javascript-x-7

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原始内容


name: javascript slug: javascript version: 1.0.6 changelog: "Full coverage pass: deeper guides, situation-named files, and per-user configuration" description: >- Writes, debugs, and reviews JavaScript: async and the event loop, coercion, closures, dates, Unicode, regex, and modern ES2023+ APIs. Use when JS throws TypeError or "undefined is not a function", a promise never settles or a rejection goes unhandled, NaN or [object Object] appears, dates shift by a day, sorting or equality misbehaves, memory grows, a regex hangs, JSON loses precision, a Node process won't exit or ignores signals, or fetch doesn't reject on a 404; also when choosing data structures, handling errors, profiling slow code, or checking whether a feature is safe for a target Node or browser version. Covers Node and browser runtime edges. Not for TypeScript type-system design or framework internals. homepage: https://clawic.com/skills/javascript metadata: clawdbot: emoji: 🟨 displayName: JavaScript configPaths: - ~/Clawic/data/javascript/


User preferences and memory live in ~/Clawic/data/javascript/ (see setup.md on first use, memory-template.md for the file format). If you have data at an old location (~/javascript/ or ~/clawic/javascript/), move it to ~/Clawic/data/javascript/.

Configuration

User-dependent variables. Defaults apply until the user states a preference; store them in ~/Clawic/data/javascript/config.yaml.

Variable Type Default Effect
runtime_target node | browser | both node Selects which platform file applies by default (node.md vs browser.md) and which floor gates advice
node_floor number (Node major) from package.json engines, else 22 Gates every recommendation against the feature-floor table in modern.md; flags any API above the floor
module_system esm | cjs | dual esm Switches module guidance and import/export examples in modern.md; dual activates the dual-package hazard checks
browser_floor text (e.g. "Safari 16+", "last 2 years") none When set, gates syntax and API advice for browser-targeted code the way node_floor gates Node

Preference areas to record as the user reveals them:

  • tooling — package manager, bundler, test runner, lint/format stack — affects which commands and config examples are offered
  • conventions — style (semicolons, functional vs imperative iteration), error-handling shape (exceptions vs result values) — affects generated code and review verdicts
  • platform — Deno/Bun/edge runtimes, TypeScript presence, monorepo layout — affects which floors and module advice apply
  • safety posture — how proactively to flag legacy patterns (var, ==, callback APIs) in review vs only on request

When To Use

  • Debugging JavaScript: wrong values, NaN, TypeErrors, ordering surprises, async bugs, timezone shifts
  • Writing or reviewing JS (Node or browser) for correctness and modern idioms
  • Choosing data structures (Object/Map/Array/Set), copy semantics, iteration strategy, or error-handling shape
  • Deciding whether an ES2020+ feature is safe for the target runtime
  • Diagnosing memory growth, leaks, slow code, or an unresponsive event loop
  • Not for TypeScript type-system design or framework internals — this is the core language

Quick Reference

Situation Go to
TypeError/ReferenceError, NaN appearing, value undefined after await, works-in-dev-only, heisenbug debug.md
Promise/await bug, rejection handling, cancellation, concurrency limits, races async.md
Throwing, catching, custom errors, cause chains, global error hooks, serializing errors errors.md
== surprise, truthiness, implicit conversion, ?? vs || coercion.md
Array/Object/Map/Set choice, copying, sorting, iteration traps collections.md
ES2020+ syntax semantics, feature floors, modules (ESM/CJS), classes, generators/iterators modern.md
Memory grows, listener/timer leaks, WeakMap/WeakRef, heap snapshots memory-leaks.md
Slow code, jank, benchmarks, GC pressure, workers performance.md
Regex wrong matches, stateful lastIndex, catastrophic backtracking, Unicode flags regex.md
JSON precision loss, Date/Map round-trips, reviver/replacer, canonicalization json.md
Env vars, process exit, signals, streams, Buffer, child processes node.md
DOM events, storage, script loading, fetch response handling browser.md
Anything else (numbers, dates, strings, this, timers) Sections below

