Files
msd-core/tests/runtime-converters.test.cjs
sim 7ddcc19823 fix(#3309): acknowledge health.md growth, fix stale doc-consistency tests
gsd-test found two independent gaps around the newly-generated
health.md tables:

- emitted-attribution.test.cjs requires an acknowledgment for
  health.md's 2271-byte growth (16-code hand-maintained table -> 34-row
  generated table, this phase's explicit acceptance criterion). Adds
  tests/emitted-drift-acks/3309-health-docs-generated.json. Removes
  2573-state-head-freshness.json's now-inert health.md entry (that
  fragment's growth already landed on origin/next, the diff base this
  branch is compared against, so it has nothing left to acknowledge —
  and the guard forbids two fragments naming the same path).

- runtime-converters.test.cjs's health.md content-consistency checks
  asserted stale text from the old hand-written table: a regex that
  false-positived on the new table's own unrelated W020 row (worktree
  scan degradation, a different diagnostic than the W025 isolation
  warning it was meant to detect), and anchors expecting the old
  table's exact last row / footnote wording. Narrowed the regex to
  require the literal use_worktrees config key, and updated the
  anchors to the new table's real shape (I001/I010 as the last rows,
  the new generated-table footnote).
2026-08-13 04:31:10 -04:00

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/**
* Runtime Converter Tests — OpenCode + Kilo
*
* Tests for small runtime-specific conversion functions from install.js.
* Larger runtime test suites (Copilot, Codex, Antigravity) have their own files.
*
* OpenCode/Kilo: flat-runtime frontmatter converters (agent + command modes)
* model: inherit is NOT added (runtime uses its configured default model)
* but mode: subagent IS added (required by both runtimes' agents).
*/
const { test, describe } = require('node:test');
const assert = require('node:assert/strict');
process.env.GSD_TEST_MODE = '1';
const {
convertClaudeToOpencodeFrontmatter,
convertClaudeToKiloFrontmatter,
convertClaudeAgentToAntigravityAgent,
convertClaudeCommandToOpencodeSkill,
convertClaudeCommandToKiloSkill,
convertClaudeCommandToTraeSkill,
convertClaudeCommandToKimiSkill,
buildKimiAgentArtifacts,
neutralizeAgentReferences,
} = require('../bin/install.js');
// Sample Claude agent frontmatter (matches actual GSD agent format)
const SAMPLE_AGENT = `---
name: gsd-executor
description: Executes GSD plans with atomic commits
tools: Read, Write, Edit, Bash, Grep, Glob
color: yellow
skills:
- gsd-executor-workflow
# hooks:
# PostToolUse:
# - matcher: "Write|Edit"
# hooks:
# - type: command
# command: "npx eslint --fix $FILE 2>/dev/null || true"
---
<role>
You are a GSD plan executor.
</role>`;
// Sample Claude command frontmatter (for comparison — commands work differently)
const SAMPLE_COMMAND = `---
name: gsd-execute-phase
description: Execute all plans in a phase
allowed-tools:
- Read
- Write
- Bash
---
Execute the phase plan.`;
const flatRuntimeSuites = [
{
label: 'OpenCode',
convert: convertClaudeToOpencodeFrontmatter,
configDir: '.config/opencode',
},
{
label: 'Kilo',
convert: convertClaudeToKiloFrontmatter,
configDir: '.config/kilo',
},
];
for (const { label, convert, configDir } of flatRuntimeSuites) {
describe(`${label} agent conversion (isAgent: true)`, () => {
test('keeps name: field for agents', () => {
const result = convert(SAMPLE_AGENT, { isAgent: true });
const frontmatter = result.split('---')[1];
assert.ok(frontmatter.includes('name: gsd-executor'), 'name: should be preserved for agents');
});
test('does not add model: inherit', () => {
const result = convert(SAMPLE_AGENT, { isAgent: true });
const frontmatter = result.split('---')[1];
assert.ok(!frontmatter.includes('model: inherit'), 'model: inherit should NOT be added');
});
test('adds mode: subagent', () => {
const result = convert(SAMPLE_AGENT, { isAgent: true });
const frontmatter = result.split('---')[1];
assert.ok(frontmatter.includes('mode: subagent'), 'mode: subagent should be added');
});
test('strips tools: field', () => {
const result = convert(SAMPLE_AGENT, { isAgent: true });
const frontmatter = result.split('---')[1];
assert.ok(!frontmatter.includes('tools:'), 'tools: should be stripped for agents');
assert.ok(!frontmatter.includes('read: true'), 'tools object should not be generated');
if (label === 'Kilo') {
assert.ok(frontmatter.includes('permission:'), 'Kilo agents should emit permission block');
assert.ok(frontmatter.includes('read: allow'), 'Read should map to read: allow');
assert.ok(frontmatter.includes('edit: allow'), 'Write/Edit should map to edit: allow');
assert.ok(frontmatter.includes('bash: allow'), 'Bash should map to bash: allow');
assert.ok(frontmatter.includes('grep: allow'), 'Grep should map to grep: allow');
assert.ok(frontmatter.includes('glob: allow'), 'Glob should map to glob: allow');
assert.ok(frontmatter.includes('task: deny'), 'unspecified permissions should be denied');
} else {
assert.ok(!frontmatter.includes('permission:'), 'OpenCode agents should not emit permission block');
}
});
test('strips skills: array', () => {
const result = convert(SAMPLE_AGENT, { isAgent: true });
const frontmatter = result.split('---')[1];
assert.ok(!frontmatter.includes('skills:'), 'skills: should be stripped');
assert.ok(!frontmatter.includes('gsd-executor-workflow'), 'skill entries should be stripped');
});
test('strips color: field', () => {
const result = convert(SAMPLE_AGENT, { isAgent: true });
const frontmatter = result.split('---')[1];
assert.ok(!frontmatter.includes('color:'), 'color: should be stripped for agents');
});
test('strips commented hooks block', () => {
const result = convert(SAMPLE_AGENT, { isAgent: true });
const frontmatter = result.split('---')[1];
assert.ok(!frontmatter.includes('# hooks:'), 'commented hooks should be stripped');
assert.ok(!frontmatter.includes('PostToolUse'), 'hook content should be stripped');
});
test('keeps description: field', () => {
const result = convert(SAMPLE_AGENT, { isAgent: true });
const frontmatter = result.split('---')[1];
assert.ok(frontmatter.includes('description: Executes GSD plans'), 'description should be kept');
});
test('preserves body content', () => {
const result = convert(SAMPLE_AGENT, { isAgent: true });
assert.ok(result.includes('<role>'), 'body should be preserved');
assert.ok(result.includes('You are a GSD plan executor.'), 'body content should be intact');
});
test('applies body text replacements', () => {
const agentWithClaudePaths = `---
name: test-agent
description: Test
tools: Read
---
Read ~/.claude/agent-memory/ for context.
Use $HOME/.claude/skills/ for reference.
Check .claude/skills/ and .claude/agents/ locally.
Use ./.claude/hooks/gsd-statusline.js during local testing.
Fallback skills live in .agents/skills/.`;
const result = convert(agentWithClaudePaths, { isAgent: true });
assert.ok(result.includes(`~/${configDir}/agent-memory/`), '~/.claude should be replaced');
assert.ok(result.includes(`$HOME/${configDir}/skills/`), '$HOME/.claude should be replaced');
if (label === 'Kilo') {
assert.ok(result.includes('.kilo/skills/'), '.claude/skills should be replaced for Kilo');
assert.ok(result.includes('.kilo/agents/'), '.claude/agents should be replaced for Kilo');
assert.ok(result.includes('./.kilo/hooks/'), './.claude should be replaced for Kilo');
assert.ok(result.includes('Fallback skills live in .kilo/skills/.'), '.agents/skills should be rewritten to Kilo skills dir');
assert.ok(!result.includes('.kilo/skill/'), 'singular Kilo skill dir should not be emitted');
}
});
});
describe(`${label} command conversion (isAgent: false, default)`, () => {
test('strips name: field for commands', () => {
const result = convert(SAMPLE_COMMAND);
const frontmatter = result.split('---')[1];
assert.ok(!frontmatter.includes('name:'), 'name: should be stripped for commands');
});
test('does not add model: or mode: for commands', () => {
const result = convert(SAMPLE_COMMAND);
const frontmatter = result.split('---')[1];
assert.ok(!frontmatter.includes('model:'), 'model: should not be added for commands');
assert.ok(!frontmatter.includes('mode:'), 'mode: should not be added for commands');
});
test('keeps description: for commands', () => {
const result = convert(SAMPLE_COMMAND);
const frontmatter = result.split('---')[1];
assert.ok(frontmatter.includes('description:'), 'description should be kept');
});
});
// ─── #2256: model_overrides support for OpenCode/Kilo agents ────────────────
// Only test OpenCode — Kilo uses the same converter but model override injection
// is wired only for OpenCode at the call site in install().
if (label === 'OpenCode') {
describe('OpenCode agent model override (modelOverride option) (#2256)', () => {
test('adds model: field when modelOverride is provided', () => {
const result = convert(SAMPLE_AGENT, { isAgent: true, modelOverride: 'gpt-5.3-codex' });
const frontmatter = result.split('---')[1];
assert.ok(frontmatter.includes('model: gpt-5.3-codex'), 'model: field must be added with override value');
});
test('does not add model: field when modelOverride is null', () => {
const result = convert(SAMPLE_AGENT, { isAgent: true, modelOverride: null });
const frontmatter = result.split('---')[1];
assert.ok(!frontmatter.includes('model:'), 'model: field must be absent when no override');
});
test('does not add model: field when modelOverride is omitted', () => {
const result = convert(SAMPLE_AGENT, { isAgent: true });
const frontmatter = result.split('---')[1];
assert.ok(!frontmatter.includes('model:'), 'model: field must be absent when option omitted');
});
test('model: field appears after mode: subagent', () => {
const result = convert(SAMPLE_AGENT, { isAgent: true, modelOverride: 'o4-mini' });
const frontmatter = result.split('---')[1];
const modeIdx = frontmatter.indexOf('mode: subagent');
const modelIdx = frontmatter.indexOf('model: o4-mini');
assert.ok(modeIdx !== -1, 'mode: subagent must be present');
assert.ok(modelIdx !== -1, 'model: field must be present');
assert.ok(modelIdx > modeIdx, 'model: must appear after mode: subagent');
});
test('model override does not affect command conversion', () => {
// modelOverride has no effect when isAgent is false (commands)
const result = convert(SAMPLE_COMMAND, { modelOverride: 'gpt-5.4' });
const frontmatter = result.split('---')[1];
assert.ok(!frontmatter.includes('model:'), 'model: must not appear in command output');
});
});
}
}
// ─────────────────────────────────────────────────────────────────────────────
// DEFECT.GENERATIVE-FIX output-parity guard: convertClaudeToKiloFrontmatter is
// defined TWICE — once in bin/install.js (the function bound at the top of this
// file, used by bin/install.js's own legacy install path) and once in
// src/runtime-artifact-conversion.cts, compiled to
// gsd-core/bin/lib/runtime-artifact-conversion.cjs (used by
// src/install-engine.cts's newer TS install path, see install-engine.cts ~L871).
// Both copies are LIVE — neither re-exports the other — so #2093's modelOverride
// edit had to be applied twice by hand. Source-text identity can't be asserted
// (they live in different module systems: plain CJS vs a tsc-compiled .cts
// output with different surrounding comments), so this instead proves the two
// implementations still produce IDENTICAL output for representative agent and
// command input. If a future edit changes one copy's behavior without mirroring
// it into the other, this test is the guard that catches the divergence.
// ─────────────────────────────────────────────────────────────────────────────
describe('convertClaudeToKiloFrontmatter output parity: bin/install.js vs runtime-artifact-conversion.cjs (#2093)', () => {
const { convertClaudeToKiloFrontmatter: convertViaConversionModule } =
require('../gsd-core/bin/lib/runtime-artifact-conversion.cjs');
test('identical output for an agent with a model override', () => {
const viaInstall = convertClaudeToKiloFrontmatter(SAMPLE_AGENT, { isAgent: true, modelOverride: 'anthropic/claude-sonnet-5' });
const viaModule = convertViaConversionModule(SAMPLE_AGENT, { isAgent: true, modelOverride: 'anthropic/claude-sonnet-5' });
assert.equal(viaInstall, viaModule, 'bin/install.js and runtime-artifact-conversion.cjs must emit identical agent output');
});
test('identical output for an agent with no model override', () => {
const viaInstall = convertClaudeToKiloFrontmatter(SAMPLE_AGENT, { isAgent: true, modelOverride: null });
const viaModule = convertViaConversionModule(SAMPLE_AGENT, { isAgent: true, modelOverride: null });
assert.equal(viaInstall, viaModule, 'bin/install.js and runtime-artifact-conversion.cjs must emit identical agent output with no override');
});
test('identical output for a command (model override never applies)', () => {
const viaInstall = convertClaudeToKiloFrontmatter(SAMPLE_COMMAND, { isAgent: false, modelOverride: 'x' });
const viaModule = convertViaConversionModule(SAMPLE_COMMAND, { isAgent: false, modelOverride: 'x' });
assert.equal(viaInstall, viaModule, 'bin/install.js and runtime-artifact-conversion.cjs must emit identical command output');
});
});
// ─────────────────────────────────────────────────────────────────────────────
// DEFECT.GENERATIVE-FIX output-parity guard: convertClaudeCommandToTraeSkill is
// defined TWICE — once in bin/install.js (dead for the live skills-install
// path; kept for this file's own module-level export/test surface) and once in
// src/runtime-artifact-conversion.cts, compiled to
// gsd-core/bin/lib/runtime-artifact-conversion.cjs (used by
// src/install-engine.cts's skills-install path via SKILLS_CONVERTER_REGISTRY,
// see install-engine.cts ~L754). Both copies are LIVE call surfaces — neither
// re-exports the other — so #2094's `stage:` emission had to be applied to
// bin/install.js's copy by hand to keep parity. Source-text identity can't be
// asserted (they live in different module systems: plain CJS vs a
// tsc-compiled .cts output with different surrounding comments), so this
// instead proves the two implementations still produce IDENTICAL output for
// representative command input. If a future edit changes one copy's behavior
// without mirroring it into the other, this test is the guard that catches
// the divergence.
