* test(#4834): failing-first launcher hijack regressions * fix(#4834): gate the launcher PATH arm on runtime identity and prefer config-home installs A gsd_run on PATH that cannot prove it is @opengsd/gsd-core (a foreign package, or a release older than the runtime-identity verb) is no longer accepted by the launcher snippet's PATH arm; resolution falls through to the hard error when no path-based candidate matches. The runtime-config-home arm now precedes the PATH arm, restoring the documented prefer-local-over-PATH order, so an installer-managed install wins even against a genuine global. The 16-home probe list is factored into _gsd_homes() and the identity gate into _gsd_id_ok(), keeping the per-copy delta at +141 bytes. The files whose frozen ceilings had no headroom (gsd-executor, gsd-plan-checker, gsd-verifier, gsd-planner, execute-phase, execute-plan) now load the resolver by @-include from gsd-core/references/gsd-run-resolver.md (the onboard.md pattern) instead of carrying an inline copy. Propagated to all other inlined workflow/agent copies via scripts/sync-runtime-launcher.cjs; the resolver reference re-copied byte-equal (parity B2); the hard-error text, docs/how-to/diagnose-a-foreign-gsd-tools.md, and the CONTEXT.md launcher predicate updated to match (#4834); the quick-batch row-48 guard gains the canonical-preamble sweep carve-out (#4834, per its own #3730/#2529 precedents); the compact-content benchmark baseline regenerated. Emitted-Drift-Ack-Growth: add-backlog.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: add-phase.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: add-tests.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: add-todo.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: ai-integration-phase.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: audit-fix.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: audit-milestone.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: audit-uat.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: autonomous.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: check-todos.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: cleanup.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: code-review-fix.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: code-review.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: complete-milestone.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: debug.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: diagnose-issues.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: discuss-phase-assumptions.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: discuss-phase.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: do.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: docs-update.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: edit-phase.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: eval-review.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: explore.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: extract-learnings.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: fast.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: forensics.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: graduation.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: gsd-code-fixer.compact.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: gsd-code-fixer.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: gsd-debug-session-manager.compact.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: gsd-debug-session-manager.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: gsd-debugger.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: gsd-eval-auditor.compact.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: gsd-eval-auditor.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: gsd-intel-updater.compact.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: gsd-intel-updater.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: gsd-phase-researcher.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: gsd-project-researcher.compact.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: gsd-project-researcher.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: gsd-research-synthesizer.compact.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: gsd-research-synthesizer.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: gsd-ui-researcher.compact.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: gsd-ui-researcher.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: health.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: import.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: inbox.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: ingest-docs.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: insert-phase.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: list-seeds.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: list-workspaces.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: manager.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: map-codebase.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: milestone-summary.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: mvp-phase.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: new-milestone.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: new-project.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: new-workspace.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: next.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: pause-work.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: plan-phase.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: plan-review-convergence.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: plant-seed.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: pr-branch.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: profile-user.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: progress.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: quick-batch.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: quick.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: remove-phase.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: remove-workspace.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: resume-project.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: review.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: scan.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: secure-phase.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: settings-advanced.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: settings-integrations.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: settings.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: ship.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: sketch-wrap-up.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: sketch.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: smart-entry.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: spec-phase.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: spike-wrap-up.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: spike.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: stats.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: sync-skills.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: thread.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: transition.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: ui-phase.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: ui-review.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: ultraplan-phase.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: undo.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: validate-phase.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) Emitted-Drift-Ack-Growth: verify-work.md — launcher snippet resolution hardening propagates via sync-runtime-launcher (#4834) * docs(#4834): backfill the changeset PR number * test(#4834): regenerate the compact-content benchmark baseline after the rebase --------- Co-authored-by: sim <sim@local>
22 KiB
@~/.claude/gsd-core/references/response-language-directive.md
<internal_workflow>
This is an INTERNAL workflow — NOT a user-facing command.
There is no /gsd-transition command. This workflow is invoked automatically by
execute-phase during auto-advance, or inline by the orchestrator after phase
verification. Users should never be told to run /gsd-transition.