Core Rules

  1. === always; the only defensible == is the idiom x == null — it matches both null and undefined in one check. Never expand it to two comparisons.
  2. Float equality is a band, not ===: Math.abs(a - b) <= Number.EPSILON * Math.max(1, Math.abs(a), Math.abs(b)). Worked: 0.1 + 0.2 - 0.3 ≈ 5.6e-17, inside the band (EPSILON ≈ 2.2e-16). Money never touches floats: integer minor units.
  3. Every promise gets a handler attached synchronously — a rejection with no handler when the microtask queue drains crashes Node (default since Node >=15) and fires unhandledrejection in browsers.
  4. Mutation is opt-in: default to toSorted/toReversed/with and spread; structuredClone only when depth is real. Runtime floors for all of these: modern.md.
  5. Durations from performance.now() (monotonic); wall-clock timestamps from Date.now(). Never subtract two Date.now() calls for benchmarks — NTP can step it backwards mid-measurement.
  6. Sequential vs parallel is a decision you write down: for...of + await = sequential; Promise.all(arr.map(f)) = parallel, fail-fast, and it does NOT cancel the losers.
  7. .length counts UTF-16 code units, not characters: "😀".length === 2. Slice user-visible text with Intl.Segmenter, never by index.
  8. Check the feature-floor table in modern.md before shipping ES2023+ APIs — one toSorted call breaks Node 18 at runtime, not at build time.

Numbers & Money

  • Number.MAX_SAFE_INTEGER = 2^53 − 1 = 9007199254740991 (16 digits). Integer ids with ≥16 digits can silently round in JSON.parse — transport ids as strings; use BigInt only for arithmetic (JSON.stringify on BigInt throws).
  • (1.005).toFixed(2) === "1.00" — binary representation, not a rounding bug you can fix locally. Compute in integer cents; display through Intl.NumberFormat.
  • Pick the parser by intent: Number("12px") → NaN (whole-string strict), parseInt("12px") → 12 (prefix). Number("") and Number(null) → 0; Number(undefined) → NaN.
  • ["10","10","10"].map(parseInt)[10, NaN, 2]: map passes the index as radix. Always wrap: map(s => parseInt(s, 10)).
  • -0 exists: Object.is(0, -0) is false, 1 / -0 === -Infinity. It appears when rounding negatives toward zero and survives into keys and comparisons.

Dates & Time

  • Months are 0-indexed: new Date(2025, 0, 31) is Jan 31.
  • Parsing split: date-only ISO ("2024-01-01") → UTC midnight; date-time without offset ("2024-01-01T00:00") → local time. Same input day can render one day off in negative-offset zones. Any non-ISO string is implementation-defined — never parse it.
  • Month math rolls over: d = new Date(2025, 0, 31); d.setMonth(1) → March 3 (Feb 31 normalizes). Pin the day to 1 before month arithmetic, then restore a clamped day.
  • getTimezoneOffset() is UTC minus local: UTC+2 reports -120. Sign errors here produce double-offset bugs that cancel out in your own timezone and explode in others.
  • Store epoch ms (Date.now()) plus IANA zone name; format only at the edge with Intl.DateTimeFormat.

Strings & Unicode

  • length, slice, charAt operate on UTF-16 units: "👨‍👩‍👧".length === 8. [...str] yields code points; user-perceived characters need Intl.Segmenter. Index-based slicing can cut a surrogate pair → U+FFFD garbage.
  • Normalize before comparing user input: composed "é" !== "e" + combining accent even when rendered identically — str.normalize("NFC") both sides.
  • Human sorting: (a, b) => a.localeCompare(b, undefined, {numeric: true})["file2", "file10"], accents ordered correctly. Bare < compares code units ("Z" < "a" is true).
  • /g and /y regexes are stateful: lastIndex persists across calls, so re.test(s) twice on the same string can alternate true/false. Drop /g for single tests or reset re.lastIndex = 0 (depth: regex.md).

Objects, this & Closures

  • Key order is spec'd: integer-like keys ascending FIRST, then strings in insertion order. Object.keys({b:1, 2:2, a:3, 1:4})["1","2","b","a"]. Never encode order in numeric-string keys — use Map or an array.
  • User-controlled keys on plain objects are an injection surface: obj[userKey] with "__proto__" pollutes the prototype. Use Map or Object.create(null) for user-keyed storage.
  • Object.hasOwn(obj, k) over obj.hasOwnProperty(k): works on null-prototype objects and can't be shadowed.
  • {...obj} invokes getters (snapshots values); Object.assign(target, src) fires setters on target. Same shallow result, different side effects.
  • this: arrow = lexical (use in callbacks); regular = call-site (methods, event handlers that want the element). setTimeout(obj.method) detaches this — wrap in an arrow.
  • Closure retention is per-scope in practice: one small long-lived closure keeps alive every object referenced by ANY sibling closure of that scope. Null out large locals before returning long-lived callbacks.

