Files
msd-core/tests/runtime-artifact-layout.test.cjs
Tom Boucher ed06b6a4b9 fix(#2329): write opencode slash commands to commands/ (plural), migrate legacy command/ (#2354)
* test(#2329): fail-first tests for opencode commands/ (plural) command dir

Red phase, empirically probed: global/local install lands in command/ (singular)
with 71 gsd-*.md files and no commands/; the manifest records 71 keys under
command/ and zero under commands/; all four declaring sites report 'command'.
Migration coverage is black-box (two sequential install runs against one
configDir) so it holds regardless of how the fix implements cleanup.

The Kilo guard passes today by design — a forward-looking no-collateral check.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01SLufH5sDuqA1AiEGu45cuA

* fix(#2329): write opencode commands to commands/ (plural), migrate legacy command/

OpenCode discovers slash commands from commands/ (plural); the installer wrote
them to command/ (singular), so none of the ~71 /gsd-* commands appeared in the
TUI. Five sites declared the directory and all had to agree:

- capabilities/opencode/capability.json: both artifactLayout destSubpath entries
  (global + local) and hostBehaviors.flatCommandDir
- bin/install.js: the manifest prefix was a SEPARATE hardcoded 'command/' literal,
  so the manifest would have diverged from the descriptor even after a rename. It
  now derives from _hostBehaviors(runtime).flatCommandDir.
- src/install-engine.cts installOpencodeFamilyArtifacts: the actual write target,
  which bypasses resolveRuntimeArtifactLayout via combinedFamilyInstall. This was
  a fifth site the issue did not list — without it the descriptor change alone
  would not have moved a single file.

Migration: an upgrade over a pre-fix install removes only manifest-proven
GSD-managed files from the legacy command/ dir and rmdirs it once empty.
Unmanifested user files are preserved, never deleted.

Kilo shares the opencode family install path and is explicitly unaffected —
pinned by a no-collateral test.

Note on the tests: the migration cases originally built their legacy fixture by
running the installer and relying on it to produce command/ — i.e. they depended
on the bug to set up the fixture, and became unsatisfiable the moment it was
fixed (block 1 requires command/ to be absent after a fresh install). They now
fabricate the legacy layout explicitly, including rewriting the manifest keys to
the command/ prefix — which is load-bearing, since the migration only removes
manifest-proven files and an unrewritten fixture would silently no-op and pass
even against a broken migration.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01SLufH5sDuqA1AiEGu45cuA

* test(#2329): regenerate opencode install golden after rebase onto next

The golden conflicted on rebase because #2322 also regenerated it. Resolved by
regenerating from the merged source rather than hand-merging a generated file;
the only delta is the 71 command/gsd-*.md -> commands/gsd-*.md key renames.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01SLufH5sDuqA1AiEGu45cuA

* test(#2329): update stale tests that pinned opencode's singular command/ dir

Seven tests encoded the old contract (opencode: command/gsd-help.md exists, the
descriptor's flatCommandDir, the install-integration contract, and the
resolveRuntimeArtifactLayout golden). They passed in the red phase precisely
because they pinned the buggy singular dir; the fix intentionally changes that
contract, so these are stale-test corrections, not regressions.

Kilo shares the opencode family install path and is deliberately NOT changing —
it stays on command/ (singular). The shared opencode/kilo test is now split via
an explicit per-runtime dir map so the two cannot be conflated, and Kilo's own
layout test is untouched. tests/opencode-command-dir-plural.test.cjs
independently pins Kilo unchanged end-to-end.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01SLufH5sDuqA1AiEGu45cuA

* docs(#2329): changeset for opencode commands/ dir fix

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01SLufH5sDuqA1AiEGu45cuA

* docs(#2329): backfill PR number 2354 into changeset

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01SLufH5sDuqA1AiEGu45cuA

* docs(#2329): correct the changeset — do not assert opencode ignores command/

The changeset repeated the issue's stated mechanism ("OpenCode discovers them
from commands/ ... a clean install produced no usable commands in the TUI at
all"). OpenCode's source contradicts that: packages/core/src/v1/config/command.ts
globs {command,commands}/**/*.md, so BOTH names resolve, and its own skill doc
still calls .opencode/command/ typical. Shipping that claim as a release note
would document a mechanism that does not exist.

The change is still right, for the stronger reason: OpenCode's config docs list
plural as the convention and singular as backwards compatibility, so GSD was
shipping on the alias the vendor may withdraw. Reworded to describe it as the
alignment it is, decided on OpenCode's source and docs rather than on bug reports
in either repo.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01SLufH5sDuqA1AiEGu45cuA

* fix(#2329): baseline opencode's commands/ surface — closes a data-loss path this PR opened

Not a bookkeeping gap. Moving opencode's command dir to commands/ moved the
install destination to a surface the first-time baseline scan does not cover:
000-first-time-baseline's RUNTIME_SURFACES.opencode lists ['gsd-core','command',
'skills','agents'] — no 'commands'.

installOpencodeFamilyCommands unconditionally unlinks every gsd-*.md under its
destination before writing the fresh set (install-engine.cts:870-873), with zero
manifest or migration involvement. The only thing that protects a pre-existing
file is assertInstallerMigrationsUnblocked, which runs before materialization and
halts when the baseline scan flags an unknown file at a KNOWN surface.

Probed: a pre-existing commands/gsd-plan.md is silently destroyed (install exits
0). The identical file under the legacy, already-baselined command/ surface
correctly halts the install with "installer migration blocked pending user
choice". So this PR would have traded a protected surface for an unprotected one.

Fixed with a NEW fix-forward migration rather than editing 000, per
docs/installer-migrations.md:131-134 — an applied migration never re-runs, so
editing 000 would only protect fresh installs and leave every existing machine
exposed. A new id runs for both populations and drifts no shipped checksum;
adding its entry to EXPECTED_CHECKSUMS is the case that test explicitly sanctions.
All five pre-existing shipped checksums verified byte-identical.

Kilo is excluded by the migration's runtimes filter and keeps command/.