// ─────────────────────────────────────────────────────────────────────────────
describe('convertClaudeCommandToTraeSkill output parity: bin/install.js vs runtime-artifact-conversion.cjs (#2094)', () => {
const { convertClaudeCommandToTraeSkill: convertViaConversionModule } =
require('../gsd-core/bin/lib/runtime-artifact-conversion.cjs');
test('identical output for a representative command, including the #2094 stage: field', () => {
const viaInstall = convertClaudeCommandToTraeSkill(SAMPLE_COMMAND, 'gsd-execute-phase');
const viaModule = convertViaConversionModule(SAMPLE_COMMAND, 'gsd-execute-phase');
assert.equal(viaInstall, viaModule, 'bin/install.js and runtime-artifact-conversion.cjs must emit identical command output');
assert.match(viaInstall, /\nstage: workflow\n/, 'both copies must emit the #2094 stage: field');
});
test('identical output when the source has no description (falls back to generic description)', () => {
const noDescriptionCommand = `---
name: gsd-noop
allowed-tools:
- Read
---
Do nothing.`;
const viaInstall = convertClaudeCommandToTraeSkill(noDescriptionCommand, 'gsd-noop');
const viaModule = convertViaConversionModule(noDescriptionCommand, 'gsd-noop');
assert.equal(viaInstall, viaModule, 'bin/install.js and runtime-artifact-conversion.cjs must emit identical output when description is absent');
});
});
// ─────────────────────────────────────────────────────────────────────────────
// DEFECT.GENERATIVE-FIX output-parity guard: convertClaudeCommandToKimiSkill
// and buildKimiAgentArtifacts are each defined TWICE — once in bin/install.js
// (dead for the live install path; kept for this file's own module-level
// export/test surface) and once in src/runtime-artifact-conversion.cts,
// compiled to gsd-core/bin/lib/runtime-artifact-conversion.cjs (used by
// src/install-engine.cts's skills-install path via SKILLS_CONVERTER_REGISTRY
// for skills, and by src/runtime-artifact-layout.cts's kimiAgentsKind for
// agent YAML — see runtime-artifact-layout.cts ~L268/L289). Both copies are
// LIVE call surfaces — neither re-exports the other, so any future
// kimi-specific fix (e.g. the #2095 code-review fixes) must be applied to
// both by hand. Source-text identity can't be asserted (different module
// systems: plain CJS vs a tsc-compiled .cts output with different
// surrounding comments), so this instead proves the two implementations
// still produce IDENTICAL output for representative command and agent
// input. If a future edit changes one copy's behavior without mirroring it
// into the other, this test is the guard that catches the divergence.
// ─────────────────────────────────────────────────────────────────────────────
describe('convertClaudeCommandToKimiSkill / buildKimiAgentArtifacts output parity: bin/install.js vs runtime-artifact-conversion.cjs (#2095)', () => {
const {
convertClaudeCommandToKimiSkill: convertViaConversionModule,
buildKimiAgentArtifacts: buildViaConversionModule,
} = require('../gsd-core/bin/lib/runtime-artifact-conversion.cjs');
test('identical skill output for a representative command', () => {
const viaInstall = convertClaudeCommandToKimiSkill(SAMPLE_COMMAND, 'gsd-execute-phase');
const viaModule = convertViaConversionModule(SAMPLE_COMMAND, 'gsd-execute-phase');
assert.equal(viaInstall, viaModule, 'bin/install.js and runtime-artifact-conversion.cjs must emit identical Kimi skill output');
});
test('identical skill output when the source has no description (falls back to generic description)', () => {
const noDescriptionCommand = `---
name: gsd-noop
allowed-tools:
- Read
---
Do nothing.`;
const viaInstall = convertClaudeCommandToKimiSkill(noDescriptionCommand, 'gsd-noop');
const viaModule = convertViaConversionModule(noDescriptionCommand, 'gsd-noop');
assert.equal(viaInstall, viaModule, 'bin/install.js and runtime-artifact-conversion.cjs must emit identical output when description is absent');
});
test('identical agent-artifact output for a representative agent with a subagent, including the Agent tool grant', () => {
const viaInstall = buildKimiAgentArtifacts({ rootAgent: SAMPLE_AGENT, subagents: [SAMPLE_AGENT] });
const viaModule = buildViaConversionModule({ rootAgent: SAMPLE_AGENT, subagents: [SAMPLE_AGENT] });
assert.deepEqual(viaInstall, viaModule, 'bin/install.js and runtime-artifact-conversion.cjs must emit an identical artifact bundle');
assert.match(viaInstall.root.yaml, /kimi_cli\.tools\.agent:Agent/,
'both copies must grant the Agent tool when a subagent is present (#2095 Upgrade 2)');
});
});
// ─────────────────────────────────────────────────────────────────────────────
// Antigravity agent conversion — shared Gemini-backend tool mapping (#1394 / #1928)
// ─────────────────────────────────────────────────────────────────────────────
//
// The gemini-RUNTIME's own top-level converter (convertClaudeToGeminiAgent) and
// its dedicated test coverage were removed with the gemini runtime (#1928,
// Google sunset Gemini CLI 2026-06-18). convertGeminiToolName and
// claudeToGeminiTools STAY — they are shared infra reused by Antigravity (which
// runs on the same backend tool-name vocabulary), so the Antigravity-facing
// regression coverage below is retained unchanged.
describe('#1394 regression: excludes Skill/SlashCommand from Antigravity frontmatter', () => {
// Skill/SlashCommand are Claude-only tools with no Gemini-backend built-in
// equivalent. Without explicit exclusion they hit the lowercase fallback and
// emit an invalid 'skill'/'slashcommand' tool name, which fails frontmatter
// validation (tools.N: Invalid tool name) and aborts the entire agent load.
// Antigravity reuses convertGeminiToolName (it runs on the Gemini backend),
// so the exclusion intentionally applies there too. Antigravity surfaces GSD
// skills through the skill surface (SKILL.md), not the agent tools: allowlist,
// so dropping the invalid 'skill' tool name does not remove skill access —
// this locks that cross-runtime behavior (criterion 4).
test('Antigravity conversion also excludes Skill/SlashCommand (shared Gemini backend)', () => {
const input = `---
name: gsd-planner
description: Creates executable phase plans.
tools: Read, Write, Bash, Skill, WebFetch, SlashCommand
---
<role>Plan the phase.</role>`;
const result = convertClaudeAgentToAntigravityAgent(input);
const toolsLine = result.split('\n').find(l => l.startsWith('tools:')) || '';
assert.ok(toolsLine.includes('read_file'), 'maps Read -> read_file');
assert.ok(toolsLine.includes('web_fetch'), 'maps WebFetch -> web_fetch');
assert.ok(!/\bskill\b/.test(toolsLine), 'no invalid skill tool in Antigravity frontmatter');
assert.ok(!/\bslashcommand\b/.test(toolsLine), 'no invalid slashcommand tool in Antigravity frontmatter');
});
});
// ─── neutralizeAgentReferences (#766) ─────────────────────────────────────────
describe('neutralizeAgentReferences', () => {
test('replaces standalone Claude with "the agent"', () => {
const input = 'Claude handles these decisions. Claude should read the file.';
const result = neutralizeAgentReferences(input, 'AGENTS.md');
assert.ok(!result.includes('Claude handles'), 'standalone Claude replaced');
assert.ok(result.includes('the agent handles'), 'replaced with "the agent"');
});
test('preserves Claude Code (product name)', () => {
const input = 'This is a Claude Code bug. Use Claude Code settings.';
const result = neutralizeAgentReferences(input, 'AGENTS.md');
assert.ok(result.includes('Claude Code bug'), 'Claude Code preserved');
assert.ok(result.includes('Claude Code settings'), 'Claude Code preserved');
});
test('preserves Claude model names', () => {
const input = 'Use Claude Opus for planning. Claude Sonnet for execution. Claude Haiku for research.';
const result = neutralizeAgentReferences(input, 'AGENTS.md');
assert.ok(result.includes('Claude Opus'), 'Opus preserved');
assert.ok(result.includes('Claude Sonnet'), 'Sonnet preserved');
assert.ok(result.includes('Claude Haiku'), 'Haiku preserved');
});
test('replaces CLAUDE.md with runtime instruction file', () => {
const input = 'Read CLAUDE.md for project instructions. Check ./CLAUDE.md if exists.';
const result = neutralizeAgentReferences(input, 'AGENTS.md');
assert.ok(result.includes('AGENTS.md'), 'CLAUDE.md -> AGENTS.md');
assert.ok(!result.includes('CLAUDE.md'), 'no CLAUDE.md remains');
});
test('uses different instruction file per runtime', () => {
const input = 'Read CLAUDE.md for instructions.';
assert.ok(neutralizeAgentReferences(input, 'GEMINI.md').includes('GEMINI.md'));
assert.ok(neutralizeAgentReferences(input, 'copilot-instructions.md').includes('copilot-instructions.md'));
assert.ok(neutralizeAgentReferences(input, 'AGENTS.md').includes('AGENTS.md'));
});
test('removes AGENTS.md load-blocking instruction', () => {
const input = 'Do NOT load full `AGENTS.md` files — they contain agent definitions.';
const result = neutralizeAgentReferences(input, 'AGENTS.md');
assert.ok(!result.includes('Do NOT load full'), 'blocking instruction removed');
});
test('preserves claude- prefixes (CSS classes, package names)', () => {
const input = 'The claude-ctx session and claude-code package.';
const result = neutralizeAgentReferences(input, 'AGENTS.md');
assert.ok(result.includes('claude-ctx'), 'claude- prefix preserved');
assert.ok(result.includes('claude-code'), 'claude-code preserved');
});
});
// ─── OpenCode-family skill converters (SKILL.md) — #784 ──────────────────────
const SKILL_SAMPLE_COMMAND = `---
description: Show available GSD commands and usage guide
argument-hint: "[topic]"
allowed-tools:
- Read
- Bash
---
Run \`/gsd:help\` to see the guide. AskUserQuestion when unsure.
`;
const SKILL_BETA_COMMAND = `---
description: "[BETA] Offload plan phase to the cloud and import back."
---
Body for /gsd:ultraplan-phase.
`;
describe('convertClaudeCommandToOpencodeSkill / convertClaudeCommandToKiloSkill (#784)', () => {
const cases = [
{ label: 'opencode', convert: convertClaudeCommandToOpencodeSkill },
{ label: 'kilo', convert: convertClaudeCommandToKiloSkill },
];
for (const { label, convert } of cases) {
describe(`${label} skill conversion`, () => {
test('emits SKILL.md frontmatter with name matching the skill dir', () => {
const out = convert(SKILL_SAMPLE_COMMAND, 'gsd-help');
assert.ok(out.startsWith('---\n'), 'opens with frontmatter');
assert.match(out, /^name: gsd-help$/m, 'name equals the skill name');
});
test('preserves the description from the source command', () => {
const out = convert(SKILL_SAMPLE_COMMAND, 'gsd-help');
assert.match(out, /^description: "Show available GSD commands and usage guide"$/m);
});
test('drops the command tools/permission block (skills inherit perms)', () => {
const out = convert(SKILL_SAMPLE_COMMAND, 'gsd-help');
const fmEnd = out.indexOf('\n---', 4);
const fm = out.slice(0, fmEnd);
assert.ok(!/tools:/.test(fm), 'no tools block in skill frontmatter');
assert.ok(!/permission:/.test(fm), 'no permission block in skill frontmatter');
});
test('rewrites /gsd: colon refs to hyphen form in the body', () => {
const out = convert(SKILL_SAMPLE_COMMAND, 'gsd-help');
assert.ok(!/\/gsd:/.test(out), 'no /gsd: colon refs remain');
assert.match(out, /\/gsd-help/, 'colon ref rewritten to hyphen form');
});
test('quotes descriptions with leading YAML flow indicators ([BETA])', () => {
const out = convert(SKILL_BETA_COMMAND, 'gsd-ultraplan-phase');
assert.match(out, /^description: "\[BETA\] /m, 'leading [BETA] safely quoted');
});
test('falls back to a synthetic description when none present', () => {
const out = convert('Body only, no frontmatter.', 'gsd-mystery');
assert.match(out, /^name: gsd-mystery$/m);
assert.match(out, /^description: "Run GSD workflow gsd-mystery\."$/m);
});
});
}
});
// ────────────────────────────────────────────────────────────────────────
// Folded from tests/feat-1173-agent-converters-descriptor.test.cjs — consolidation epic #1969 (B3 #1972)
// ────────────────────────────────────────────────────────────────────────
{
const { describe: __foldDescribe } = require('node:test');
__foldDescribe("folded:feat-1173-agent-converters-descriptor (consolidation epic #1969 B3 #1972)", () => {
'use strict';
/**
* feat-1173: Descriptor-driven agent converter wiring.
