Files
msd-core/gsd-core/workflows/new-project.md
Tom Boucher ff4a57b78c chore(#1671): migrate the remaining 13 LARGE/XL workflows to the fragment model — Phase 6.3 (#3030)
* chore(#2994): fragmentize progress.md forensic audit onto the fragment model

Extract the --forensic-gated forensic_audit step to
workflows/progress/steps/forensic-audit.md behind a section marker, and
repair progress.md's init line to forward --forensic so the atom is
actually true in production rather than only under direct CLI tests.

progress.md shrinks 32630 -> 27207 bytes.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>

* chore(#2994): fragmentize the four manifest-wired workflows

new-project, quick, new-milestone and progress each already had a
dedicated cmdInit* entry point but zero marked sections. Extract nine
gated bodies to workflows/<wf>/steps/ behind section markers and repair
each init line to forward its flags.

Fold --full into the discuss/research/validate facts inside cmdInitQuick
so the when= grammar never sees an OR, per the chunked-mode precedent.

Fixes found while working, per the no-defer rule:
- cmdInitProgress passed no phase info to buildSectionManifestField, so
  state:phase-mvp-mode was permanently false — an atom in the vocabulary
  whose fact could never be computed.
- the quick init router folded flag tokens into the free-text
  description, which the new forwarding would have corrupted.
- a #2508 dispatch note was nested inside quick.md's Agent(prompt=)
  fence, leaking orchestrator guidance into the subagent prompt.
- progress.md had a 3-vs-4 backtick outer-fence imbalance.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>

* chore(#2994): fragmentize verify-work.md and admit state:ui-phase-active

Wire cmdInitVerifyWork to buildSectionManifestField — it was a dedicated
entry point that never emitted a manifest — and mark two sections.

state:ui-phase-active folds (plan:pre hooks include an active ui step) OR
(the phase dir holds a *-UI-SPEC.md) into one boolean in init.cts, so the
grammar still sees a single operator-free atom. The inner Playwright-MCP
check stays as prose inside the fragment: it is live session state and no
init seam can precompute it.

The MVP false-branch note is a real fallback, not redundant prose, so it
sits outside the marker — gating it away would delete the text needed
precisely when MVP mode is off.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>

* test(#2994): follow moved workflow content in drift guards

Retarget every guard that asserted on content this branch moved into
workflows/<wf>/steps/, mirroring 815b3d897. Each retargeted assertion was
verified to still fail when its step file is blanked, so none was
weakened into vacuity.

Three assertions in verify-mvp-uat were genuinely red. Three more were
worse than red — passing for the wrong reason:
- quick-commit-boundary and worktree-cleanup anchored on indexOf('Step
  5.6'), which matched a later cross-reference and sliced 16069 chars
  that coincidentally held the asserted substrings. Replaced with an
  expandWorkflowSections helper that splices step content back in place.
- phase6-review-capabilities lost its end boundary and widened to EOF.
- playwright-ui-verify matched 'UI' in an unrelated bullet and 'fall
  back' in a subagent-dispatch line after the real content moved.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>

* chore(#2994): fragmentize code-review and complete-milestone, admit three atoms

Add dedicated cmdInitCodeReview and cmdInitCompleteMilestone entry points
alongside the shared generic ones rather than modifying them — init.phase-op
and init.manager carry a CRITICAL blast radius (179 dependents, 24
processes) and stay byte-identical for their other callers.

Admit flag:--fix, state:fallow-enabled and state:git-create-tag, each with
a consuming section and a fact its own entry point computes.

Both sections had the resolver-in-body hazard: the fallow config-gate and
the git.create_tag check each sat inside the very block being gated, so
gating would have disabled the resolver that decides the gate. Both are
hoisted into init and the bodies now consume the resolved fact.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>

* test(#2994): retarget code-review and milestone drift guards, fix two red tests

Retarget guards that asserted on content moved into steps/, proving
non-vacuity by blanking each step file and confirming failure.