Valid user commands for phase progression:
/gsd:discuss-phase {N}— discuss a phase before planning/gsd:plan-phase {N}— plan a phase/gsd:execute-phase {N}— execute a phase/gsd:progress— see roadmap progress
</internal_workflow>
<required_reading>
Read these files NOW:
.planning/STATE.md.planning/PROJECT.md.planning/ROADMAP.md- Current phase's plan files (
*-PLAN.md) - Current phase's summary files (
*-SUMMARY.md)
</required_reading>
Mark current phase complete and advance to next. This is the natural point where progress tracking and PROJECT.md evolution happen.
"Planning next phase" = "current phase is done"
Invocation mode — read this FIRST. This workflow runs two ways:
-
Standalone transition (normal path): the phase is being marked complete AND transitioned by this workflow. Run EVERY step below in order —
verify_completion,update_roadmap_and_state(which callsgsd_run query phase.complete), then the post-processing. -
Post-completion delegation (invoked by
execute-phaseafter its auto-chain completion — #1526):phase.completewas already called by execute-phase'supdate_roadmapstep and verification already passed in execute-phase'sverify_phase_goal. SKIPverify_completionandupdate_roadmap_and_state(re-runningphase.completewould double-write STATE.md/ROADMAP.md). Runcleanup_handoff(stale.continue-herehandoffs are still cleared post-completion), then BEGIN atevolve_projectand run every step from there throughoffer_next_phase(this is the post-processing parity set: graduation scan, session-continuity, project-reference, accumulated-context, current-position/progress).archive_promptsis a documented no-op in either mode.
Detect post-completion mode when the caller states that phase completion and verification have already run. When in doubt, run standalone (mode 1) — it is idempotent enough to be safe, just slower.
Before transition, read project state:
cat .planning/STATE.md 2>/dev/null || true
cat .planning/PROJECT.md 2>/dev/null || true
Parse current position to verify we're transitioning the right phase. Note accumulated context that may need updating after transition.
Check current phase has all plan summaries:
(ls .planning/phases/XX-current/*-PLAN.md 2>/dev/null || true) | sort
(ls .planning/phases/XX-current/*-SUMMARY.md 2>/dev/null || true) | sort
Verification logic:
- Count PLAN files
- Count SUMMARY files
- If counts match: all plans complete
- If counts don't match: incomplete
cat .planning/config.json 2>/dev/null || true
Check for verification debt in this phase:
_GSD_SHIM_NAME="gsd-tools.cjs"; _GSD_RUNTIME_ROOT="${RUNTIME_DIR:-$(git rev-parse --show-toplevel 2>/dev/null || pwd)}"; GSD_TOOLS="${_GSD_RUNTIME_ROOT}/gsd-core/bin/${_GSD_SHIM_NAME}"; _gsd_at() { for _p; do if [ -f "$_p" ]; then GSD_TOOLS="$_p"; return 0; fi; done; return 1; }; _gsd_id_ok() { case "$("$1" runtime-identity --raw 2>/dev/null || true)" in '{"packageName":"@opengsd/gsd-core"'*'}') return 0;; *) return 1;; esac; }; _gsd_homes() { _gsd_at "${CLAUDE_CONFIG_DIR:-$HOME/.claude}/gsd-core/bin/${_GSD_SHIM_NAME}" "${HERMES_HOME:-$HOME/.hermes}/gsd-core/bin/${_GSD_SHIM_NAME}" "${CURSOR_CONFIG_DIR:-$HOME/.cursor}/gsd-core/bin/${_GSD_SHIM_NAME}" "${CODEX_HOME:-$HOME/.codex}/gsd-core/bin/${_GSD_SHIM_NAME}" "${GEMINI_CONFIG_DIR:-$HOME/.gemini}/gsd-core/bin/${_GSD_SHIM_NAME}" "${COPILOT_CONFIG_DIR:-$HOME/.copilot}/gsd-core/bin/${_GSD_SHIM_NAME}" "${WINDSURF_CONFIG_DIR:-$HOME/.codeium/windsurf}/gsd-core/bin/${_GSD_SHIM_NAME}" "${AUGMENT_CONFIG_DIR:-$HOME/.augment}/gsd-core/bin/${_GSD_SHIM_NAME}" "${TRAE_CONFIG_DIR:-$HOME/.trae}/gsd-core/bin/${_GSD_SHIM_NAME}" "${QWEN_CONFIG_DIR:-$HOME/.qwen}/gsd-core/bin/${_GSD_SHIM_NAME}" "${CODEBUDDY_CONFIG_DIR:-$HOME/.codebuddy}/gsd-core/bin/${_GSD_SHIM_NAME}" "${CLINE_CONFIG_DIR:-$HOME/.cline}/gsd-core/bin/${_GSD_SHIM_NAME}" "${GROK_AGENTS_HOME:-$HOME/.agents}/gsd-core/bin/${_GSD_SHIM_NAME}" "${ANTIGRAVITY_CONFIG_DIR:-$HOME/.gemini/antigravity}/gsd-core/bin/${_GSD_SHIM_NAME}" "${OPENCODE_CONFIG_DIR:-${XDG_CONFIG_HOME:-$HOME/.config}/opencode}/gsd-core/bin/${_GSD_SHIM_NAME}" "${KILO_CONFIG_DIR:-${XDG_CONFIG_HOME:-$HOME/.config}/kilo}/gsd-core/bin/${_GSD_SHIM_NAME}"; }; if _gsd_at "${_GSD_RUNTIME_ROOT}/gsd-core/bin/${_GSD_SHIM_NAME}" "${_GSD_RUNTIME_ROOT}/.claude/gsd-core/bin/${_GSD_SHIM_NAME}" "${_GSD_RUNTIME_ROOT}/.codex/gsd-core/bin/${_GSD_SHIM_NAME}"; then gsd_run() { node "$GSD_TOOLS" "$@"; }; elif _gsd_homes; then gsd_run() { node "$GSD_TOOLS" "$@"; }; elif unset -f gsd_run; _G="$(command -v gsd_run)"; [ -n "$_G" ] && _gsd_id_ok "$_G"; then GSD_TOOLS="$_G"; gsd_run() { "$GSD_TOOLS" "$@"; }; else echo "ERROR: gsd-tools.cjs not found at $GSD_TOOLS and no identity-proving gsd_run is on PATH. Run: npx -y @opengsd/gsd-core@latest --claude --local" >&2; exit 1; fi; GSD_IDENTITY_STATUS=unverified; _gsd_id_ok gsd_run && GSD_IDENTITY_STATUS=ok; export GSD_IDENTITY_STATUS; [ "$GSD_IDENTITY_STATUS" = ok ] || echo "WARNING: \"$GSD_TOOLS\" did not prove it is @opengsd/gsd-core - it is either a different package or an @opengsd/gsd-core older than the runtime-identity verb. See docs/how-to/diagnose-a-foreign-gsd-tools.md" >&2; if [ -n "${CLAUDE_ENV_FILE:-}" ] && [ -n "${GSD_TOOLS:-}" ]; then printf "export PATH='%s':\"\$PATH\"\n" "${GSD_TOOLS%/*}" >> "$CLAUDE_ENV_FILE" 2>/dev/null || true; fi
# #3492: resolve THIS phase's own report through the single shared seam
# (src/verification.cts resolveVerificationFile) instead of a blind
# `*-VERIFICATION.md` glob — a stray ad-hoc worksheet (e.g.
# `03-CORRECTION-VERIFICATION.md`) alphabetically outranks the real report
# and previously fed this awk parse the wrong file.
VERIFICATION_FILE=$(gsd_run query verification.resolve-file .planning/phases/XX-current --raw 2>/dev/null)
# awk extracts only the status: field between the two --- fences to avoid
# false positives from historical body text (e.g. previous_status: gaps_found).
# FNR (not NR) re-arms the frontmatter scan per input file: NR only ever arms
# on the very FIRST line of the very first file, so a multi-file input would
# silently read empty status for every file after the first. The resolver
# above always hands back a single path, but the parse stays correct even if
# that ever changes.
VERIFY_STATUS=$(awk 'FNR==1&&/^---$/{in_fm=1;next}in_fm&&/^---$/{exit}in_fm&&/^status: /{print $2}' \
"$VERIFICATION_FILE" 2>/dev/null | head -1)
If VERIFY_STATUS is not passed:
Stop before confirming:
Verification incomplete: ${VERIFY_STATUS:-missing}
Resolve before transition. Review: `/gsd:audit-uat`
This preliminary check blocks obviously unresolved verification early, ahead
of the authoritative gate below. gsd_run query phase.complete (in
update_roadmap_and_state) remains the authoritative stale-aware gate and
fail-closes unless canonical verification status is passed.
If all plans complete:
⚡ Auto-approved: Transition Phase [X] → Phase [X+1]
Phase [X] complete — all [Y] plans finished.