*
* Verifies that the descriptor-driven install path (dispatchKindEntry) applies
* per-runtime agent conversion when the 'agents' kind entry has a non-null
* converter — instead of silently raw-copying.
*
* Behavioral assertions: invoke the staging/dispatch seam, inspect the staged
* output files. NOT source-grep.
*
* TDD flow (REGRESSION-MUST-FAIL-FIRST rule):
* Before the fix, dispatchKindEntry ignores the converter for agents kind and
* raw-copies. The tests below prove conversion is applied by asserting that
* the staged .md contains runtime-specific frontmatter transformations absent
* in the raw source.
*/
const { describe, test } = require('node:test');
const assert = require('node:assert/strict');
const fs = require('node:fs');
const path = require('node:path');
const os = require('node:os');
const ROOT = path.join(__dirname, '..');
const {
resolveRuntimeArtifactLayoutFromRegistry,
} = require(path.join(ROOT, 'gsd-core', 'bin', 'lib', 'runtime-artifact-layout.cjs'));
const {
cleanupStagedSkills,
} = require(path.join(ROOT, 'gsd-core', 'bin', 'lib', 'install-profiles.cjs'));
const { cleanup } = require('./helpers.cjs');
// ─── fixtures ────────────────────────────────────────────────────────────────
/**
* Minimal Claude agent source with comma-separated tools (Claude format).
* Copilot conversion turns tools into a JSON array (CONV-04/05).
* Codex conversion adds <codex_agent_role> block.
* Cursor/Windsurf/Augment/Trae/Codebuddy/Cline conversion strips color field.
*/
const CLAUDE_AGENT_SOURCE = `---
name: gsd-planner
description: A GSD planning agent.
tools: Bash, Read, Write
color: blue
---
# GSD Planner
This agent plans GSD phases using ~/.claude/skills.
`;
/**
* Create a temp agents directory with a .gsd-source marker pointing back to it
* (so findAgentsSourceRoot finds the fixture dir, not the real agents/ dir).
* The .gsd-source convention expects the marker to point at a commands/gsd dir;
* agents/ is resolved as a sibling of commands/. So we set up:
* <tmproot>/
* commands/gsd/ (empty, satisfies the sibling check)
* agents/
* gsd-planner.md
* .gsd-source <- points to <tmproot>/commands/gsd
*/
function makeFixtureRoot(agentFiles) {
const root = fs.mkdtempSync(path.join(os.tmpdir(), 'gsd-1173-root-'));
const commandsDir = path.join(root, 'commands', 'gsd');
const agentsDir = path.join(root, 'agents');
fs.mkdirSync(commandsDir, { recursive: true });
fs.mkdirSync(agentsDir, { recursive: true });
// .gsd-source marker must point to commands/gsd so that agentsSourceRoot resolves to agents/
fs.writeFileSync(path.join(root, '.gsd-source'), commandsDir + '\n', 'utf8');
for (const { name, content } of agentFiles) {
fs.writeFileSync(path.join(agentsDir, name), content, 'utf8');
}
return root;
}
function makeSyntheticRegistry(converterName) {
return {
runtimes: {
testruntime: {
runtime: {
artifactLayout: {
global: [
{
kind: 'agents',
destSubpath: 'agents',
prefix: 'gsd-',
nesting: 'flat',
recursive: false,
converter: converterName,
},
],
local: [],
},
},
},
},
};
}
// ─── stageAgentsForRuntimeWithConverter unit tests ────────────────────────────
describe('feat-1173: stageAgentsForRuntimeWithConverter', () => {
test('is exported from install-profiles', () => {
const installProfiles = require(path.join(ROOT, 'gsd-core', 'bin', 'lib', 'install-profiles.cjs'));
assert.strictEqual(
typeof installProfiles.stageAgentsForRuntimeWithConverter,
'function',
'stageAgentsForRuntimeWithConverter must be exported',
);
});
test('applies converter to each staged agent file', (t) => {
const { stageAgentsForRuntimeWithConverter } = require(path.join(ROOT, 'gsd-core', 'bin', 'lib', 'install-profiles.cjs'));
const agentsDir = fs.mkdtempSync(path.join(os.tmpdir(), 'gsd-1173-agents-'));
fs.writeFileSync(path.join(agentsDir, 'gsd-planner.md'), CLAUDE_AGENT_SOURCE, 'utf8');
fs.writeFileSync(path.join(agentsDir, 'gsd-executor.md'), CLAUDE_AGENT_SOURCE.replace('gsd-planner', 'gsd-executor'), 'utf8');
t.after(() => {
cleanup(agentsDir);
cleanupStagedSkills();
});
const calls = [];
const converter = (content) => {
calls.push(content);
return content.replace('~/.claude/', '~/.copilot/');
};
const resolvedProfile = { name: 'full', skills: '*', agents: new Set() };
const stagedDir = stageAgentsForRuntimeWithConverter(agentsDir, resolvedProfile, converter);
assert.strictEqual(calls.length, 2, 'converter called for each agent file');
const stagedFiles = fs.readdirSync(stagedDir).sort();
assert.deepStrictEqual(stagedFiles, ['gsd-executor.md', 'gsd-planner.md']);
// Converter replaced ~/.claude/ with ~/.copilot/ in all staged files
for (const file of stagedFiles) {
const content = fs.readFileSync(path.join(stagedDir, file), 'utf8');
assert.ok(!content.includes('~/.claude/'), `${file}: converter must have replaced ~/.claude/`);
assert.ok(content.includes('~/.copilot/'), `${file}: converter must have injected ~/.copilot/`);
}
});
test('non-existent srcAgentsDir returns srcAgentsDir unchanged', () => {
const { stageAgentsForRuntimeWithConverter } = require(path.join(ROOT, 'gsd-core', 'bin', 'lib', 'install-profiles.cjs'));
const ghost = path.join(os.tmpdir(), 'gsd-1173-no-exist-' + Date.now());
const converter = (c) => c;
const result = stageAgentsForRuntimeWithConverter(ghost, { name: 'full', skills: '*', agents: new Set() }, converter);
assert.strictEqual(result, ghost, 'must return srcAgentsDir unchanged for non-existent dir');
});
test('only copies .md files (ignores non-.md)', (t) => {
const { stageAgentsForRuntimeWithConverter } = require(path.join(ROOT, 'gsd-core', 'bin', 'lib', 'install-profiles.cjs'));
const agentsDir = fs.mkdtempSync(path.join(os.tmpdir(), 'gsd-1173-agents-'));
fs.writeFileSync(path.join(agentsDir, 'gsd-planner.md'), CLAUDE_AGENT_SOURCE, 'utf8');
fs.writeFileSync(path.join(agentsDir, 'README.txt'), 'not an agent', 'utf8');
t.after(() => {
cleanup(agentsDir);
cleanupStagedSkills();
});
const converter = (c) => c;
const resolvedProfile = { name: 'full', skills: '*', agents: new Set() };
const stagedDir = stageAgentsForRuntimeWithConverter(agentsDir, resolvedProfile, converter);
const stagedFiles = fs.readdirSync(stagedDir);
assert.deepStrictEqual(stagedFiles, ['gsd-planner.md'], 'only .md files should be staged');
});
});
// ─── dispatchKindEntry wiring tests ──────────────────────────────────────────
describe('feat-1173: dispatchKindEntry agents converter wiring', () => {
test('agents kind with convertClaudeAgentToCopilotAgent converter applies copilot conversion', (t) => {
const fixtureRoot = makeFixtureRoot([{ name: 'gsd-planner.md', content: CLAUDE_AGENT_SOURCE }]);
t.after(() => {
cleanup(fixtureRoot);
cleanupStagedSkills();
});
const registry = makeSyntheticRegistry('convertClaudeAgentToCopilotAgent');
const layout = resolveRuntimeArtifactLayoutFromRegistry(
registry, 'testruntime', fixtureRoot, 'global',
);
assert.strictEqual(layout.kinds.length, 1);
const agentKind = layout.kinds[0];
assert.strictEqual(agentKind.kind, 'agents');
const resolvedProfile = { name: 'full', skills: '*', agents: new Set() };
const stagedDir = agentKind.stage(resolvedProfile);
const stagedFile = path.join(stagedDir, 'gsd-planner.md');
assert.ok(fs.existsSync(stagedFile), `staged file must exist: ${stagedFile}`);
const stagedContent = fs.readFileSync(stagedFile, 'utf8');
// Copilot CONV-04/05: tools converted from "Bash, Read, Write" to JSON array "['bash', 'read', 'write']"
// Raw copy would keep the original comma-separated "tools: Bash, Read, Write" line.
assert.notStrictEqual(stagedContent, CLAUDE_AGENT_SOURCE, 'converter must have transformed the content');
assert.ok(
stagedContent.includes("tools: ['") || stagedContent.includes('tools: ['),
`Copilot conversion must produce JSON array tools. Got:\n${stagedContent.slice(0, 300)}`,
);
});
test('agents kind with convertClaudeAgentToCodexAgent converter applies codex conversion', (t) => {
const fixtureRoot = makeFixtureRoot([{ name: 'gsd-planner.md', content: CLAUDE_AGENT_SOURCE }]);
t.after(() => {
cleanup(fixtureRoot);
cleanupStagedSkills();
});
const registry = makeSyntheticRegistry('convertClaudeAgentToCodexAgent');
const layout = resolveRuntimeArtifactLayoutFromRegistry(
registry, 'testruntime', fixtureRoot, 'global',
);
const agentKind = layout.kinds[0];
const resolvedProfile = { name: 'full', skills: '*', agents: new Set() };
const stagedDir = agentKind.stage(resolvedProfile);
const stagedContent = fs.readFileSync(path.join(stagedDir, 'gsd-planner.md'), 'utf8');
// Codex conversion adds <codex_agent_role> block
assert.notStrictEqual(stagedContent, CLAUDE_AGENT_SOURCE, 'converter must have transformed the content');
assert.ok(
stagedContent.includes('<codex_agent_role>'),
`Codex conversion must add <codex_agent_role>. Got:\n${stagedContent.slice(0, 300)}`,
);
});
test('agents kind with convertClaudeAgentToCursorAgent converter applies cursor conversion', (t) => {
const fixtureRoot = makeFixtureRoot([{ name: 'gsd-planner.md', content: CLAUDE_AGENT_SOURCE }]);
t.after(() => {
cleanup(fixtureRoot);
cleanupStagedSkills();
});
const registry = makeSyntheticRegistry('convertClaudeAgentToCursorAgent');
const layout = resolveRuntimeArtifactLayoutFromRegistry(
registry, 'testruntime', fixtureRoot, 'global',
);
const agentKind = layout.kinds[0];
const resolvedProfile = { name: 'full', skills: '*', agents: new Set() };
const stagedDir = agentKind.stage(resolvedProfile);
const stagedContent = fs.readFileSync(path.join(stagedDir, 'gsd-planner.md'), 'utf8');
// Cursor conversion strips color field and rewrites ~/.claude/ paths
assert.notStrictEqual(stagedContent, CLAUDE_AGENT_SOURCE, 'converter must have transformed the content');
assert.ok(
!stagedContent.includes('color:'),
`Cursor agent conversion should strip the color field. Got:\n${stagedContent.slice(0, 300)}`,
);
});
test('agents kind with converter=null still raw-copies (backward compat for claude)', (t) => {
const fixtureRoot = makeFixtureRoot([{ name: 'gsd-planner.md', content: CLAUDE_AGENT_SOURCE }]);
t.after(() => {
cleanup(fixtureRoot);
cleanupStagedSkills();
});
const registry = makeSyntheticRegistry(null);
const layout = resolveRuntimeArtifactLayoutFromRegistry(
registry, 'testruntime', fixtureRoot, 'global',
);
const agentKind = layout.kinds[0];
const resolvedProfile = { name: 'full', skills: '*', agents: new Set() };
const stagedDir = agentKind.stage(resolvedProfile);
// converter=null: stageAgentsForProfile with skills='*' returns srcAgentsDir unchanged
// (no staging dir is created; the source dir IS the staged dir, a passthrough)
const stagedContent = fs.readFileSync(path.join(stagedDir, 'gsd-planner.md'), 'utf8');
assert.strictEqual(stagedContent, CLAUDE_AGENT_SOURCE, 'converter=null must raw-copy the agent content');
});
test('scope threads isGlobal to a scope-aware converter (global vs local differ)', (t) => {
// The plumbing kept by #1173 (option a): convertedAgentsKind / dispatchKindEntry
// pass the install scope to the converter as isGlobal. A scope-aware converter
// (copilot) must therefore produce different output for global vs local. This
// proves the thread is live via a synthetic descriptor — no real runtime
// declares a converted agents kind yet (declarations deferred to the ADR-1235
// §0 parity follow-up).
