'use strict'; /** * scripts/registry-schema.cjs — pure schema/vocab constants + validation + * markdown-generation logic for the two third-party discoverability catalogs * (issue #2182): * * - `docs/registries/capabilities.json` → "GSD Community Capability Registry" * - `docs/registries/eos.json` → "GSD EoS Registry" (PR2) * * The vocabulary constants below are ADDITIVE CONTRACTS that track the * runtime/ADR closed vocabularies they describe — they are a documentation- * registry-scoped mirror, not the runtime source of truth: * * - `LOOP_POINTS` mirrors ADR-857 "Loop Extension Points (the 12)" * (docs/adr/857-capability-system.md §"Loop Extension Points (the 12)"). * The canonical runtime set lives in `src/loop-resolver.cts` * (`CANONICAL_POINTS` / `CANONICAL_POINTS_FALLBACK`, derived from * `loop-host-contract.cjs`) — changing that set requires updating this * list too, since a registry entry's `loopExtensionPoints` describes * which of those 12 points a third-party capability extends. * - `HOOK_KINDS` mirrors ADR-857 Decision 4 "three hook kinds": `step` * (runs as its own sequenced unit), `contribution` (injects into the * core step's prompt/context), `gate` (checks and optionally blocks). * - `INTERFACE_POINTS` mirrors ADR-1239 "The six interface points" (the * Host-Integration Interface integration surface): command/workflow * invocation, agent dispatch, model invocation, lifecycle hooks, * state+config IO, artifact surface. * - `PROFILES` mirrors ADR-1239 "Host-capability profiles (negotiation * baselines)": `programmatic-cli`, `declarative-cli`, `ide`. * - `AXES` mirrors ADR-1239 "the eight negotiated axes" (the negotiated * capability schema exchanged at `initialize`): `embeddingMode`, * `commandSurface`, `dispatch`, `modelMode`, `hookBus`, `stateIO`, * `transport`, `runtime`. Seven of the eight are closed enums here; * `dispatch` is ADR-1239's structured negotiated object * (`{ namedDispatch, nested, maxDepth, background, subagentToolkit }`) — * this registry accepts a free-form human summary string instead, so it * carries the `AXES_FREE_STRING` sentinel rather than an enum array. * `OPTIONAL_AXES` adds one further, OPTIONAL key on top of those eight: * `effortSurface` (ADR-1239 amendment #2481). An entry may omit it * (every entry published before the amendment stays valid) or declare * it as `argv` | `none`, mirroring `HOST_INTEGRATION_AXES.effortSurface` * in `src/host-integration.cts`. * - `CAPABILITY_REQUIRED` / `EOS_REQUIRED` mirror the required top-level * fields for each entry type, including `enginesGsd` (ADR-1244 D1 * "Versioned capability manifest" — the `engines.gsd` semver-range gate, * modelled on VS Code's `engines.vscode`). * * This module is pure — no `fs`/`process`/child-process access — so tests * can `require()` it directly and assert on structured return values. * `scripts/validate-registry.cjs` and `scripts/gen-registry.cjs` are the thin * CLI wrappers that perform I/O around these functions. */ // ─── ADR-857 "Loop Extension Points (the 12)" ──────────────────────────────── const LOOP_POINTS = Object.freeze([ 'discuss:pre', 'discuss:post', 'plan:pre', 'plan:post', 'execute:pre', 'execute:wave:pre', 'execute:wave:post', 'execute:post', 'verify:pre', 'verify:post', 'ship:pre', 'ship:post', ]); // ─── ADR-857 Decision 4 — three hook kinds ─────────────────────────────────── const HOOK_KINDS = Object.freeze(['step', 'contribution', 'gate']); // ─── ADR-1239 "The six interface points" ───────────────────────────────────── const INTERFACE_POINTS = Object.freeze(['command', 'dispatch', 'model', 'hooks', 'state', 'artifact']); // ─── ADR-1239 "Host-capability profiles (negotiation baselines)" ──────────── const PROFILES = Object.freeze(['programmatic-cli', 'declarative-cli', 'ide']); // Sentinel marking an AXES entry as a free-form descriptive string rather than // a closed enum array. `Array.isArray(AXES_FREE_STRING)` is