Also fixes two genuinely red tests found while working, per the no-defer
rule:
- workflow-fragments' frozen-vocabulary lock was missing
  state:ui-phase-active, so commit 7ef7f8336 shipped red. Lint and build
  both passed over it, which is why neither is sufficient verification.
- code-review's quick.md capability-hook assertion carried a stale
  delimiter after the 18ff35d20 extraction.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>

* chore(#2994): fragmentize autonomous.md and admit state:plan-strategy-converge

Five sections share one atom, the pattern plan-phase already uses for
flag:--research-phase. The atom folds --converge OR --cross-ai into a
single boolean in cmdInitAutonomous so the grammar stays operator-free.

cmdInitAutonomous is additive; init.milestone-op, init.manager and
init.phase-op are untouched and still consumed. The $PLAN_STRATEGY bash
resolver is deliberately retained — ungated local-planning bullets still
read it, so the init-side fact supplements it rather than replacing it.

converge-fail-fast required splitting one bash fence so the always-run
CONVERGENCE_ARGS construction stays outside the marker. All three
flag-absent fallbacks were left outside their markers.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>

* chore(#2994): fragmentize review and discuss-phase-assumptions

Admit state:reviewer-instances-configured (two peripheral notes share it;
the core reviewer-lane dispatch stays unmarked — it is the workflow's
primary always-evaluated logic, not an optional branch) and
state:auto-advance-active, which folds --auto OR two config keys into one
boolean so the grammar stays operator-free.

discuss-phase-assumptions was the highest-risk edit in this PR. Its
auto_advance step is a full if/elif/else; gating it whole would have
deleted the flag-absent fallback needed exactly when --auto is off. Split
verified exact: resolvers 636-651 and the 'End here' fallback 668-669 both
stay outside the marker; only 653-667 is gated.

Adds emitted-drift acks for the two files that grew — review.md (+55 B)
and autonomous.md (+737 B from 80799211c, which had none and would have
red-gated the push.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>

* chore(#2994): fragmentize docs-update, update, transition and new-milestone Part A

Completes the 13-workflow rollout. Three of these had no init call at all
and gained a dedicated entry point plus their first gsd_run query line.

Admits state:is-monorepo and adds state:next-channel, state:workstream-active
and state:flat-mode. Vocabulary 26 -> 30 atoms.

Part A of new-milestone applies when NO workstream is active — the negation
of state:workstream-active. Rather than teach the grammar negation, which is
the Greenspun drift the frozen list exists to prevent, it gets a separate
positively-phrased atom whose fact is the inverse. Part B, which always runs,
stays outside the marker.

flag:--verify-only is deliberately NOT admitted: docs-update has no
contiguous purely-additive region for it, and an atom without a consuming
section is dead vocabulary. Evidence recorded in the slice report.

update.md reuses its existing resolved $GSD_TOOLS rather than prepending the
canonical preamble, which would have clobbered it.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>

* fix(#2994): stop automated-ui-verification re-resolving its own gate, retire dead vocabulary

Two defects the new tests caught.

The automated-ui-verification step re-ran gsd_run loop render-hooks and
recomputed UI_PHASE_ACTIVE inside a body that is only read when that fact
is already true — the circular self-disabling pattern this design forbids,
introduced by 3c654b168. cmdInitVerifyWork now exposes ui_phase_active and
the step consumes it. Its launcher preamble goes too: no gsd_run remains.
The Playwright-MCP check stays as prose — that is live session state.

Dead vocabulary predating this PR: flag:--full and state:needs-codebase-map
were admitted with a gate-1 claim that never materialized. flag:--full is
removed, redundant once quick folds it into discuss/research/validate.
state:needs-codebase-map gets the real consumer it always lacked, gating
new-project's codebase-map offer. Vocabulary 30 -> 29, and no atom is now
without a consuming section.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>

* test(#2994): add the atom-admission, inversion and resolver-hoist gates

The two existing parity guards prove vocabulary/predicate symmetry but
never that a fact is computed — an atom no cmdInit* assembles evaluates
false forever. These close that hole:

- per-atom satisfiability for all 29 atoms, plus an anti-vacuity assertion
  so the loop cannot silently cover zero atoms
- dead-vocabulary check against the shipped manifest
- inversion guard: the flag-absent fallbacks in discuss-phase-assumptions
  and verify-work must stay outside their markers
- data-driven resolver-hoist guard over the shipped manifest, so a future
  extraction cannot reintroduce the circular class
- compound-fold coverage (--full, --cross-ai, --rc, config-only --auto)
- null-vs-[] degraded/computed distinction, and flag value shapes

Also repairs the frozen-vocabulary lock, which was stale and red for the
seven atoms earlier commits on this branch shipped.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>

* docs(#2994): add changeset for the fragment-model rollout

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>

* test(#2994): cite the issue on the two new allow-test-rule exemptions

ADR-456 requires an issue ref on the same line as the annotation.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>

* docs(#2994): correct the atom-count claims after retiring flag:--full

The vocabulary doc comments still said 30 entries; it is 29 since
flag:--full was removed as dead vocabulary.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>

* fix(#2994): dedupe the phase-fallback block and harden --ws parsing

Review findings.

MAJOR: the three new init entry points each pasted a verbatim copy of the
guardedFindPhase/guardedGetRoadmapPhase fallback, taking the repo from four
copies to seven — DEFECT.GENERATIVE-FIX. Extracted applyRoadmapFallback and
folded six of the seven; each call site keeps its own field-set via a
closure. Duplication removed rather than papered over with a parity test.
cmdInitPhaseOp stays out: its fallback omits has_reviews, so it is not a
byte-identical copy, and it is CRITICAL-radius.

LOW, pre-existing: GSD_WS captured [^[:space:]]+ and expands unquoted, so a
workstream name holding glob metacharacters would expand against the
filesystem. Narrowed to [A-Za-z0-9._-]+. The unquoted expansion is kept —
it must word-split into two args and vanish when empty.

Also restores the vocabulary ordering convention, and fixes a masked test
bug the mandated run surfaced: the flag-forwarding guard checked only the
first init line per workflow, but new-milestone has two, so a real failure
was reporting exit 0.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>

* fix(#2994): drop the stale new-milestone emitted-drift ack

new-milestone.md was acked for a +406 B growth measured against an
intermediate commit. Net against origin/next it SHRANK by 8 bytes, so
nothing needed the ack and it explained nothing — which the differential
attribution check reports as a stale acknowledgment, not a pass.

update.md's entry stays: it genuinely grew +703 B.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>

* fix(#2994): resolve the 15 failures from the full matrix run

All 15 were real and identical on both lanes.

REAL REGRESSION: autonomous.md hit 41479 chars against the #2196 guard's
40960 cap — a CHARS cap distinct from the LARGE tier byte cap, which the
five section stubs pushed it over. Extracted the 3a.5 UI Design Contract
body to references/; now 39968 chars, and the file nets -795 B vs base, so
its growth ack is deleted rather than left stale.

REAL DEFECT: docs referenced /gsd-transition, which is not a live
registered command. Reworded.

STALE FIXTURE: the emission byte-identity test hardcoded two marked
workflows; this branch legitimately marks fifteen. Fixture corrected — the
source was right.

The rest were drift guards over the eight workflows the earlier sweep did
not cover, retargeted at where the content now lives with non-vacuity
proven by blanking each step file and confirming failure. The GSD_WS
forwarding guard was checked as a possible real break and is not one: the
charclass narrowing is intact and forwarding works end to end.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>

* fix(#2994): drop the ack for a newly-added reference file

A new file's emitted ripple is attributable to the diff that adds it, so
the acknowledgment explained nothing and the differential check reports it
as stale. Removing the last entry removes the fragment — an empty one
signals nothing.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>

* fix(#2994): retarget the UI-contract guards and clear two transitive advisories

The §3a.5 extraction that brought autonomous.md under the #2196 char cap
moved its body to references/autonomous-ui-design-contract.md, so ten
guards in autonomous-ui-steps and check-ui-safety-gate were asserting it
against the host. Retargeted via a combined read, each proven non-vacuous
by blanking the reference file and confirming failure.

This class had already bitten twice on this branch because each sweep was
scoped to the workflows touched at that moment, so this one was
exhaustive: ~70 test files across all 13 workflows, zero further broken or
vacuous assertions found.

Also clears two high transitive advisories the matrix flagged on one lane
— fast-uri GHSA-7p8r-x3mc-p8w7 and three ip-address SSRF/trust-boundary
issues. Both pre-date this branch: package-lock.json was untouched until
now, so the production tree was byte-identical to the base. Lockfile-only,
package.json unchanged, verified against a real npm ci install.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>

* chore(#2994): backfill changeset pr number to 3030

---------

Co-authored-by: sim <sim@local>
Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com>
2026-08-03 19:59:58 -04:00

57 KiB
Raw Blame History

Initialize a new project through unified flow: questioning, research (optional), requirements, roadmap. This is the most leveraged moment in any project — deep questioning here means better plans, better execution, better outcomes. One workflow takes you from idea to ready-for-planning.

<required_reading> Read all files referenced by the invoking prompt's execution_context before starting. </required_reading>

<available_agent_types> Valid GSD subagent types (use exact names — do not fall back to 'general-purpose'):

  • gsd-project-researcher — Researches project-level technical decisions
  • gsd-research-synthesizer — Synthesizes findings from parallel research agents
  • gsd-roadmapper — Creates phased execution roadmaps </available_agent_types>

<auto_mode>

If section_manifest is null or "auto-mode-detection" is in its included list: read and execute gsd-core/workflows/new-project/steps/auto-mode-detection.md. Otherwise skip — do not read the file.

</auto_mode>

1. Setup

MANDATORY FIRST STEP — Execute these checks before ANY user interaction:

_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}"; if [ -f "$GSD_TOOLS" ]; then gsd_run() { node "$GSD_TOOLS" "$@"; }; elif [ -f "${_GSD_RUNTIME_ROOT}/.claude/gsd-core/bin/${_GSD_SHIM_NAME}" ]; then GSD_TOOLS="${_GSD_RUNTIME_ROOT}/.claude/gsd-core/bin/${_GSD_SHIM_NAME}"; gsd_run() { node "$GSD_TOOLS" "$@"; }; elif [ -f "${_GSD_RUNTIME_ROOT}/.codex/gsd-core/bin/${_GSD_SHIM_NAME}" ]; then GSD_TOOLS="${_GSD_RUNTIME_ROOT}/.codex/gsd-core/bin/${_GSD_SHIM_NAME}"; gsd_run() { node "$GSD_TOOLS" "$@"; }; elif command -v gsd-tools >/dev/null 2>&1; then GSD_TOOLS="$(command -v gsd-tools)"; gsd_run() { "$GSD_TOOLS" "$@"; }; elif [ -f "${CLAUDE_CONFIG_DIR:-$HOME/.claude}/gsd-core/bin/${_GSD_SHIM_NAME}" ]; then GSD_TOOLS="${CLAUDE_CONFIG_DIR:-$HOME/.claude}/gsd-core/bin/${_GSD_SHIM_NAME}"; gsd_run() { node "$GSD_TOOLS" "$@"; }; elif [ -f "${HERMES_HOME:-$HOME/.hermes}/gsd-core/bin/${_GSD_SHIM_NAME}" ]; then GSD_TOOLS="${HERMES_HOME:-$HOME/.hermes}/gsd-core/bin/${_GSD_SHIM_NAME}"; gsd_run() { node "$GSD_TOOLS" "$@"; }; elif [ -f "${CURSOR_CONFIG_DIR:-$HOME/.cursor}/gsd-core/bin/${_GSD_SHIM_NAME}" ]; then GSD_TOOLS="${CURSOR_CONFIG_DIR:-$HOME/.cursor}/gsd-core/bin/${_GSD_SHIM_NAME}"; gsd_run() { node "$GSD_TOOLS" "$@"; }; elif [ -f "${CODEX_HOME:-$HOME/.codex}/gsd-core/bin/${_GSD_SHIM_NAME}" ]; then GSD_TOOLS="${CODEX_HOME:-$HOME/.codex}/gsd-core/bin/${_GSD_SHIM_NAME}"; gsd_run() { node "$GSD_TOOLS" "$@"; }; elif [ -f "${GEMINI_CONFIG_DIR:-$HOME/.gemini}/gsd-core/bin/${_GSD_SHIM_NAME}" ]; then GSD_TOOLS="${GEMINI_CONFIG_DIR:-$HOME/.gemini}/gsd-core/bin/${_GSD_SHIM_NAME}"; gsd_run() { node "$GSD_TOOLS" "$@"; }; elif [ -f "${COPILOT_CONFIG_DIR:-$HOME/.copilot}/gsd-core/bin/${_GSD_SHIM_NAME}" ]; then GSD_TOOLS="${COPILOT_CONFIG_DIR:-$HOME/.copilot}/gsd-core/bin/${_GSD_SHIM_NAME}"; gsd_run() { node "$GSD_TOOLS" "$@"; }; elif [ -f "${WINDSURF_CONFIG_DIR:-$HOME/.codeium/windsurf}/gsd-core/bin/${_GSD_SHIM_NAME}" ]; then GSD_TOOLS="${WINDSURF_CONFIG_DIR:-$HOME/.codeium/windsurf}/gsd-core/bin/${_GSD_SHIM_NAME}"; gsd_run() { node "$GSD_TOOLS" "$@"; }; elif [ -f "${AUGMENT_CONFIG_DIR:-$HOME/.augment}/gsd-core/bin/${_GSD_SHIM_NAME}" ]; then GSD_TOOLS="${AUGMENT_CONFIG_DIR:-$HOME/.augment}/gsd-core/bin/${_GSD_SHIM_NAME}"; gsd_run() { node "$GSD_TOOLS" "$@"; }; elif [ -f "${TRAE_CONFIG_DIR:-$HOME/.trae}/gsd-core/bin/${_GSD_SHIM_NAME}" ]; then GSD_TOOLS="${TRAE_CONFIG_DIR:-$HOME/.trae}/gsd-core/bin/${_GSD_SHIM_NAME}"; gsd_run() { node "$GSD_TOOLS" "$@"; }; elif [ -f "${QWEN_CONFIG_DIR:-$HOME/.qwen}/gsd-core/bin/${_GSD_SHIM_NAME}" ]; then GSD_TOOLS="${QWEN_CONFIG_DIR:-$HOME/.qwen}/gsd-core/bin/${_GSD_SHIM_NAME}"; gsd_run() { node "$GSD_TOOLS" "$@"; }; elif [ -f "${CODEBUDDY_CONFIG_DIR:-$HOME/.codebuddy}/gsd-core/bin/${_GSD_SHIM_NAME}" ]; then GSD_TOOLS="${CODEBUDDY_CONFIG_DIR:-$HOME/.codebuddy}/gsd-core/bin/${_GSD_SHIM_NAME}"; gsd_run() { node "$GSD_TOOLS" "$@"; }; elif [ -f "${CLINE_CONFIG_DIR:-$HOME/.cline}/gsd-core/bin/${_GSD_SHIM_NAME}" ]; then GSD_TOOLS="${CLINE_CONFIG_DIR:-$HOME/.cline}/gsd-core/bin/${_GSD_SHIM_NAME}"; gsd_run() { node "$GSD_TOOLS" "$@"; }; elif [ -f "${GROK_AGENTS_HOME:-$HOME/.agents}/gsd-core/bin/${_GSD_SHIM_NAME}" ]; then GSD_TOOLS="${GROK_AGENTS_HOME:-$HOME/.agents}/gsd-core/bin/${_GSD_SHIM_NAME}"; gsd_run() { node "$GSD_TOOLS" "$@"; }; elif [ -f "${ANTIGRAVITY_CONFIG_DIR:-$HOME/.gemini/antigravity}/gsd-core/bin/${_GSD_SHIM_NAME}" ]; then GSD_TOOLS="${ANTIGRAVITY_CONFIG_DIR:-$HOME/.gemini/antigravity}/gsd-core/bin/${_GSD_SHIM_NAME}"; gsd_run() { node "$GSD_TOOLS" "$@"; }; elif [ -f "${OPENCODE_CONFIG_DIR:-${XDG_CONFIG_HOME:-$HOME/.config}/opencode}/gsd-core/bin/${_GSD_SHIM_NAME}" ]; then GSD_TOOLS="${OPENCODE_CONFIG_DIR:-${XDG_CONFIG_HOME:-$HOME/.config}/opencode}/gsd-core/bin/${_GSD_SHIM_NAME}"; gsd_run() { node "$GSD_TOOLS" "$@"; }; elif [ -f "${KILO_CONFIG_DIR:-${XDG_CONFIG_HOME:-$HOME/.config}/kilo}/gsd-core/bin/${_GSD_SHIM_NAME}" ]; then GSD_TOOLS="${KILO_CONFIG_DIR:-${XDG_CONFIG_HOME:-$HOME/.config}/kilo}/gsd-core/bin/${_GSD_SHIM_NAME}"; gsd_run() { node "$GSD_TOOLS" "$@"; }; else echo "ERROR: gsd-tools.cjs not found at $GSD_TOOLS and gsd-tools is not on PATH. Run: npx -y @opengsd/gsd-core@latest --claude --local" >&2; exit 1; fi; if [ -n "${CLAUDE_ENV_FILE:-}" ] && [ -n "${GSD_TOOLS:-}" ]; then printf "export PATH='%s':\"\$PATH\"\n" "${GSD_TOOLS%/*}" >> "$CLAUDE_ENV_FILE" 2>/dev/null || true; fi
AUTO_PARAM=""; if [[ "$ARGUMENTS" =~ (^|[[:space:]])--auto([[:space:]]|$) ]]; then AUTO_PARAM="--auto"; fi
INIT=$(gsd_run query init.new-project $AUTO_PARAM)
if [[ "$INIT" == @file:* ]]; then INIT=$(cat "${INIT#@file:}"); fi
AGENT_SKILLS_RESEARCHER=$(gsd_run query agent-skills gsd-project-researcher)
AGENT_SKILLS_SYNTHESIZER=$(gsd_run query agent-skills gsd-research-synthesizer)
AGENT_SKILLS_ROADMAPPER=$(gsd_run query agent-skills gsd-roadmapper)

Parse JSON for: researcher_model, synthesizer_model, roadmapper_model, commit_docs, project_exists, has_codebase_map, planning_exists, has_existing_code, has_package_file, is_brownfield, needs_codebase_map, has_git, git_worktree_root, in_nested_subdir, project_path, agents_installed, missing_agents, agent_runtime, agents_dir, required_agents, required_agents_installed, missing_required_agents, agent_skill_payloads_available, agent_skill_payload_agents, requirements_path, roadmap_path, config_path, research_dir, response_language.

If response_language is set: All user-facing questions, prompts, and explanations in this workflow MUST be presented in {response_language}. Technical terms, code, file paths, and subagent prompts stay in English — only user-facing output is translated.

If agents_installed is false: Display a warning before proceeding:

⚠ GSD agents not installed. The following agents are missing from your agents directory:
  {missing_agents joined with newline}

Runtime checked: {agent_runtime}
Agents directory checked: {agents_dir}
Required new-project agents missing:
  {missing_required_agents joined with newline, or "none"}

Agent skill payloads available: {agent_skill_payloads_available}
Agent skill payload agents:
  {agent_skill_payload_agents joined with newline, or "none"}

Skill payloads only provide prompt context. Named subagent spawns still require agent
definitions to be installed for this runtime.

Subagent spawns (gsd-project-researcher, gsd-research-synthesizer, gsd-roadmapper) will fail
with "agent type not found" if `required_agents_installed` is false. Run the installer with --global to make agents available:

  npx @opengsd/gsd-core@latest --global

Proceeding without research subagents — roadmap will be generated inline.

Skip Steps 6–7 (parallel research and synthesis) and proceed directly to roadmap creation in Step 8.

Detect runtime and set instruction file name:

Derive RUNTIME from the invoking prompt's execution_context path:

  • Path contains /.codex/ → RUNTIME=codex
  • Path contains /.gemini/ → RUNTIME=gemini
  • Path contains /.config/opencode/ or /.opencode/ → RUNTIME=opencode
  • Path contains /.trae/ → RUNTIME=trae
  • Otherwise → RUNTIME=claude

