I'm using the writing-plans skill to create the implementation plan. I can't write files here, so the plan is printed below. Its intended path is docs/superpowers/plans/2026-10-05-rate-limiting.md.
Rate Limiting Implementation Plan
For agentic workers: REQUIRED SUB-SKILL: Use superpowers:subagent-driven-development (recommended) or superpowers:executing-plans to implement this plan task-by-task. Steps use checkbox (
- [ ]) syntax for tracking.
Goal: Limit each client IP to 100 requests per minute on the Express API, answering excess requests with HTTP 429 and a Retry-After header.
Architecture: A small middleware factory in src/rateLimiter.js keeps a per-IP fixed-window counter in an in-memory Map. A separate src/config.js reads the limit and window from environment variables. src/app.js mounts the middleware before all routes.
Tech Stack: Node.js, Express, Jest, supertest. Supertest is added as a devDependency if it is not already present.
Spec: The fictional spec was given inline in the request. No spec file exists.
Global Constraints
- Default limit is 100 requests per IP per window.
- Default window is 60 seconds (1 minute).
- A request over the limit gets HTTP 429 with a
Retry-Afterheader. - The limit and window are configurable through environment variables.
- The store is in-memory, with no external dependencies such as Redis.
- Tests use Jest.
Review Focus
- Window expiry: after the window passes, the same IP is allowed again and its counter restarts. Pinned in Task 2.
- Independent IPs: one IP exhausting its limit must not block another IP. Pinned in Task 2.
- Invalid env values (
RATE_LIMIT_MAX=abc,0, negative, empty): fall back to the defaults instead of producingNaNand silently disabling or blocking everything. Pinned in Task 1. Retry-Afteraccuracy: the value is a positive integer in seconds, the time remaining in the current window, and never0or fractional. Pinned in Task 2.- Unbounded memory growth: entries for IPs that stop sending requests are evicted after their window expires. Pinned in Task 3.
Task 1: Configuration module
Files:
- Create:
src/config.js - Test:
tests/config.test.js
Interfaces:
-
Consumes:
process.env.RATE_LIMIT_MAXandprocess.env.RATE_LIMIT_WINDOW_MS. -
Produces:
getRateLimitConfig(env = process.env): { max: number, windowMs: number }. It defaults to{ max: 100, windowMs: 60000 }. -
[ ] Step 1: Write the failing tests in
tests/config.test.js:defaults to 100 requests per 60000ms:getRateLimitConfig({})returns{ max: 100, windowMs: 60000 }.reads RATE_LIMIT_MAX and RATE_LIMIT_WINDOW_MS:getRateLimitConfig({ RATE_LIMIT_MAX: '5', RATE_LIMIT_WINDOW_MS: '1000' })returns{ max: 5, windowMs: 1000 }.falls back to defaults for invalid values: for each of'abc','0','-3',''and'1.5', both variables fall back to their defaults.
-
[ ] Step 2: Run
npx jest tests/config.test.js. Expected: FAIL with "Cannot find module '../src/config'". -
[ ] Step 3: Implement
getRateLimitConfig(env = process.env)insrc/config.js. A value counts as valid only if it parses to a positive integer. Anything else falls back to the default. -
[ ] Step 4: Run
npx jest tests/config.test.js. Expected: PASS. -
[ ] Step 5: Commit
git add src/config.js tests/config.test.js git commit -m "feat: add rate limit config from env"
Task 2: Rate limiter middleware
Files:
- Create:
src/rateLimiter.js - Test:
tests/rateLimiter.test.js
Interfaces:
-
Consumes:
{ max, windowMs }as produced bygetRateLimitConfig(Task 1). -
Produces:
createRateLimiter({ max: number, windowMs: number, now?: () => number }): express.RequestHandler. Thenowoption defaults toDate.nowand exists so tests can control time. The middleware keys onreq.ip. It callsnext()while the count is at or belowmax. Otherwise it setsRetry-AftertoMath.ceil(msRemaining / 1000)and responds429with{ error: 'Too Many Requests' }. -
[ ] Step 1: Write the failing tests in
tests/rateLimiter.test.js. Use a bare Express app withcreateRateLimiter({ max: 3, windowMs: 1000, now }), aGET /pingroute, and supertest.nowis a fake clock variable the test advances.allows requests up to the limit: 3 requests return 200.returns 429 with Retry-After once the limit is exceeded: the 4th request returns 429, andNumber(res.headers['retry-after'])is an integer ≥ 1 and ≤ 1.Retry-After reflects time remaining in window: with the clock advanced 400ms, the 429 carriesRetry-After: 1. This isceil(0.6), so it is never0.resets after the window elapses: advance the clock by 1000ms, and the next request returns 200.tracks IPs independently: exhaust the limit withX-Forwarded-For: 1.1.1.1(the app setstrust proxyin the test), and a request from2.2.2.2still returns 200.