const fixtureRoot = makeFixtureRoot([{ name: 'gsd-planner.md', content: CLAUDE_AGENT_SOURCE }]);
t.after(() => {
cleanup(fixtureRoot);
cleanupStagedSkills();
});
const agentsEntry = {
kind: 'agents',
destSubpath: 'agents',
prefix: 'gsd-',
nesting: 'flat',
recursive: false,
converter: 'convertClaudeAgentToCopilotAgent',
};
const registry = {
runtimes: { testruntime: { runtime: { artifactLayout: { global: [agentsEntry], local: [agentsEntry] } } } },
};
const profile = { name: 'full', skills: '*', agents: new Set() };
const stageFor = (scope) => {
const layout = resolveRuntimeArtifactLayoutFromRegistry(registry, 'testruntime', fixtureRoot, scope);
const agentKind = layout.kinds.find((k) => k.kind === 'agents');
assert.ok(agentKind, `${scope} layout must include an agents kind`);
return fs.readFileSync(path.join(agentKind.stage(profile), 'gsd-planner.md'), 'utf8');
};
const globalOut = stageFor('global');
const localOut = stageFor('local');
assert.notStrictEqual(
globalOut,
localOut,
'scope-aware converter output must differ by scope — proves isGlobal is threaded from the descriptor scope',
);
});
});
// ─── real registry: claude agents kind has converter=null ────────────────────
describe('feat-1173: real registry claude agents kind has converter=null (backward compat)', () => {
test('claude local artifacts layout has agents entry with converter=null', () => {
const registry = require(path.join(ROOT, 'gsd-core', 'bin', 'lib', 'capability-registry.cjs'));
const claudeDesc = registry.runtimes?.claude?.runtime?.artifactLayout?.local ?? [];
const agentsEntry = claudeDesc.find((e) => e.kind === 'agents');
assert.ok(agentsEntry, 'claude local artifactLayout must have an agents entry');
assert.strictEqual(agentsEntry.converter, null, 'claude agents entry must have converter=null');
});
});
});
}
// ────────────────────────────────────────────────────────────────────────
// Folded from tests/fix-1515-codex-runtime-default.test.cjs — consolidation epic #1969 (B3 #1972)
// ────────────────────────────────────────────────────────────────────────
{
const { describe: __foldDescribe } = require('node:test');
__foldDescribe("folded:fix-1515-codex-runtime-default (consolidation epic #1969 B3 #1972)", () => {
'use strict';
/**
* Regression tests for bug #1515: Codex install with runtime-neutral
* .planning/config.json resolves runtime as 'claude' and enables worktree
* isolation (unsafe for Codex).
*
* Root causes:
* A) config-get reads in workflows lacked --raw → output JSON-quoted →
* every comparison like [ "$RUNTIME" = "codex" ] failed silently.
* B) The conversion engine emitted --default claude for every runtime →
* neutral Codex config fell back to claude default.
*
* All tests assert on the SUT's RETURN VALUE (engine output), not raw file reads,
* except the integration test (test 4) which is explicitly the source↔engine
* parity guard and carries the allow-test-rule exemption.
*/
const { test } = require('node:test');
const assert = require('node:assert/strict');
const fs = require('node:fs');
const path = require('node:path');
const fc = require('fast-check');
const conversion = require('../gsd-core/bin/lib/runtime-artifact-conversion.cjs');
// ---------------------------------------------------------------------------
// Unit tests: engine stamps codex-specific defaults into emitted workflows
// ---------------------------------------------------------------------------
test('codex emit stamps its own runtime default into the runtime-resolution line', () => {
const line =
'RUNTIME=$(gsd_run query config-get runtime --default claude --raw 2>/dev/null || echo "claude")\n';
const out = conversion._applyRuntimeRewrites(line, 'codex', '$HOME/.codex/', true, undefined);
assert.ok(
out.includes('config-get runtime --default codex --raw'),
`Expected 'config-get runtime --default codex --raw' in output; got:\n${out}`,
);
assert.ok(
out.includes('|| echo "codex")'),
`Expected '|| echo "codex")' in output; got:\n${out}`,
);
assert.ok(
!out.includes('--default claude'),
`Expected '--default claude' to be fully rewritten; got:\n${out}`,
);
assert.ok(
!out.includes('echo "claude"'),
`Expected 'echo "claude"' to be fully rewritten; got:\n${out}`,
);
});
test('codex emit leaves workflow.use_worktrees at the true default — isolation is negotiated, not stamped (#1515 premise superseded by #2584/#2652)', () => {
// #1515 stamped `--default false` here because worktree isolation *was*
// Claude Code's isolation="worktree" spawn parameter, so a Codex install that
// resolved use_worktrees=true would have run unisolated while believing it was
// isolated. #2584 removed that premise: Codex declares
// `dispatch.isolation: orchestrator-worktree`, meaning GSD creates the
// worktree itself and spawns `codex exec --cd <worktree>` — supported, not
// unsafe. Keeping the stamp would resolve USE_WORKTREES=false before
// dispatch-isolation is consulted, re-deciding isolation by runtime name,
// which is the exact defect #2652 removes. The safety property #1515 protects
// is now held by the isolation gate's fail-closed resolution, not by a
// name-scoped install-time default.
const line =
'USE_WORKTREES=$(gsd_run query config-get workflow.use_worktrees --raw 2>/dev/null || echo "true")\n';
const out = conversion._applyRuntimeRewrites(line, 'codex', '$HOME/.codex/', true, undefined);
assert.strictEqual(
conversion._negotiatedDispatchIsolation('codex'),
'orchestrator-worktree',
'codex must declare orchestrator-worktree for this expectation to hold',
);
assert.strictEqual(
out,
line,
`Expected the use_worktrees read to survive codex emit untouched; got:\n${out}`,
);
});
test('claude runtime does NOT rewrite the runtime default — stamping is non-claude-scoped (#1521 inversion)', () => {
// #1521 generalizes stamping to ALL non-Claude runtimes. The negative case
// (no stamping) is now the 'claude' runtime, not other non-Claude runtimes.
const line =
'RUNTIME=$(gsd_run query config-get runtime --default claude --raw 2>/dev/null || echo "claude")\n';
const out = conversion._applyRuntimeRewrites(line, 'claude', '$HOME/.claude/', true, undefined);
assert.ok(
out.includes('--default claude --raw'),
`Expected claude output to preserve '--default claude --raw'; got:\n${out}`,
);
assert.ok(
!out.includes('--default codex'),
`Expected claude output NOT to contain '--default codex'; got:\n${out}`,
);
});
// ---------------------------------------------------------------------------
// Integration / parity guard: real source ↔ engine output for codex (all surfaces)
// ---------------------------------------------------------------------------
test('regression: every edited workflow gets codex-stamped (source↔engine parity, all surfaces) (#1515)', () => {
// allow-test-rule: pending-migration-to-typed-ir [#3090]
// `out` is _applyRuntimeRewrites's engine-transformed shell text, not shipped
// source — substring-matching it is the "Rendered file" row CONTRIBUTING
// requires a typed-IR builder for. No such IR exists yet for the shell
// rewrite output; production change out of scope here. Tracked under #3090.
const WORKFLOWS = ['execute-phase.md', 'autonomous.md', 'manager.md', 'diagnose-issues.md', 'quick.md'];
const CLAUDE_RUNTIME = 'config-get runtime --default claude --raw 2>/dev/null || echo "claude"';
const CODEX_RUNTIME = 'config-get runtime --default codex --raw 2>/dev/null || echo "codex"';
const TRUE_WT = 'config-get workflow.use_worktrees --raw 2>/dev/null || echo "true"';
const FALSE_WT = 'config-get workflow.use_worktrees --default false --raw 2>/dev/null || echo "false"';
for (const wf of WORKFLOWS) {
const src = fs.readFileSync(path.join(__dirname, '..', 'gsd-core', 'workflows', wf), 'utf8');
const out = conversion._applyRuntimeRewrites(src, 'codex', '$HOME/.codex/', true, undefined);
// No un-stamped claude runtime line may survive codex emit on ANY surface.
assert.ok(!out.includes(CLAUDE_RUNTIME), `${wf}: residual un-stamped runtime read — engine regex no longer matches source line (parity drift)`);
// If the source HAS such a read, the codex form must be present.
if (src.includes(CLAUDE_RUNTIME)) assert.ok(out.includes(CODEX_RUNTIME), `${wf}: runtime read not stamped to codex`);
// #2652: codex declares orchestrator-worktree, so the use_worktrees read is
// left for `gsd_run query dispatch-isolation` to decide at run time — the
// install-time `--default false` stamp would pre-empt that negotiation.
if (src.includes(TRUE_WT)) {
assert.ok(out.includes(TRUE_WT), `${wf}: use_worktrees read was stamped away for a runtime that negotiates worktree isolation (#2652)`);
assert.ok(!out.includes(FALSE_WT), `${wf}: codex gained the --default false use_worktrees stamp (#2652)`);
}
}
});
// ---------------------------------------------------------------------------
// Property tests (RULESET.TESTS.property-based-testing)
// ---------------------------------------------------------------------------
test('property: runtime stamping applies for ALL non-claude runtimes; only claude leaves --default claude unchanged (#1521)', () => {
// #1521: generalised from codex-only to all non-claude runtimes.
// Use the canonical list from the conversion module to avoid hand-rolled array drift.
const { NON_CLAUDE_RUNTIMES } = conversion;
const RUNTIMES = ['claude', ...NON_CLAUDE_RUNTIMES];
const line = 'RUNTIME=$(gsd_run query config-get runtime --default claude --raw 2>/dev/null || echo "claude")\n';
fc.assert(fc.property(fc.constantFrom(...RUNTIMES), (rt) => {
const out = conversion._applyRuntimeRewrites(line, rt, `$HOME/.${rt}/`, true, undefined);
return rt === 'claude'
? out.includes('--default claude --raw') && !out.includes('--default codex')
: out.includes(`--default ${rt} --raw`) && !out.includes('--default claude');
}));
});
test('property: codex stamping is idempotent on resolution lines (#1515)', () => {
fc.assert(fc.property(fc.constantFrom('runtime', 'use_worktrees'), (which) => {
const line = which === 'runtime'
? 'RUNTIME=$(gsd_run query config-get runtime --default claude --raw 2>/dev/null || echo "claude")\n'
: 'USE_WORKTREES=$(gsd_run query config-get workflow.use_worktrees --raw 2>/dev/null || echo "true")\n';
const once = conversion._applyRuntimeRewrites(line, 'codex', '$HOME/.codex/', true, undefined);
const twice = conversion._applyRuntimeRewrites(once, 'codex', '$HOME/.codex/', true, undefined);
return once === twice;
}));
});
});
}
// ────────────────────────────────────────────────────────────────────────
// Folded from tests/fix-1521-non-claude-runtime-default-resolution.test.cjs — consolidation epic #1969 (B3 #1972)
// ────────────────────────────────────────────────────────────────────────
{
const { describe: __foldDescribe } = require('node:test');
__foldDescribe("folded:fix-1521-non-claude-runtime-default-resolution (consolidation epic #1969 B3 #1972)", () => {
'use strict';
/**
* Regression tests for #1521: every non-Claude runtime stamps its own runtime
* identity into emitted workflows, and stamps workflow.use_worktrees=false
* where its negotiated dispatch.isolation is `none`.
*
* #1519 (Codex-only fix) was generalized here to ALL non-Claude runtimes on the
* premise that GSD's worktree isolation was Claude Code's isolation="worktree"
* spawn parameter, which no other runtime honored. #2584 replaced that premise
* with the negotiated `dispatch.isolation` capability, and #2652 scoped the
* use_worktrees stamp to match: a host declaring harness-worktree or
* orchestrator-worktree keeps the `true` default, because stamping it false
* pre-empts the negotiation and re-decides isolation by runtime name.
*
* All tests assert on the SUT's RETURN VALUE (engine output), not raw file reads,
* except the parity integration test which carries the allow-test-rule exemption.