This was previously deferred as a PR-body note claiming "low impact — nothing
else acts on baseline-scan misses". That claim was never probed and was wrong.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01SLufH5sDuqA1AiEGu45cuA

* docs(#2329): drop the parenthetical product description from the changeset

The product-name purity guard (#1777) rejects "Kilo (which still uses
command/)" — fragment prose renders verbatim into CHANGELOG.md, so a product
name must not carry a parenthetical. Reworded to a plain sentence; the meaning
is unchanged.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01SLufH5sDuqA1AiEGu45cuA

---------

Co-authored-by: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-07-17 08:14:59 -04:00

921 lines
42 KiB
JavaScript

'use strict';
/**
* Consolidated tests for the Runtime Artifact Layout Module (ADR-3660) — layout seam.
*
* Covers:
* - resolveRuntimeArtifactLayout — structural shape per runtime
* - resolveRuntimeArtifactLayout edge-cases (error paths, invalid input)
* - kind.stage() invocations per kind type
*
* Sources consolidated (3 files deleted):
* tests/runtime-artifact-layout-resolve.test.cjs
* tests/runtime-artifact-layout-edge-cases.test.cjs
* tests/runtime-artifact-layout-stage.test.cjs
*
* See also:
* runtime-artifact-layout-surface.test.cjs — surface seam
* runtime-artifact-layout-install-profiles.test.cjs — install-profiles seam
*/
const { test, describe, beforeEach, afterEach, mock } = require('node:test');
const assert = require('node:assert/strict');
const fs = require('fs');
const path = require('path');
const { resolveRuntimeArtifactLayout, findInstallSourceRoot } = require('../gsd-core/bin/lib/runtime-artifact-layout.cjs');
const installProfiles = require('../gsd-core/bin/lib/install-profiles.cjs');
const { install } = require('../bin/install.js');
const { createTempDir, cleanup } = require('./helpers.cjs');
const REPO_ROOT = path.join(__dirname, '..');
const FAKE_DIR = '/tmp/fake-config-dir';
// ─── resolveRuntimeArtifactLayout — structural shape ────────────────────────
describe('resolveRuntimeArtifactLayout — claude local', () => {
test('returns correct layout for claude scope=local', () => {
const layout = resolveRuntimeArtifactLayout('claude', FAKE_DIR, 'local');
assert.strictEqual(layout.runtime, 'claude');
assert.strictEqual(layout.configDir, FAKE_DIR);
assert.strictEqual(layout.kinds.length, 2);
assert.strictEqual(layout.kinds[0].kind, 'commands');
assert.strictEqual(layout.kinds[0].destSubpath, 'commands'); // #1367: flat gsd-<cmd>.md layout
assert.strictEqual(layout.kinds[0].prefix, 'gsd-');
assert.strictEqual(typeof layout.kinds[0].stage, 'function');
assert.strictEqual(layout.kinds[1].kind, 'agents');
assert.strictEqual(layout.kinds[1].destSubpath, 'agents');
assert.strictEqual(layout.kinds[1].prefix, 'gsd-');
assert.strictEqual(typeof layout.kinds[1].stage, 'function');
});
});
describe('resolveRuntimeArtifactLayout — claude global', () => {
test('returns correct layout for claude scope=global', () => {
const layout = resolveRuntimeArtifactLayout('claude', FAKE_DIR, 'global');
assert.strictEqual(layout.runtime, 'claude');
assert.strictEqual(layout.configDir, FAKE_DIR);
assert.strictEqual(layout.kinds.length, 1);
assert.strictEqual(layout.kinds[0].kind, 'skills');
assert.strictEqual(layout.kinds[0].destSubpath, 'skills');
assert.strictEqual(layout.kinds[0].prefix, 'gsd-');
assert.strictEqual(typeof layout.kinds[0].stage, 'function');
});
});
describe('resolveRuntimeArtifactLayout — cursor', () => {
test('returns correct layout for cursor — skills + commands + agents kinds (#785, ADR-1235)', () => {
const layout = resolveRuntimeArtifactLayout('cursor', FAKE_DIR);
assert.strictEqual(layout.runtime, 'cursor');
assert.strictEqual(layout.configDir, FAKE_DIR);
assert.strictEqual(layout.kinds.length, 3);
const skillsKind = layout.kinds.find(k => k.kind === 'skills');
assert.ok(skillsKind, 'must have a skills kind');
assert.strictEqual(skillsKind.destSubpath, 'skills');
assert.strictEqual(skillsKind.prefix, 'gsd-');
assert.strictEqual(typeof skillsKind.stage, 'function');
const commandsKind = layout.kinds.find(k => k.kind === 'commands');
assert.ok(commandsKind, 'must have a commands kind (#785 Cursor 1.6 slash commands)');
assert.strictEqual(commandsKind.destSubpath, 'commands');
assert.strictEqual(commandsKind.prefix, 'gsd-');
assert.strictEqual(typeof commandsKind.stage, 'function');
const agentsKind = layout.kinds.find(k => k.kind === 'agents');
assert.ok(agentsKind, 'must have an agents kind (ADR-1235 §1 descriptor cutover)');
assert.strictEqual(agentsKind.destSubpath, 'agents');
assert.strictEqual(agentsKind.prefix, 'gsd-');
assert.strictEqual(typeof agentsKind.stage, 'function');
});
});
describe('resolveRuntimeArtifactLayout — codex', () => {
test('returns correct layout for codex', () => {
const layout = resolveRuntimeArtifactLayout('codex', FAKE_DIR);
assert.strictEqual(layout.runtime, 'codex');
assert.strictEqual(layout.configDir, FAKE_DIR);
assert.strictEqual(layout.kinds.length, 1);
assert.strictEqual(layout.kinds[0].kind, 'skills');
assert.strictEqual(layout.kinds[0].destSubpath, 'skills');
assert.strictEqual(layout.kinds[0].prefix, 'gsd-');
assert.strictEqual(typeof layout.kinds[0].stage, 'function');
});
});
describe('resolveRuntimeArtifactLayout — copilot', () => {
test('returns correct layout for copilot', () => {
const layout = resolveRuntimeArtifactLayout('copilot', FAKE_DIR);
assert.strictEqual(layout.runtime, 'copilot');
assert.strictEqual(layout.configDir, FAKE_DIR);
// #1575: agents kind added (copilot cutover)
assert.strictEqual(layout.kinds.length, 2);
assert.strictEqual(layout.kinds[0].kind, 'skills');
assert.strictEqual(layout.kinds[0].destSubpath, 'skills');