false, so callers // can branch on `Array.isArray(AXES[key])` vs `AXES[key] === AXES_FREE_STRING` // without risking confusion with a real enum value. const AXES_FREE_STRING = Symbol('registry-schema.AXES_FREE_STRING'); // ─── ADR-1239 "the eight negotiated axes" ──────────────────────────────────── const AXES = Object.freeze({ embeddingMode: Object.freeze(['imperative', 'declarative']), commandSurface: Object.freeze(['slash-file', 'slash-programmatic', 'slash-toml', 'palette', 'prose-only']), dispatch: AXES_FREE_STRING, modelMode: Object.freeze(['active', 'passive']), hookBus: Object.freeze(['host', 'engine', 'none']), stateIO: Object.freeze(['filesystem', 'sandboxed-storage', 'session-log-append']), transport: Object.freeze(['mcp', 'native-extension']), runtime: Object.freeze(['node', 'bun', 'sandboxed-web', 'python', 'go', 'rust', 'electron', 'other']), }); // ─── ADR-1239 amendment #2481 — one additional, OPTIONAL negotiated axis ───── // `effortSurface` was added to the runtime-descriptor vocabulary AFTER the // original eight (`HOST_INTEGRATION_AXES.effortSurface` in // `src/host-integration.cts`). It is kept OPTIONAL here — not folded into // `AXES` — because registry entries mirror their upstream // `registry/eos-entry.json` byte-for-byte, and requiring it would // retroactively invalidate every entry published before the amendment. // Values must match `HOST_INTEGRATION_AXES.effortSurface` exactly. const OPTIONAL_AXES = Object.freeze({ effortSurface: Object.freeze(['argv', 'none']), }); // ─── Required top-level fields ─────────────────────────────────────────────── const CAPABILITY_REQUIRED = Object.freeze([ 'id', 'name', 'type', 'repo', 'description', 'author', 'license', 'enginesGsd', 'install', 'uninstall', 'interactions', 'discussion', ]); const EOS_REQUIRED = Object.freeze([ 'id', 'name', 'type', 'repo', 'description', 'author', 'license', 'enginesGsd', 'install', 'uninstall', 'interactions', 'discussion', 'protocolVersion', ]); // Escape Markdown inline metacharacters in UNTRUSTED free text so a registry // entry cannot inject links/tables/code-spans into the generated catalog. // Neutralizes: link hijack ([ ] ( )), table breakout (|), code span (`), // and backslash. Newlines are collapsed to a single space (inline contexts). function mdInline(value) { return String(value).replace(/[\\`*_[\]()|~<>]/g, '\\$&').replace(/[\r\n]+/g, ' '); } // A fenced-code fence guaranteed longer than any backtick run in `value`, so a // value containing ``` cannot escape the block (CommonMark rule). Min length 3. function fenceFor(value) { const runs = String(value).match(/`+/g) || []; const longest = runs.reduce((m, r) => Math.max(m, r.length), 0); return '`'.repeat(Math.max(3, longest + 1)); } // A single `engines.gsd` range clause: optional comparison operator, optional // leading `v`, exactly three dot-separated numeric segments, optional // prerelease (`-...`) and build (`+...`) suffixes. Operator alternation order // matters — `>=`/`<=` must be tried before `>`/`<` or the longer operator // would never match. const GSD_RANGE_CLAUSE_RE = /^(>=|<=|>|<|=|\^|~)?v?\d+\.\d+\.\d+(-[0-9A-Za-z.-]+)?(\+[0-9A-Za-z.-]+)?$/; /** * Validate the SHAPE of an `engines.gsd`-style semver range string (ADR-1244 * D1). Self-contained — no `semver` dependency, modelled on the constraint * parsing in `scripts/check-env.cjs` (`satisfiesConstraint`), but this * function validates that the range is well-formed rather than comparing it * against a concrete version. * * @param {string} range * @returns {boolean} */ function isValidGsdRange(range) { if (typeof range !== 'string') return false; const trimmed = range.trim(); if (trimmed === '') return false; if (trimmed === '*') return true; const clauses = trimmed.split(/\s+/); return clauses.length > 0 && clauses.every((clause) => clause !== '' && GSD_RANGE_CLAUSE_RE.test(clause)); } /** * Validate the `interactions` sub-object for a capability entry. * * @param {object} interactions * @param {(field: string, reason: string) => void} addError * @returns {void} */ function validateCapabilityInteractions(interactions, addError) { const allowedKeys = new Set([ 'loopExtensionPoints', 'hookKinds', 'configKeys', 'requires', 'runtimeCompat', 'produces', 'consumes', ]); for (const key of Object.keys(interactions)) { if (!allowedKeys.has(key)) addError(`interactions.${key}`, 'unknown field'); } for (const field of ['loopExtensionPoints', 'hookKinds']) { if (interactions[field] === undefined) addError(`interactions.${field}`, 'missing required field'); } if (interactions.loopExtensionPoints !== undefined) { const v = interactions.loopExtensionPoints; if (!Array.isArray(v) || v.length === 0 || !v.every((x) => LOOP_POINTS.includes(x))) { addError('interactions.loopExtensionPoints', 'must be a non-empty array of valid loop extension points'); } } if (interactions.hookKinds !== undefined) { const v = interactions.hookKinds; if (!Array.isArray(v) || !v.every((x) => HOOK_KINDS.includes(x))) { addError('interactions.hookKinds', 'must be an array of valid hook kinds'); } } for (const field of ['configKeys', 'requires', 'runtimeCompat', 'produces', 'consumes']) { if (interactions[field] === undefined) continue; const v = interactions[field]; if (!Array.isArray(v) || !v.every((x) => typeof x === 'string')) { addError(`interactions.${field}`, 'must be an array of strings'); } } } /** * Validate the `interactions` sub-object for an eos entry. * * @param {object} interactions * @param {(field: string, reason: string) => void} addError * @returns {void} */ function validateEosInteractions(interactions, addError) { const allowedKeys = new Set(['interfacePoints', 'profile', 'axes']); for (const key of Object.keys(interactions)) { if (!allowedKeys.has(key)) addError(`interactions.${key}`, 'unknown field'); } for (const field of ['interfacePoints', 'profile', 'axes']) { if (interactions[field] === undefined) addError(`interactions.${field}`, 'missing required field'); } if (interactions.interfacePoints !== undefined) { const v = interactions.interfacePoints; if (!Array.isArray(v) || v.length === 0 || !v.every((x) => INTERFACE_POINTS.includes(x))) { addError('interactions.interfacePoints', 'must be a non-empty array of valid interface points'); } } if (interactions.profile !== undefined) { if (typeof interactions.profile !== 'string' || !PROFILES.includes(interactions.profile)) { addError('interactions.profile', 'must be one of the valid negotiation profiles'); } } if (interactions.axes !== undefined) { const axes = interactions.axes; if (typeof axes !== 'object' || axes === null || Array.isArray(axes)) { addError('interactions.axes', 'axes must be an object'); } else { const requiredKeys = Object.keys(AXES); const optionalKeys = Object.keys(OPTIONAL_AXES); const actualKeys = Object.keys(axes); const actualKeySet = new Set(actualKeys); // Every AXES key is mandatory; an extra key is tolerated ONLY when it is // a recognized OPTIONAL_AXES key (currently just `effortSurface`) — any // other extra key is still rejected as unknown. const missingRequiredKeys = requiredKeys.filter((k) => !actualKeySet.has(k)); const unknownKeys = actualKeys.filter((k) => !requiredKeys.includes(k) && !optionalKeys.includes(k)); if (missingRequiredKeys.length > 0) { addError('interactions.axes', `axes is missing required key(s): ${missingRequiredKeys.join(', ')}`); } if (unknownKeys.length > 0) { addError('interactions.axes', `axes has unknown key(s): ${unknownKeys.join(', ')}`); } // Only validate individual values once the key set itself is sound — // mirrors the original gate (values were never checked against a // malformed key set either). if (missingRequiredKeys.length === 0 && unknownKeys.length === 0) { for (const key of actualKeys) { // Inline literal guards — CodeQL barrier pattern. Reaching here already // implies `key` is one of the nine literal axis names (the unknown-key // gate above rejected everything else), so this is unreachable in // practice; it is written inline anyway because CodeQL cannot follow // that gate across the `.includes()` filter and would otherwise flag // the bracket reads below as prototype-pollution sinks. if (key === '__proto__') continue; if (key === 'constructor') continue; if (key === 'prototype') continue; const allowedValues = Object.hasOwn(AXES, key) ? AXES[key] : OPTIONAL_AXES[key]; const v = axes[key]; if (allowedValues === AXES_FREE_STRING) { if (typeof v !== 'string' || v.trim() === '') { addError(`interactions.axes.${key}`, 'must be a non-empty string'); } else if (v.length > 300) { addError(`interactions.axes.${key}`, 'exceeds max length 300'); } } else if (typeof v !== 'string' || !allowedValues.includes(v)) { addError(`interactions.axes.${key}`, `must be one of the allowed values for ${key}`); } } } } } } /** * Validate an array of registry entries against the closed schema for * `opts.type` ('capability' | 'eos'). * * @param {object[]} entries * @param {{type: 'capability'|'eos'}} opts * @returns {{ok: boolean, errors: Array<{index: number, id?: string, field: string, reason: string}>}} */ function validateEntries(entries, opts) { if (!Array.isArray(entries)) { return { ok: false, errors: [{ index: -1, field: '(root)', reason: 'entries must be an array' }] }; } // Entry-count cap: a pathologically large array (e.g. from an automated or // malicious PR) is rejected wholesale rather than validated entry-by-entry. if (entries.length > 2000) { return { ok: false, errors: [{ index: -1, field: '(root)', reason: 'too many entries (max 2000)' }] }; } const required = opts.type === 'eos' ? EOS_REQUIRED : CAPABILITY_REQUIRED; const requiredSet = new Set(required); const seenIds = new Set(); const errors = []; entries.forEach((entry, index) => { const addError = (field, reason) => { const err = { index, field, reason }; if (entry && typeof entry === 'object' && typeof entry.id === 'string') err.id = entry.id; errors.push(err); }; // Null/non-object element guard — a malformed array element (null, // undefined-via-hole, a primitive, or an array) cannot be destructured by // the field checks below, so reject it outright rather than throwing. if (entry === null || typeof entry !== 'object' || Array.isArray(entry)) { addError('(entry)', 'entry must be a JSON object'); return; } for (const key of Object.keys(entry)) { if (!requiredSet.has(key)) addError(key, 'unknown field'); } const missing = new Set(); for (const field of required) { if (entry[field] === undefined) { addError(field, 'missing required field'); missing.add(field); } } // Control-character rejection (defense in depth): `allowTabNewline` widens // the reject-set exception for the two shell-snippet fields (install/ // uninstall), which legitimately contain tabs/newlines; every other free // text field disallows ALL C0 control characters plus DEL (incl. \n/\t). // Checked via char codes (not a literal control-char regex range) — same // approach as capability-validator.cjs's hooks[].matcher check, which // avoids tripping ESLint's no-control-regex rule. const hasDisallowedControlChar = (v, allowTabNewline) => { for (let c = 0; c < v.length; c += 1) { const code = v.charCodeAt(c); if (allowTabNewline && (code === 0x09 || code === 0x0a)) continue; if (code < 0x20 || code === 0x7f) return true; } return false; }; const checkNoControlChars = (field, allowTabNewline) => { if (missing.has(field)) return; const v = entry[field]; if (typeof v !== 'string') return; if (hasDisallowedControlChar(v, allowTabNewline)) addError(field, 'must not contain control characters'); }; // Length cap: reject oversized fields (untrusted third-party input feeding // a committed Markdown catalog should not be allowed to blow up the doc). const checkMaxLength = (field, max) => { if (missing.has(field)) return; const v = entry[field]; if (typeof v === 'string' && v.length > max) addError(field, `exceeds max length ${max}`); }; if (!missing.has('id')) { const id = entry.id; if (typeof id !== 'string' || !/^[a-z0-9]+(-[a-z0-9]+)*$/.test(id)) { addError('id', 'id must be kebab-case'); } if (seenIds.has(id)) { addError('id', `duplicate id: ${id}`); } else { seenIds.add(id); } } checkMaxLength('id', 100); for (const field of ['name', 'description', 'author']) { if (missing.has(field)) continue; const v = entry[field]; if (typeof v !== 'string' || v.trim() === '') addError(field, 'must be a non-empty string'); checkNoControlChars(field, false); } checkMaxLength('name', 120); checkMaxLength('author', 120); checkMaxLength('description', 1000); if (!missing.has('type') && entry.type !== opts.type) { addError('type', `type must be "${opts.type}"`); } if (!missing.has('repo')) { if (typeof entry.repo !== 'string' || !/^[A-Za-z0-9_.-]+\/[A-Za-z0-9_.-]+$/.test(entry.repo)) { addError('repo', 'repo must be in "owner/repo" form'); } } checkMaxLength('repo', 100); if (!missing.has('license')) { const v = entry.license; if (typeof v !== 'string' || v.trim() === '' || !/^[A-Za-z0-9.+()\- ]+$/.test(v)) { addError('license', 'license must be a non-empty SPDX-like string'); } } checkMaxLength('license', 120); if (!missing.has('enginesGsd') && !isValidGsdRange(entry.enginesGsd)) { addError('enginesGsd', 'enginesGsd must be a valid semver range'); } checkMaxLength('enginesGsd', 100); for (const field of ['install', 'uninstall']) { if (missing.has(field)) continue; const v = entry[field]; if (typeof v !== 'string' || v.trim() === '') addError(field, 'must be a non-empty string'); checkNoControlChars(field, true); } checkMaxLength('install', 2000); checkMaxLength('uninstall', 2000); if (!missing.has('discussion')) { const v = entry.discussion; if (typeof v !== 'string' || !/^https:\/\/github\.com\/[A-Za-z0-9_.-]+\/[A-Za-z0-9_.-]+\/discussions\/\d+$/.test(v)) { addError('discussion', 'discussion must be a GitHub discussions URL'); } } checkMaxLength('discussion', 300); if (!missing.has('interactions')) { const interactions = entry.interactions; if (typeof interactions !== 'object' || interactions === null || Array.isArray(interactions)) { addError('interactions', 'interactions must be an object'); } else if (opts.type === 'eos') { validateEosInteractions(interactions, addError); } else { validateCapabilityInteractions(interactions, addError); } } if (opts.type === 'eos' && !missing.has('protocolVersion')) { if (!Number.isInteger(entry.protocolVersion) || entry.protocolVersion < 1) { addError('protocolVersion', 'protocolVersion must be an integer >= 1'); } } }); return { ok: errors.length === 0, errors }; } /** * Render the deterministic Markdown document for a registry. * * @param {object[]} entries * @param {{type: 'capability'|'eos', sourceFile?: string}} opts * @returns {string} */ function renderMarkdown(entries, opts) { const sorted = [...entries].sort((a, b) => { if (a.id < b.id) return -1; if (a.id > b.id) return 1; return 0; }); const isEos = opts.type === 'eos'; const lines = []; lines.push( ``, ); lines.push(''); lines.push(isEos ? '# GSD EoS Registry' : '# GSD Community Capability Registry'); lines.push(''); lines.push( "> **Not an endorsement.** Inclusion means only that a maintainer merged a PR linking the author's repository — GSD has not reviewed, tested, or verified any listing. See the [registry README](./README.md).", ); lines.push(''); lines.push(`_To add your ${isEos ? 'integration' : 'capability'}, see the [registry README](./README.md)._`); lines.push(''); if (sorted.length === 0) { lines.push('_No entries yet — be the first: see [README](./README.md)._'); return `${lines.join('\n')}\n`; } lines.push('| Name | What it is | Latest release | GSD compat | Discussion |'); lines.push('|---|---|---|---|---|'); for (const entry of sorted) { // entry.repo/enginesGsd/discussion are regex-constrained (validateEntries) // and used as link DESTINATIONS / badge URLs here — never mdInline those, // it would corrupt the URL. entry.name/description are untrusted free-text // link TEXT / body copy and MUST be escaped. lines.push( `| [${mdInline(entry.name)}](https://github.com/${entry.repo}) | ${mdInline(entry.description)} | ` + `![release](https://img.shields.io/github/v/release/${entry.repo}?sort=semver&include_prereleases) | ` + `\`${entry.enginesGsd}\` | [discuss](${entry.discussion}) |`, ); } lines.push(''); sorted.forEach((entry, i) => { const interactions = entry.interactions || {}; lines.push(`## ${mdInline(entry.name)}`); lines.push( `- **Repository:** https://github.com/${entry.repo} — [latest release](https://github.com/${entry.repo}/releases/latest)`, ); lines.push(`- **What it is:** ${mdInline(entry.description)}`); lines.push(`- **Author:** ${mdInline(entry.author)}`); if (isEos) { // Required AXES keys always render, in their fixed order; an OPTIONAL_AXES // key (e.g. `effortSurface`) renders ONLY when the entry actually carries // it — an entry that omits it must render byte-identical to before // OPTIONAL_AXES existed (no `effortSurface=undefined` noise). const presentOptionalKeys = Object.keys(OPTIONAL_AXES).filter( (key) => interactions.axes && Object.hasOwn(interactions.axes, key), ); const axesSummary = [...Object.keys(AXES), ...presentOptionalKeys] .map((key) => `${key}=${interactions.axes ? interactions.axes[key] : undefined}`) .join(', '); const summary = `Interface points: ${(interactions.interfacePoints || []).join(', ')}; ` + `profile: ${interactions.profile}; protocol v${entry.protocolVersion}; axes: ${axesSummary}`; // Single mdInline pass over the fully-assembled summary: none of the // literal separator text above contains Markdown metacharacters, so // this equally neutralizes every embedded free-text/vocab value // (notably interactions.axes.dispatch, a free-form untrusted string). lines.push(`- **Every interaction with GSD:** ${mdInline(summary)}`); } else { let summary = `Loop Extension Points: ${(interactions.loopExtensionPoints || []).join(', ')}; ` + `hook kinds: ${(interactions.hookKinds || []).join(', ')}`; for (const field of ['configKeys', 'requires', 'runtimeCompat', 'produces', 'consumes']) { const v = interactions[field]; if (Array.isArray(v) && v.length > 0) summary += `; ${field}: ${v.join(', ')}`; } // configKeys/requires/runtimeCompat/produces/consumes are untrusted // free-form strings (schema only requires "array of strings") — same // single-pass mdInline rationale as the eos branch above. lines.push(`- **Every interaction with GSD:** ${mdInline(summary)}`); } // Code-span content (install/uninstall) is NOT mdInline-escaped — it is a // verbatim shell snippet, not inline prose. Instead each block picks a // fence strictly longer than any backtick run inside its own content, so // an embedded ``` cannot prematurely close the fence (CommonMark rule). const installFence = fenceFor(entry.install); lines.push('- **Install:**'); lines.push(`${installFence}sh`); lines.push(entry.install); lines.push(installFence); const uninstallFence = fenceFor(entry.uninstall); lines.push('- **Uninstall:**'); lines.push(`${uninstallFence}sh`); lines.push(entry.uninstall); lines.push(uninstallFence); lines.push( isEos ? `- **GSD compatibility:** \`${entry.enginesGsd}\`, protocol v${entry.protocolVersion}` : `- **GSD compatibility:** \`${entry.enginesGsd}\``, ); lines.push(`- **License:** ${mdInline(entry.license)}`); lines.push(`- **Discussion / ranking:** ${entry.discussion}`); if (i < sorted.length - 1) lines.push(''); }); return `${lines.join('\n')}\n`; } module.exports = { LOOP_POINTS, HOOK_KINDS, INTERFACE_POINTS, PROFILES, AXES, OPTIONAL_AXES, AXES_FREE_STRING, CAPABILITY_REQUIRED, EOS_REQUIRED, isValidGsdRange, validateEntries, renderMarkdown, };