* 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>
19 KiB
@~/.claude/gsd-core/references/response-language-directive.md
Detect current project state and automatically advance to the next logical GSD workflow step. Reads project state to determine: discuss → plan → execute → verify → complete progression.<required_reading> Read all files referenced by the invoking prompt's execution_context before starting. </required_reading>
Read project state to determine current position:_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
# Get state snapshot
gsd_run query state.json 2>/dev/null || echo "{}"
Also read:
.planning/STATE.md— current phase, progress, plan counts.planning/ROADMAP.md— milestone structure and phase list
Extract:
current_phase— which phase is activeplan_of/plans_total— plan execution progressprogress— overall percentagestatus— active, paused, etc.
If no .planning/ directory exists:
No GSD project detected. Run `/gsd:new-project` to get started.
Exit.
Run hard-stop checks before routing. Exit on first hit unless `--force` was passed.If --force flag was passed, skip all gates, Route 0, and the prior-phase completeness prompt.
Print a one-line warning: ⚠ --force: skipping safety gates
Then proceed directly to determine_next_action. (Route 0 and prior_phase_completeness are NOT reached under --force.)
Gate 1: Unresolved checkpoint
Check if .planning/.continue-here.md exists:
[ -f .planning/.continue-here.md ]
If found:
⛔ Hard stop: Unresolved checkpoint
`.planning/.continue-here.md` exists — a previous session left
unfinished work that needs manual review before advancing.
Read the file, resolve the issue, then delete it to continue.
Use `--force` to bypass this check.
Exit (do not route).
Gate 2: Error state
Check if STATE.md contains status: error or status: failed:
If found:
⛔ Hard stop: Project in error state
STATE.md shows status: {status}. Resolve the error before advancing.
Run `/gsd:health` to diagnose, or manually fix STATE.md.
Use `--force` to bypass this check.
Exit.
Gate 3: Unchecked verification
Check if the current phase has a VERIFICATION.md with any FAIL items that don't have overrides:
If found:
⛔ Hard stop: Unchecked verification failures
VERIFICATION.md for phase {N} has {count} unresolved FAIL items.
Address the failures or add overrides before advancing to the next phase.
Use `--force` to bypass this check.
Exit.
After all three hard-stop gates pass, continue to resume_incomplete_phase.
This catches the common failure mode where a session died mid-execution (hang, token exhaustion, API connection drop) and STATE.md's current_phase got advanced past the phase that actually has unfinished work. Without this gate, /gsd:progress --next would route by current_phase and silently skip the partially-executed phase.
Skip if --no-resume was passed (fall through to prior_phase_completeness). (--force already bypassed all gates and Route 0 at safety_gates — it never reaches this step.)
Why Route 0 runs here (after Gates 1-3, before the prior-phase defer prompt): This step is a hard invariant independent of current_phase's value — it must run before any routing rule that reads current_phase. Gates 1-3 are cheap repo/state validity checks that must always run — skipping them on the resume path would risk advancing into a broken-state project. The prior-phase completeness-scan DEFER PROMPT, however, must NOT run in the default (no-flag) case when Route 0 is about to resume the phase automatically: that would force a double-decision (prompt first, then resume anyway), overriding the user's choice. Route 0 placed here means: default = resume silently (no defer prompt); --no-resume = skip Route 0 and fall through to the prior-phase defer prompt in prior_phase_completeness; --force = jump straight to determine_next_action at safety_gates (never reaches Route 0 or prior_phase_completeness at all).
Scan ALL phases in ROADMAP order (lowest-numbered to highest) for incomplete-execution state. Use gsd_run query roadmap.analyze to get the phase list, then for each phase number N query gsd_run query find-phase <N> JSON and inspect its plans and summaries arrays. A phase is incomplete-execution when plans.length > summaries.length (at least one PLAN.md has no matching SUMMARY.md).
Stop at the first such phase. Record its phase number as INCOMPLETE_PHASE. This is the lowest-numbered phase that needs continued execution.