Proceeding to mark done and advance...
Proceed directly to cleanup_handoff step.
Ask: "Phase [X] complete — all [Y] plans finished. Ready to mark done and move to Phase [X+1]?"
Wait for confirmation before proceeding.
If plans incomplete:
SAFETY RAIL: always_confirm_destructive applies here. Skipping incomplete plans is destructive — ALWAYS prompt regardless of mode.
Present:
Phase [X] has incomplete plans:
- {phase}-01-SUMMARY.md ✓ Complete
- {phase}-02-SUMMARY.md ✗ Missing
- {phase}-03-SUMMARY.md ✗ Missing
⚠️ Safety rail: Skipping plans requires confirmation (destructive action)
Options:
1. Continue current phase (execute remaining plans)
2. Mark complete anyway (skip remaining plans)
3. Review what's left
Wait for user decision.
Check for lingering handoffs:
ls .planning/phases/XX-current/.continue-here*.md 2>/dev/null || true
If found, delete them — phase is complete, handoffs are stale.
Delegate ROADMAP.md and STATE.md updates to gsd_run query phase.complete:
TRANSITION=$(gsd_run query phase.complete "${current_phase}")
The CLI handles:
- Marking the phase checkbox as
[x]complete with today's date - Updating plan count to final (e.g., "3/3 plans complete")
- Updating the Progress table (Status → Complete, adding date)
- Advancing STATE.md to next phase (Current Phase, Status → Ready to plan, Current Plan → Not started)
- Detecting if this is the last phase in the milestone
Extract from result: completed_phase, plans_executed, next_phase, next_phase_name, is_last_phase.
If prompts were generated for the phase, they stay in place.
The completed/ subfolder pattern from create-meta-prompts handles archival.
Evolve PROJECT.md to reflect learnings from completed phase.
Read phase summaries:
_SUMMARIES=( .planning/phases/XX-current/*-SUMMARY.md )
if [ -e "${_SUMMARIES[0]}" ]; then cat "${_SUMMARIES[@]}"; fi
Assess requirement changes:
-
Requirements validated?
- Any Active requirements shipped in this phase?
- Move to Validated with phase reference:
- ✓ [Requirement] — Phase X
-
Requirements invalidated?
- Any Active requirements discovered to be unnecessary or wrong?
- Move to Out of Scope with reason:
- [Requirement] — [why invalidated]
-
Requirements emerged?
- Any new requirements discovered during building?
- Add to Active:
- [ ] [New requirement]
-
Decisions to log?
- Extract decisions from SUMMARY.md files
- Add to Key Decisions table with outcome if known
-
"What This Is" still accurate?
- If the product has meaningfully changed, update the description
- Keep it current and accurate
Update PROJECT.md:
Make the edits inline. Update "Last updated" footer:
---
*Last updated: [date] after Phase [X]*
Example evolution:
Before:
### Active
- [ ] JWT authentication
- [ ] Real-time sync < 500ms
- [ ] Offline mode
### Out of Scope
- OAuth2 — complexity not needed for v1
After (Phase 2 shipped JWT auth, discovered rate limiting needed):
### Validated
- ✓ JWT authentication — Phase 2
### Active
- [ ] Real-time sync < 500ms
- [ ] Offline mode
- [ ] Rate limiting on sync endpoint
### Out of Scope
- OAuth2 — complexity not needed for v1
Step complete when:
- Phase summaries reviewed for learnings
- Validated requirements moved from Active
- Invalidated requirements moved to Out of Scope with reason
- Emerged requirements added to Active
- New decisions logged with rationale
- "What This Is" updated if product changed
- "Last updated" footer reflects this transition
Scan LEARNINGS.md files from recent phases for recurring patterns and surface promotion candidates to the developer.
Invoke the graduation helper:
@~/.claude/gsd-core/workflows/graduation.md
This step is fully delegated to graduation.md. It handles guard checks (feature flag, window size, threshold), clustering, backlog filtering, HITL prompting, promotion writes, and STATE.md updates.
This step is always non-blocking: graduation candidates are surfaced for the developer's decision; no action is required to continue the transition. If the graduation scan produces no qualifying clusters, it prints a single [graduation: no qualifying clusters] line and returns.
Step complete when:
- graduation.md guard checks passed (or skipped with silent no-op)
- Recurring clusters surfaced (or
[graduation: no qualifying clusters]printed) - Each cluster resolved as Promote / Defer / Dismiss (or all skipped)
Note: Basic position updates (Current Phase, Status, Current Plan, Last Activity) were already handled by gsd_run query phase.complete in the update_roadmap_and_state step.
Verify the updates are correct by reading STATE.md. If the progress bar needs updating, use:
PROGRESS=$(gsd_run query progress.bar --raw)
Update the progress bar line in STATE.md with the result.
Step complete when:
- Phase number incremented to next phase (done by phase complete)
- Plan status reset to "Not started" (done by phase complete)
- Status shows "Ready to plan" (done by phase complete)
- Progress bar reflects total completed plans
Update Project Reference section in STATE.md.
## Project Reference
See: .planning/PROJECT.md (updated [today])
**Core value:** [Current core value from PROJECT.md]
**Current focus:** [Next phase name]
Update the date and current focus to reflect the transition.
Review and update Accumulated Context section in STATE.md.
Decisions:
- Note recent decisions from this phase (3-5 max)
- Full log lives in PROJECT.md Key Decisions table
Blockers/Concerns:
- Review blockers from completed phase
- If addressed in this phase: Remove from list
- If still relevant for future: Keep with "Phase X" prefix
- Add any new concerns from completed phase's summaries
Example:
Before:
### Blockers/Concerns
- ⚠️ [Phase 1] Database schema not indexed for common queries
- ⚠️ [Phase 2] WebSocket reconnection behavior on flaky networks unknown
After (if database indexing was addressed in Phase 2):
### Blockers/Concerns
- ⚠️ [Phase 2] WebSocket reconnection behavior on flaky networks unknown
Step complete when:
- Recent decisions noted (full log in PROJECT.md)
- Resolved blockers removed from list
- Unresolved blockers kept with phase prefix
- New concerns from completed phase added
Update Session Continuity section in STATE.md to reflect transition completion.
Format:
Last session: [today]
Stopped at: Phase [X] complete, ready to plan Phase [X+1]
Resume file: None
Step complete when:
- Last session timestamp updated to current date and time
- Stopped at describes phase completion and next phase
- Resume file confirmed as None (transitions don't use resume files)
MANDATORY: Verify milestone status before presenting next steps.
Use the transition result from gsd_run query phase.complete:
The is_last_phase field from the phase complete result tells you directly:
is_last_phase: false→ More phases remain → Go to Route Ais_last_phase: true→ Last phase done → Check for workstream collisions first
The next_phase and next_phase_name fields give you the next phase details.
If you need additional context, use:
ROADMAP=$(gsd_run query roadmap.analyze)
This returns all phases with goals, disk status, and completion info.
Section-manifest gate (#2994): gsd_run is already established above (verify_completion step) — fetch the dedicated init.transition bundle for the workstream-collision-check gate below:
INIT_TRANSITION=$(gsd_run query init.transition)
if [[ "$INIT_TRANSITION" == @file:* ]]; then INIT_TRANSITION=$(cat "${INIT_TRANSITION#@file:}"); fi
Extract from INIT_TRANSITION: other_active_workstreams, section_manifest.
If section_manifest (from INIT_TRANSITION) is null or "workstream-collision-check" is in its included list: read and execute gsd-core/workflows/transition/steps/workstream-collision-check.md. Otherwise (flat mode) skip — do not read the file; go directly to Route B.
Route A: More phases remain in milestone
Read ROADMAP.md to get the next phase's name and goal.
Check if next phase has CONTEXT.md:
ls .planning/phases/*[X+1]*/*-CONTEXT.md 2>/dev/null || true
If next phase exists:
If CONTEXT.md exists:
Phase [X] marked complete.
Next: Phase [X+1] — [Name]
⚡ Auto-continuing: Plan Phase [X+1] in detail
Exit skill and invoke SlashCommand("/gsd:plan-phase [X+1] --auto ${GSD_WS}")
If CONTEXT.md does NOT exist:
Phase [X] marked complete.
