
Claude Skills by manyuegong33
github.com/manyuegong33Beginner-friendly reverse-engineering workflow for Memory Breakpoint Tracing. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Beginner-friendly reverse-engineering workflow for Memory Forensics. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Beginner-friendly reverse-engineering workflow for Mobile Pentest Analysis. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Beginner-friendly reverse-engineering workflow for Native Api Hooking. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Beginner-friendly reverse-engineering workflow for Native Binary Analysis. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Beginner-friendly workflow for SIGKILL, SIGSEGV, SIGTRAP, SIGABRT, BRK, exit, and fatal-path attribution. 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 observation, loader analysis, runtime evidence, dump validation, crash attribution, tool setup, or reproducible reporting.
Beginner-friendly reverse-engineering workflow for Native Unpacking. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Beginner-friendly reverse-engineering workflow for Obfuscator Io Analysis. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Beginner-friendly reverse-engineering workflow for Objc Swift Hooking. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Beginner-friendly reverse-engineering workflow for Ollvm Deobfuscation. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Beginner-friendly reverse-engineering workflow for Ollvm Recovery Workflow. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Beginner-friendly workflow for Packed SO/ELF runtime mapping, section recovery, relocations, imports, and rebuild validation. 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 observation, loader analysis, runtime evidence, dump validation, crash attribution, tool setup, or reproducible reporting.
Beginner-friendly reverse-engineering workflow for Packer And Loader Analysis. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Beginner-friendly reverse-engineering workflow for Protobuf Schema Recovery. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Beginner-friendly reverse-engineering workflow for Protocol Reconstruction. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Beginner-friendly reverse-engineering workflow for Proxy Traffic Analysis. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Beginner-friendly reverse-engineering workflow for Quickapp Reversing. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Beginner-friendly reverse-engineering workflow for React Native Reversing. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Beginner-friendly reverse-engineering workflow for Reconstruction And Parity. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Beginner-friendly workflow for Manifest for samples, scripts, binaries, dumps, patches, hashes, tool versions, and provenance. 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 observation, loader analysis, runtime evidence, dump validation, crash attribution, tool setup, or reproducible reporting.
Beginner-friendly reverse-engineering workflow for Reverse Case Orchestration. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Beginner-friendly workflow for Detailed reverse-engineering experiment records, timelines, commands, diffs, decisions, and handoff notes. 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 observation, loader analysis, runtime evidence, dump validation, crash attribution, tool setup, or reproducible reporting.
Beginner-friendly reverse-engineering workflow for Reverse Reporting And Attribution. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Beginner-friendly workflow for Cold-start, warm-start, repeated-run, version, clean-baseline, and artifact regression checklists. 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 observation, loader analysis, runtime evidence, dump validation, crash attribution, tool setup, or reproducible reporting.
Beginner-friendly reverse-engineering workflow for Rizin Binary Analysis. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Beginner-friendly reverse-engineering workflow for Root Emulator Detection. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Beginner-friendly workflow for Runtime plaintext/ciphertext boundaries across Java, native, WebCrypto, TLS, and serialization layers. 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 observation, loader analysis, runtime evidence, dump validation, crash attribution, tool setup, or reproducible reporting.
Beginner-friendly reverse-engineering workflow for Runtime Patch Validation. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Beginner-friendly reverse-engineering workflow for Safe Malware Lab Management. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Beginner-friendly reverse-engineering workflow for Sandbox Analysis. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Beginner-friendly reverse-engineering workflow for Script Vm Sandbox Analysis. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Beginner-friendly reverse-engineering workflow for Selective Emulation Lab. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Beginner-friendly reverse-engineering workflow for Self Modifying Code. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Beginner-friendly reverse-engineering workflow for Shellcode And Payload Analysis. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Beginner-friendly reverse-engineering workflow for Source Map And Bundle Analysis. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Beginner-friendly workflow for Low-noise observation methodology for anti-hook and anti-instrumentation research. 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 observation, loader analysis, runtime evidence, dump validation, crash attribution, tool setup, or reproducible reporting.
Beginner-friendly reverse-engineering workflow for Struct Layout Recovery. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Beginner-friendly reverse-engineering workflow for Supply Chain Binary Analysis. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Beginner-friendly reverse-engineering workflow for Symbol Recovery And Structs. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Beginner-friendly workflow for Correlate syscall/eBPF observations with Frida hooks, native stacks, threads, and memory maps. 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 observation, loader analysis, runtime evidence, dump validation, crash attribution, tool setup, or reproducible reporting.
Beginner-friendly workflow for System-call filter evidence collection for signals, exits, memory mapping, direct syscalls, and attribution. 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 observation, loader analysis, runtime evidence, dump validation, crash attribution, tool setup, or reproducible reporting.
Beginner-friendly reverse-engineering workflow for Syscall Observation Lab. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Beginner-friendly reverse-engineering workflow for Systematic Debugging. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Beginner-friendly reverse-engineering workflow for Tls Pinning Analysis. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Beginner-friendly workflow for On-demand toolchain checks for adb, Frida, JADX, IDA, Ghidra, Python, Capstone, Unicorn, and device state. 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 observation, loader analysis, runtime evidence, dump validation, crash attribution, tool setup, or reproducible reporting.
Beginner-friendly reverse-engineering workflow for Triage And Route. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Beginner-friendly reverse-engineering workflow for Uniapp Reversing. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Beginner-friendly reverse-engineering workflow for Unity Il2Cpp Analysis. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Beginner-friendly reverse-engineering workflow for Vendor Akamai Bm. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.
Beginner-friendly reverse-engineering workflow for Vendor Aliyun Nvc Baxia. Use it to collect evidence, choose static or dynamic analysis, correlate runtime behavior, and produce a reproducible result.