Illustrative bash:
INCOMPLETE_PHASE=""
ROADMAP_JSON=$(gsd_run query roadmap.analyze)
ROADMAP_SCOPE=$(echo "$ROADMAP_JSON" | jq -r '.scope // "complete"')
if [ $? -ne 0 ] || [ -z "$ROADMAP_JSON" ]; then
echo "⚠ WARNING: resume-incomplete-phase scan could not run (roadmap.analyze failed)." >&2
echo " The incomplete-phase invariant (#160) could not be verified." >&2
echo " Proceeding to prior-phase completeness check — review project state carefully." >&2
# Fall through to prior_phase_completeness rather than silently skipping
elif [ "$ROADMAP_SCOPE" != "complete" ]; then
# #3184/#3165: roadmap.analyze succeeded and returned a well-formed document,
# but its milestone window did not see all of its input, so `.phases[]` is a
# NON-answer rather than a real empty. Looping it would run the invariant over
# a phase list the scan could not populate and report "clean" — the silent
# disarm #3165 reports. Treated as scan-failed, same as an outright failure.
echo "⚠ WARNING: resume-incomplete-phase scan could not be scoped (roadmap.analyze scope: $ROADMAP_SCOPE)." >&2
echo " The milestone window did not cover the whole ROADMAP, so the phase list is incomplete." >&2
echo " The incomplete-phase invariant (#160) could not be verified — review project state carefully." >&2
# Fall through to prior_phase_completeness rather than silently passing
else
for PHASE_NUM in $(echo "$ROADMAP_JSON" | jq -r '.phases[] | (.number // .phase_number // empty)'); do
PHASE_JSON=$(gsd_run query find-phase "$PHASE_NUM")
if [ $? -ne 0 ] || [ -z "$PHASE_JSON" ]; then
echo "⚠ WARNING: Could not query phase $PHASE_NUM — skipping in resume scan." >&2
continue
fi
PLAN_COUNT=$(echo "$PHASE_JSON" | jq '(.plans // []) | length')
SUMMARY_COUNT=$(echo "$PHASE_JSON" | jq '(.summaries // []) | length')
if [ "${PLAN_COUNT:-0}" -gt "${SUMMARY_COUNT:-0}" ]; then
INCOMPLETE_PHASE="$PHASE_NUM"
break
fi
done
fi
If INCOMPLETE_PHASE is non-empty: route to /gsd:execute-phase $INCOMPLETE_PHASE and exit. Display a one-line notice before invoking:
▶ Resuming incomplete Phase ${INCOMPLETE_PHASE} (plans without summaries detected)
/gsd:execute-phase ${INCOMPLETE_PHASE}
(use --no-resume to skip this check and defer via the prior-phase prompt)
Then invoke via SlashCommand. Do not continue to subsequent steps.
If INCOMPLETE_PHASE is empty: continue to prior_phase_completeness.
Prior-phase completeness scan:
Scan all phases that precede the current phase in ROADMAP.md order for incomplete work. For each prior phase number N, use gsd_run query find-phase <N> JSON (plans, summaries, incomplete_plans, etc.) to inspect that phase.
Detect three categories of incomplete work:
- Plans without summaries — a PLAN.md exists in a prior phase directory but no matching SUMMARY.md exists (execution started but not completed).
- Verification failures not overridden — a prior phase has a VERIFICATION.md with
FAILitems that have no override annotation. - CONTEXT.md without plans — a prior phase directory has a CONTEXT.md but no PLAN.md files (discussion happened, planning never ran).
If no incomplete prior work is found, continue to determine_next_action silently with no interruption.
If incomplete prior work is found, show a structured completeness report:
⚠ Prior phase has incomplete work
Phase {N} — "{name}" has unresolved items:
• Plan {N}-{M} ({slug}): executed but no SUMMARY.md
[... additional items ...]
Advancing before resolving these may cause:
• Verification gaps — future phase verification won't have visibility into what prior phases shipped
• Context loss — plans that ran without summaries leave no record for future agents
Options:
[C] Continue and defer these items to backlog
[S] Stop and resolve manually (recommended)
[F] Force advance without recording deferral
Choice [S]:
If the user chooses "Stop" (S or Enter/default): Exit without routing.
If the user chooses "Continue and defer" (C):
- For each incomplete item, create a backlog entry in
ROADMAP.mdunder## Backlogusing the existing999.xnumbering scheme:
### Phase 999.{N}: Follow-up — Phase {src} incomplete plans (BACKLOG)
**Goal:** Resolve plans that ran without producing summaries during Phase {src} execution
**Source phase:** {src}
**Deferred at:** {date} during /gsd:progress --next advancement to Phase {dest}
**Plans:**
- [ ] {N}-{M}: {slug} (ran, no SUMMARY.md)
- Commit the deferral record:
gsd_run query commit "docs: defer incomplete Phase {src} items to backlog" \
--files .planning/ROADMAP.md
- Continue routing to
determine_next_actionimmediately — no second prompt.
If the user chooses "Force" (F): Continue to determine_next_action without recording deferral.
# Check for pending spikes (verdict: PENDING in any README)
PENDING_SPIKES=$(grep -rl 'verdict: PENDING' .planning/spikes/*/README.md 2>/dev/null | wc -l | tr -d ' ')
# Check for pending sketches (winner: null in any README)
PENDING_SKETCHES=$(grep -rl 'winner: null' .planning/sketches/*/README.md 2>/dev/null | wc -l | tr -d ' ')
If either count is > 0, display before routing:
⚠ Pending exploratory work:
{PENDING_SPIKES} spike(s) with unresolved verdicts in .planning/spikes/
{PENDING_SKETCHES} sketch(es) without a winning variant in .planning/sketches/
Resume with `/gsd:spike` or `/gsd:sketch`, or continue with phase work below.
Only show lines for non-zero counts. If both are 0, skip this notice entirely.
Apply routing rules based on state:Route 1: No phases exist yet → discuss
If ROADMAP has phases but no phase directories exist on disk:
→ Next action: /gsd:discuss-phase <first-phase>
Route 2: Phase exists but has no CONTEXT.md or RESEARCH.md → discuss
If the current phase directory exists but has neither CONTEXT.md nor RESEARCH.md:
→ Next action: /gsd:discuss-phase <current-phase>
Route 3: Phase has context but no plans → plan
If the current phase has CONTEXT.md (or RESEARCH.md) but no PLAN.md files:
→ Next action: /gsd:plan-phase <current-phase> (or /gsd:plan-review-convergence <current-phase> when PLAN_STRATEGY=converge)
Route 4: Phase has plans but incomplete summaries → execute
If plans exist but not all have matching summaries:
→ Next action: /gsd:execute-phase <current-phase>
Route 5: All plans have summaries → verify and complete
If all plans in the current phase have summaries:
→ Next action: /gsd:verify-work
Route 6: Phase complete, next phase exists → advance
If the current phase is complete and the next phase exists in ROADMAP:
→ Next action: /gsd:discuss-phase <next-phase>
Route 7: All phases complete → complete milestone
If all phases are complete:
→ Next action: /gsd:complete-milestone
Route 8: Paused → resume
If STATE.md shows paused_at:
→ Next action: /gsd:resume-work
PLAN_STRATEGY="local"
if echo "$ARGUMENTS" | grep -qE '(^|[[:space:]])\-\-(converge|cross-ai)([[:space:]]|$)'; then
PLAN_STRATEGY="converge"
fi
CONVERGENCE_ARGS=""
# Lane flags derived from the declared roster (#2800/#2272); --all and --text are convergence
# controls, not reviewer lanes, so they stay literal.
for REVIEW_FLAG in $(gsd_run review-lane flags) --all --text; do
if echo "$ARGUMENTS" | grep -qE "(^|[[:space:]])${REVIEW_FLAG}([[:space:]]|$)"; then
CONVERGENCE_ARGS="${CONVERGENCE_ARGS} ${REVIEW_FLAG}"
fi
done
MAX_CYCLES_ARG=""
if echo "$ARGUMENTS" | grep -qE '\-\-max-cycles\s+[0-9]+'; then
MAX_CYCLES_ARG=$(echo "$ARGUMENTS" | grep -oE '\-\-max-cycles\s+[0-9]+' | awk '{print $2}')
CONVERGENCE_ARGS="${CONVERGENCE_ARGS} --max-cycles ${MAX_CYCLES_ARG}"
fi
If PLAN_STRATEGY is converge, fail fast unless the convergence feature gate is enabled:
if [ "$PLAN_STRATEGY" = "converge" ]; then
CONVERGENCE_ENABLED=$(gsd_run query config-get workflow.plan_review_convergence --raw 2>/dev/null || echo "false")
if [ "$CONVERGENCE_ENABLED" != "true" ]; then
printf '%s\n' \
'/gsd:progress --next --converge is disabled (workflow.plan_review_convergence=false).' \
'' \
'Enable plan convergence with:' \
'' \
' gsd config-set workflow.plan_review_convergence true' \
'' \
'Then re-run with --converge.'
exit 1
fi
fi
Display the determination:
## GSD Next
**Current:** Phase [N] — [name] | [progress]%
**Status:** [status description]
▶ **Next step:** `/gsd-[command] [args]`
[One-line explanation of why this is the next step]
Then immediately invoke the determined command via SlashCommand.
Do not ask for confirmation — the whole point of /gsd:progress --next is zero-friction advancement.
Route 3 convergence override: When the routing decision is Route 3 (plan) and PLAN_STRATEGY=converge, invoke /gsd:plan-review-convergence <current-phase> ${CONVERGENCE_ARGS} instead of /gsd:plan-phase <current-phase>.
If --auto was passed: after the determined command completes, automatically re-invoke /gsd:progress --next --auto (forwarding --converge/--cross-ai and any reviewer flags if they were originally passed) to continue chaining to the next step. Repeat until one of:
- A milestone completes (
/gsd:complete-milestoneis reached) - A blocking decision is required (safety gate triggers, prior-phase completeness prompt, user input needed)
- An error or paused state is detected
When stopping due to a blocker, display:
⛔ Auto-chain stopped: [reason — e.g. safety gate, blocking decision required]
Resume with: `/gsd:progress --next --auto` once resolved.
<success_criteria>
- Project state correctly detected
- Gates 1-3 (repo/state validity) run first — always, even on the resume path
- Route 0 (resume_incomplete_phase) runs AFTER Gates 1-3 and BEFORE the prior-phase defer prompt — no double-decision in the default (no-flag) case
- Default (no flag): Route 0 resumes incomplete phase silently, exits — user never sees the prior-phase defer prompt
--no-resume: Route 0 skipped, prior_phase_completeness defer prompt runs as before--force: everything skipped (Gates, Route 0, prior_phase_completeness) → straight todetermine_next_action- Scan uses
gsd_run(canonical resolver form); errors are surfaced rather than suppressed - A
roadmap.analyzeresult whosescopeis notcompleteis treated as scan-failed (warn + fall through), never as a clean empty scan (#3184/#3165) - Predicate is plans-without-summaries (
plans.length > summaries.length) — consistent withdetermine_next_actionRoute 4 - Next action correctly determined from routing rules
- Command invoked immediately without user confirmation
- Clear status shown before invoking
--convergeroutes Route 3 planning throughgsd-plan-review-convergence--cross-aiis accepted as an alias for--converge--convergefails fast with enable instructions whenworkflow.plan_review_convergence=false--convergeforwards reviewer selector flags and--max-cycles N- Default planning remains
gsd-plan-phasewhen convergence is not requested </success_criteria>