assert.strictEqual(layout.kinds[0].prefix, 'gsd-');
assert.strictEqual(typeof layout.kinds[0].stage, 'function');
assert.strictEqual(layout.kinds[1].kind, 'agents');
assert.strictEqual(layout.kinds[1].destSubpath, 'agents');
assert.strictEqual(layout.kinds[1].prefix, 'gsd-');
assert.strictEqual(typeof layout.kinds[1].stage, 'function');
});
});
describe('resolveRuntimeArtifactLayout — antigravity', () => {
test('returns correct layout for antigravity', () => {
const layout = resolveRuntimeArtifactLayout('antigravity', FAKE_DIR);
assert.strictEqual(layout.runtime, 'antigravity');
assert.strictEqual(layout.configDir, FAKE_DIR);
// #1575: agents kind added (antigravity cutover)
assert.strictEqual(layout.kinds.length, 2);
assert.strictEqual(layout.kinds[0].kind, 'skills');
assert.strictEqual(layout.kinds[0].destSubpath, 'skills');
assert.strictEqual(layout.kinds[0].prefix, 'gsd-');
assert.strictEqual(typeof layout.kinds[0].stage, 'function');
assert.strictEqual(layout.kinds[1].kind, 'agents');
assert.strictEqual(layout.kinds[1].destSubpath, 'agents');
assert.strictEqual(layout.kinds[1].prefix, 'gsd-');
assert.strictEqual(typeof layout.kinds[1].stage, 'function');
});
});
describe('resolveRuntimeArtifactLayout — windsurf', () => {
test('returns local workflow + agents layout for windsurf (ADR-1235)', () => {
const layout = resolveRuntimeArtifactLayout('windsurf', FAKE_DIR, 'local');
assert.strictEqual(layout.runtime, 'windsurf');
assert.strictEqual(layout.configDir, FAKE_DIR);
assert.strictEqual(layout.kinds.length, 2);
const commandsKind = layout.kinds.find(k => k.kind === 'commands');
assert.ok(commandsKind, 'must have a commands/workflows kind');
assert.strictEqual(commandsKind.destSubpath, 'workflows');
assert.strictEqual(commandsKind.prefix, 'gsd-');
assert.strictEqual(typeof commandsKind.stage, 'function');
const agentsKind = layout.kinds.find(k => k.kind === 'agents');
assert.ok(agentsKind, 'must have an agents kind (ADR-1235 §1 descriptor cutover)');
assert.strictEqual(agentsKind.destSubpath, 'agents');
assert.strictEqual(agentsKind.prefix, 'gsd-');
assert.strictEqual(typeof agentsKind.stage, 'function');
});
test('returns agents-only global layout for windsurf (ADR-1235)', () => {
const layout = resolveRuntimeArtifactLayout('windsurf', FAKE_DIR, 'global');
assert.strictEqual(layout.runtime, 'windsurf');
assert.strictEqual(layout.configDir, FAKE_DIR);
assert.strictEqual(layout.kinds.length, 1);
const agentsKind = layout.kinds.find(k => k.kind === 'agents');
assert.ok(agentsKind, 'global windsurf must have agents kind (ADR-1235 §1)');
assert.strictEqual(agentsKind.destSubpath, 'agents');
assert.strictEqual(agentsKind.prefix, 'gsd-');
assert.strictEqual(typeof agentsKind.stage, 'function');
});
});
describe('resolveRuntimeArtifactLayout — augment', () => {
test('returns correct layout for augment (commands + skills + agents — ADR-1235)', () => {
const layout = resolveRuntimeArtifactLayout('augment', FAKE_DIR);
assert.strictEqual(layout.runtime, 'augment');
assert.strictEqual(layout.configDir, FAKE_DIR);
assert.strictEqual(layout.kinds.length, 3);
const commandsKind = layout.kinds.find(k => k.kind === 'commands');
assert.ok(commandsKind, 'must have a commands kind');
assert.strictEqual(commandsKind.destSubpath, 'commands');
assert.strictEqual(commandsKind.prefix, 'gsd-');
assert.strictEqual(typeof commandsKind.stage, 'function');
const skillsKind = layout.kinds.find(k => k.kind === 'skills');
assert.ok(skillsKind, 'must have a skills kind');
assert.strictEqual(skillsKind.destSubpath, 'skills');
assert.strictEqual(skillsKind.prefix, 'gsd-');
assert.strictEqual(typeof skillsKind.stage, 'function');
const agentsKind = layout.kinds.find(k => k.kind === 'agents');
assert.ok(agentsKind, 'must have an agents kind (ADR-1235 §1 descriptor cutover)');
assert.strictEqual(agentsKind.destSubpath, 'agents');
assert.strictEqual(agentsKind.prefix, 'gsd-');
assert.strictEqual(typeof agentsKind.stage, 'function');
});
});
describe('resolveRuntimeArtifactLayout — trae', () => {
test('returns correct layout for trae (skills + agents — ADR-1235)', () => {
const layout = resolveRuntimeArtifactLayout('trae', FAKE_DIR);
assert.strictEqual(layout.runtime, 'trae');
assert.strictEqual(layout.configDir, FAKE_DIR);
assert.strictEqual(layout.kinds.length, 2);
const skillsKind = layout.kinds.find(k => k.kind === 'skills');
assert.ok(skillsKind, 'must have a skills kind');
assert.strictEqual(skillsKind.destSubpath, 'skills');
assert.strictEqual(skillsKind.prefix, 'gsd-');
assert.strictEqual(typeof skillsKind.stage, 'function');
const agentsKind = layout.kinds.find(k => k.kind === 'agents');
assert.ok(agentsKind, 'must have an agents kind (ADR-1235 §1 descriptor cutover)');
assert.strictEqual(agentsKind.destSubpath, 'agents');
assert.strictEqual(agentsKind.prefix, 'gsd-');
assert.strictEqual(typeof agentsKind.stage, 'function');
});
});
describe('resolveRuntimeArtifactLayout — qwen', () => {
test('returns correct layout for qwen (skills + agents — #2092 Phase B Upgrade 1)', () => {
const layout = resolveRuntimeArtifactLayout('qwen', FAKE_DIR);
assert.strictEqual(layout.runtime, 'qwen');
assert.strictEqual(layout.configDir, FAKE_DIR);
assert.strictEqual(layout.kinds.length, 2);
const skillsKind = layout.kinds.find(k => k.kind === 'skills');
assert.ok(skillsKind, 'must have a skills kind');
assert.strictEqual(skillsKind.destSubpath, 'skills');
assert.strictEqual(skillsKind.prefix, 'gsd-');
assert.strictEqual(typeof skillsKind.stage, 'function');
const agentsKind = layout.kinds.find(k => k.kind === 'agents');
assert.ok(agentsKind, 'must have an agents kind (#2092 Phase B Upgrade 1 — native .qwen/agents/*.md subagent projection)');
assert.strictEqual(agentsKind.destSubpath, 'agents');
assert.strictEqual(agentsKind.prefix, 'gsd-');
assert.strictEqual(typeof agentsKind.stage, 'function');
});
});
describe('resolveRuntimeArtifactLayout — kimi', () => {
test('returns global skills layout and guarded empty local layout for kimi', () => {
const globalLayout = resolveRuntimeArtifactLayout('kimi', FAKE_DIR, 'global');
assert.strictEqual(globalLayout.runtime, 'kimi');
assert.strictEqual(globalLayout.configDir, FAKE_DIR);
assert.strictEqual(globalLayout.kinds.length, 2);
assert.strictEqual(globalLayout.kinds[0].kind, 'skills');
assert.strictEqual(globalLayout.kinds[0].destSubpath, 'skills');
assert.strictEqual(globalLayout.kinds[0].prefix, 'gsd-');
assert.strictEqual(typeof globalLayout.kinds[0].stage, 'function');
assert.strictEqual(globalLayout.kinds[1].kind, 'kimi-agents');
assert.strictEqual(globalLayout.kinds[1].destSubpath, 'agents');
assert.strictEqual(globalLayout.kinds[1].prefix, 'gsd');
assert.strictEqual(typeof globalLayout.kinds[1].stage, 'function');
const localLayout = resolveRuntimeArtifactLayout('kimi', FAKE_DIR, 'local');
assert.strictEqual(localLayout.runtime, 'kimi');
assert.strictEqual(localLayout.configDir, FAKE_DIR);
assert.deepStrictEqual(localLayout.kinds, []);
});
});
describe('resolveRuntimeArtifactLayout — hermes', () => {
test('returns correct layout for hermes', () => {
const layout = resolveRuntimeArtifactLayout('hermes', FAKE_DIR);
assert.strictEqual(layout.runtime, 'hermes');
assert.strictEqual(layout.configDir, FAKE_DIR);
assert.strictEqual(layout.kinds.length, 1);
assert.strictEqual(layout.kinds[0].kind, 'skills');
assert.strictEqual(layout.kinds[0].destSubpath, 'skills/gsd');
assert.strictEqual(layout.kinds[0].prefix, 'gsd-'); // #947: restored canonical prefix
assert.strictEqual(typeof layout.kinds[0].stage, 'function');
});
});
describe('resolveRuntimeArtifactLayout — codebuddy', () => {
test('returns correct layout for codebuddy (commands + skills + agents — #789, ADR-1235)', () => {
const layout = resolveRuntimeArtifactLayout('codebuddy', FAKE_DIR);
assert.strictEqual(layout.runtime, 'codebuddy');
assert.strictEqual(layout.configDir, FAKE_DIR);
assert.strictEqual(layout.kinds.length, 3);
const commandsKind = layout.kinds.find(k => k.kind === 'commands');
assert.ok(commandsKind, 'must have a commands kind');
assert.strictEqual(commandsKind.destSubpath, 'commands');
assert.strictEqual(commandsKind.prefix, 'gsd-');
assert.strictEqual(typeof commandsKind.stage, 'function');
const skillsKind = layout.kinds.find(k => k.kind === 'skills');
assert.ok(skillsKind, 'must have a skills kind');
assert.strictEqual(skillsKind.destSubpath, 'skills');
assert.strictEqual(skillsKind.prefix, 'gsd-');
assert.strictEqual(typeof skillsKind.stage, 'function');
const agentsKind = layout.kinds.find(k => k.kind === 'agents');
assert.ok(agentsKind, 'must have an agents kind (ADR-1235 §1 descriptor cutover)');
assert.strictEqual(agentsKind.destSubpath, 'agents');
assert.strictEqual(agentsKind.prefix, 'gsd-');
assert.strictEqual(typeof agentsKind.stage, 'function');
});
});
describe('resolveRuntimeArtifactLayout — cline', () => {
test('returns correct layout for cline global (skills-capable since v3.48.0 — #782)', () => {
const layout = resolveRuntimeArtifactLayout('cline', FAKE_DIR, 'global');
assert.strictEqual(layout.runtime, 'cline');
assert.strictEqual(layout.configDir, FAKE_DIR);
assert.strictEqual(layout.kinds.length, 1);
assert.strictEqual(layout.kinds[0].kind, 'skills');
assert.strictEqual(layout.kinds[0].destSubpath, 'skills');
assert.strictEqual(layout.kinds[0].prefix, 'gsd-');
assert.strictEqual(typeof layout.kinds[0].stage, 'function');
});
test('cline local: no skills kinds (global-only, #782)', () => {
const layout = resolveRuntimeArtifactLayout('cline', FAKE_DIR, 'local');
assert.strictEqual(layout.runtime, 'cline');
assert.strictEqual(layout.configDir, FAKE_DIR);
assert.strictEqual(layout.kinds.length, 0);
});
});
describe('resolveRuntimeArtifactLayout — opencode', () => {
test('returns commands + skills layout for opencode (#784)', () => {
const layout = resolveRuntimeArtifactLayout('opencode', FAKE_DIR);
assert.strictEqual(layout.runtime, 'opencode');
assert.strictEqual(layout.configDir, FAKE_DIR);
assert.strictEqual(layout.kinds.length, 2);
const commands = layout.kinds.find((k) => k.kind === 'commands');
assert.ok(commands, 'should have a commands kind');
// #2329: OpenCode discovers commands from the PLURAL `commands/` dir — the
// singular `command/` made all /gsd-* commands invisible to OpenCode.
assert.strictEqual(commands.destSubpath, 'commands');
assert.strictEqual(commands.prefix, 'gsd-');
assert.strictEqual(typeof commands.stage, 'function');
const skills = layout.kinds.find((k) => k.kind === 'skills');
assert.ok(skills, 'should have a skills kind');
assert.strictEqual(skills.destSubpath, 'skills');
assert.strictEqual(skills.prefix, 'gsd-');
assert.strictEqual(typeof skills.stage, 'function');
});
});
describe('resolveRuntimeArtifactLayout — kilo', () => {
test('returns commands + skills layout for kilo (#784)', () => {
const layout = resolveRuntimeArtifactLayout('kilo', FAKE_DIR);
assert.strictEqual(layout.runtime, 'kilo');
assert.strictEqual(layout.configDir, FAKE_DIR);
assert.strictEqual(layout.kinds.length, 2);
const commands = layout.kinds.find((k) => k.kind === 'commands');
assert.ok(commands, 'should have a commands kind');
assert.strictEqual(commands.destSubpath, 'command');
assert.strictEqual(commands.prefix, 'gsd-');
assert.strictEqual(typeof commands.stage, 'function');
const skills = layout.kinds.find((k) => k.kind === 'skills');
assert.ok(skills, 'should have a skills kind');
assert.strictEqual(skills.destSubpath, 'skills');
