Files
msd-core/docs/CLI-TOOLS.md
Tom Boucher 342590c70e refactor(#3184): milestone windowing has one owner and a decidable failure signal (#3209)
* test(#3184): failing-first milestone-window single-owner suite

Covers the 50 input classes in the phase test matrix: scope classification
(genuinely-empty vs truncated vs unscoped vs unreadable), the section-end
owner's level boundaries, consumer-output identity per ADR-3180 Decision 4(c),
the milestone.complete refusal with negative proof that no directory moved,
the version-token boundary defect, drift-guard behavior, and three fast-check
properties over document-shaped generators.

Committed alone so the remote runner records the failure before the fix lands.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_015kfkRFNUESoBspUYcAQaT3

* refactor(#3184): milestone windowing routes through one owner

Three copies of the milestone section-end walk lived in roadmap-parser.cts —
two distinct computeSectionEnd function nodes plus an inline third in
getMilestonePhaseFilter's versionOverride branch. computeMilestoneSectionEnd is
now the sole owner and the other two are deleted, not kept in sync by comment.

The whole-repo drift guard found what the epic did not: state.cts held three
more re-derivations of the same vocabulary — two byte-identical milestone
bounding checks carrying a defect neither reported copy has (no boundary after
the version token, so v2.0 matched inside v2.0.1), and a milestone-sectioning
predicate. All three route through the owner now.

A composition-level duplicate appeared inside this change's own first pass:
getMilestonePhaseFilter and cmdMilestoneComplete each re-assembled a window out
of the owner's primitives, and had already diverged on whether to skip a closed
milestone heading. sliceMilestoneWindow is the one composition.

Windows now carry the ADR-3180 SCOPE discriminator, so a truncated window is
distinguishable from a genuinely empty milestone — those were output-identical,
which is the whole failure class. roadmap analyze emits it (#3165), and
milestone complete refuses to archive on anything but COMPLETE rather than
pass-all moving every phase directory on disk (#3166). The pass-all degrade is
preserved where its premise holds: making the filter deny-all would trade a
silent over-inclusive answer for a silent under-inclusive one on the read paths
that count with it.

extractCurrentMilestone keeps its signature — 200+ affected symbols across 41
files and 25 process flows — and is a one-line wrapper over the scoped owner.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_015kfkRFNUESoBspUYcAQaT3

* fix(#3184): fence-aware phase detection and one heading-selection owner

Review fixes from the two orthogonal passes.

The blocker: hasPhaseEntries matched ATX phase headings fence-aware via
tokenizeHeadings but tested the #2199 bullet form against un-stripped markdown,
so a fenced EXAMPLE of the bullet syntax counted as a real phase. A genuinely
empty milestone then classified TRUNCATED and milestone complete refused a
legitimate archive — a false positive in the destructive direction, worse than
the defect this phase set out to fix. Both that path and getMilestonePhaseFilter
own pre-existing bullet scan now run on stripFencedCode, since leaving one meant
the owner file gave two different answers to the same question.

The selection rule — locate, prefer the non-closed heading, else the first — had
been written three more times inside the file whose thesis is single ownership.
selectMilestoneHeading owns it; all three sites route through it. The copies were
behaviorally identical, so this is de-duplication with no observable change,
verified by probing that all three paths select the same heading.

roadmap analyze emitting a scope no consumer read left #3165's actual symptom
alive, so Route 0 in next.md now treats a non-complete scope as scan-failed
rather than as a clean empty scan, and the ADR amendment no longer overstates
what shipped.

Also: the scope refusal moved above the archive-directory create, so a refusal
leaves nothing on disk; the versionOverride comment names all four consumers;
COMMANDS.md documents the new guard beside its sibling.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_015kfkRFNUESoBspUYcAQaT3

* test(#2658): exclude the changelog from the malformed-path scan

The gate walks every emitted .md/.js/.cjs file in an installed tree and asserts
none contains `.claude/.trae/rules` or `.trae/.trae/rules`. CHANGELOG.md ships
into that tree, and its #2658 entry quotes both malformed paths while describing
the fix that removed them — so the release note documenting the fix trips the
fix's own regression test. Red on next before this branch.

The installer is correct: a probe over a real --trae --local install found 621
emitted files, exactly one hit, and it was gsd-core/CHANGELOG.md. The scan scope
was the defect, not the product.

Excluded by exact relative path rather than by loosening the patterns or skipping
all markdown — the emitted agent and command markdown is precisely what #2658 was
about, so the gate stays strong everywhere it matters.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_015kfkRFNUESoBspUYcAQaT3

* test(#3184): regenerate install-tree fixtures for the shared drift scanner

scripts/lib/ ships in the npm package and installer, so extracting the shared
tree-walk into scripts/lib/drift-scan.cjs adds one path to every runtime's
install tree. Regenerated via npm run gen:install-tree; the delta is exactly
that one path per fixture.

The two drift guards themselves do not ship (scripts/lint-*.cjs is excluded),
so only the extracted library moves. This matches the existing
scripts/lib/allowlist-ratchet.cjs precedent, which is likewise a lint-only
helper carried in the shipped tree.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_015kfkRFNUESoBspUYcAQaT3

* fix(#3184): restore the #730 sub-milestone boundary and narrow the refusal

The remote runner caught two regressions this branch introduced. Both were mine,
and neither review pass found them — only running the existing suite did.

The version-token boundary. I replaced locateMilestoneHeadings' \b with
(?![\w.-]), reasoning that v2.0 matching inside v2.0.1 was the same defect #2562
fixed in isMilestoneShippedInRoadmap. It is not the same question. A milestone
state of v8.0 legitimately selects the '## v8.0-B' sub-milestone section over a
closed v8.0-A sibling (#730), and \b is what allows it while the stricter
boundary forbids it — nine tests in roadmap-phase-fallback said so. Reverted to
\b; the state.cts consolidation is now a straight merge with no behavior change,
and the v2.0/v2.0.1 ambiguity is left exactly as it was. The ADR amendment and
the design doc no longer claim otherwise.

