Ensure accessibility in UI components including semantic HTML, ARIA attributes, keyboard navigation, and WCAG 2.2 AA compliance.
日本語の概要は準備中です。原文の説明を表示しています。
fast-check patterns for JS/TS — 6 canonical property categories with worked examples targeting agent-studio utilities (path normalization, safe-json, glob-to-regex, routing logic)
インストール方法を見るインストールする前に、エージェントに与えられる指示の中身を確認できます。
fast-check patterns for JavaScript/TypeScript that find edge cases unit tests miss. Includes 6 canonical property categories with worked examples targeting agent-studio's own utilities.
import fc from 'fast-check';
// If you serialize then deserialize, you get back the original
fc.assert(
fc.property(fc.anything(), value => {
expect(deserialize(serialize(value))).toEqual(value);
})
);
// Applying a function twice gives same result as once
fc.assert(
fc.property(fc.string(), str => {
expect(normalize(normalize(str))).toEqual(normalize(str));
})
);
// Order of inputs shouldn't matter
fc.assert(
fc.property(fc.array(fc.integer()), arr => {
expect(sum(arr)).toEqual(sum([...arr].reverse()));
})
);
// Output always has certain structural properties
fc.assert(
fc.property(fc.string(), input => {
const result = parseArgs(input);
expect(result).toHaveProperty('args');
expect(Array.isArray(result.args)).toBe(true);
})
);
// Compare fast implementation against slow-but-correct reference
fc.assert(
fc.property(fc.array(fc.integer()), arr => {
expect(fastSort(arr)).toEqual(referenceSort(arr));
})
);
// If input changes in a known way, output changes in a predictable way
fc.assert(
fc.property(fc.array(fc.integer()), arr => {
const sorted = sort(arr);
const sortedWithExtra = sort([...arr, Number.MAX_SAFE_INTEGER]);
expect(sortedWithExtra[sortedWithExtra.length - 1]).toBe(Number.MAX_SAFE_INTEGER);
})
);
import fc from 'fast-check';
const { normalizePath } = require('.claude/lib/utils/path-constants.cjs');
// Property: normalized path never contains backslashes
fc.assert(
fc.property(fc.string(), path => {
expect(normalizePath(path)).not.toMatch(/\\/);
})
);
// Property: idempotent
fc.assert(
fc.property(fc.string(), path => {
expect(normalizePath(normalizePath(path))).toEqual(normalizePath(path));
})
);
const { safeParseJSON } = require('.claude/lib/utils/safe-json.cjs');
// Property: never throws, always returns { success, data }
fc.assert(
fc.property(fc.string(), input => {
const result = safeParseJSON(input, null);
expect(result).toHaveProperty('success');
expect(typeof result.success).toBe('boolean');
})
);
// Property: prototype pollution not possible
fc.assert(
fc.property(fc.string(), input => {
const before = Object.prototype.toString;
safeParseJSON(input, null);
expect(Object.prototype.toString).toBe(before);
})
);
// Property: patterns with **/dir/** match root-level dir
fc.assert(
fc.property(fc.constantFrom('foo', 'bar', 'baz'), dir => {
const pattern = `**/${dir}/**`;
const regex = globToRegex(pattern);
expect(`${dir}/file.js`).toMatch(regex); // root-level match
expect(`a/${dir}/file.js`).toMatch(regex); // nested match
})
);
// Property: routing is deterministic (same input -> same agent)
fc.assert(
fc.property(fc.string(), intent => {
expect(route(intent)).toEqual(route(intent));
})
);
// Property: routing never returns null/undefined
fc.assert(
fc.property(fc.string(), intent => {
expect(route(intent)).toBeTruthy();
})
);
pnpm add -D fast-check
# Run all property tests
node --test tests/**/*.property.test.cjs
# Run with verbose output (shows counterexamples on failure)
FAST_CHECK_VERBOSE=true node --test tests/**/*.property.test.cjs
fast-check automatically shrinks failing inputs to the minimal counterexample. Example:
"C:\\Users\\foo\\deep\\nested\\path""a\\b" (minimal backslash case)This makes debugging far faster than traditional fuzzing.
Before starting:
Read .claude/context/memory/learnings.md
After completing:
.claude/context/memory/learnings.md.claude/context/memory/issues.md.claude/context/memory/decisions.mdASSUME INTERRUPTION: If it's not in memory, it didn't happen.
まだレビューはありません。使ってみた感想をお寄せください。
概要と使いどころ
Ensure accessibility in UI components including semantic HTML, ARIA attributes, keyboard navigation, and WCAG 2.2 AA compliance.
日本語の概要は準備中です。原文の説明を表示しています。
Use when you want to improve response quality through meta-cognitive reasoning. Applies 15+ reasoning methods to reconsider and refine initial outputs.
日本語の概要は準備中です。原文の説明を表示しています。
N-round opposing-stance debates for trade-off analysis. Assigns pro/con roles to agents, runs structured debate rounds with quality scoring, and produces a moderator synthesis with confidence-rated recommendation. Generalizable to architecture, technology, security, and design decisions.
日本語の概要は準備中です。原文の説明を表示しています。
Force adversarial code review stance that eliminates confirmation bias — reviewer must find issues or re-analyze
日本語の概要は準備中です。原文の説明を表示しています。
Creates specialized AI agents on-demand when no existing agent matches a request. Use when the Router cannot find a suitable agent for a task. Enables self-evolution by generating persistent agents.
日本語の概要は準備中です。原文の説明を表示しています。
LLM-as-judge evaluation framework with 5-dimension rubric (accuracy, groundedness, coherence, completeness, helpfulness) for scoring AI-generated content quality with weighted composite scores and evidence citations
日本語の概要は準備中です。原文の説明を表示しています。