assert.strictEqual(skills.prefix, 'gsd-');
assert.strictEqual(typeof skills.stage, 'function');
});
});
// ─── resolveRuntimeArtifactLayout — edge-cases ──────────────────────────────
describe('resolveRuntimeArtifactLayout edge-cases', () => {
test('hermes has destSubpath skills/gsd and gsd- prefix (#947: restored from bare-stem)', () => {
const layout = resolveRuntimeArtifactLayout('hermes', '/tmp/x');
assert.strictEqual(layout.kinds[0].destSubpath, 'skills/gsd');
assert.strictEqual(layout.kinds[0].prefix, 'gsd-'); // #947: bare-stem prefix='' reversed
});
test('claude local has both commands and agents kinds', () => {
const layout = resolveRuntimeArtifactLayout('claude', '/tmp/x', 'local');
const kindNames = layout.kinds.map(k => k.kind);
assert.ok(kindNames.includes('commands'), 'should have commands kind');
assert.ok(kindNames.includes('agents'), 'should have agents kind');
});
test('cursor has both skills and commands kinds (#785)', () => {
const layout = resolveRuntimeArtifactLayout('cursor', '/tmp/x');
const kindNames = layout.kinds.map(k => k.kind);
assert.ok(kindNames.includes('skills'), 'cursor must have skills kind');
assert.ok(kindNames.includes('commands'), 'cursor must have commands kind (#785 Cursor 1.6)');
});
test('claude global has only skills kind', () => {
const layout = resolveRuntimeArtifactLayout('claude', '/tmp/x', 'global');
assert.strictEqual(layout.kinds.length, 1);
assert.strictEqual(layout.kinds[0].kind, 'skills');
});
test('unknown runtime grok throws TypeError containing runtime name', () => {
assert.throws(
() => resolveRuntimeArtifactLayout('grok', '/tmp/x'),
(err) => {
assert.ok(err instanceof TypeError);
assert.ok(err.message.includes('grok'), 'error message must contain the runtime name');
return true;
}
);
});
test('unknown runtime xyzunknown throws TypeError', () => {
assert.throws(
() => resolveRuntimeArtifactLayout('xyzunknown', '/tmp/x'),
TypeError
);
});
test('empty configDir throws TypeError', () => {
assert.throws(
() => resolveRuntimeArtifactLayout('claude', ''),
TypeError
);
});
test('non-string configDir throws TypeError', () => {
assert.throws(
() => resolveRuntimeArtifactLayout('claude', null),
TypeError
);
});
test('bad scope throws TypeError', () => {
assert.throws(
() => resolveRuntimeArtifactLayout('claude', '/x', 'invalid'),
TypeError
);
});
});
// ─── kind.stage() invocations ────────────────────────────────────────────────
const CORE_SKILLS = new Set(['help', 'phase', 'new-project']);
const CORE_AGENTS = new Set(['gsd-planner']);
const PROFILE_CORE = { skills: CORE_SKILLS, agents: CORE_AGENTS };
const PROFILE_FULL = { skills: '*', agents: new Set() };
const FAKE_STAGE_DIR = '/tmp/fake-config-dir-stage';
describe('stage — agents kind (claude local)', () => {
test('stage returns a valid directory for the agents kind', () => {
const layout = resolveRuntimeArtifactLayout('claude', FAKE_STAGE_DIR, 'local');
const agentsKind = layout.kinds.find(k => k.kind === 'agents');
assert.ok(agentsKind, 'should have an agents kind');
const stagedDir = agentsKind.stage(PROFILE_CORE);
assert.ok(fs.existsSync(stagedDir), 'stagedDir must exist');
assert.ok(fs.statSync(stagedDir).isDirectory(), 'stagedDir must be a directory');
});
});
describe('stage — skills kind (claude global)', () => {
test('stage returns a directory containing gsd-<stem>/SKILL.md entries', () => {
const layout = resolveRuntimeArtifactLayout('claude', FAKE_STAGE_DIR, 'global');
const skillsKind = layout.kinds.find(k => k.kind === 'skills');
assert.ok(skillsKind, 'should have a skills kind');
const stagedDir = skillsKind.stage(PROFILE_CORE);
assert.ok(fs.existsSync(stagedDir), 'stagedDir must exist');
const entries = fs.readdirSync(stagedDir);
for (const entry of entries) {
assert.ok(entry.startsWith('gsd-'), `entry should start with gsd-: ${entry}`);
const skillMd = path.join(stagedDir, entry, 'SKILL.md');
assert.ok(fs.existsSync(skillMd), `SKILL.md must exist in ${entry}`);
}
assert.ok(entries.length >= 1, 'at least one skill dir should be staged');
});
test('stage with skills="*" produces flat layout for claude (#924: reverted from nested)', () => {
const layout = resolveRuntimeArtifactLayout('claude', FAKE_STAGE_DIR, 'global');
const skillsKind = layout.kinds.find(k => k.kind === 'skills');
assert.ok(skillsKind, 'should have a skills kind');
const stagedDir = skillsKind.stage(PROFILE_FULL);
assert.ok(fs.existsSync(stagedDir), 'stagedDir must exist');
// #924: Claude is reverted to FLAT. Full profile produces >= 60 top-level gsd-* dirs.
// (Previously nested: exactly 6 gsd-ns-* router dirs. That broke Skill-tool discovery.)
const topEntries = fs.readdirSync(stagedDir);
assert.ok(
topEntries.length >= 60,
`full profile should have >= 60 top-level skill dirs (flat layout, #924), got ${topEntries.length}`,
);
for (const entry of topEntries) {
assert.ok(entry.startsWith('gsd-'), `entry should start with gsd-: ${entry}`);
// Each skill dir has its own SKILL.md at the top level.
const skillMd = path.join(stagedDir, entry, 'SKILL.md');
assert.ok(fs.existsSync(skillMd), `SKILL.md must exist at top level in ${entry}`);
// No nested skills/ subdirectory: flat layout means no nesting.
const skillsSubdir = path.join(stagedDir, entry, 'skills');
assert.ok(!fs.existsSync(skillsSubdir), `skills/ subdir must NOT exist in ${entry} (flat layout, #924)`);
}
});
});
describe('stage — skills kind (kimi global)', () => {
test('stage returns Kimi SKILL.md dirs and agent YAML/prompt artifacts', () => {
const layout = resolveRuntimeArtifactLayout('kimi', FAKE_STAGE_DIR, 'global');
const skillsKind = layout.kinds.find(k => k.kind === 'skills');
assert.ok(skillsKind, 'should have a skills kind');
const stagedDir = skillsKind.stage(PROFILE_CORE);
assert.ok(fs.existsSync(stagedDir), 'stagedDir must exist');
const skillMd = path.join(stagedDir, 'gsd-new-project', 'SKILL.md');
assert.ok(fs.existsSync(skillMd), 'gsd-new-project/SKILL.md must exist');
const content = fs.readFileSync(skillMd, 'utf8');
assert.match(content, /^name: gsd-new-project$/m);
assert.match(content, /\/skill:gsd-new-project/);
assert.doesNotMatch(content, /kimi_cli\.tools|system_prompt_path|^version: 1$/m);
const agentsKind = layout.kinds.find(k => k.kind === 'kimi-agents');
assert.ok(agentsKind, 'should have a kimi-agents kind');
const stagedAgentsDir = agentsKind.stage(PROFILE_FULL);
const rootYamlPath = path.join(stagedAgentsDir, 'gsd.yaml');
const rootPromptPath = path.join(stagedAgentsDir, 'gsd.md');
const executorYamlPath = path.join(stagedAgentsDir, 'subagents', 'gsd-executor.yaml');
const executorPromptPath = path.join(stagedAgentsDir, 'subagents', 'gsd-executor.md');
assert.ok(fs.existsSync(rootYamlPath), 'agents/gsd.yaml must be staged');
assert.ok(fs.existsSync(rootPromptPath), 'agents/gsd.md must be staged');
assert.ok(fs.existsSync(executorYamlPath), 'agents/subagents/gsd-executor.yaml must be staged');
assert.ok(fs.existsSync(executorPromptPath), 'agents/subagents/gsd-executor.md must be staged');
const rootYaml = fs.readFileSync(rootYamlPath, 'utf8');
assert.match(rootYaml, /^version: 1$/m);
assert.match(rootYaml, /^agent:$/m);
assert.match(rootYaml, /extend: default/);
assert.match(rootYaml, /system_prompt_path: \.\/gsd\.md/);
assert.match(rootYaml, /tools:/);
assert.match(rootYaml, /subagents:/);
assert.match(rootYaml, /kimi_cli\.tools\./);
assert.doesNotMatch(rootYaml, /mcp__/);
const executorYaml = fs.readFileSync(executorYamlPath, 'utf8');
assert.match(executorYaml, /system_prompt_path: \.\/gsd-executor\.md/);
assert.match(executorYaml, /kimi_cli\.tools\./);
assert.doesNotMatch(executorYaml, /mcp__/);
});
test('tracks Kimi agent staging dir before writing artifacts', () => {
const layout = resolveRuntimeArtifactLayout('kimi', FAKE_STAGE_DIR, 'global');
const agentsKind = layout.kinds.find(k => k.kind === 'kimi-agents');
assert.ok(agentsKind, 'should have a kimi-agents kind');
const originalWriteFileSync = fs.writeFileSync;
const before = new Set(installProfiles.STAGED_DIRS);
let added = [];
try {
fs.writeFileSync = function writeFileSyncWithInjectedFailure(file, ...args) {
const filePath = String(file);
if (filePath.includes('gsd-kimi-agents-') && path.basename(filePath) === 'gsd.yaml') {
throw new Error('forced Kimi stage write failure');
}
return originalWriteFileSync.call(this, file, ...args);
};
assert.throws(
() => agentsKind.stage(PROFILE_FULL),
/forced Kimi stage write failure/
);
added = [...installProfiles.STAGED_DIRS]
.filter(dir => !before.has(dir) && path.basename(dir).startsWith('gsd-kimi-agents-'));
assert.strictEqual(added.length, 1, 'partially written Kimi stage dir must be tracked for cleanup');
assert.ok(fs.existsSync(added[0]), 'tracked partial Kimi stage dir should exist');
} finally {
fs.writeFileSync = originalWriteFileSync;
for (const dir of added) {
cleanup(dir);
installProfiles.STAGED_DIRS.delete(dir);
}
}
});
});
describe('stage — opencode commands kind', () => {
test('opencode stage returns directory with .md files for selected skills', () => {
const layout = resolveRuntimeArtifactLayout('opencode', FAKE_STAGE_DIR);
const commandsKind = layout.kinds.find(k => k.kind === 'commands');
assert.ok(commandsKind, 'should have a commands kind');
const stagedDir = commandsKind.stage(PROFILE_CORE);
assert.ok(fs.existsSync(stagedDir), 'stagedDir must exist');
const entries = fs.readdirSync(stagedDir).filter(f => f.endsWith('.md'));
for (const entry of entries) {
const stem = entry.slice(0, -3);
assert.ok(CORE_SKILLS.has(stem), `unexpected skill staged: ${stem}`);
}
});
});
describe('stage — opencode/kilo skills kind (#784)', () => {
for (const runtime of ['opencode', 'kilo']) {
test(`${runtime} skills stage writes gsd-<stem>/SKILL.md with name + description`, () => {
const layout = resolveRuntimeArtifactLayout(runtime, FAKE_STAGE_DIR);
const skillsKind = layout.kinds.find(k => k.kind === 'skills');
assert.ok(skillsKind, 'should have a skills kind');
const stagedDir = skillsKind.stage(PROFILE_CORE);
assert.ok(fs.existsSync(stagedDir), 'stagedDir must exist');
const entries = fs.readdirSync(stagedDir);
assert.ok(entries.length >= 1, 'at least one skill dir should be staged');
for (const entry of entries) {
assert.ok(entry.startsWith('gsd-'), `entry should start with gsd-: ${entry}`);
const skillMd = path.join(stagedDir, entry, 'SKILL.md');
assert.ok(fs.existsSync(skillMd), `SKILL.md must exist in ${entry}`);
const content = fs.readFileSync(skillMd, 'utf8');
// OpenCode skill spec: name must match the dir, description required.
assert.ok(content.startsWith('---\n'), 'SKILL.md must open with frontmatter');
assert.match(content, new RegExp(`^name: ${entry}$`, 'm'), `name must equal dir ${entry}`);
assert.match(content, /^description: /m, 'description frontmatter required');
// No colon-namespace command leaks in the converted body.
assert.ok(!/\/gsd:/.test(content), 'body must not contain /gsd: colon refs');
}
});
}
});
describe('stage — cursor commands kind (#785)', () => {
test('cursor commands kind stage returns directory with converted .md files', () => {
const layout = resolveRuntimeArtifactLayout('cursor', FAKE_STAGE_DIR);
const commandsKind = layout.kinds.find(k => k.kind === 'commands');
assert.ok(commandsKind, 'cursor should have a commands kind (#785)');
const stagedDir = commandsKind.stage(PROFILE_CORE);
assert.ok(fs.existsSync(stagedDir), 'stagedDir must exist');
const entries = fs.readdirSync(stagedDir).filter(f => f.endsWith('.md'));
assert.ok(entries.length >= 1, 'at least one command file should be staged');
// Cursor commands are plain markdown — no YAML frontmatter
for (const entry of entries) {
const content = fs.readFileSync(path.join(stagedDir, entry), 'utf8');
assert.ok(!content.startsWith('---'), `${entry}: cursor commands must not start with YAML frontmatter`);
}
});
test('cursor commands stage applies Cursor-specific content transforms', () => {
const layout = resolveRuntimeArtifactLayout('cursor', FAKE_STAGE_DIR);
const commandsKind = layout.kinds.find(k => k.kind === 'commands');
assert.ok(commandsKind, 'cursor should have a commands kind (#785)');
const stagedDir = commandsKind.stage(PROFILE_FULL);
assert.ok(fs.existsSync(stagedDir), 'stagedDir must exist');
// Verify all staged files are .md only (no subdirectory SKILL.md layout)
const entries = fs.readdirSync(stagedDir, { withFileTypes: true });
for (const entry of entries) {
assert.ok(entry.isFile(), `${entry.name}: cursor commands dir must contain only flat files`);
assert.ok(entry.name.endsWith('.md'), `${entry.name}: must be .md file`);
}
});
});
// ─── #1477: .gsd-source marker provisioning ───────────────────────────────────
//
// Regression for #1477: the Claude Code global skills layout ships
// gsd-core/{bin,contexts,references,templates,workflows} but no commands/gsd
// source tree, and _runLegacyUninstallCleanup removes any commands/gsd/ for that
// scope. At runtime findInstallSourceRoot's walk-up from gsd-core/bin/lib had
// nothing to find and /gsd-surface threw for every subcommand (list/status
// included); the marker reader added in #1476 never fired because nothing wrote
// the marker.
//
// Fix: bin/install.js writes <configDir>/.gsd-source pointing at a resolvable
// commands/gsd, and findInstallSourceRoot prefers that marker over its walk-up.
//
// (The original #1477 also covered a deployed-install MODULE_NOT_FOUND from the
// surface path's relative require('../../../bin/install.js'); ADR-1508 / #1511
// removed that getInstallExports relay entirely — surface.cjs now calls the
// shipped runtime-artifact-conversion sibling directly — so that half no longer
// applies and is covered by the #1511 relocation suite.)
describe('#1477 .gsd-source marker provisioning', () => {
let tmpRoot;
let savedHome;
let savedUserProfile;
let savedExplicitConfigDir;
let savedTestMode;
function silenceConsole(fn) {
const orig = { log: console.log, warn: console.warn, error: console.error };
console.log = () => {};
console.warn = () => {};
console.error = () => {};
try {
return fn();
} finally {
console.log = orig.log;
console.warn = orig.warn;
console.error = orig.error;
}
}
// Guard against process.exit killing the runner mid-install.
function runInstall(isGlobal, runtime) {
const origExit = process.exit;
let exitCalled = false;
process.exit = (code) => {
exitCalled = true;
throw new Error(`process.exit(${code}) during install — should not happen`);
};
try {
return silenceConsole(() => install(isGlobal, runtime));
} catch (e) {
if (exitCalled) assert.fail(`install() called process.exit — unexpected: ${e.message}`);
throw e;
} finally {
process.exit = origExit;
}
}
beforeEach(() => {
tmpRoot = createTempDir('gsd-1477-');
savedHome = process.env.HOME;
// os.homedir() reads USERPROFILE on win32, HOME elsewhere; redirect both so
// install() targets the fixture regardless of platform.
savedUserProfile = process.env.USERPROFILE;
process.env.HOME = tmpRoot;
process.env.USERPROFILE = tmpRoot;
savedExplicitConfigDir = process.env.GSD_EXPLICIT_CONFIG_DIR;
delete process.env.GSD_EXPLICIT_CONFIG_DIR;
savedTestMode = process.env.GSD_TEST_MODE;
process.env.GSD_TEST_MODE = '1';
});
afterEach(() => {
if (savedHome === undefined) delete process.env.HOME;
else process.env.HOME = savedHome;
if (savedUserProfile === undefined) delete process.env.USERPROFILE;
else process.env.USERPROFILE = savedUserProfile;
if (savedExplicitConfigDir === undefined) delete process.env.GSD_EXPLICIT_CONFIG_DIR;
else process.env.GSD_EXPLICIT_CONFIG_DIR = savedExplicitConfigDir;
if (savedTestMode === undefined) delete process.env.GSD_TEST_MODE;
else process.env.GSD_TEST_MODE = savedTestMode;
cleanup(tmpRoot);
});
// ── Failure 1: the installer provisions a valid marker ──────────────────────
test('global claude install writes a .gsd-source marker pointing at a real commands/gsd', () => {
const claudeDir = path.join(tmpRoot, '.claude');
fs.mkdirSync(claudeDir, { recursive: true });
runInstall(true /* isGlobal */, 'claude');
const markerPath = path.join(claudeDir, '.gsd-source');
assert.ok(fs.existsSync(markerPath), `.gsd-source marker must be written at ${markerPath}`);
const markerSrc = fs.readFileSync(markerPath, 'utf8').trim();
assert.ok(path.isAbsolute(markerSrc), `marker must contain an absolute path, got: ${markerSrc}`);
assert.ok(fs.existsSync(markerSrc), `marker target must exist on disk: ${markerSrc}`);
assert.equal(path.basename(markerSrc), 'gsd', 'marker must point at a commands/gsd directory');
assert.equal(path.basename(path.dirname(markerSrc)), 'commands');
});
// ── Guard: marker is scoped to claude-global ONLY (#1477 PR-scope) ───────────
// Locks the `runtime === 'claude' && isGlobal` write guard. Every other layout
// (non-claude runtimes, and claude *local*) ships a commands/gsd source tree, so
// findInstallSourceRoot's walk-up already resolves and the marker must not appear.
function findGsdSourceMarkers(root) {
const found = [];
const walk = (dir) => {
let entries;
try { entries = fs.readdirSync(dir, { withFileTypes: true }); } catch (_) { return; }
for (const e of entries) {
const full = path.join(dir, e.name);
if (e.isDirectory()) walk(full);
else if (e.name === '.gsd-source') found.push(full);
