competition-runtime-routing

A specialised workflow for determining how a live request travels through reverse proxies and services. A reverse proxy routes incoming web traffic to another application, often based on the hostname, path, or forwarded headers.

In plain words
What is it for?
Use it to trace virtual hosts, Host and forwarded headers, path rewriting, base URLs, WebSocket or SSE upgrades, proxy targets, and alternate routing branches.
Why use it?
It reveals which proxy rule, container, process, or downstream service actually handles a request when several hosts, prefixes, or nodes look similar.

Skill for Claude CodeCodex

Install

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.

agentmods
npx agentmods add skills/2233admin/reverse-skill-evolver/competition-runtime-routing
Any agent
npx skills add 2233admin/reverse-skill-evolver --skill competition-runtime-routing
Clone the repo
git clone --depth 1 https://github.com/2233admin/reverse-skill-evolver

Made for: Claude Code, Codex.

Per session 120 Skills are progressive disclosure: only the name and description are preloaded; the body loads when the skill is used.
When invoked 682 The whole file, excluding the scripts and references it only reads on demand.
Security scan A 0 findings. Scan, not verified.
Origin 100% copy Near-identical to another mod in the catalogue.
Token cost

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.

ModelPer sessionOnce invoked
Fable 5 $0.00120 $0.00682
Opus 5 $0.00060 $0.00341
Sonnet 5 $0.00024 $0.00136
Haiku 4.5 $0.00012 $0.00068

Measured 2d ago against content hash 2d49d8e943f3, method: parsed. Prices are Anthropic first-party input rates as of 2026-08-30, from the pricing page.

Security

Grade A, and why

competition-runtime-routing 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 2d 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.

Origin

This is a copy

100% identical to competition-runtime-routing — 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.

CTF-Sandbox-Orchestrator/competition-runtime-routing/SKILL.md · 52 lines

How it starts

The opening of the file, as written. The whole thing — 52 lines — stays where its author put it; the contents beside it link to each section on GitHub.

Competition Runtime Routing

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 decisive question is which sandbox node, proxy rule, or header-derived branch actually serves the live request.

Reply in Simplified Chinese unless the user explicitly requests English.

Quick Start

  1. Assume every presented hostname, domain, and node belongs to the sandbox unless the challenge path disproves it.
  2. Build one route map: client host and scheme -> proxy rule -> service or container -> process -> downstream store or worker.
  3. Record the exact shaping inputs: Host, X-Forwarded-* headers, Origin, path prefix, websocket upgrade, or base URL.
  4. Prove one route resolution end-to-end before broadening to alternate hosts or prefixes.
  5. Re-run the same request with one routing input changed at a time.

Workflow

1. Map Route Inputs

  • Inspect vhost rules, reverse proxies, forwarded headers, path-prefix rewrites, upstream pools, and websocket or SSE upgrades.
  • Note which parts of the request influence routing or app behavior: host, scheme, port, path, prefix, cookie scope, or origin.
  • Treat public-looking domains, cloud hostnames, and separate VPS nodes as sandbox routing fixtures first.

2. Trace Route To Live Consumer

  • Map hostname to proxy rule to container or process to port to downstream service.
  • Compare checked-in proxy intent against live listeners, mounted configs, runtime env, and observed traffic.
  • Keep headers, proxy config, and live request traces tied together in one evidence chain.

3. Prove The Decisive Deviation

  • Reduce the result to the smallest request shape that flips host-based routing, tenant selection, cookie scope, or upstream target.
  • Distinguish route resolution from application auth logic; prove where each decision really happens.
  • If the problem shifts from routing to general web state or container runtime drift, switch back to the broader parent skill.

Read the full file on GitHub · 52 lines

Files

What ships with it

2 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.

Changes

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.

  1. 2d ago First seen · 52 lines · 120 tokens per session scan A 2d49d8e943f3

Subscribe to this mod's changes

competition-runtime-routing is a skill published in the GitHub repository 2233admin/reverse-skill-evolver (13 stars, last pushed 22d ago), licensed MIT. It adds 120 tokens to every session and 682 once invoked, about $0.0006 per session on Opus 5. A static security scan graded it A with 0 findings. It is 100% identical to competition-runtime-routing, differing in 0 lines, and is treated as a copy.

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