*/
const { test } = require('node:test');
const assert = require('node:assert/strict');
const fs = require('node:fs');
const path = require('node:path');
const fc = require('fast-check');
const conversion = require('../gsd-core/bin/lib/runtime-artifact-conversion.cjs');
// #1521: use the canonical list from the conversion module rather than a hand-rolled
// local array that can drift from the real runtime set.
const { NON_CLAUDE_RUNTIMES: NON_CLAUDE } = conversion;
const WORKFLOWS = [
'execute-phase.md', 'autonomous.md', 'manager.md', 'diagnose-issues.md', 'quick.md',
];
const CLAUDE_RUNTIME_LINE = 'config-get runtime --default claude --raw 2>/dev/null || echo "claude"';
const TRUE_WT_LINE = 'config-get workflow.use_worktrees --raw 2>/dev/null || echo "true"';
const FALSE_WT_LINE = 'config-get workflow.use_worktrees --default false --raw 2>/dev/null || echo "false"';
// ---------------------------------------------------------------------------
// Parity across ALL non-Claude runtimes × all 5 workflows
// ---------------------------------------------------------------------------
test('parity: every non-Claude runtime stamps its own runtime default, and use_worktrees=false only where isolation negotiates to none (#1521, #2652)', () => {
// allow-test-rule: pending-migration-to-typed-ir [#3090]
// `out` is _applyRuntimeRewrites's engine-transformed shell text, not shipped
// source — substring-matching it is the "Rendered file" row CONTRIBUTING
// requires a typed-IR builder for. No such IR exists yet for the shell
// rewrite output; production change out of scope here. Tracked under #3090.
for (const rt of NON_CLAUDE) {
const isolation = conversion._negotiatedDispatchIsolation(rt);
for (const wf of WORKFLOWS) {
const src = fs.readFileSync(
path.join(__dirname, '..', 'gsd-core', 'workflows', wf),
'utf8',
);
const out = conversion._applyRuntimeRewrites(src, rt, `$HOME/.${rt}/`, true, undefined);
// No un-stamped claude runtime line may survive
assert.ok(
!out.includes(CLAUDE_RUNTIME_LINE),
`${rt}/${wf}: residual un-stamped claude runtime read — _stampNonClaudeRuntimeDefaults not applied`,
);
// If the source had a runtime read, the output must have --default <rt>
if (src.includes(CLAUDE_RUNTIME_LINE)) {
assert.ok(
out.includes(`config-get runtime --default ${rt} --raw 2>/dev/null || echo "${rt}"`),
`${rt}/${wf}: runtime line not stamped to --default ${rt}`,
);
}
if (!src.includes(TRUE_WT_LINE)) continue;
// #2652: the use_worktrees=false stamp is scoped to the runtimes whose
// negotiated dispatch.isolation really is `none`. A host that declares
// harness-worktree (cursor) or orchestrator-worktree (codex, opencode,
// kimi, kimi-code) must keep the unstamped `true` default, or the stamp
// resolves USE_WORKTREES=false before dispatch-isolation is consulted and
// the runtime is judged by its name after all.
if (isolation === 'none') {
assert.ok(
!out.includes(TRUE_WT_LINE),
`${rt}/${wf}: residual un-stamped use_worktrees=true read — _stampNonClaudeRuntimeDefaults not applied`,
);
assert.ok(
out.includes(FALSE_WT_LINE),
`${rt}/${wf}: use_worktrees line not defaulted to false`,
);
} else {
assert.ok(
out.includes(TRUE_WT_LINE),
`${rt}/${wf}: declares dispatch.isolation=${isolation} but the use_worktrees read was stamped away — the install-time default pre-empts the negotiated capability (#2652)`,
);
assert.ok(
!out.includes(FALSE_WT_LINE),
`${rt}/${wf}: declares dispatch.isolation=${isolation} but gained the --default false stamp`,
);
}
}
}
});
// ---------------------------------------------------------------------------
// #2652: the stamp's scope is the negotiated capability, not the runtime name
// ---------------------------------------------------------------------------
test('regression #2652: _stampNonClaudeRuntimeDefaults leaves use_worktrees alone for every runtime that negotiates a worktree isolation', () => {
const line =
'USE_WORKTREES=$(gsd_run query config-get workflow.use_worktrees --raw 2>/dev/null || echo "true")\n';
// The set is derived from the registry, not hand-listed, so a newly declared
// worktree host is covered the moment it lands — the same reason
// NON_CLAUDE_RUNTIMES is derived rather than literal (#1521).
const declaresWorktree = NON_CLAUDE.filter(
(rt) => conversion._negotiatedDispatchIsolation(rt) !== 'none',
);
const declaresNone = NON_CLAUDE.filter(
(rt) => conversion._negotiatedDispatchIsolation(rt) === 'none',
);
// Both arms must be non-empty or the test proves nothing about either.
assert.ok(
declaresWorktree.length > 0,
'no non-Claude runtime negotiates a worktree isolation — the regression this pins is unreachable',
);
assert.ok(
declaresNone.length > 0,
'every non-Claude runtime negotiates a worktree isolation — the false stamp is dead code',
);
for (const rt of declaresWorktree) {
assert.strictEqual(
conversion._stampNonClaudeRuntimeDefaults(line, rt),
line,
`${rt}: negotiates ${conversion._negotiatedDispatchIsolation(rt)} but its use_worktrees default was stamped false at install time, so dispatch-isolation-gate.md resolves ISOLATION=none regardless of what it declared (#2652)`,
);
}
for (const rt of declaresNone) {
assert.ok(
conversion._stampNonClaudeRuntimeDefaults(line, rt).includes(FALSE_WT_LINE),
`${rt}: negotiates none, so the false default must still be stamped (#1521)`,
);
}
});
test('regression #2652: _negotiatedDispatchIsolation fails closed on an undeclared or unknown runtime', () => {
// Mirrors routeDispatchIsolation's fail-closed contract (ADR-1239): anything
// outside the closed vocabulary resolves to `none`, so the #1521 stamp — and
// the workflows' isolation gate — degrade to sequential rather than to an
// unisolated dispatch that believes it is isolated.
for (const unknown of ['not-a-runtime', '', 'CLAUDE', '__proto__']) {
assert.strictEqual(
conversion._negotiatedDispatchIsolation(unknown),
'none',
`${JSON.stringify(unknown)}: expected fail-closed 'none'`,
);
}
// A registry-known host whose declared value is the `undocumented` sentinel
// (or absent) is out of vocabulary and must degrade the same way.
const registry = require('../gsd-core/bin/lib/capability-registry.cjs');
const undocumented = NON_CLAUDE.filter((rt) => {
const declared = registry?.runtimes?.[rt]?.runtime?.hostIntegration?.dispatch?.isolation;
return declared === 'undocumented' || declared == null;
});
assert.ok(undocumented.length > 0, 'no runtime declares the undocumented sentinel — nothing to pin');
for (const rt of undocumented) {
assert.strictEqual(conversion._negotiatedDispatchIsolation(rt), 'none', `${rt}: undocumented must degrade to none`);
}
});
// ---------------------------------------------------------------------------
// #2652 review round-5/6 Major 1 — PARITY with the runtime resolver.
//
// `_negotiatedDispatchIsolation` (install time, this module) and
// `routeDispatchIsolation` (dispatch time, gsd-core/bin/gsd-tools.cjs) are two
// implementations of ONE rule: what isolation may this host negotiate. They
// read the same inputs — the capability registry and `resolveOrchestratorExec`
// — but duplicate the DECISION on top of them, on two surfaces (the install
// engine and the CLI query hub) with no call edge between them. So neither
// symbol appears in the other's impact graph and no static analysis sees the
// duplication. Divergence would be silent, and its consequence is the #2652
// defect returning by the back door: the installer stamping
// `use_worktrees=false` for a host the resolver would have granted a worktree
// (or the reverse — an unstamped host whose dispatch then refuses).
//
// The assertion is therefore behavioral on BOTH sides: the resolver leg drives
// the REAL CLI and reads its actual stdout.
// ---------------------------------------------------------------------------
test('regression #2652: _negotiatedDispatchIsolation agrees with the routeDispatchIsolation CLI for every registered runtime', () => {
const { runGsdTools, createTempProject, cleanup: cleanupDir } = require('./helpers.cjs');
const registry = require('../gsd-core/bin/lib/capability-registry.cjs');
const RUNTIME_IDS = Object.keys(registry.runtimes).sort();
// Install time cannot know the worktree a future dispatch will target, so
// `_negotiatedDispatchIsolation` probes the orchestrator descriptor with a
// placeholder. The CLI is asked BOTH ways, because the two calls are both real:
//
// --cwd-target <probe> the executor-spawn call, which resolves the descriptor.
// Same question install time asks; must match exactly.
// (no --cwd-target) the FIRST call every dispatch site makes — the
// `Resolve ISOLATION` block in dispatch-isolation-gate.md.
// It skips descriptor resolution, so it can only differ
// from install time for an orchestrator host whose
// descriptor does not resolve. No such host exists today
// and that is worth pinning: if one lands, the install
// stamps `use_worktrees=false` while the workflow gate
// still reports `orchestrator-worktree` — the #2652 split
// brain, in the one shape the target-bound leg cannot see.
const PROBE_TARGET = '/gsd-orchestrator-worktree-probe';
const dir = createTempProject('gsd-2652-parity-');
try {
const disagreements = [];
const seen = new Set();
for (const rt of RUNTIME_IDS) {
const res = runGsdTools(
['query', 'dispatch-isolation', '--json', '--cwd-target', PROBE_TARGET],
dir,
{ GSD_RUNTIME: rt, HOME: dir },
);
assert.equal(res.success, true, `${rt}: dispatch-isolation query failed: ${res.error}`);
const parsed = JSON.parse(res.output);
// Guard the guard: if resolveRuntime normalized `rt` to some other id, the
// comparison below would be pinning the wrong host and silently pass.
assert.equal(
parsed.runtime,
rt,
`${rt}: the CLI resolved runtime "${parsed.runtime}" instead — parity would be measured against the wrong host`,
);
const gateRes = runGsdTools(
['query', 'dispatch-isolation', '--raw'],
dir,
{ GSD_RUNTIME: rt, HOME: dir },
);
assert.equal(gateRes.success, true, `${rt}: no-target dispatch-isolation query failed: ${gateRes.error}`);
const gateIsolation = gateRes.output.trim();
const installTime = conversion._negotiatedDispatchIsolation(rt);
seen.add(installTime);
if (installTime !== parsed.isolation) {
disagreements.push(
`${rt}: install-time _negotiatedDispatchIsolation → "${installTime}", ` +
`dispatch-time routeDispatchIsolation (--cwd-target) → "${parsed.isolation}"`,
);
}
if (installTime !== gateIsolation) {
disagreements.push(
`${rt}: install-time _negotiatedDispatchIsolation → "${installTime}", ` +
`workflow-gate routeDispatchIsolation (no --cwd-target) → "${gateIsolation}"`,
);
}
}
assert.deepEqual(
disagreements,
[],
'the install-time and dispatch-time isolation resolvers disagree. One of them was ' +
'changed without the other (DEFECT.GENERATIVE-FIX-DIVERGENCE): the installer and the ' +
'dispatch gate would then make opposite isolation decisions for the same host.\n' +
disagreements.join('\n'),
);
// A parity check over a set that only ever answers `none` proves nothing —
// both legs could be stubbed to a constant and still agree.
for (const mode of ['harness-worktree', 'orchestrator-worktree', 'none']) {
assert.ok(
seen.has(mode),
`no registered runtime resolves to "${mode}" — the parity above never exercised that branch`,
);
}
} finally {
cleanupDir(dir);
}
});
// ---------------------------------------------------------------------------
// Claude unchanged — no stamping for the native runtime
// ---------------------------------------------------------------------------
test('claude runtime leaves runtime default and use_worktrees=true unchanged (#1521)', () => {
const src = fs.readFileSync(
path.join(__dirname, '..', 'gsd-core', 'workflows', 'execute-phase.md'),
'utf8',
);
const out = conversion._applyRuntimeRewrites(src, 'claude', '$HOME/.claude/', true, undefined);
// Claude emit must preserve the original --default claude line
if (src.includes(CLAUDE_RUNTIME_LINE)) {
assert.ok(
out.includes(CLAUDE_RUNTIME_LINE),
`claude/execute-phase.md: expected original claude runtime line to survive; got mutated`,
);
}
// Claude emit must NOT gain --default false for use_worktrees
assert.ok(
!out.includes(FALSE_WT_LINE),
`claude/execute-phase.md: use_worktrees line must NOT be stamped false for claude runtime`,
);
});
// ---------------------------------------------------------------------------
// fc property — identity: each runtime stamps itself, claude stays unchanged
// ---------------------------------------------------------------------------
test('property: _stampNonClaudeRuntimeDefaults stamps each non-claude runtime and leaves claude unchanged (#1521)', () => {
const line =
'RUNTIME=$(gsd_run query config-get runtime --default claude --raw 2>/dev/null || echo "claude")\n';
fc.assert(
fc.property(fc.constantFrom(...NON_CLAUDE, 'claude'), (rt) => {
const out = conversion._applyRuntimeRewrites(line, rt, `$HOME/.${rt}/`, true, undefined);
if (rt === 'claude') {
return out.includes('--default claude') && !/--default (?!claude)/.test(out);
}
return out.includes(`--default ${rt}`) && !out.includes('--default claude');
}),
);
});
// ---------------------------------------------------------------------------
// fc property — idempotence: stamping twice equals once
// ---------------------------------------------------------------------------
test('property: _stampNonClaudeRuntimeDefaults is idempotent (#1521)', () => {
fc.assert(
fc.property(
fc.constantFrom(...NON_CLAUDE),
fc.constantFrom('runtime', 'use_worktrees'),
(rt, which) => {
const line =
which === 'runtime'
? 'RUNTIME=$(gsd_run query config-get runtime --default claude --raw 2>/dev/null || echo "claude")\n'
: 'USE_WORKTREES=$(gsd_run query config-get workflow.use_worktrees --raw 2>/dev/null || echo "true")\n';
const once = conversion._applyRuntimeRewrites(line, rt, `$HOME/.${rt}/`, true, undefined);
const twice = conversion._applyRuntimeRewrites(once, rt, `$HOME/.${rt}/`, true, undefined);
return once === twice;
},
),
);
});
// ---------------------------------------------------------------------------
// Guard generalization: execute-phase.md uses != "claude" not = "codex"
// ---------------------------------------------------------------------------
// ---------------------------------------------------------------------------
// Guard generalization: execute-phase.md, quick.md, and diagnose-issues.md
// all use != "claude" (not = "codex") for the worktree guard (#1521)
// ---------------------------------------------------------------------------
test('execute-phase.md, quick.md, and diagnose-issues.md guards are generalized to != "claude" (not Codex-specific) (#1521)', () => {
// allow-test-rule: source-text-is-the-product (#1521)
// Reads the raw shipped workflow .md source directly (not engine-transformed
// output) and asserts on its literal guard-clause text — the deployed prose
// IS the runtime contract here.
