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SKILL verified MIT Self-run

Competition Reverse Pwn

skill-zhaoxuya520-reverse-skill-competition-reverse-pwn · by zhaoxuya520

Internal downstream skill for ctf-sandbox-orchestrator. CTF-sandbox workflow for reverse engineering, malware, DFIR, firmware, pwnable, and native exploit challenges. Use when the user asks to reverse a binary, unpack a sample, inspect a memory dump or PCAP, recover malware behavior, debug a crash, or build or verify an exploit chain under sandbox assumptions. Use only after `$ctf-sandbox-orchest…

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Install

$ agentstack add skill-zhaoxuya520-reverse-skill-competition-reverse-pwn

✓ scanned · ✓ verified, works with Claude Code, Cursor, and more.

Security review

✓ Passed

No issues found. Passed automated security review. · v0.1.0 How review works →

  • Prompt-injection patterns
  • Secret / credential exfiltration
  • Dangerous shell & filesystem operations
  • Untrusted network calls
  • Known-malicious package signatures

What it can access

  • Network access No
  • Filesystem access No
  • Shell / process execution No
  • Environment & secrets No
  • Dynamic code execution No

From automated source analysis of v0.1.0. “Used” means the capability is present in the source — more access means more to trust, not that it’s unsafe.

View the full security report →

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Reliability & compatibility

Security review passed
0 installs to date
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1mo ago

Declared compatibility

Claude CodeClaude Desktop

Compatibility is declared by the source manifest. End-to-end runtime verification is coming, see below.

Preview Execution monitoring

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About

Competition Reverse Pwn

Use this skill only as a downstream specialization after $ctf-sandbox-orchestrator is already active and has established sandbox assumptions, node ownership, and evidence priorities. If that has not happened yet, return to $ctf-sandbox-orchestrator first.

Use this skill for binary-heavy challenges where the decisive path runs through artifacts, decoded layers, process behavior, crash state, or exploit primitives.

Reply in Simplified Chinese unless the user explicitly requests English.

Quick Start

  1. Preserve the original artifact before unpacking, patching, or instrumenting.
  2. Start with passive triage: type, headers, sections, imports, strings, entropy, resources.
  3. Decide whether the path is reverse-first, DFIR-first, or exploit-first.
  4. Tie every claim to an observable boundary: decode edge, persistence edge, crash edge, or leak edge.
  5. Reproduce the artifact or primitive from a clean baseline.

Workflow

1. Reverse Or Forensic Triage

  • Separate loader, payload, config, and post-decode behavior.
  • Correlate files, memory, logs, registry, services, tasks, IPC, and PCAPs as one graph.
  • Keep decoded or dumped artifacts separate from the pristine sample.

2. Native And Exploit Path

  • Map mitigations, loader behavior, libc or runtime, syscall and IPC surfaces, and protocol framing.
  • Record the primitive, controllable bytes, leak source, target object, and final artifact separately.
  • Compare host, libc, loader, and framing differences before doubting the primitive.

Read This Reference

  • Load references/reverse-pwn.md for triage order, exploit evidence expectations, and common failure modes.
  • If the task is specifically about staged payload boundaries, config blobs, beacon parameters, or decoded IOC fields, prefer $competition-malware-config.
  • If the task is specifically about firmware partitions, boot chains, extracted filesystems, or update-package trust boundaries, prefer $competition-firmware-layout.
  • If the task is specifically about upload parsing, previews, archive extraction, converters, or deserialization chains, prefer $competition-file-parser-chain.
  • If the task is specifically about source maps, emitted bundles, chunk registries, or reconstructing hidden runtime structure from served frontend assets, prefer $competition-bundle-sourcemap-recovery.
  • If the task is specifically about container-to-host boundary crossing, kernel exploit preconditions, namespace or cgroup crossover, or escape primitive verification, prefer $competition-kernel-container-escape.
  • If the task is specifically about reconstructing protocols, streams, or transferred artifacts from packet captures, prefer $competition-pcap-protocol.
  • If the task is specifically about a custom binary or text protocol where replay state, message order, or checksum logic is the real blocker, prefer $competition-custom-protocol-replay.
  • If the task is specifically about reconstructing chronology across EVTX, PCAP, registry, mail, or disk artifacts, prefer $competition-forensic-timeline.

What To Preserve

  • Offsets, hashes, section names, imports, config blobs, mutexes, registry keys
  • Crash offsets, registers, heap or stack shape, leak addresses, and protocol steps
  • Original, decoded, dumped, and instrumented artifacts as separate files

Source & license

This open-source skill is cataloged on AgentStack and links to its original source — we do not rehost the code.

Install and usage instructions live in the source repository linked above.

Reviews

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Versions

  • v0.1.0 Imported from the upstream source.