Next: Phase [X+1] — [Name]
⚡ Auto-continuing: Discuss Phase [X+1] first
Exit skill and invoke SlashCommand("/gsd:discuss-phase [X+1] --auto ${GSD_WS}")
If CONTEXT.md does NOT exist:
## ✓ Phase [X] Complete
---
## ▶ Next Up — [${PROJECT_CODE}] ${PROJECT_TITLE}
**Phase [X+1]: [Name]** — [Goal from ROADMAP.md]
`/clear` then:
`/gsd:discuss-phase [X+1] ${GSD_WS}` — gather context and clarify approach
---
**Also available:**
- `/gsd:plan-phase [X+1] ${GSD_WS}` — skip discussion, plan directly
- `/gsd:plan-phase --research-phase [X+1] ${GSD_WS}` — investigate unknowns
---
If CONTEXT.md exists:
## ✓ Phase [X] Complete
---
## ▶ Next Up — [${PROJECT_CODE}] ${PROJECT_TITLE}
**Phase [X+1]: [Name]** — [Goal from ROADMAP.md]
<sub>✓ Context gathered, ready to plan</sub>
`/clear` then:
`/gsd:plan-phase [X+1] ${GSD_WS}`
---
**Also available:**
- `/gsd:discuss-phase [X+1] ${GSD_WS}` — revisit context
- `/gsd:plan-phase --research-phase [X+1] ${GSD_WS}` — investigate unknowns
---
Route B1: Workstream done, other workstreams still active
This route is reached when is_last_phase: true AND the collision check found
other active workstreams. Do NOT suggest completing the milestone or advancing
to the next milestone — other workstreams are still working.
Clear auto-advance chain flag — workstream boundary is the natural stopping point:
gsd_run query config-set workflow._auto_chain_active false
Override auto-advance: do NOT auto-continue to milestone completion. Present the blocking information and stop.
Present (all modes):
## ✓ Phase {X}: {Phase Name} Complete
This workstream's phases are complete. Other workstreams are still active:
| Workstream | Status | Phase | Progress |
|------------|--------|-------|----------|
| {name} | {status} | {current_phase} | {completed_phases}/{phase_count} |
| ... | ... | ... | ... |
---
## Next Steps
Archive this workstream:
`/gsd:workstreams complete {current_ws_name} ${GSD_WS}`
See overall milestone progress:
`/gsd:workstreams progress ${GSD_WS}`
<sub>Milestone completion will be available once all workstreams finish.</sub>
---
Do NOT suggest /gsd:complete-milestone or /gsd:new-milestone.
Do NOT auto-invoke any further slash commands.
Stop here. The user must explicitly decide what to do next.
Route B: All phases complete (milestone ready to close)
This route is only reached when:
is_last_phase: trueAND no other active workstreams exist (or flat mode)
Clear auto-advance chain flag — milestone boundary is the natural stopping point:
gsd_run query config-set workflow._auto_chain_active false
Phase {X} marked complete.
🎉 Milestone {version} is 100% complete — all {N} phases finished!
⚡ Auto-continuing: Complete milestone and archive
Exit skill and invoke SlashCommand("/gsd:complete-milestone {version} ${GSD_WS}")
## ✓ Phase {X}: {Phase Name} Complete
🎉 Milestone {version} is 100% complete — all {N} phases finished!
---
## ▶ Next Up — [${PROJECT_CODE}] ${PROJECT_TITLE}
**Complete Milestone {version}** — archive and prepare for next
`/clear` then:
`/gsd:complete-milestone {version} ${GSD_WS}`
---
**Also available:**
- Review accomplishments before archiving
---
<implicit_tracking> Progress tracking is IMPLICIT: planning phase N implies phases 1-(N-1) complete. No separate progress step—forward motion IS progress. </implicit_tracking>
<partial_completion>
If user wants to move on but phase isn't fully complete:
Phase [X] has incomplete plans:
- {phase}-02-PLAN.md (not executed)
- {phase}-03-PLAN.md (not executed)
Options:
1. Mark complete anyway (plans weren't needed)
2. Defer work to later phase
3. Stay and finish current phase
Respect user judgment — they know if work matters.
If marking complete with incomplete plans:
- Update ROADMAP: "2/3 plans complete" (not "3/3")
- Note in transition message which plans were skipped
</partial_completion>
<success_criteria>
Transition is complete when:
- Current phase plan summaries verified (all exist or user chose to skip)
- Any stale handoffs deleted
- ROADMAP.md updated with completion status and plan count
- PROJECT.md evolved (requirements, decisions, description if needed)
- STATE.md updated (position, project reference, context, session)
- Progress table updated
- User knows next steps
</success_criteria>