The refusal scope. I refused whenever the window was not COMPLETE, but #3166 is
about the TRUNCATED window specifically — the heading is found and the section
closes before the phase region, so pass-all archives everything. UNREADABLE and
UNSCOPED are pre-existing, legitimately handled states, and refusing on them
broke 'handles missing ROADMAP.md gracefully' and three archive tests. Narrowed
to TRUNCATED; docs corrected to match.

One of the new tests was also wrong: its fixture gave the shipped and current
milestones' phases the same numeric id, and the filter matches on that id, so it
could not have distinguished the two windows. Fixture corrected to exercise what
it claims to.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_015kfkRFNUESoBspUYcAQaT3

* fix(#3184): enumerate drift-scan.cjs for uninstall

The installer copies scripts/lib/ wholesale, but uninstall removes an explicit
set — deliberately, so a user's own helpers in that directory survive. The
extracted drift-scan.cjs was copied in and never enumerated, so it outlived
uninstall, left the directory non-empty, and the rmdir that follows failed.

Added to GSD_SCRIPTS_LIB_FILES, following allowlist-ratchet.cjs, which is
likewise a lint-only helper that ships there and is enumerated. Verified with a
real install-then-uninstall into a temp target: scripts/lib/ held exactly the
three GSD files and was gone afterwards.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_015kfkRFNUESoBspUYcAQaT3

* test(#3184): assert install and uninstall agree on scripts/lib and scripts/changeset

Found while shipping this phase, and fixed here rather than noted.

install() copies scripts/lib/ and scripts/changeset/ into the target WHOLESALE —
the comment at the copy site literally says "and any future lib helpers".
uninstall() removes them by hardcoded enumeration, deliberately, so a user's own
helpers in those directories survive. A wholesale writer paired with an
enumerated remover cannot stay in sync by construction: any file added to either
directory ships to every user and is then orphaned in their repo forever, since
it survives uninstall, leaves the directory non-empty, and the rmdir that follows
fails. Nothing reported this. 31,225 tests were green over it.

That is the same divergence class this epic exists to delete, sitting in the
installer, so it gets the same remedy CLAUDE.md prescribes for it: a parity
assertion that fails the moment the two surfaces disagree. The test compares each
directory's real contents against its enumeration and names the offending file
plus the constant to add it to.

Both enumerations are hoisted to module scope and exported, so the test asserts
on the actual arrays rather than pattern-matching the installer's source — no
allow-test-rule annotation needed. Proven non-vacuous both ways: empty diff on
the current tree, correct report when an unenumerated file is injected.

scripts/changeset/ turned out to carry the identical defect and is covered too.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_015kfkRFNUESoBspUYcAQaT3

* chore(#3184): backfill changeset PR number

Also narrows the wording to match the shipped behavior: the refusal fires on a
truncated window specifically, not on any non-complete scope.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_015kfkRFNUESoBspUYcAQaT3

---------

Co-authored-by: sim <sim@local>
Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com>
2026-08-08 09:50:35 -04:00

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# GSD CLI Tools Reference
> Reference for the `gsd-tools` CLI (`gsd-core/bin/gsd-tools.cjs`). For slash commands and user flows, see [Command Reference](COMMANDS.md). Return to [docs index](README.md).
---
## Overview
`gsd-tools.cjs` centralizes config parsing, model resolution, phase lookup, git commits, summary verification, state management, and template operations across GSD commands, workflows, and agents.
| | |
| ------------------ | ------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------ |
| **Shipped path** | `gsd-core/bin/gsd-tools.cjs` |
| **Implementation** | 20 domain modules under `gsd-core/bin/lib/` (the directory is authoritative) |
| **Status** | Primary runtime command surface for orchestration, workflows, and automation. |
**Usage (CJS):**
```bash
node gsd-tools.cjs <command> [args] [--raw] [--cwd <path>]
```
**Global flags (CJS):**
| Flag | Description |
| -------------- | ---------------------------------------------------------------------------- |
| `--raw` | Machine-readable output (JSON or plain text, no formatting) |
| `--cwd <path>` | Override working directory (for sandboxed subagents) |
| `--ws <name>` | Workstream context for `.planning/workstreams/<name>` paths |
---
## State Commands
Manage `.planning/STATE.md` — the project's living memory.
```bash
# Load full project config + state as JSON
node gsd-tools.cjs state load
# Output STATE.md frontmatter as JSON
node gsd-tools.cjs state json
# Update a single field
node gsd-tools.cjs state update <field> <value>
# Get STATE.md content or a specific section
node gsd-tools.cjs state get [section]
# Batch update multiple fields
node gsd-tools.cjs state patch --field1 val1 --field2 val2
# Increment plan counter
node gsd-tools.cjs state advance-plan
# Record execution metrics
node gsd-tools.cjs state record-metric --phase N --plan M --duration Xmin [--tasks N] [--files N]
# Recalculate progress bar
node gsd-tools.cjs state update-progress
# Add a decision
node gsd-tools.cjs state add-decision --summary "..." [--phase N] [--rationale "..."]
# Or from files:
node gsd-tools.cjs state add-decision --summary-file path [--rationale-file path]
# Add/resolve blockers
node gsd-tools.cjs state add-blocker --text "..."
node gsd-tools.cjs state resolve-blocker --text "..."
# Record session continuity
node gsd-tools.cjs state record-session --stopped-at "..." [--resume-file path]
# Phase start — update STATE.md Status/Last activity for a new phase
node gsd-tools.cjs state begin-phase --phase N --name SLUG --plans COUNT
# Agent-discoverable blocker signalling (used by discuss-phase / UI flows)
node gsd-tools.cjs state signal-waiting --type TYPE --question "..." --options "A|B" --phase P
node gsd-tools.cjs state signal-resume
```
### State Snapshot
Structured parse of the full STATE.md:
```bash
node gsd-tools.cjs state-snapshot
```
Returns JSON with: current position, phase, plan, status, decisions, blockers, metrics, last activity.
### Smart Entry
Read-only situation classifier used by `/gsd-next`.
```bash
node gsd-tools.cjs smart-entry # Human summary + recommended route
node gsd-tools.cjs smart-entry --json # Machine-readable result for workflows
```
The JSON result contains `situation`, `recommended`, `summary`, `signals`, and ordered `actions[]`. Detection reads `.planning/STATE.md`, `ROADMAP.md`, latest verification/summary artifacts, and git status; it does not write files or dispatch commands.
---
## Phase Commands
Manage phases — directories, numbering, and roadmap sync.
```bash
# Find phase directory by number
node gsd-tools.cjs find-phase <phase>
# Calculate next decimal phase number for insertions
node gsd-tools.cjs phase next-decimal <phase>
# Append new phase to roadmap + create directory
node gsd-tools.cjs phase add <description>
# Insert decimal phase after existing
node gsd-tools.cjs phase insert <after> <description>
# Remove phase, renumber subsequent
node gsd-tools.cjs phase remove <phase> [--force]
# Mark phase complete, update state + roadmap
# Also emits advisory `warnings[]` when a phase SUMMARY references a file that
# is not on disk — see "Phase SUMMARY artifact check" below.
node gsd-tools.cjs phase complete <phase>
# Evaluate HUMAN-UAT results for a phase (markdown-aware; ignores false-positive contexts)
# Returns JSON: { passed, uat_files[], verification_files[], checks[], blockers[], policy }
node gsd-tools.cjs phase uat-passed <phase> [--require-verification]
# Index plans with waves and status
node gsd-tools.cjs phase-plan-index <phase>
# List phases with filtering
node gsd-tools.cjs phases list [--type planned|executed|all] [--phase N] [--include-archived]
```
### Phase SUMMARY artifact check
A phase `SUMMARY.md` asserts which files the phase created or modified. On
`phase complete`, each SUMMARY in the phase is scanned for referenced file paths
and any path that is not on disk is reported in the command's existing
`warnings[]` array — the case where a summary reports work that never landed.
**Advisory only.** Findings never block completion; the completion gate is the
phase's `VERIFICATION.md` status, which this does not touch. `/gsd-execute-phase`
surfaces the warnings before advancing.
Scope and limits, so the output is not read as more than it is:
- Paths are recovered heuristically from the SUMMARY body — backticked paths and
`Created:`/`Modified:`-style lines. Globs, URLs, bare hostnames, and paths
resolving outside the project are skipped rather than reported.
- The `key-files:` frontmatter block is **not** read. Its YAML flow-sequence form
(`created: [a.ts, b.ts]`) is not matched by the prose scan, so a summary whose
only file claims live there produces no findings.
- Commit hashes in the SUMMARY are **not** resolved here. The pattern matches any
hex-shaped token in prose, which is too loose to surface.
Every path the scan does recover is checked — there is no cap. The standalone
`verify-summary` verb keeps its historical default of checking the first two.
---
## Roadmap Commands
Parse and update `ROADMAP.md`.
```bash
# Extract phase section from ROADMAP.md
node gsd-tools.cjs roadmap get-phase <phase>
# Full roadmap parse with disk status
node gsd-tools.cjs roadmap analyze
# Update progress table row from disk
node gsd-tools.cjs roadmap update-plan-progress <N>
```
### Milestone window scope (`roadmap analyze`)
`roadmap analyze` scopes its phase list to the current milestone's section of
`ROADMAP.md`. Its JSON output carries a `scope` field describing how much of the
intended input that scoping actually saw:
| `scope` | Meaning |
|---|---|
| `complete` | The window was computed over the whole intended input. `phase_count: 0` here is a **real** answer — a freshly-declared milestone genuinely has no phases yet. |
| `truncated` | The milestone's heading was found, but its window closed before reaching the document's phase region — typically because a closed-milestone heading sits between the active milestone and its `### Phase N:` sections. `phase_count: 0` here is a **non**-answer. |
| `unscoped` | No milestone version could be resolved (or its section is absent) on a ROADMAP that does use versioned milestones, so the result is not milestone-scoped. |
| `unreadable` | `ROADMAP.md` could not be read. |
Before this field existed, all four cases produced the same well-formed
`phase_count: 0` with no error, so a consumer could not tell a genuinely empty
milestone from a scoping failure. Branch on `scope`, not on `phase_count` alone.
A ROADMAP with no versioned milestone headings at all (the free-form legacy
shape) reports `complete`: the whole document *is* the milestone there.
### `milestone complete` refuses an untrustworthy window
`milestone complete` archives `ROADMAP.md`/`REQUIREMENTS.md` and **moves phase
directories** — a one-way door. When the milestone window's `scope` is
`truncated` — the milestone heading was found but its section closes before
reaching any phase entries, even though the ROADMAP has phase entries
elsewhere — phase scoping cannot be trusted, and the command now refuses
rather than falling back to an over-inclusive filter that would archive every
phase directory in the project. `unreadable` (no ROADMAP.md at all) and
`unscoped` (no section for this version) are pre-existing, legitimately
handled states and are not refused here. Pass `--force` to override, the same
affordance the unstarted-phase guard uses.
---
## Config Commands
Read and write `.planning/config.json`.
```bash
# Initialize config.json with defaults
node gsd-tools.cjs config-ensure-section
# Set a config value (dot notation)
node gsd-tools.cjs config-set <key> <value>
# Get a config value
node gsd-tools.cjs config-get <key>
# Set model profile
node gsd-tools.cjs config-set-model-profile <profile>
```
---
## Capability Commands
The capability command family resolves and mutates capability state (ADR-857). One resolved state composes three substrates: the install profile (`.gsd-profile`), the runtime surface (`.gsd-surface.json`), and config gates (`.planning/config.json` `workflow.*`). `enabled = installed && surfaced`; a hook is `active` only when its capability is enabled and its config gate is on.
### `capability state`
```bash
node gsd-tools.cjs capability state [--config-dir <path>] [--raw]
```
Resolves and prints every capability's `installed`, `surfaced`, `enabled`, and per-hook `active` state. Read-only. `--config-dir` selects the runtime config directory (defaults to the resolved Claude home). `--raw` emits JSON.
### `capability set`
```bash
node gsd-tools.cjs capability set <id> [--on | --off] [--gate <key>=<true|false>]... [--config-dir <path>] [--runtime <name>] [--scope <global|project>] [--raw]
```
Mutates one capability, re-resolves, and reports the result. Two axes:
- `--on` / `--off` (aliases `--enable` / `--disable`): the capability on/off switch, applied through the runtime surface. `--off` unsurfaces the capability; the change is reversible and reclaims the surface budget. A capability that owns no skills has no surface footprint — use `--gate` for those.
- `--gate <key>=<true|false>` (repeatable): toggles one of the capability's own config keys (a hook gate) within an enabled capability.
- `--runtime` / `--scope`: materialise the surface change for that runtime's artifact layout.
After writing, the command re-resolves and prints two message classes to stderr: errors (non-zero exit) — unknown capability id, a `--gate` key the capability does not own, a non-boolean gate value, or `--on` for a capability whose skills are not in the install profile; warnings (exit 0) — `--on`/`--off` on a skill-less capability, or a capability left surfaced while every hook is gated off ("present but dead"). Exit status is non-zero only when a requested change could not be applied.
**Examples:**
```bash
# Turn the UI capability off
node gsd-tools.cjs capability set ui --off --config-dir ~/.claude
# Keep the capability on, gate one hook off
node gsd-tools.cjs capability set code-review --gate workflow.code_review=false
```
---
## Teams Status
### `query teams-status`
```bash
node gsd-tools.cjs query teams-status [--active]
```
Read-only detector for claude-code's experimental agent-teams feature (issue #1355). Resolves the runtime via the canonical `GSD_RUNTIME` → `config.runtime` → `'claude'` precedence, then checks `CLAUDE_CODE_EXPERIMENTAL_AGENT_TEAMS`.
**Default (no flags):** prints a JSON object and exits 0:
```json
{
"active": false,
"runtime": "claude",
"env_present": false,
"source": "off: flag absent"
}
```
Fields:
| Field | Type | Description |
|---|---|---|
| `active` | boolean | `true` only when `CLAUDE_CODE_EXPERIMENTAL_AGENT_TEAMS` is strictly truthy (`"1"` or `"true"`, case-insensitive) **and** the resolved runtime is `"claude"` |
| `runtime` | string | The resolved runtime name (e.g. `"claude"`, `"codex"`) |
| `env_present` | boolean | `true` when the env flag is set to a strictly-truthy value |
| `source` | string | One of: `"on: env"`, `"off: flag absent"`, `"off: non-claude"` |
**`--active` flag:** exits 0 if `active` is true, exits 1 otherwise. Prints nothing. Useful in bash conditionals:
```bash
if gsd_run query teams-status --active >/dev/null 2>&1; then
echo "agent-teams is on"
fi
```
This command is strictly read-only — no config writes, no disk mutation.
---
### `query eval.score`
```bash
node gsd-tools.cjs query eval.score --covered <N> --total <N> --infra <tooling>,<dataset>,<cicd>,<guardrails>,<tracing>
```
Deterministic scorer for eval-auditor results. Computes coverage, infrastructure, and overall scores from audited inputs. Called by `gsd-eval-auditor` in its `calculate_scores` step — agents must not recompute these values by hand.
**Inputs:**
| Flag | Type | Description |
|---|---|---|
| `--covered` | integer | Number of eval dimensions scored COVERED |
| `--total` | integer | Total planned eval dimensions |
| `--infra` | string | Comma-separated list of 5 infra component statuses (order: tooling, dataset, cicd, guardrails, tracing); each value is `ok`, `partial`, or `missing` |
**Output JSON:**
| Field | Type | Description |
|---|---|---|
| `coverage_score` | number | `covered / total × 100` |
| `infra_score` | number | `(sum of component weights) / 5 × 100` (`ok`=1, `partial`=0.5, `missing`=0) |
| `overall_score` | number | `(coverage_score × 0.6) + (infra_score × 0.4)` |
| `verdict` | string | `PRODUCTION READY` (80–100) / `NEEDS WORK` (60–<80) / `SIGNIFICANT GAPS` (40–<60) / `NOT IMPLEMENTED` (0–<40) |
**Example:**
```bash
node gsd-tools.cjs query eval.score --covered 3 --total 5 --infra ok,partial,missing,ok,ok
# → {"coverage_score":60,"infra_score":70,"overall_score":64,"verdict":"NEEDS WORK"}
```
This command is strictly read-only — no config writes, no disk mutation.
---
### `query context-predicates`
```bash
node gsd-tools.cjs query context-predicates --class <CLASS> | --prefix <dotted.prefix> | --contains <text>
```
Selector surface for the `CONTEXT.md` predicate fact-store (ADR-1671, #2928). Parses the repo-root `CONTEXT.md` **live** on every call via the compiled `context-predicates.cjs` — it never reads the committed `docs/CONTEXT-INDEX.json` (that artifact is a CI drift-guard byproduct, not a query source, so it can never go stale relative to the live predicates it answers about).
**Selectors** (at least one required; when more than one is given they are ANDed together):
| Flag | Type | Description |
|---|---|---|
| `--class <CLASS>` | string | Exact match on the predicate's class (the segment before the first `.`) |
| `--prefix <dotted.prefix>` | string | Match predicate ids starting with this dotted prefix |
| `--contains <text>` | string | Case-insensitive substring match against `id + ' ' + value` |
Each flag also accepts the inline-assignment form (`--contains=<text>`), which is the escape
hatch for a flag-shaped value the space-separated form cannot express — e.g.
`--contains=--dry-run` to search for the literal substring `--dry-run`. The space-separated form
(`--contains --dry-run`) always reads a following `--...` token as a missing value, by design.
**Output JSON:**
```json
{
"matched": 2,
"predicates": [
{ "id": "RULESET.EXAMPLE", "klass": "RULESET", "value": "…", "line": 42, "section": "Glossary" }
]
}
```
| Field | Type | Description |
|---|---|---|
| `matched` | number | Count of predicates satisfying all given selectors |
| `predicates` | array | Each entry is a live `Predicate` — `id`, `klass`, `value`, `line` (1-based source line), `section` (nearest enclosing heading) |
This command is strictly read-only — no config writes, no disk mutation. See [ADR-1671](adr/1671-dynamic-context-management-platform.md) and [Architecture — CLI Tools](ARCHITECTURE.md#cli-tools-gsd-corebin).
---
## Model Resolution
```bash
# Get model for agent based on current profile
node gsd-tools.cjs resolve-model <agent-name>
# Raw output returns the selected model ID/tier.
# JSON output also includes profile and, when the active runtime supports it,
# reasoning_effort.
```
Agent names: `gsd-planner`, `gsd-executor`, `gsd-phase-researcher`, `gsd-project-researcher`, `gsd-research-synthesizer`, `gsd-verifier`, `gsd-plan-checker`, `gsd-integration-checker`, `gsd-roadmapper`, `gsd-debugger`, `gsd-codebase-mapper`, `gsd-nyquist-auditor`
---
## Verification Commands
Validate plans, phases, references, and commits.
```bash
# Verify SUMMARY.md file
node gsd-tools.cjs verify-summary <path> [--check-count N]
# Check PLAN.md structure + tasks
node gsd-tools.cjs verify plan-structure <file>
# Check all plans have summaries
node gsd-tools.cjs verify phase-completeness <phase>
# Check @-refs + paths resolve
node gsd-tools.cjs verify references <file>
# Batch verify commit hashes
node gsd-tools.cjs verify commits <hash1> [hash2] ...
# Check must_haves.artifacts
node gsd-tools.cjs verify artifacts <plan-file>
# Check must_haves.key_links
node gsd-tools.cjs verify key-links <plan-file>
```
---
## Validation Commands
Check project integrity.
```bash
# Check phase numbering, disk/roadmap sync
node gsd-tools.cjs validate consistency
# Check .planning/ integrity, optionally repair
node gsd-tools.cjs validate health [--repair]
# Probe context-window utilization for status-line / hook callers (v1.40.0)
node gsd-tools.cjs validate context
# Context utilization as typed JSON surface (#455)
node gsd-tools.cjs validate context --json
```
`validate context` emits a structured envelope with `utilization`, `status`
(`ok` / `warn` / `critical` at the 60 % / 70 % thresholds), and a
`suggestion` string. The same data backs `/gsd-health --context`.
Pass `--json` to receive the typed IR directly (useful in scripts and test assertions).
---
## Template Commands
Template selection and filling.
```bash
# Select summary template based on granularity
node gsd-tools.cjs template select <type>
# Fill template with variables
node gsd-tools.cjs template fill <type> --phase N [--plan M] [--name "..."] [--type execute|tdd] [--wave N] [--fields '{json}']
```
Template types for `fill`: `summary`, `plan`, `verification`
---
## Frontmatter Commands
YAML frontmatter CRUD operations on any Markdown file.
```bash
# Extract frontmatter as JSON
node gsd-tools.cjs frontmatter get <file> [--field key]
# Update single field
node gsd-tools.cjs frontmatter set <file> --field key --value jsonVal
# Merge JSON into frontmatter
node gsd-tools.cjs frontmatter merge <file> --data '{json}'
# Validate required fields
node gsd-tools.cjs frontmatter validate <file> --schema plan|summary|verification
```
---
## Scaffold Commands
Create pre-structured files and directories.
```bash
# Create CONTEXT.md template
node gsd-tools.cjs scaffold context --phase N
# Create UAT.md template
node gsd-tools.cjs scaffold uat --phase N
# Create VERIFICATION.md template
node gsd-tools.cjs scaffold verification --phase N
# Create phase directory
node gsd-tools.cjs scaffold phase-dir --phase N --name "phase name"
```
---
## Init Commands (Compound Context Loading)
Load all context needed for a specific workflow in one call. Returns JSON with project info, config, state, and workflow-specific data. `init onboard [--fast] [--text]` reports brownfield signals, planning-doc candidates, codebase-map completeness, fast-map readiness, text-mode routing, partial planning state, and onboarding summary status for `/gsd-onboard`.
```bash
node gsd-tools.cjs init execute-phase <phase>
node gsd-tools.cjs init plan-phase <phase>
node gsd-tools.cjs init new-project
node gsd-tools.cjs init new-milestone
node gsd-tools.cjs init onboard [--fast] [--text]
node gsd-tools.cjs init quick <description>
node gsd-tools.cjs init resume
node gsd-tools.cjs init verify-work <phase>
node gsd-tools.cjs init phase-op <phase>
node gsd-tools.cjs init code-review <phase> [--fix]
node gsd-tools.cjs init review <phase>
node gsd-tools.cjs init discuss-phase-assumptions <phase> [--auto]
node gsd-tools.cjs init todos [area]
node gsd-tools.cjs init milestone-op
node gsd-tools.cjs init map-codebase
node gsd-tools.cjs init progress
node gsd-tools.cjs init manager
node gsd-tools.cjs init complete-milestone
node gsd-tools.cjs init autonomous [--converge] [--cross-ai]
node gsd-tools.cjs init docs-update
node gsd-tools.cjs init update [--next] [--rc]
node gsd-tools.cjs init transition
# Workstream-scoped init (`--ws` flag)
node gsd-tools.cjs init execute-phase <phase> --ws <name>
node gsd-tools.cjs init plan-phase <phase> --ws <name>
```
**Large payload handling:** When output exceeds ~50KB, the CLI writes to a temp file and returns `@file:/tmp/gsd-init-XXXXX.json`. Workflows check for the `@file:` prefix and read from disk:
```bash
INIT=$(node gsd-tools.cjs init execute-phase "1")
if [[ "$INIT" == @file:* ]]; then INIT=$(cat "${INIT#@file:}"); fi
```
---
## Milestone Commands
```bash
# Archive milestone
node gsd-tools.cjs milestone complete <version> [--name <name>] [--no-archive-phases] [--force] [--dry-run]
# Mark requirements as complete
node gsd-tools.cjs requirements mark-complete <ids>
# Accepts: REQ-01,REQ-02 or REQ-01 REQ-02 or [REQ-01, REQ-02]
```
**`milestone complete` flags**
| Flag | Description |
|------|-------------|
| `<version>` | Milestone version label to archive (e.g. `v1.0`). |
| `--name <name>` | Display name for the MILESTONES.md entry. Defaults to `<version>`. |
| `--no-archive-phases` | Leave phase directories in place instead of moving them into `.planning/milestones/<version>-phases/`. |
| `--force` | Override the unstarted-phase guard (see below). |
| `--dry-run` | Print the archive plan (roadmap, requirements, phases to move) without mutating anything. |
**Unstarted-phase guard.** Before archiving, the command scans the ROADMAP scoped for `<version>` and refuses if any `### Phase N:` heading in that slice has no matching phase directory on disk (`disk_status: no_directory`). Phase 0 (pre-milestone) and Phase 999 (backlog) sentinels are excluded. The guard runs whenever `--force` is absent, independent of `STATE.md`'s `milestone:` field — if that field is present but does not match `<version>`, a WARNING naming both values is emitted to stderr and the scan still runs (#2946). Pass `--force` to override.
---
## Agent Skills
Emit the skill block for a given agent type.
```bash
# Emit raw XML skill block (default — safe for shell expansion)
node gsd-tools.cjs agent-skills <agent-type>
# Emit typed JSON surface (#455) — { agent_type, block, skills_count, warnings, configured, reason, source, degraded }
node gsd-tools.cjs agent-skills <agent-type> --json
```
The `--json` flag returns a typed IR object suitable for structured consumption and test assertions, while the default (no flag) preserves the raw XML output that workflow shell expansions rely on.
**`--json` field reference** (as of #1415, Resolution Provenance P2):
| Field | Type | Description |
|---|---|---|
| `agent_type` | `string` | The agent type that was queried. |
| `block` | `string` | The `<agent_skills>` XML block, or `""` when empty. |
| `skills_count` | `number` | Number of skill paths configured for this agent type. |
| `warnings` | `string[]` | Per-path warnings for skills that were skipped (missing `SKILL.md`, unsafe path, etc.). Empty when all configured paths resolved. |
| `configured` | `boolean` | `true` when the agent type appears in `agent_skills` in the config; `false` when the key is absent entirely. |
| `reason` | `string` | Resolution reason: `"resolved"` (block non-empty), `"not_configured"` (agent not in `agent_skills` — silent), `"configured_empty"` (configured but paths list is empty — emits stderr WARNING), `"configured_unresolved"` (configured with paths but all failed to resolve — emits stderr WARNING). |
| `source` | `string` | Config provenance: `"root"` (`.planning/config.json`), `"workstream"` (workstream-scoped config), `"global-defaults"` (`~/.gsd/defaults.json`), `"builtin-defaults"` (no project config). |
| `degraded` | `boolean` | `true` when a workstream was requested but its config.json was absent and the command fell back to root config; `false` otherwise. |
The command anchors to the project root via `findProjectRoot` before loading config, so invoking it from a descendant subdirectory resolves the same config as the project root.
---
## Skill Manifest
Pre-compute and cache skill discovery for faster command loading.
```bash
# Generate skill manifest (writes to .claude/skill-manifest.json)
node gsd-tools.cjs skill-manifest
# Generate with custom output path
node gsd-tools.cjs skill-manifest --output <path>
```
Returns JSON mapping of all available GSD skills with their metadata (name, description, file path, argument hints). Used by the installer and session-start hooks to avoid repeated filesystem scans.
---
## Utility Commands
```bash
# Convert text to URL-safe slug
node gsd-tools.cjs generate-slug "Some Text Here"
# → some-text-here
# Get timestamp
node gsd-tools.cjs current-timestamp [full|date|filename]
# Count and list pending todos
node gsd-tools.cjs list-todos [area]
# List captured seeds (optionally filter by status: dormant|active|triggered)
node gsd-tools.cjs list-seeds [status]
# Check file/directory existence
node gsd-tools.cjs verify-path-exists <path>
# Append a row to STATE.md's "Quick Tasks Completed" table (schema-backed; #2133)
node gsd-tools.cjs quick-tasks-append --task "<description>"
# Aggregate all SUMMARY.md data
node gsd-tools.cjs history-digest
# Extract structured data from SUMMARY.md
node gsd-tools.cjs summary-extract <path> [--fields field1,field2]
# Project statistics
node gsd-tools.cjs stats [json|table]
# Progress rendering (human-readable)
node gsd-tools.cjs progress [json|table|bar]
# Progress as typed JSON surface (#455)
node gsd-tools.cjs progress --json
# Complete a todo
node gsd-tools.cjs todo complete <filename>
# UAT audit — scan all phases for unresolved items
node gsd-tools.cjs audit-uat
# Cross-artifact audit queue — scan `.planning/` for unresolved audit items
node gsd-tools.cjs audit-open [--json]
# Reverse-migrate a GSD-2 project into the current structure (backs `/gsd-import --from-gsd2`)
node gsd-tools.cjs from-gsd2 [--path <dir>] [--force] [--dry-run]
# Git commit with config checks
node gsd-tools.cjs commit <message> [--files f1 f2] [--amend] [--no-verify] [--respect-staged]
```
> `--no-verify`: Skips pre-commit hooks. Used by parallel executor agents during wave-based execution to avoid build lock contention (e.g., cargo lock fights in Rust projects). The orchestrator runs hooks once after each wave completes. Do not use `--no-verify` during sequential execution — let hooks run normally.
> `--files <paths>` **staging behaviour**: by default, `--files` runs `git add -- <path>` for each named file before committing. This overwrites any per-hunk staging set up via `git add -p`. Pass `--respect-staged` to skip the `git add` step and commit only what is already in the index within the requested pathspec. If nothing is staged within that scope, the command returns `{ committed: false, reason: 'nothing staged' }` without error. The trailing `-- <paths>` pathspec on the commit is applied under both modes, so files staged outside the `--files` scope are never included (#3061 invariant).
```bash
# Web search (requires Brave API key)
node gsd-tools.cjs websearch <query> [--limit N] [--freshness day|week|month]
```
---
## Update Backup and Restore
The two halves of `/gsd-update`'s user-added-file protection. `detect-custom-files`
lists files that exist inside GSD-managed directories but are absent from
`gsd-file-manifest.json` — the update workflow copies those into
`gsd-user-files-backup/` before the clean-install wipe. `restore-custom-files`
puts them back afterwards.
```bash
# List user-added files the installer would destroy (JSON)
node gsd-tools.cjs detect-custom-files --config-dir <config-dir>
# Plan a restore — reports what would be restored, writes nothing
node gsd-tools.cjs restore-custom-files --config-dir <config-dir>
# Restore the eligible entries
node gsd-tools.cjs restore-custom-files --config-dir <config-dir> --apply
```
`restore-custom-files` emits one entry per backed-up file:
| Field | Meaning |
|---|---|
| `path` | Path relative to the config dir — where the file came from and goes back to |
| `outcome` | `eligible` (plan mode) · `restored` · `skipped_destination_managed` · `skipped_destination_exists` · `skipped_copy_failed` · `skipped_unsafe_path` |
| `warnings` | Advisory `{code, detail}` findings from the compatibility pass; never blocks a restore |
Warning codes: `destination_managed`, `destination_exists`,
`missing_referenced_path`, `missing_referenced_command`,
`frontmatter_missing_field`, `write_failed`.
The compatibility pass runs against the **newly installed** release, so it
catches a backed-up skill that `@`-references a workflow the new version
retired, invokes a `/gsd:` command that no longer exists, or is missing the
`name` / `description` frontmatter its runtime needs.
Three things the restore never does: it never deletes the backup, it never
overwrites a path the new release ships (`skipped_destination_managed`), and it
never overwrites a different file already on disk
(`skipped_destination_exists`). Symlinked backup entries are skipped outright
rather than followed (`skipped_unsafe_path`). A single unwritable entry is
reported and the remaining entries still restore.
---
## Worktree Commands
Diagnose and configure the worktree fork base used by Claude Code's `isolation="worktree"` executor dispatch. These commands address the branch-divergence condition described in [Fix the worktree base-mismatch (exit 42) error](how-to/fix-worktree-base-mismatch.md).
```bash
# Check whether the current HEAD has diverged from the worktree fork base.
# Returns JSON: { shouldDegrade, reason, message, headSha, forkRef, forkSha }
node gsd-tools.cjs worktree base-check
# Write worktree.baseRef:"head" into .claude/settings.local.json (no-clobber).
# Returns JSON: { changed, skipped, previous, baseRef, file }
node gsd-tools.cjs worktree set-baseref
```
**`worktree base-check`** reads `worktree.baseRef` from a three-layer cascade — `.claude/settings.local.json`, then `.claude/settings.json`, then the user/global `settings.json` under `CLAUDE_CONFIG_DIR` (or `~/.claude`) — and compares the current `HEAD` SHA against `origin/HEAD`. Project-level settings take precedence over the user/global layer, so a machine-wide `worktree.baseRef:"head"` set via `/config` is honored when no project override exists. The `shouldDegrade` field is `true` when the execute-phase orchestrator will fall back to sequential execution. Possible `reason` values:
| `reason` | `shouldDegrade` | Meaning |
|---|---|---|
| `baseref-head` | `false` | `worktree.baseRef:"head"` is set; no mismatch possible |
| `head-matches-fork` | `false` | HEAD and `origin/HEAD` are the same commit |
| `head-diverged-from-fork` | `true` | Branch is ahead of or diverged from `origin/HEAD` |
| `fork-ref-unknown` | `true` | `origin/HEAD` could not be resolved |
| `no-head` | `false` | Not in a git repo (no `HEAD`) — `git rev-parse HEAD` exited 128 (definitive), or exited 0 with empty stdout |
| `head-unresolvable` | `true` | `git rev-parse HEAD` did not return a definitive answer (timed out, `git` missing, or any other non-128 failure) — fails closed rather than being treated as `no-head` |
**`worktree set-baseref`** applies a no-clobber write of `worktree.baseRef:"head"` to `.claude/settings.local.json`. If the file already contains an explicit `baseRef` value other than `"head"`, the existing value is preserved and `skipped:"explicit-other"` is returned. Malformed JSON causes an error rather than a silent overwrite. Both fresh installs and upgrades of GSD Core run this automatically when `workflow.use_worktrees` is enabled (the default); the command is also available for manual use — for example, to apply the setting when worktrees were toggled on after installation, or to re-apply it after a settings change.
### Worktree creation
```bash
# Create an agent worktree and atomically record it in the wave cleanup manifest.
# Returns JSON: { ok, reason, entry, manifest_path } (exit 0), or
# { ok:false, reason, hint } with a non-zero exit on a rejected/failed create.
node gsd-tools.cjs worktree create \
--manifest <path> --agent-id <id> --path <worktree> --branch <branch> --base <sha> --root <dir>
```
**`worktree create`** validates and records the manifest entry BEFORE running any git command, then runs `git worktree add` for the validated `{path, branch, base}`, and only on success finalizes the manifest write — a rejected entry or a failed `git worktree add` never leaves a partially-recorded manifest or an unmanifested worktree on disk. `--root` is **mandatory** (#3050): the fail-closed root-confinement check resolves `--path` and `--root` and rejects (`reason:"path_outside_root"`) unless `--path` resolves strictly inside `--root` — this closes a prior gap where an unconfined `--path` (no `--root` check at all) could point a spawned executor's worktree anywhere on the filesystem. Omitting `--root` fails closed with `reason:"root_required"` rather than silently skipping confinement. All other flags share `worktree record-agent`'s validation rules above (`--branch` namespace, non-empty/non-whitespace `--path`/`--branch`/`--base`, `--agent-id` required).
### Wave-manifest recording
The execute-phase orchestrator records each spawned executor's worktree identity into a wave cleanup manifest so the matching `cleanup-wave` reader can later merge and remove exactly those worktrees.
```bash
# Append a validated per-agent entry to the wave cleanup manifest.
# Returns JSON: { ok, reason, entry, manifest_path } (exit 0), or
# { ok:false, reason, hint } with a non-zero exit on a rejected entry.
node gsd-tools.cjs worktree record-agent \
--manifest <path> --agent-id <id> --path <worktree> --branch <branch> --base <sha>
```
**`worktree record-agent`** appends one `{agent_id, worktree_path, branch, expected_base}` entry to an already-initialized manifest, validating every field **at write time using the same rules the `cleanup-wave` reader enforces** — `--branch` must match the disposable `^(worktree-)?agent-[A-Za-z0-9._/-]+$` namespace (accepts both `agent-<id>` and legacy `worktree-agent-<id>`), and `--path`/`--branch`/`--base` must be non-empty. `--agent-id` is required (write-strict), even though the reader treats it as optional. A missing or garbled field — or a duplicate `(worktree_path, branch)` the reader would dedup away — fails loudly with a recovery hint and a non-zero exit **without** writing, instead of appending an under-populated or silently-dropped entry. Whitespace-only `--path`/`--base` are rejected (values are trimmed). The on-disk manifest shape is unchanged (the reader re-derives `allowed_bases`); the orchestrator still initializes the empty `{orchestrator_root, worktrees: []}` shell inline before any agent is recorded.
---
## Graphify
Build, query, and inspect the project knowledge graph in `.planning/graphs/`. Requires `graphify.enabled: true` in `config.json` (see [Configuration Reference](CONFIGURATION.md#graphify-settings)).
```bash
# Build or rebuild the knowledge graph
node gsd-tools.cjs graphify build
# Search the graph for a term
node gsd-tools.cjs graphify query <term>
# Show graph freshness and statistics
node gsd-tools.cjs graphify status
# Show changes since the last build
node gsd-tools.cjs graphify diff
# Write a named snapshot of the current graph
node gsd-tools.cjs graphify snapshot [name]
```
User-facing entry point: `/gsd-graphify` (see [Command Reference](COMMANDS.md#gsd-graphify)).
---
## Module Architecture
| Module | File | Exports |
|--------|------|---------|
| Core | `lib/core.cjs` | `error()`, `output()`, `parseArgs()`, shared utilities, compatibility re-exports |
| State | `lib/state.cjs` | All `state` subcommands, `state-snapshot` |
| Phase | `lib/phase.cjs` | Phase CRUD, `find-phase`, `phase-plan-index`, `phases list` |
| Planning Workspace | `lib/planning-workspace.cjs` | Planning seam: `planningDir`, `planningPaths`, active workstream routing, `.planning/.lock` |
| Roadmap | `lib/roadmap.cjs` | Roadmap parsing, phase extraction, progress updates |
| Config | `lib/config.cjs` | Config read/write, section initialization |
| Verify | `lib/verify.cjs` | All verification and validation commands |
| Template | `lib/template.cjs` | Template selection and variable filling |
| Frontmatter | `lib/frontmatter.cjs` | YAML frontmatter CRUD |
| Init | `lib/init.cjs` | Compound context loading for all workflows |
| Milestone | `lib/milestone.cjs` | Milestone archival, requirements marking |
| Commands | `lib/commands.cjs` | Misc: slug, timestamp, todos, scaffold, stats, websearch |
| Model Profiles | `lib/model-profiles.cjs` | Profile resolution table |
| UAT | `lib/uat.cjs` | Cross-phase UAT/verification audit |
| Profile Output | `lib/profile-output.cjs` | Developer profile formatting |
| Profile Pipeline | `lib/profile-pipeline.cjs` | Session analysis pipeline |
| Graphify | `lib/graphify.cjs` | Knowledge graph build/query/status/diff/snapshot (backs `/gsd-graphify`) |
| Learnings | `lib/learnings.cjs` | Extract learnings from phases/SUMMARY artifacts (backs `/gsd-extract-learnings`) |
| Audit | `lib/audit.cjs` | Phase/milestone audit queue handlers; `audit-open` helper |
| GSD2 Import | `lib/gsd2-import.cjs` | Reverse-migration importer from GSD-2 projects (backs `/gsd-import --from-gsd2`) |
| Intel | `lib/intel.cjs` | Queryable codebase intelligence index (backs `/gsd-map-codebase --query`) |
| Context Predicates | `lib/context-predicates.cjs` | `CONTEXT.md` predicate fact-store parser/selector (ADR-1671, #2928) — backs `query context-predicates` and `scripts/gen-context-index.cjs`'s `docs/CONTEXT-INDEX.json` drift guard |
| Capability State | `lib/capability-state.cjs` | Capability-state resolver — composes install profile, surface, and config into per-capability `enabled`/`active` view |
| Capability Writer | `lib/capability-writer.cjs` | Capability-state writer (ADR-1213) — write-side inverse; projects `--on`/`--off`/`--gate` onto surface + config substrates then re-resolves |
| Worktree Base Ref | `lib/worktree-base-ref.cjs` | Worktree fork-base detection and `worktree base-check` / `set-baseref` commands (#683) |
---
## Reviewer CLI Routing
`review.models.<cli>` maps a reviewer flavor to a bare model id injected into the CLI's `--model` (or `-m`) flag by the code-review workflow. Set via [`/gsd-config --integrations`](COMMANDS.md#gsd-config) or directly:
```bash
node gsd-tools.cjs config-set review.models.codex "gpt-5"
node gsd-tools.cjs config-set review.models.gemini "gemini-2.5-pro"
node gsd-tools.cjs config-set review.models.opencode "claude-sonnet-4"
node gsd-tools.cjs config-set review.models.claude "" # clear — fall back to session model
```
Slugs are validated against `[a-zA-Z0-9_-]+`; empty or path-containing slugs are rejected. See [`docs/CONFIGURATION.md`](CONFIGURATION.md#code-review-cli-routing) for the full field reference.
## Secret Handling
API keys configured via `/gsd-settings` (`brave_search`, `firecrawl`, `exa_search`) are written plaintext to `.planning/config.json` but are masked (`****<last-4>`) in every `config-set` / `config-get` output, confirmation table, and interactive prompt. See `gsd-core/bin/lib/secrets.cjs` for the masking implementation. The `config.json` file itself is the security boundary — protect it with filesystem permissions and keep it out of git (`.planning/` is gitignored by default).
---
## Related
- [Commands](COMMANDS.md)
- [Configuration](CONFIGURATION.md)
- [Architecture](ARCHITECTURE.md)
- [Fix the worktree base-mismatch (exit 42) error](how-to/fix-worktree-base-mismatch.md)
- [docs index](README.md)