflow for Ida Export Automation. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Skill Codex
Beginner-friendly reverse-engineering workflow for Ida Ghidra Workflow. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Skill Codex
Beginner-friendly workflow for IDA project export, function-range extraction, naming, type propagation, xrefs, and machine-readable artifacts. Extracts general methods and evidence practices without depending on any author, private repository, personal path, secret, or branded prompt. Use when a reverse-engineering…
Skill Codex
Beginner-friendly reverse-engineering workflow for Ios Runtime Analysis. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Skill Codex
Beginner-friendly reverse-engineering workflow for Ios Unpacking And Dump. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Skill Codex
Beginner-friendly reverse-engineering workflow for Java Jvm Reversing. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Skill Codex
Beginner-friendly reverse-engineering workflow for Javascript Obfuscator Family. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Skill Codex
Beginner-friendly reverse-engineering workflow for Jni Native Analysis. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Skill Codex
Beginner-friendly workflow for JNIOnLoad, RegisterNatives, dynamic method tables, symbol recovery, and Java/native mapping. Extracts general methods and evidence practices without depending on any author, private repository, personal path, secret, or branded prompt. Use when a reverse-engineering task needs reliable…
Skill Codex
Beginner-friendly reverse-engineering workflow for Js Deobfuscation. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Skill Codex
Beginner-friendly reverse-engineering workflow for Js Hook Engineering. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Skill Codex
Beginner-friendly reverse-engineering workflow for Js Worker Hooking. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Skill Codex
Beginner-friendly reverse-engineering workflow for Jsvmp Vmp Analysis. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Skill Codex
Beginner-friendly reverse-engineering workflow for Kernel Driver Analysis. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Skill Codex
Beginner-friendly workflow for Android linker namespaces, library search paths, isolated namespaces, dlopen, and dependency loading. Extracts general methods and evidence practices without depending on any author, private repository, personal path, secret, or branded prompt. Use when a reverse-engineering task needs…
Skill Codex
Beginner-friendly reverse-engineering workflow for Linux Kernel Reversing. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Skill Codex
Beginner-friendly reverse-engineering workflow for Llm Agent Security Reversing. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Skill Codex
Beginner-friendly reverse-engineering workflow for Logistics Query Reversing. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Skill Codex
Beginner-friendly reverse-engineering workflow for Macos Kernel Reversing. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Skill Codex
Beginner-friendly reverse-engineering workflow for Malware Dynamic Analysis. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
At most 3 mods per repository are shown here, and a mod shipped inside a plugin is left to that plugin's page — the rest are on their repository pages: