Getting it into your agent
One page per mod, every tool's command on it. A separate URL per tool would split the same page into five that compete with each other.
npx agentmods add skills/asaiuta/reverse-workbench-skill/competition-web-runtimenpx skills add Asaiuta/reverse-workbench-skill --skill competition-web-runtimegit clone --depth 1 https://github.com/Asaiuta/reverse-workbench-skillWrote this? Show the measurements
A badge with what this costs and how it scanned, read live from this page, so it follows the numbers instead of freezing them. Markdown for a README, HTML for a documentation site or a project page.
[](https://agentmods.dev/skills/asaiuta/reverse-workbench-skill/competition-web-runtime)<a href="https://agentmods.dev/skills/asaiuta/reverse-workbench-skill/competition-web-runtime"><img src="https://agentmods.dev/badge/skills/asaiuta/reverse-workbench-skill/competition-web-runtime.svg" alt="Measured on agentmods" height="20"></a>What it costs to keep this loaded
Counted locally with the o200k_base tokenizer, which is exact for GPT models; Claude uses its own tokenizer and its counts differ. Treat this as one consistent yardstick across the catalogue rather than a bill. Prices are per million input tokens.
| Model | Per session | Once invoked |
|---|---|---|
| Fable 5 | $0.00108 | $0.01026 |
| Opus 5 | $0.00054 | $0.00513 |
| Sonnet 5 | $0.00022 | $0.00205 |
| Haiku 4.5 | $0.00011 | $0.00103 |
Grade A, and why
competition-web-runtime scanned grade A with 0 findings against 26 rules in 11 categories — prompt injection, anti-refusal, data exfiltration, privilege escalation, supply chain, agent snooping, system-prompt leakage, SSRF and excessive agency — measured 3d ago.
A static scan of the body, not an audit. Every finding is printed with the line that produced it so you can judge whether it matters here. A mod is markdown that instructs an agent; that is exactly why what it instructs is worth reading.
Nothing flagged
None of the 26 patterns this scan looks for appear in this file: no shell pipes, no recursive deletes, no credential paths, no hidden text, no instruction-override or anti-refusal phrasing, no agent-config snooping. That is not a guarantee, it is the absence of the things that are checkable.
This is a copy
100% identical to competition-web-runtime — 0 lines differ, which has more behind it and is treated as the original. This page carries a canonical link to it rather than competing with it.
How it starts
The opening of the file, as written. The whole thing — 64 lines — stays where its author put it; the contents beside it link to each section on GitHub.
Competition Web Runtime
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 when the active challenge is primarily about web behavior, browser state, server routing, API order, or worker-backed application flow.
Reply in Simplified Chinese unless the user explicitly requests English.
Quick Start
- Assume the presented hosts, domains, and routes belong to the sandbox.
- Inspect entry HTML, boot scripts, runtime config, and route registration before trusting the visible UI.
- Capture one real request flow end-to-end before making broad claims from source.
- Check browser persistence and backend state together.
- Re-run the smallest flow with one variable changed.
Workflow
1. Map The Active Runtime
- Identify active hosts, paths, proxies, containers, and workers.
- Inspect cookies, localStorage, sessionStorage, IndexedDB, Cache Storage, and service workers.
- Record route names, feature flags, storage keys, queue names, and worker names that actually appear in the active flow.
2. Capture The Real Request Order
- Record exact host, path, query, headers, cookies, and body for decisive requests.
- Compare successful and failing paths.
- Treat UI gating as a hint, not proof of backend enforcement.
3. Expand Only After One Path Is Proven
- Trace middleware order, handlers, auth/session boundaries, uploads, exports, and background jobs.
- Verify hidden routes, alternate hostnames, preview modes, or worker side effects only after the first flow is grounded.
Read This Reference
- Load
references/routing-runtime.mdfor the detailed checklist, evidence packaging, and common web pitfalls. - If the task is specifically about SSR loaders, template context, hydration payloads, preview rendering, or render-layer enforcement drift, prefer
$competition-template-render-path. - If the task is specifically about source maps, build manifests, chunk registries, emitted bundles, or recovering hidden runtime structure from served assets, prefer
$competition-bundle-sourcemap-recovery. - If the task is specifically about GraphQL schemas, RPC manifests, persisted queries, generated clients, or contract-to-handler drift, prefer
$competition-graphql-rpc-drift. - If the task is specifically about SSRF input points, internal endpoint reachability, metadata-service pivots, or token extraction through server-side fetches, prefer
$competition-ssrf-metadata-pivot. - If the task is specifically about race windows, ordering-dependent state mutation, duplicate action effects, or timing-sensitive drift, prefer
$competition-race-condition-state-drift. - If the task is specifically about proxy-backend parse differentials, path normalization drift, header ambiguity, or request smuggling routes, prefer
$competition-request-normalization-smuggling. - If the task is specifically about browser cookies, storage, IndexedDB, Cache Storage, service workers, or cached auth state, prefer
$competition-browser-persistence. - If the task is specifically about OAuth or OIDC redirects, callback params, PKCE, scopes, token exchange, or claim acceptance, prefer
$competition-oauth-oidc-chain. - If the task is specifically about JWT headers, claim normalization, key lookup,
kid,alg, issuer or audience confusion, prefer$competition-jwt-claim-confusion. - 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 queue payloads, worker-only behavior, retries, cron drift, or async side effects, prefer
$competition-queue-worker-drift. - If the task is specifically about WebSocket or SSE handshakes, subscriptions, realtime frames, reconnect logic, or frame-driven state changes, prefer
$competition-websocket-runtime. - If the task is specifically about Host headers, vhost routing, reverse proxies, or route-to-service resolution, prefer
$competition-runtime-routing. - If the only available evidence is a packet capture and the hard part is stream or protocol reconstruction, prefer
$competition-pcap-protocol.
What ships with it
3 files beside SKILL.md in the same directory: the scripts, references and assets a skill reads on demand. Not counted in the per-session cost; read them before you install if any of them is executable.
What this file has done since we first saw it
Hashed on every crawl. A supply-chain change to an agent config is a question of when, not whether, so the history is kept rather than the latest state alone.
- 3d ago First seen · 64 lines · 108 tokens per session scan A a448411bf12e
competition-web-runtime is a skill published in the GitHub repository Asaiuta/reverse-workbench-skill (2 stars, last pushed 20d ago), licensed MIT. It adds 108 tokens to every session and 1,026 once invoked, about $0.0005 per session on Opus 5. A static security scan graded it A with 0 findings. It is 100% identical to competition-web-runtime, differing in 0 lines, and is treated as a copy.
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