// #2584 Phase 3 (#2627): execute-phase.md graduated PAST the `!= "claude"`
// guard — worktree isolation there is now keyed on the negotiated
// `dispatch.isolation` capability, so no runtime name appears in its guard at
// all.
//
// #2652: quick.md and diagnose-issues.md have now graduated too. This block
// previously asserted they still carried the #1521 generalized form, with a
// comment noting "they do not negotiate isolation" — i.e. the test knowingly
// pinned the un-migrated state #2652 was filed about. They negotiate now, so
// they are held to the same capability-keyed contract as execute-phase.md.
const GUARD_WORKFLOWS = ['quick.md', 'diagnose-issues.md', 'execute-phase.md'];
for (const wf of GUARD_WORKFLOWS) {
const src = fs.readFileSync(
path.join(__dirname, '..', 'gsd-core', 'workflows', wf),
'utf8',
);
assert.ok(
!src.includes('[ "$RUNTIME" != "claude" ] && [ "$USE_WORKTREES" != "false" ]'),
`${wf}: worktree isolation must branch on dispatch.isolation, not on != "claude" (#2584/#2652)`,
);
assert.ok(
!src.includes('[ "$RUNTIME" = "codex" ] && [ "$USE_WORKTREES" != "false" ]'),
`${wf}: found Codex-specific guard — isolation is a negotiated capability (#2584/#2652)`,
);
}
// The two migrated sites must actually negotiate, not merely drop the guard.
for (const wf of ['quick.md', 'diagnose-issues.md']) {
const src = fs.readFileSync(
path.join(__dirname, '..', 'gsd-core', 'workflows', wf),
'utf8',
);
assert.ok(
src.includes('query dispatch-isolation'),
`${wf}: must resolve ISOLATION via \`gsd_run query dispatch-isolation\` (#2652)`,
);
}
// execute-phase.md: the guard must be capability-keyed, with NO runtime name.
const executePhase = fs.readFileSync(
path.join(__dirname, '..', 'gsd-core', 'workflows', 'execute-phase.md'),
'utf8',
);
assert.ok(
!/\[\s*"\$RUNTIME"\s*(?:!=|=)\s*"[a-z-]+"\s*\]\s*&&\s*\[\s*"\$USE_WORKTREES"/.test(executePhase),
'execute-phase.md: worktree isolation must branch on dispatch.isolation, not on a runtime name (#2584)',
);
assert.ok(
executePhase.includes('Resolve ISOLATION'),
'execute-phase.md: must resolve the negotiated ISOLATION capability',
);
});
// ---------------------------------------------------------------------------
// Orchestration gating: manager.md + autonomous.md gate background dispatch on
// the typed FLATTEN query. #1708 (ADR-1239 Phase B) graduated #1521's
// codex-specific check to a documentation-sourced shouldFlattenDispatch — the
// prose now branches on `FLATTEN` (false = background), not a runtime name.
// ---------------------------------------------------------------------------
test('manager.md and autonomous.md gate run_in_background on FLATTEN=false, not a runtime name (#1521, graduated by #1708)', () => {
// allow-test-rule: source-text-is-the-product (#1521/#1708)
// Reads the raw shipped manager.md/autonomous.md workflow prose directly —
// the deployed orchestration dispatch gating text IS the runtime contract.
const manager = fs.readFileSync(
path.join(__dirname, '..', 'gsd-core', 'workflows', 'manager.md'),
'utf8',
);
const autonomous = fs.readFileSync(
path.join(__dirname, '..', 'gsd-core', 'workflows', 'autonomous.md'),
'utf8',
);
// Both files must gate run_in_background on the typed FLATTEN decision (not a runtime name)
assert.ok(
/If `FLATTEN` is `false`[\s\S]{0,500}?run_in_background=true/.test(manager),
'manager.md: expected run_in_background dispatch gated on FLATTEN=false (typed dispatch-should-flatten query)',
);
assert.ok(
/If `FLATTEN` is `false`[\s\S]{0,1200}?run_in_background=true/.test(autonomous),
'autonomous.md: expected run_in_background dispatch gated on FLATTEN=false (typed dispatch-should-flatten query)',
);
// Inline is the else branch, keyed on FLATTEN — never a runtime name
assert.ok(
/Otherwise[\s\S]{0,250}?inline/i.test(manager),
'manager.md: expected "Otherwise ... inline" branch keyed on FLATTEN',
);
assert.ok(
/Otherwise[\s\S]{0,250}?inline/i.test(autonomous),
'autonomous.md: expected "Otherwise ... inline" branch keyed on FLATTEN',
);
// And the old runtime-name gating must be gone (no `RUNTIME` is `codex` dispatch gate)
assert.ok(
!/`RUNTIME` is `codex`[\s\S]{0,500}?run_in_background=true/.test(manager),
'manager.md: must no longer gate run_in_background on the runtime name',
);
});
test('manager.md and autonomous.md no longer contain old "not claude" background-dispatch gating (#1521)', () => {
// allow-test-rule: source-text-is-the-product (#1521)
// Reads the raw shipped manager.md/autonomous.md workflow prose directly —
// the deployed orchestration dispatch gating text IS the runtime contract.
const manager = fs.readFileSync(
path.join(__dirname, '..', 'gsd-core', 'workflows', 'manager.md'),
'utf8',
);
const autonomous = fs.readFileSync(
path.join(__dirname, '..', 'gsd-core', 'workflows', 'autonomous.md'),
'utf8',
);
// The old phrasing that unconditionally sent every non-claude runtime to background must be gone
assert.ok(
!manager.includes('If `RUNTIME` is not `claude` (e.g. Codex)'),
'manager.md: old "If `RUNTIME` is not `claude` (e.g. Codex)" gating must be replaced',
);
assert.ok(
!autonomous.includes('On other runtimes:'),
'autonomous.md: old "On other runtimes:" branch label must be replaced',
);
});
});
}
// ────────────────────────────────────────────────────────────────────────
// #2486: settings.md must not recommend or persist worktree isolation on
// non-Claude runtimes, and health.md must surface an inherited explicit
// use_worktrees=true before execution fails closed on it. Both rely on the
// #1521 stamping machinery, so the canonical runtime/use_worktrees reads in
// those two files are part of the runtime contract surface.
// ────────────────────────────────────────────────────────────────────────
{
const fs = require('node:fs');
const path = require('node:path');
const conversion = require('../gsd-core/bin/lib/runtime-artifact-conversion.cjs');
const { NON_CLAUDE_RUNTIMES } = conversion;
const RUNTIME_BRANCH_WORKFLOWS = ['settings.md', 'health.md'];
const CLAUDE_RUNTIME_LINE = 'config-get runtime --default claude --raw 2>/dev/null || echo "claude"';
const TRUE_WT_LINE = 'config-get workflow.use_worktrees --raw 2>/dev/null || echo "true"';
// #2486 review round 2 (#2584): the capability read that replaced the runtime-name
// gate. Round 4: `inspect-dispatch-isolation`, the side-effect-free inspection verb —
// the recording `dispatch-isolation` verb stamps the executor-dispatch sentinel as an
// unconditional #3045 side effect, which an inspection surface must never do.
// Round 9 (#2486 review, Major 3): this used to pin the single-line
// `ISOLATION=$(… || echo "none")` read. That shape was the defect — `|| echo
// "none"` collapses "this runtime declares no primitive" into "the resolver
// failed", and both surfaces then assert the former, which is false. The
// canonical read now captures the raw value and tracks whether a verdict was
// actually learned, the same shape the execution-side isolation gate uses.
// Pinned as two invariants rather than one long literal so that reformatting
// the block does not fail the test while a semantic regression still does.
const ISOLATION_LINE = '_INSPECTED_RAW=$(gsd_run query inspect-dispatch-isolation --raw 2>/dev/null)';
const ISOLATION_RESOLVED_FLAG = 'INSPECTED_RESOLVED';
const ISOLATION_COLLAPSING_FALLBACK = /inspect-dispatch-isolation --raw 2>\/dev\/null \|\| echo/;
const readWorkflow = (wf) =>
fs.readFileSync(path.join(__dirname, '..', 'gsd-core', 'workflows', wf), 'utf8');
// Behavioral W025 coverage (#2486 Major 2) executes the shipped block, so it
// needs a subprocess and a CRLF-safe read. `readFileNormalized` normalizes at
// the READ boundary — a `\r?\n` fence regex alone leaves embedded CR inside
// the captured body, which bash then treats as part of the token
// (DEFECT.WINDOWS-CRLF-TEST-PORTABILITY).
//
// The subprocess goes through the process seam, never a hand-rolled
// spawnSync (CONTRIBUTING "Spawning a subprocess: use the process seam").
// `runHook` already documents `interpreter: 'bash'` for running a shell
// script, so the harness is written to a file rather than passed as `-c`.
const { runHook } = require('./helpers/process-seam.cjs');
const { readFileNormalized, createTempDir, cleanup: cleanupDir } = require('./helpers.cjs');
// Skipped on Windows, where there is no bash. Checked by platform rather than
// by shelling out to `which`, which is itself non-portable.
const NO_BASH = process.platform === 'win32';
describe('#2486 regression: settings/health worktrees isolation branch', () => {
// Review round 2 (#2584 Phase 3): isolation is a DECLARED CAPABILITY, not a
// runtime name. cursor declares harness-worktree and codex/opencode/kimi/
// kimi-code declare orchestrator-worktree, so a `RUNTIME != claude` gate
// would block a supported configuration on five runtimes and false-warn in
// health. Both surfaces branch on `dispatch-isolation` instead.
test('settings.md and health.md contain NO runtime-name gate for the worktrees branch', () => {
// allow-test-rule: source-text-is-the-product (#2486)
// Workflow .md text IS what the runtime loads — asserting on it tests the deployed contract.
for (const wf of RUNTIME_BRANCH_WORKFLOWS) {
const src = readWorkflow(wf);
assert.ok(
!src.includes(CLAUDE_RUNTIME_LINE),
`${wf}: the worktrees branch must not read the runtime name — gate on dispatch-isolation (#2584)`,
);
assert.ok(
!/RUNTIME"?\s*(!=|=)\s*"?claude/.test(src),
`${wf}: residual RUNTIME-vs-claude comparison — execute-phase forbids a runtime-name fan-out`,
);
// Prose gates count too: the shell-syntax check above missed two
// sentences that still asserted the obsolete non-Claude premise
// (the config-key list and the emitted-JSON schema comment).
assert.ok(
!/non-Claude (installs?|runtimes?)\b[^.]{0,120}\b(fail closed|default it to `?false)/i.test(src),
`${wf}: prose still states the obsolete "non-Claude cannot honor worktrees" premise — gate on dispatch.isolation`,
);
assert.ok(
!/never written as true on a non-Claude runtime/i.test(src),
`${wf}: emitted-JSON comment still claims a runtime-name persistence rule`,
);
}
});
// Round 4 note: an earlier revision carried a test here that encoded the
// #2728 merge order as a red assertion against quick.md/diagnose-issues.md.
// Deleted: a repo test cannot sequence merges — it only made this change
// unmergeable on its own schedule. The settings behavior change is instead
// scoped entirely to the `ISOLATION = none` branch (below), which needs
// nothing from any sibling PR; the `!= none` path is base behavior unchanged.
test('settings.md and health.md resolve isolation with the sentinel-free inspection read', () => {
// allow-test-rule: source-text-is-the-product (#2486)
// Workflow .md text IS what the runtime loads — asserting on it tests the deployed contract.
for (const wf of RUNTIME_BRANCH_WORKFLOWS) {
const src = readWorkflow(wf);
assert.ok(
src.includes(ISOLATION_LINE),
`${wf}: missing the canonical inspect-dispatch-isolation read (fail-closes unknown/undocumented to none)`,
);
// Major 3: fail-closed is right; reporting the failure AS a capability
// verdict is not. Both surfaces must be able to tell the two apart.
