用 Codex 或 Claude 帮你安装 复制这段 Prompt,粘贴到 Codex、Claude 或其他助手里,让它检查 Skill 页面并帮你完成安装。
直接命令不会经过审查 Prompt;运行前请先检查来源。
npx skills add https://github.com/HezaoHezao/poirot --skill spike命令会保持在同一行。复制前请横向滚动并检查完整内容。
想先保存到本地?可下载 SkillsMP 当前能够提供的文件。
基于 SOC 职业分类
正在显示 SKILL.md
| name | spike |
| description | Throwaway experiments to validate an idea before build. |
| allowed-tools | ["bash","write_file","read_file","web_search","browse_page"] |
| enabled | true |
| related-skills | ["plan","systematic-debugging"] |
| license | MIT |
| author | Adapted from hermes-agent (Nous Research, MIT); gsd-build/get-shit-done |
Use this skill when the user wants to feel out an idea before committing to a real build — validating feasibility, comparing approaches, or surfacing unknowns that no amount of research will answer. Spikes are disposable by design. Throw them away once they've paid their debt.
Load this when the user says things like "let me try this", "I want to see if X works", "spike this out", "before I commit to Y", "quick prototype of Z", "is this even possible?", or "compare A vs B".
plan skill insteadRegardless of scale, every spike follows this loop:
decompose → research → build → verdict
↑__________________________________________↓
iterate on findings
Break the user's idea into 2-5 independent feasibility questions. Each question is one spike. Present them as a table with Given/When/Then framing:
| # | Spike | Validates (Given/When/Then) | Risk |
|---|---|---|---|
| 001 | websocket-streaming | Given a WS connection, when LLM streams tokens, then client receives chunks < 100ms | High |
| 002a | pdf-parse-pdfjs | Given a multi-page PDF, when parsed with pdfjs, then structured text is extractable | Medium |
| 002b | pdf-parse-camelot | Given a multi-page PDF, when parsed with camelot, then structured text is extractable | Medium |
Spike types:
Order by risk. The spike most likely to kill the idea runs first.
Skip decomposition only if the user already knows exactly what they want to spike. Then take their idea as a single spike.
Present the spike table. Ask: "Build all in this order, or adjust?" Let the user drop, reorder, or re-frame before you write any code.
Spikes are not research-free — you research enough to pick the right approach, then you build. Per spike:
Brief it. 2-3 sentences: what this spike is, why it matters, key risk.
Surface competing approaches if there's real choice:
| Approach | Tool/Library | Pros | Cons | Status |
|---|---|---|---|---|
| ... | ... | ... | ... | maintained / abandoned / beta |
Pick one. State why. If 2+ are credible, build quick variants within the spike.
Skip research for pure logic with no external dependencies.
Use Poirot tools for the research step:
web_search("python websocket streaming libraries 2025") — find candidatesbrowse_page(url="https://websockets.readthedocs.io/...") — read the docsbash("pip show websockets | grep Version") — check what's installedOne directory per spike. Keep it standalone.
spikes/
├── 001-websocket-streaming/
│ ├── README.md
│ └── main.py
├── 002a-pdf-parse-pdfjs/
│ ├── README.md
│ └── parse.js
└── 002b-pdf-parse-camelot/
├── README.md
└── parse.py
Bias toward something the user can interact with. Spikes fail when the only output is a log line that says "it works." Default choices, in order:
Depth over speed. Never declare "it works" after one happy-path run. Test edge cases. Follow surprising findings.
Avoid unless the spike specifically requires it: complex package management, build tools/bundlers, Docker, env files, config systems. Hardcode everything — it's a spike.
Building one spike — a typical tool sequence:
bash("mkdir -p spikes/001-websocket-streaming")
write_file("spikes/001-websocket-streaming/README.md", "# 001: websocket-streaming\n\n...")
write_file("spikes/001-websocket-streaming/main.py", "...")
bash("cd spikes/001-websocket-streaming && python3 main.py")
# Observe output, iterate.
Poirot note: The original skill runs comparison spikes (002a / 002b) in parallel via subagent delegation. Poirot has no subagents, so build comparison spikes sequentially — finish one before starting the next, then do the head-to-head comparison.
Each spike's README.md closes with:
## Verdict: VALIDATED | PARTIAL | INVALIDATED
### What worked
- ...
### What didn't
- ...
### Surprises
- ...
### Recommendation for the real build
- ...
VALIDATED = the core question was answered yes, with evidence. PARTIAL = it works under constraints X, Y, Z — document them. INVALIDATED = doesn't work, for this reason. This is a successful spike.
When two approaches answer the same question (002a / 002b), build them back to back, then do a head-to-head comparison:
## Head-to-head: pdfjs vs camelot
| Dimension | pdfjs (002a) | camelot (002b) |
|-----------|--------------|----------------|
| Extraction quality | 9/10 structured | 7/10 table-only |
| Setup complexity | npm install, 1 line | pip + ghostscript |
| Perf on 100-page PDF | 3s | 18s |
| Handles rotated text | no | yes |
**Winner:** pdfjs for our use case.
spikes/ in the repo rootNNN-descriptive-name/README.md per spike captures question, approach, results, verdict