-
[ ] Step 2: Run
npx jest tests/rateLimiter.test.js. Expected: FAIL with "Cannot find module '../src/rateLimiter'". -
[ ] Step 3: Implement
createRateLimiterinsrc/rateLimiter.js. Use a closure-scopedMap<ip, { count, resetAt }>with a fixed window. A new window starts whennow() >= resetAt. -
[ ] Step 4: Run
npx jest tests/rateLimiter.test.js. Expected: PASS. -
[ ] Step 5: Commit
git add src/rateLimiter.js tests/rateLimiter.test.js git commit -m "feat: add in-memory per-IP rate limiter middleware"
Task 3: Expired-entry eviction
Files:
- Modify:
src/rateLimiter.js - Test:
tests/rateLimiter.test.js
Interfaces:
-
Consumes:
createRateLimiterfrom Task 2. -
Produces: the returned middleware gains a
middleware.size(): numbermethod that returns the number of tracked IPs. Expired entries are swept by an interval timer that isunref()'d. The middleware also getsmiddleware.stop(): void, which clears the timer so Jest can exit cleanly. -
[ ] Step 1: Write the failing test
evicts expired entries. Make requests from 3 IPs and assertsize()is 3. Advance the fake clock pastwindowMs, trigger a sweep, and assertsize()is 0. Usejest.useFakeTimers()to run the sweep interval, and callstop()inafterEach. -
[ ] Step 2: Run
npx jest tests/rateLimiter.test.js -t "evicts expired". Expected: FAIL with "size is not a function". -
[ ] Step 3: Add the sweep to
createRateLimiter. UsesetInterval(sweep, windowMs).unref(), wheresweepdeletes entries whoseresetAt <= now(). Attachsizeandstopto the returned handler. -
[ ] Step 4: Run
npx jest tests/rateLimiter.test.js. Expected: all PASS. -
[ ] Step 5: Commit
git add src/rateLimiter.js tests/rateLimiter.test.js git commit -m "feat: evict expired rate limit entries"
Task 4: Wire into the app
Files:
- Modify:
src/app.js, andpackage.jsonif supertest is missing (npm i -D supertest). - Test:
tests/app.rateLimit.test.js
Interfaces:
-
Consumes:
getRateLimitConfig(Task 1) andcreateRateLimiter(Task 2). -
Produces:
src/app.jsmountsapp.use(createRateLimiter(getRateLimitConfig()))before all routes. Before editing, check howsrc/app.jsexports the app (the app itself, or a factory). Read the env at app-creation time so tests can set it. -
[ ] Step 1: Write the failing test in
tests/app.rateLimit.test.js. Setprocess.env.RATE_LIMIT_MAX = '2'andRATE_LIMIT_WINDOW_MS = '60000'before requiring the app, usingjest.resetModules()if needed. Hit any existing route using the real app via supertest.real app returns 429 with Retry-After after exceeding configured limit: two requests are not 429, the third returns 429, and theretry-afterheader is present.
-
[ ] Step 2: Run
npx jest tests/app.rateLimit.test.js. Expected: FAIL because the third request returns 200. -
[ ] Step 3: Mount the limiter in
src/app.jsas the first middleware, before any routes. -
[ ] Step 4: Run the full suite with
npx jest. Expected: all PASS, including the existing tests. If an existing test makes more than 100 requests from one IP, setRATE_LIMIT_MAXhigher in that test's setup. -
[ ] Step 5: Document
RATE_LIMIT_MAX(default 100) andRATE_LIMIT_WINDOW_MS(default 60000) in the README, or in a new.env.exampleif no README exists. -
[ ] Step 6: Commit
git add src/app.js tests/app.rateLimit.test.js package.json README.md git commit -m "feat: apply rate limiting to API"
Self-Review
- Spec coverage: the 100/min per-IP limit and the 429 with
Retry-Afterare in Tasks 2 and 4. Env configuration is in Task 1. The in-memory store is in Tasks 2 and 3. Jest tests are in every task. - Step scan: each step names its file, signature and assertions, with no bodies written out.
- Type consistency:
{ max, windowMs }andcreateRateLimiterare used identically across Tasks 1 to 4.size()andstop()are defined only in Task 3. - Review Focus: each of the five items has an owning test, in Tasks 1, 2 and 3.
- Open assumption: Task 4 depends on how
src/app.jsexports the app. I haven't read that file, so the implementer should check it first.
Plan complete, and it is printed above rather than saved because I can't write files here. Please review it. Which execution approach would you prefer?
- Subagent-driven: a fresh subagent implements each task and a fresh reviewer checks it before the next one starts. This is the most thorough option.
- Native: I implement every task myself in this session, then one fresh reviewer checks the whole branch. This is the cheapest and fastest option.
For this plan I recommend Native. There are only four small tasks, and the interfaces are narrow and fully specified. A mistake in an in-memory limiter is cheap to catch and fix. Does the plan capture what you want, and which approach should we use?
Real run in an isolated folder with only this skill installed. Only the Skill and Read tools were enabled, so no command was run and no file was written. The example is fictional. The model could not save the plan to a file and printed it inline. The spec is invented.
它做什么
为一位从没见过这个代码库、也没读过规格的工程师写计划。计划记录的是实现者自己无法决定的事:哪些文件、什么名称和签名、规格里的哪些取值、用哪个测试来证明每个任务。计划以一个头部开始(目标、架构、技术栈、所依据的规格、全局约束,以及一份“评审重点”清单,列出规格暗示、但没有测试覆盖的输入)。每个任务列出要创建或修改的文件、它使用和产出的接口,以及小步的先写测试步骤(写失败的测试、运行、实现、运行、提交),附带命令和预期输出。自查会检查规格覆盖、步骤是否清楚、类型是否一致、评审重点和篇幅是否合适,最后请你审阅计划并选择执行方式。
适合什么场景
有书面规格的多步骤功能、把工作交给别人或代理、让任务保持小而可测。
中风险:它会把计划保存为你项目里的 `docs/superpowers/plans/<日期>-<功能>.md`,也就是在那里创建一个文件。它写出的计划里含有 `git commit` 步骤,并要求执行者使用 `subagent-driven-development` 或 `executing-plans` 这两个 Skill,它们不在本站收录范围内,所以你需要用别的方式去执行计划。它不发起网络请求,自己也不运行命令。已用一份虚构规格试用过一次,模型无法写文件,于是把计划直接打印出来。