// #2486 review: the diagnostics name their state INSPECTED_ISOLATION,
// not ISOLATION. That is load-bearing, not cosmetic — #2728's
// "every dispatch-site degrade block re-records" guard scans for a
// literal `ISOLATION=none` in any workflow bash block, and a read-only
// surface has no sentinel to re-record. Naming the read differently
// keeps these files out of that scan BY CONSTRUCTION; the alternative
// was exempting the two files, which silently covered any future
// dispatch block added to them.
assert.ok(
!/^\s*ISOLATION=/m.test(src),
`${wf}: a read-only diagnostic must not assign the dispatch-site variable name ISOLATION — use INSPECTED_ISOLATION so #2728's re-record guard does not have to carve out this file`,
);
assert.ok(
src.includes(ISOLATION_RESOLVED_FLAG),
`${wf}: must track ISOLATION_RESOLVED — a resolver failure is not a declaration of 'none' (#2486 review, Major 3)`,
);
assert.ok(
!ISOLATION_COLLAPSING_FALLBACK.test(src),
`${wf}: '|| echo "none"' on the inspect read collapses "could not resolve" into "declares none" — capture the raw value and branch on ISOLATION_RESOLVED instead`,
);
// #2486 round 4 (B1): the RECORDING resolver is dispatch-only. On
// current next, `query dispatch-isolation` persists its decision to
// .gsd/dispatch-isolation-sentinel.json as an unconditional #3045 side
// effect, and the isolation guard hooks hard-fail dispatches that
// disagree with the recorded sentinel. An inspection surface calling it
// would let /gsd:health or /gsd:settings hard-block executor dispatch
// for the sentinel's lifetime — across sessions, since the sentinel
// root resolves linked worktrees to the main checkout.
assert.ok(
!src.includes('query dispatch-isolation'),
`${wf}: calls the RECORDING dispatch-isolation verb — inspection surfaces must use inspect-dispatch-isolation, which never writes the sentinel`,
);
assert.ok(
src.includes('"$INSPECTED_ISOLATION" = "none"') || src.includes('`INSPECTED_ISOLATION` = `none`'),
`${wf}: must gate on ISOLATION = none, the only value that cannot honor worktrees`,
);
}
});
test('the isolation read is runtime-neutral — no per-runtime stamping rewrites it', () => {
// inspect-dispatch-isolation resolves the runtime internally and fail-closes,
// so unlike the #1521 runtime read it must survive every emit byte-identical.
// allow-test-rule: integration-test-input (#2486)
// The workflow source is fed to _applyRuntimeRewrites as real fixture input;
// the assertion is on the transformation's output.
for (const rt of NON_CLAUDE_RUNTIMES) {
for (const wf of RUNTIME_BRANCH_WORKFLOWS) {
const out = conversion._applyRuntimeRewrites(readWorkflow(wf), rt, `$HOME/.${rt}/`, true, undefined);
assert.ok(
out.includes(ISOLATION_LINE),
`${rt}/${wf}: the inspect-dispatch-isolation read must not be rewritten by per-runtime stamping`,
);
}
// The settings tri-state read must survive stamping too: if
// _stampNonClaudeRuntimeDefaults ever matched the bare (no-fallback)
// shape, absence would again collapse into an explicit false and the
// pre-selection rule would go dead on that runtime.
const settingsOut = conversion._applyRuntimeRewrites(readWorkflow('settings.md'), rt, `$HOME/.${rt}/`, true, undefined);
assert.ok(
settingsOut.includes('USE_WORKTREES_CURRENT=$(gsd_run query config-get workflow.use_worktrees --raw 2>/dev/null)'),
`${rt}/settings.md: the bare tri-state worktrees read must survive per-runtime stamping byte-identical`,
);
}
});
test('claude emit of settings.md and health.md keeps the recommended Yes option unchanged', () => {
const settingsOut = conversion._applyRuntimeRewrites(readWorkflow('settings.md'), 'claude', '$HOME/.claude/', true, undefined);
assert.ok(
settingsOut.includes('{ label: "Yes (Recommended)", description: "Each parallel executor runs in its own worktree branch — no conflicts between agents." }'),
'claude/settings.md: the worktree-capable Worktrees question must be unchanged',
);
});
test('settings.md source carries the isolation-none branch: no enabling option, never persist true', () => {
const src = readWorkflow('settings.md');
assert.ok(
src.includes('**Conditional options — Worktrees (#2486):**'),
'settings.md: missing the conditional-options block for the Worktrees question',
);
// Round 4: the current-value read carries NO --default/fallback on purpose.
// _stampNonClaudeRuntimeDefaults rewrites the canonical fallback line to
// `--default false || echo "false"` on every non-Claude emit, which made
// key-absence indistinguishable from an explicit false — and the
// "pre-select Leave unchanged only when absent" rule dead there. The bare
// read signals absence as empty output and matches no stamp pattern.
assert.ok(
src.includes('USE_WORKTREES_CURRENT=$(gsd_run query config-get workflow.use_worktrees --raw 2>/dev/null)'),
'settings.md: current worktrees value must use the bare tri-state read (empty = absent)',
);
assert.ok(
!src.includes(`USE_WORKTREES_CURRENT=$(gsd_run query ${TRUE_WT_LINE})`),
'settings.md: the stampable fallback read collapses absent into false on non-Claude emits',
);
assert.ok(
src.includes('NEVER write `workflow.use_worktrees: true` from this workflow when the runtime declares no isolation primitive'),
'settings.md: missing the never-persist-true instruction for isolation-none runtimes',
);
assert.ok(
src.includes('{ label: "No (Recommended)", description: "Write use_worktrees: false.'),
'settings.md: isolation-none branch must recommend No',
);
assert.ok(
src.includes('{ label: "Leave unchanged", description: "Do not write the key.'),
'settings.md: isolation-none branch must offer leaving the key untouched for shared configs',
);
// Round 2: in the broken-inheritance case (explicit non-false value) the
// pre-selected default must be the repair, not "Leave unchanged".
// Round-5 review: this used to pin `Pre-select "Leave unchanged" only
// when the key is absent`. That assumed an absent key is already safe,
// which holds only on an emit that stamped the default to false —
// execute-phase/quick/diagnose read it as `|| echo "true"` otherwise. The
// recommended default must now be the explicit repair in every case.
assert.ok(
src.includes('Pre-select "No (Recommended)" in every case, including an absent key'),
'settings.md: the recommended default must be the explicit false — an absent key is safe only on a stamped emit',
);
assert.ok(
!/Pre-select "Leave unchanged" only when the key is absent/.test(src),
'settings.md: the old absent-key-is-safe pre-selection rule is falsified on un-stamped emits (#2486 round-5 review)',
);
assert.ok(
src.includes('when it is an explicit non-false value — the broken-inheritance case'),
'settings.md: the broken-inheritance case must pre-select the recommended repair',
);
});
test('health.md source carries the W025 isolation/worktrees compatibility check', () => {
const src = readWorkflow('health.md');
assert.ok(
src.includes('W025:'),
'health.md: missing the W025 diagnostic line',
);
assert.ok(
src.includes('Status: DEGRADED'),
'health.md: a config the execution workflows fail closed on must degrade the reported status',
);
// #2486 review Major 1: W025's correctness must NOT depend on
// `_stampNonClaudeRuntimeDefaults` having rewritten the read. A
// `|| echo "true"` fallback makes an ABSENT key look like an explicit
// `true`, so the check fires on a config that never set it — correct only
// on a stamped emit, wrong on the un-stamped source/Claude emit. Pin the
// stamp-independent shape settings.md already uses.
assert.ok(
src.includes('USE_WORKTREES=$(gsd_run query config-get workflow.use_worktrees --raw 2>/dev/null)'),
'health.md: the W025 worktrees read must be bare — a --default/|| fallback collapses key-absent into explicit-true (#2486 Major 1)',
);
assert.ok(
!/workflow\.use_worktrees --raw 2>\/dev\/null \|\| echo/.test(src),
'health.md: the W025 read reintroduced a fallback, so it depends on install-time stamping again (#2486 Major 1)',
);
assert.ok(
src.includes('[ -n "$USE_WORKTREES" ]'),
'health.md: W025 must require the key to be PRESENT before warning that the config "sets" it',
);
});
// #2486 review Major 2: the coverage above is still text-matching. Execute
// the SHIPPED block so the predicate is proven by behavior — Major 1 would
// have been caught by any one of these cases.
test('W025 fires only on an explicit non-false key under isolation=none (behavioral, #2486 Major 2)', { skip: NO_BASH }, (t) => {
const scratch = createTempDir('gsd-w025-');
t.after(() => cleanupDir(scratch));
const src = readFileNormalized(
path.join(__dirname, '..', 'gsd-core', 'workflows', 'health.md'),
);
const block = [...src.matchAll(/```bash\r?\n([\s\S]*?)```/g)]
.map(m => m[1])
.find(b => b.includes('W025:'));
assert.ok(block, 'health.md: no ```bash block containing the W025 diagnostic');
/** Run the shipped block with `gsd_run` stubbed to the given answers. */
const fire = (isolation, worktreesOut) => {
const harness = [
'set -u',
'gsd_run() {',
' case "$*" in',
` *inspect-dispatch-isolation*) printf '%s' ${JSON.stringify(isolation)} ;;`,
// Faithful to the real CLI: `config-get` EXITS NON-ZERO for an absent
// key, it does not print empty and succeed. A stub that succeeds here
// would let `|| echo "true"` be reintroduced and still pass — the
// fallback only triggers on failure (#2486 round-7 review, Major 4).
worktreesOut === ''
? ' *"config-get workflow.use_worktrees"*) return 1 ;;'
: ` *"config-get workflow.use_worktrees"*) printf '%s' ${JSON.stringify(worktreesOut)} ;;`,
" *) printf '' ;;",
' esac; }',
block,
].join('\n');
const scriptPath = path.join(scratch, `w025-${isolation}-${worktreesOut || 'absent'}.sh`);
fs.writeFileSync(scriptPath, harness);
const res = runHook(scriptPath, [], { interpreter: 'bash' });
assert.equal(
res.outcome, 'exited',
`W025 block did not complete cleanly: outcome=${res.outcome} ${res.stderr || ''}`,
);
assert.equal(res.exitCode, 0, `W025 block exited ${res.exitCode}: ${res.stderr}`);
return res.stdout.includes('W025:');
};
// The reviewer's exact repro: rt=qwen, source (un-stamped) emit, cfg={}.
// The key is absent, so `config-get` prints nothing. This FIRED before.
assert.equal(
fire('none', ''),
false,
'W025 fired on an ABSENT use_worktrees key — the warning claims the config "sets" a non-false value, and it does not (#2486 Major 1 repro)',
);
// The defect W025 actually exists for.
assert.equal(
fire('none', 'true'),
true,
'W025 stayed quiet on an explicit true under isolation=none — that is the config execute-phase/quick fail closed on',
);
assert.equal(
fire('none', 'false'), false, 'W025 fired on an explicit false — nothing to repair',
);
// A host that CAN isolate is never the subject of this warning.
for (const iso of ['harness-worktree', 'orchestrator-worktree']) {
assert.equal(
fire(iso, 'true'),
false,
`W025 fired on ${iso}, which declares an isolation primitive — the gate is the declared capability, not the runtime name (#2584)`,
);
}
});
// #2486 round-9 review, Major 3: the source-text pins above assert only
// that ISOLATION_RESOLVED is *mentioned*, so flipping the shipped block's
// `ISOLATION_RESOLVED=true` to `false` left every one of them green. What
// has to be pinned is the BRANCH: a resolver that answered and a resolver
// that failed must produce different W025 text, because the whole point is
// to stop reporting a failed query as a capability verdict. This test
// drives the shipped block twice and fails on the mutation.
test('W025 distinguishes a declared none from an unresolvable query (behavioral, #2486 Major 3)', { skip: NO_BASH }, (t) => {
const scratch = createTempDir('gsd-w025-provenance-');
t.after(() => cleanupDir(scratch));
const src = readFileNormalized(
path.join(__dirname, '..', 'gsd-core', 'workflows', 'health.md'),
);
const block = [...src.matchAll(/```bash\r?\n([\s\S]*?)```/g)]
.map(m => m[1])
.find(b => b.includes('W025:'));
assert.ok(block, 'health.md: no ```bash block containing the W025 diagnostic');
// `resolves` false = the inspect call exits non-zero, the real shape of a
// shim that cannot resolve. The worktrees key is an explicit true in both
// runs, so the ONLY difference is whether the capability query answered.
const runBlock = (resolves) => {
const harness = [
'set -u',
'gsd_run() {',
' case "$*" in',
resolves
? " *inspect-dispatch-isolation*) printf 'none' ;;"
: ' *inspect-dispatch-isolation*) return 1 ;;',
" *\"config-get workflow.use_worktrees\"*) printf 'true' ;;",
" *) printf '' ;;",
' esac; }',
block,
].join('\n');
const scriptPath = path.join(scratch, `w025-resolves-${resolves}.sh`);
fs.writeFileSync(scriptPath, harness);
const res = runHook(scriptPath, [], { interpreter: 'bash' });
assert.equal(res.outcome, 'exited', `block did not complete: ${res.stderr || ''}`);
assert.equal(res.exitCode, 0, `block exited ${res.exitCode}: ${res.stderr}`);
return res.stdout;
};
const resolved = runBlock(true);
const unresolved = runBlock(false);
// Both must warn — an explicit true is worth reporting either way.
assert.match(resolved, /W025:/, 'a resolved none with an explicit true must still warn');
assert.match(unresolved, /W025:/, 'an unresolvable capability with an explicit true must still warn');
// ...but they must not say the same thing.
assert.notEqual(
resolved.trim(),
unresolved.trim(),
'W025 emitted identical text whether or not the capability resolved — that is the Major 3 conflation',
);
assert.match(
unresolved,
/could not resolve/i,
'the unresolved branch must report that the query failed, not assert a capability verdict',
);
assert.doesNotMatch(
unresolved,
/declares no executor-isolation primitive|has no usable executor-isolation primitive/i,
'the unresolved branch must NOT claim the runtime has no primitive — nothing established that',
);
assert.doesNotMatch(
resolved,
/could not resolve/i,
'the resolved branch must state the capability finding, not a resolution failure',
);
// Round-3 review: asserting only "differs and omits the other phrase"
// would stay green if the resolved text were replaced with anything at
// all. Pin what it must positively say — the capability finding and the
// consequence a user acts on.
assert.match(
resolved,
/no usable executor-isolation primitive/i,
'the resolved branch must state the capability finding it actually reached',
);
assert.match(
resolved,
/fail closed/i,
'the resolved branch must state the consequence — that is what makes W025 actionable',
);
assert.match(
resolved,
/use_worktrees/,
'the resolved branch must name the offending key',
);
// Both branches must still route the user to the same repair.
for (const [name, out] of [['resolved', resolved], ['unresolved', unresolved]]) {
assert.match(out, /(?:\/gsd[:-]settings|\$gsd-settings)\b/, `${name}: W025 must name the repair command`);
}
});
test('W025 is documented consistently across health.md and both config references', () => {
// The rename W020 -> W025 landed in health.md only; the two docs kept
// saying W020, which collides with a code src/verify.cts already emits.