}
};
walk(root);
return found;
}
test('non-claude global install writes no .gsd-source marker (locks runtime === claude)', () => {
runInstall(true /* isGlobal */, 'cursor');
assert.deepEqual(
findGsdSourceMarkers(tmpRoot), [],
'a non-claude runtime must not provision the claude-global marker',
);
});
test('claude local install writes no .gsd-source marker (locks isGlobal)', () => {
// Local installs target process.cwd()/.claude — chdir into the fixture so the
// install is contained within tmpRoot rather than polluting the repo.
const savedCwd = process.cwd();
process.chdir(tmpRoot);
try {
runInstall(false /* isGlobal */, 'claude');
} finally {
process.chdir(savedCwd);
}
assert.deepEqual(
findGsdSourceMarkers(tmpRoot), [],
'a claude local install must not provision the marker — local ships commands/gsd',
);
});
// ── Writer fault-injection: marker write failure is non-fatal + warns ────────
// CONTRIBUTING.md filesystem-write QA matrix: prove the marker-writer catch
// branch (bin/install.js) is reachable. A failed write (e.g. read-only target)
// must not abort the install, and — because walk-up also fails on this layout —
// must surface a diagnostic so the broken /gsd-surface is traceable.
test('marker write failure does not abort install and warns (locks the writer catch)', () => {
const claudeDir = path.join(tmpRoot, '.claude');
fs.mkdirSync(claudeDir, { recursive: true });
const markerPath = path.join(claudeDir, '.gsd-source');
const realWriteFileSync = fs.writeFileSync;
// Fault-inject ONLY the marker write; every other install write proceeds.
mock.method(fs, 'writeFileSync', (file, ...rest) => {
if (path.resolve(String(file)) === path.resolve(markerPath)) {
throw new Error('EACCES: read-only target (injected)');
}
return realWriteFileSync(file, ...rest);
});
// Capture console.warn around the install (runInstall's silenceConsole would
// otherwise swallow it); still guard process.exit.
const warnings = [];
const origExit = process.exit;
const origWarn = console.warn;
const origLog = console.log;
process.exit = (code) => { throw new Error(`process.exit(${code}) during install`); };
console.warn = (msg) => { warnings.push(String(msg)); };
console.log = () => {};
try {
assert.doesNotThrow(() => install(true /* isGlobal */, 'claude'),
'a marker write failure must be non-fatal — install proceeds via the catch');
} finally {
process.exit = origExit;
console.warn = origWarn;
console.log = origLog;
mock.restoreAll();
}
assert.ok(!fs.existsSync(markerPath), 'the injected fault must leave no marker on disk');
assert.ok(
warnings.some((w) => /\.gsd-source marker/.test(w)),
`the writer catch must warn for diagnosability; got: ${JSON.stringify(warnings)}`,
);
});
// ── Failure 1 end-to-end: resolution succeeds FROM the deployed tree ─────────
// The deployed module's __dirname is <claudeDir>/gsd-core/bin/lib, which has no
// commands/gsd ancestor (global skills layout). Only the marker rescues it.
test('deployed global layout resolves the source root via the marker', () => {
const claudeDir = path.join(tmpRoot, '.claude');
fs.mkdirSync(claudeDir, { recursive: true });
runInstall(true /* isGlobal */, 'claude');
// Sanity: the global layout genuinely ships no commands/gsd source tree.
assert.ok(
!fs.existsSync(path.join(claudeDir, 'commands', 'gsd')),
'precondition: global claude install must not ship commands/gsd',
);
const deployedLayoutPath = path.join(claudeDir, 'gsd-core', 'bin', 'lib', 'runtime-artifact-layout.cjs');
assert.ok(fs.existsSync(deployedLayoutPath), 'deployed runtime-artifact-layout.cjs must exist');
delete require.cache[deployedLayoutPath];
const deployed = require(deployedLayoutPath);
// Negative proof that the bug condition exists: WITHOUT consulting the marker
// (no configDir argument), walk-up from the deployed tree has nothing to find.
assert.throws(
() => deployed.findInstallSourceRoot(),
/could not locate commands\/gsd/,
'deployed walk-up must fail without the marker — this is the regression condition',
);
// With the marker (configDir provided), list/status resolution succeeds.
let resolved;
assert.doesNotThrow(() => {
resolved = deployed.findInstallSourceRoot(claudeDir);
}, 'findInstallSourceRoot must resolve via the .gsd-source marker');
assert.equal(path.basename(resolved), 'gsd');
assert.ok(fs.existsSync(resolved));
});
// ── Adversarial marker-reader cases (no full install needed) ─────────────────
describe('findInstallSourceRoot marker handling', () => {
let cfgDir;
beforeEach(() => { cfgDir = createTempDir('gsd-1477-marker-'); });
afterEach(() => { cleanup(cfgDir); });
test('marker pointing at a valid commands/gsd takes precedence over walk-up', () => {
const fakeSrc = path.join(cfgDir, 'pkg', 'commands', 'gsd');
fs.mkdirSync(fakeSrc, { recursive: true });
fs.writeFileSync(path.join(cfgDir, '.gsd-source'), fakeSrc + '\n', 'utf8');
const resolved = findInstallSourceRoot(cfgDir);
assert.equal(path.resolve(resolved), path.resolve(fakeSrc),
'marker target must win over the repo walk-up');
});
test('marker pointing at a non-existent path is ignored (falls through to walk-up)', () => {
const ghost = path.join(cfgDir, 'does', 'not', 'exist', 'commands', 'gsd');
fs.writeFileSync(path.join(cfgDir, '.gsd-source'), ghost + '\n', 'utf8');
const resolved = findInstallSourceRoot(cfgDir);
assert.notEqual(path.resolve(resolved), path.resolve(ghost));
assert.equal(path.resolve(resolved), path.resolve(REPO_ROOT, 'commands', 'gsd'));
});
test('empty / whitespace-only marker is ignored', () => {
fs.writeFileSync(path.join(cfgDir, '.gsd-source'), ' \n', 'utf8');
const resolved = findInstallSourceRoot(cfgDir);
assert.equal(path.resolve(resolved), path.resolve(REPO_ROOT, 'commands', 'gsd'));
});
});
});