Timers & the Event Loop

  • Microtasks (promise callbacks) drain completely before the next task: a self-scheduling microtask loop starves rendering and I/O forever; self-scheduling setTimeout yields between runs.
  • Timer clamps: nested setTimeout beyond 5 levels → 4ms minimum; background tabs throttle to ≥1000ms (often far more). Clocks and animations must compute elapsed = Date.now() - start each tick — accumulating +interval drifts.
  • Node: a setTimeout delay above 2147483647 ms (~24.8 days, 32-bit signed) fires almost immediately. Long schedules: persist the target time and re-arm.
  • Node ordering: process.nextTick queue → promise microtasks → timers/macrotasks. setImmediate vs setTimeout(0): nondeterministic at top level, setImmediate always first inside I/O callbacks.
  • Sync work over ~50ms is a long task (the input-jank threshold); a 60Hz frame budget is 16.7ms. Chunk batch work with an awaited yield (await new Promise(r => setTimeout(r))) between slices.

Traps

Trap Why it fails Do instead
forEach(async x => ...) forEach ignores returned promises: everything runs at once, "finishes" instantly for...of (sequential) or Promise.all(arr.map(f))
Array(3).fill({}) one shared object, three references Array.from({length: 3}, () => ({}))
return fetchThing() inside try the rejection settles after try exits — catch never sees it return await fetchThing()
Promise.race([op, timeout]) the loser keeps running and holding sockets/memory AbortSignal.timeout(ms) passed into the op
return/throw inside finally overrides the try's result and swallows its exception finally is for cleanup only
throw "failed" no stack, instanceof Error false, breaks error middleware new Error("failed", {cause: err})
JSON.parse(JSON.stringify(x)) as deep clone drops undefined/functions, Date → string, Map/Set → {}, throws on cycles structuredClone(x)
obj.fn?.() when fn is a number ?. guards null/undefined only, not "not callable" typeof obj.fn === "function" && obj.fn()
if (x) for "is x set" silently drops 0, "", false x != null
setInterval around async work next run starts while the previous still awaits — overlapping executions chained setTimeout re-armed after each completion
innerHTML with user text the text executes as markup — XSS textContent, or one sanitizer at the render boundary

Output Gates

Before emitting JS code or a review verdict, verify:

  • Every promise created inside try is return await-ed, not return-ed?
  • No API above the target floor (modern.md table vs node_floor / browser_floor)?
  • Money in integer minor units; no ≥16-digit id passing through JSON.parse as a number?
  • Every thrown value an Error instance, wrapped with cause where context was added?
  • Each mutating call (sort, reverse, splice, Object.assign) intentional, not incidental?
  • No plain object indexed by user-controlled keys?
  • Concurrency written down: each await either deliberately sequential or batched with a bounded pool?

Where Experts Disagree

  • Classes vs closures/factories. Classes when many instances share methods (prototype = one function object) or brand checks matter (#x in obj); factories for one-off capability objects and simple DI. Field-initializer arrow functions are the worst of both (→ modern.md Classes).
  • Exceptions vs result values. Throw for the unexpected: broken invariants, failed I/O you cannot proceed without. Return values for expected outcomes: validation, not-found, cancellation. The test: if the immediate caller always try/catches, it wasn't exceptional — return it.
  • Chained array methods vs loops. Chains are the readability default; a loop wins when profiling shows intermediate-array cost or the logic needs early exit beyond some/every/find. Switching styles without a measurement is churn, not optimization.

Related Skills

More Clawic skills, get them at https://clawic.com/skills/javascript (install if the user confirms):

  • typescript — the type system layered on top of this language
  • nodejs — Node platform operations beyond the language: servers, tooling, deployment
  • react — framework work where these language rules get applied
  • regex — pattern crafting beyond JS-specific regex behavior

Feedback

Part of Clawic, the verified skill library. Get this skill: https://clawic.com/skills/javascript.