// #3309: health.md's generated `<error_codes>` table now carries a real,
// UNRELATED W020 row of its own (`Worktree health scan degraded` —
// git-worktree-list-inventory failure, #3384/#3652 territory), whose
// description legitimately contains the bare word "worktree" right next
// to "W020". A bare `worktree` probe can no longer tell that apart from
// the stale isolation-check naming this guard exists for, so it narrows
// to the literal config key (`use_worktrees`) the isolation warning is
// actually about — the real W020 row's text never mentions that key.
for (const rel of ['gsd-core/workflows/health.md', 'docs/CONFIGURATION.md', 'gsd-core/references/planning-config.md']) {
const text = fs.readFileSync(path.join(__dirname, '..', rel), 'utf8');
assert.ok(text.includes('W025'), `${rel}: must document the worktrees warning as W025`);
assert.ok(
!/\bW020\b[^)]{0,120}use_worktrees/i.test(text),
`${rel}: stale W020 reference for the worktrees warning`,
);
}
});
// Round 4 note: an earlier revision carried a W025-vs-src/verify.cts
// namespace-collision test here that read verify.cts as raw text — the
// source-grep shape RULESET.TESTS.delete-bad-tests says to delete, not
// exempt. Deleted without a behavioral replacement: verify.cts exposes no
// enumerable W-code registry to assert against, and building one is a
// shared-module refactor outside this fix. The namespace claim lives as
// guidance in health.md's error-codes note instead of as a fake test.
test('the health.md error-codes table is not broken by the namespace note', () => {
// The note was inserted BETWEEN two rows, which terminates the GFM table
// and orphans the trailing row(s) into literal pipe-delimited text.
// #3309: the hand-written "Note: the `W0NN` warning-code namespace..."
// paragraph (and the `W025` row it sat under) is gone — `gen-health-docs.cjs`
// now GENERATES this table from `RULES`, and deliberately excludes W025
// (a workflow-layer diagnostic emitted by this file's own bash step, never
// by `cmdValidateHealth`/`RULES` — see the generator's module header and its
// `FOOTNOTE_PARAGRAPH`, which still names W025 for cross-reference). The
// table's actual last row is now I010, not I001, and the footnote's own
// opening sentence replaces the old namespace note. The hazard this test
// guards — a footnote landing mid-table — still applies to the new content.
const src = readWorkflow('health.md');
const i001 = src.indexOf('| I001 |');
const i010 = src.indexOf('| I010 |');
const note = src.indexOf('Note: this table is **generated**');
assert.ok(i001 > -1 && i010 > -1 && note > -1, 'health.md: expected I001, I010 and the generated-table note');
assert.ok(i010 > i001, 'health.md: I010 row must follow the I001 row');
assert.ok(
note > i010,
'health.md: the generated-table note must come AFTER the final table row — placing it between rows ends the table and orphans trailing rows',
);
});
});
}
// ────────────────────────────────────────────────────────────────────────
// Folded from tests/bug-2876-skill-frontmatter-quote.test.cjs — consolidation epic #1969 (B8 #1977)
// ────────────────────────────────────────────────────────────────────────
{
const { describe: __foldDescribe } = require('node:test');
__foldDescribe("folded:bug-2876-skill-frontmatter-quote (consolidation epic #1969 B8 #1977)", () => {
/**
* Bug #2876: SKILL.md frontmatter parse failure when `description` begins
* with a YAML flow indicator like `[BETA]`.
*
* description: [BETA] Offload plan phase to Claude Code's ultraplan…
*
* YAML 1.2 treats a leading `[` as the start of a flow sequence, so any
* downstream parser (gh-copilot, JetBrains' kit, etc.) fails with
* "Unexpected scalar at node end". The Copilot/Antigravity/Trae/Codebuddy
* skill+agent converters in `bin/install.js` re-emit the description
* unquoted; the Claude variant `yamlQuote(...)`s it. Bring the others
* in line so any value is round-trip-safe regardless of leading char.
*
* The test is structural: it parses each emitted frontmatter into lines
* and asserts the `description` value is a quoted YAML scalar (double or
* single quoted) when the source description starts with a flow indicator.
* It does not regex the bytes for substrings.
*/
'use strict';
process.env.GSD_TEST_MODE = '1';
const { describe, test } = require('node:test');
const assert = require('node:assert/strict');
const path = require('node:path');
const fs = require('node:fs');
const REPO_ROOT = path.join(__dirname, '..');
const pkg = JSON.parse(fs.readFileSync(path.join(REPO_ROOT, 'package.json'), 'utf-8'));
const installPath = path.resolve(REPO_ROOT, pkg.bin['gsd-core']);
const install = require(installPath);
// Build a minimal Claude command source whose description starts with the
// reporter's exact flow-indicator prefix. Apostrophe in the body forces
// any naive single-quoting to also escape correctly — the canonical
// safe form is `JSON.stringify(...)` (used by yamlQuote).
const REPORTER_DESCRIPTION =
"[BETA] Offload plan phase to Claude Code's ultraplan cloud — drafts remotely while terminal stays free, review in browser with inline comments, import back via /gsd-import. Claude Code only.";
// Use unquoted description in the source frontmatter — that's exactly the
// shape that ships in commands/gsd/*.md when authors paste a description
// without quoting it (see commands/gsd/ultraplan-phase.md). The bug is
// triggered when the converter re-emits this same value to the destination
// runtime without quoting. `extractFrontmatterField` strips a single outer
// quote pair but does not unescape internal characters, so quoting the
// fixture input would actually mask the bug.
function buildClaudeCommand(description) {
return [
'---',
'name: gsd:ultraplan-phase',
`description: ${description}`,
'argument-hint: "[phase-number]"',
'allowed-tools:',
' - Read',
' - Bash',
'---',
'',
'# body',
'',
].join('\n');
}
function buildClaudeAgent(description) {
return [
'---',
'name: gsd-extract-learnings',
`description: ${description}`,
'tools: Read, Bash',
'---',
'',
'# body',
'',
].join('\n');
}
function extractFrontmatter(content) {
// Leading delimiter is `---\n`; closing is the next standalone `---`
// on its own line. Tests parse line-structurally so the assertion
// doesn't drift on whitespace/order changes (per project test-rigor).
assert.ok(content.startsWith('---'), `output must begin with frontmatter, got: ${content.slice(0, 40)}`);
const lines = content.split('\n');
let openIdx = -1;
let closeIdx = -1;
for (let i = 0; i < lines.length; i += 1) {
if (lines[i] === '---') {
if (openIdx === -1) openIdx = i;
else { closeIdx = i; break; }
}
}
assert.ok(openIdx !== -1 && closeIdx !== -1, `output must have a closed frontmatter block, got:\n${content}`);
return lines.slice(openIdx + 1, closeIdx);
}
function findDescriptionLine(frontmatterLines) {
for (const line of frontmatterLines) {
if (line.startsWith('description:')) return line;
}
assert.fail(`no description line found in frontmatter:\n${frontmatterLines.join('\n')}`);
return ''; // unreachable
}
function isQuotedYamlScalar(valueText) {
// YAML safe-quoted scalar: starts with `"` and ends with `"`, OR
// starts with `'` and ends with `'`. This is what `yamlQuote()`
// (JSON.stringify) and the Claude variant of these converters emit.
const trimmed = valueText.trim();
if (trimmed.startsWith('"') && trimmed.endsWith('"')) return true;
if (trimmed.startsWith("'") && trimmed.endsWith("'")) return true;
return false;
}
function parseQuotedYamlValue(valueText) {
const trimmed = valueText.trim();
if (trimmed.startsWith('"')) return JSON.parse(trimmed);
if (trimmed.startsWith("'")) return trimmed.slice(1, -1).replace(/''/g, "'");
return trimmed;
}
function assertDescriptionRoundTrips(emitted, expected, label) {
const fmLines = extractFrontmatter(emitted);
const descLine = findDescriptionLine(fmLines);
const valueText = descLine.slice('description:'.length);
assert.ok(
isQuotedYamlScalar(valueText),
`(${label}) description must be a quoted YAML scalar (parser-safe for leading flow indicators). Got line: ${descLine}`,
);
assert.strictEqual(
parseQuotedYamlValue(valueText),
expected,
`(${label}) description must round-trip through YAML quoting unchanged.`,
);
}
const COMMAND_CONVERTERS = [
{ label: 'convertClaudeCommandToCopilotSkill', fn: (src) => install.convertClaudeCommandToCopilotSkill(src, 'gsd-ultraplan-phase') },
{ label: 'convertClaudeCommandToAntigravitySkill', fn: (src) => install.convertClaudeCommandToAntigravitySkill(src, 'gsd-ultraplan-phase') },
{ label: 'convertClaudeCommandToTraeSkill', fn: (src) => install.convertClaudeCommandToTraeSkill(src, 'gsd-ultraplan-phase') },
{ label: 'convertClaudeCommandToCodebuddySkill', fn: (src) => install.convertClaudeCommandToCodebuddySkill(src, 'gsd-ultraplan-phase') },
];
const AGENT_CONVERTERS = [
{ label: 'convertClaudeAgentToCopilotAgent', fn: (src) => install.convertClaudeAgentToCopilotAgent(src) },
{ label: 'convertClaudeAgentToAntigravityAgent', fn: (src) => install.convertClaudeAgentToAntigravityAgent(src) },
];
// A grab-bag of leading characters that all break unquoted YAML scalar
// parsing per YAML 1.2 §7.3.3 / §6.9. The reporter's case is `[`; the
// rest defend against neighbouring drift.
const FLOW_HOSTILE_PREFIXES = ['[', '{', '*', '&', '!', '|', '>', '%', '@', '`'];
// Some converters (Trae, CodeBuddy) deliberately rewrite "Claude Code"
// in body content to their target runtime name, and the rewrite cuts
// across the description too. That's correct behavior — out of scope for
// the YAML-quoting fix — so for the reporter case we assert only the
// quoting requirement, not byte-equality of the round-tripped value.
function assertDescriptionIsQuoted(emitted, label) {
const fmLines = extractFrontmatter(emitted);
const descLine = findDescriptionLine(fmLines);
const valueText = descLine.slice('description:'.length);
assert.ok(
isQuotedYamlScalar(valueText),
`(${label}) description must be a quoted YAML scalar (parser-safe for leading flow indicators). Got line: ${descLine}`,
);
}
describe('bug-2876: skill+agent converters emit YAML-quoted description', () => {
for (const { label, fn } of COMMAND_CONVERTERS) {
test(`${label}: reporter's "[BETA] ..." description is quoted`, () => {
const out = fn(buildClaudeCommand(REPORTER_DESCRIPTION));
assertDescriptionIsQuoted(out, label);
});
for (const prefix of FLOW_HOSTILE_PREFIXES) {
test(`${label}: leading ${JSON.stringify(prefix)} is quoted`, () => {
// Avoid leading/trailing `'` or `"` in the payload — `extractFrontmatterField`
// strips a single outer quote char of either kind regardless of whether
// the value was actually quoted, which would obscure the round-trip
// assertion. Pre-existing behavior, out of scope for #2876.
const desc = `${prefix} edge-case payload — flow indicator at start`;
const out = fn(buildClaudeCommand(desc));
assertDescriptionRoundTrips(out, desc, `${label} prefix=${prefix}`);
});
}
}
for (const { label, fn } of AGENT_CONVERTERS) {
test(`${label}: reporter-shape "[BETA] ..." description is quoted`, () => {
const out = fn(buildClaudeAgent(REPORTER_DESCRIPTION));
assertDescriptionIsQuoted(out, label);
});
}
});
});
}