If execution_context path is not available, fall back to env vars:

if [ -n "$CODEX_HOME" ]; then RUNTIME="codex"
elif [ -n "$GEMINI_CONFIG_DIR" ]; then RUNTIME="gemini"
elif [ -n "$OPENCODE_CONFIG_DIR" ] || [ -n "$OPENCODE_CONFIG" ]; then RUNTIME="opencode"
elif [ -n "$TRAE_CONFIG_DIR" ]; then RUNTIME="trae"
else RUNTIME="claude"; fi

Set the instruction file variable via the shared runtime-name policy adapter (gsd_run query project-instruction-file, backed by getProjectInstructionFile in runtime-name-policy.cjs — the single source of truth shared with profile-output.cjs):

INSTRUCTION_FILE=$(gsd_run query project-instruction-file --runtime "$RUNTIME")

All subsequent references to the project instruction file use $INSTRUCTION_FILE.

If project_exists is true: Error — project already initialized. Use /gsd:progress.

Git init (#3491 — never nest .git inside an existing worktree):

  • If has_git true and in_nested_subdir true: skip git init; warn ⚠ Initializing inside existing worktree (${git_worktree_root}); planning files will track to outer repo.
  • If has_git true and in_nested_subdir false: skip git init (already at worktree root).
  • If has_git false: git init.

2. Brownfield Offer

If auto mode: Skip to Step 4 (assume greenfield, synthesize PROJECT.md from provided document).

If section_manifest is null or "codebase-map-offer" is in its included list: read and execute gsd-core/workflows/new-project/steps/codebase-map-offer.md. Otherwise skip — do not read the file.

If "Skip mapping" OR needs_codebase_map is false: Continue to Step 3.

If section_manifest is null or "auto-mode-config" is in its included list: read and execute gsd-core/workflows/new-project/steps/auto-mode-config.md. Otherwise skip — do not read the file.

2b. Prior Spike/Sketch Detection

Check for existing spike and sketch work that should inform project setup:

# Check for spike findings skill (project-local)
SPIKE_SKILL=$(ls ./.claude/skills/spike-findings-*/SKILL.md 2>/dev/null | head -1 || true)

# Check for sketch findings skill (project-local)
SKETCH_SKILL=$(ls ./.claude/skills/sketch-findings-*/SKILL.md 2>/dev/null | head -1 || true)

# Check for raw spikes/sketches in .planning/
HAS_SPIKES=$(ls .planning/spikes/MANIFEST.md 2>/dev/null)
HAS_SKETCHES=$(ls .planning/sketches/MANIFEST.md 2>/dev/null)

If any of these exist, surface them before questioning:

⚡ Prior exploration detected:
{if SPIKE_SKILL}  ✓ Spike findings skill: {path} — validated patterns from experiments
{if SKETCH_SKILL}  ✓ Sketch findings skill: {path} — validated design decisions
{if HAS_SPIKES && !SPIKE_SKILL}  ◆ Raw spikes in .planning/spikes/ — consider `/gsd:spike --wrap-up` to package findings
{if HAS_SKETCHES && !SKETCH_SKILL}  ◆ Raw sketches in .planning/sketches/ — consider `/gsd:sketch --wrap-up` to package findings

These findings will be incorporated into project context and available to planning agents.

If spike/sketch findings skills exist, read their SKILL.md files to inform the questioning phase — they contain validated patterns, constraints, and design decisions that should shape the project definition.

3. Deep Questioning

If auto mode: Skip (already handled in Step 2a). Extract project context from provided document instead and proceed to Step 4.

Display stage banner:

━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━
 GSD ► QUESTIONING
━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━

Open the conversation:

Ask inline (freeform, NOT AskUserQuestion):

"What do you want to build?"

Wait for their response. This gives you the context needed to ask intelligent follow-up questions.

Research-before-questions mode: Check if workflow.research_before_questions is enabled in .planning/config.json (or the config from init context). When enabled, before asking follow-up questions about a topic area:

  1. Do a brief web search for best practices related to what the user described
  2. Mention key findings naturally as you ask questions (e.g., "Most projects like this use X — is that what you're thinking, or something different?")
  3. This makes questions more informed without changing the conversational flow

When disabled (default), ask questions directly as before.

Follow the thread:

Based on what they said, ask follow-up questions that dig into their response. Use AskUserQuestion with options that probe what they mentioned — interpretations, clarifications, concrete examples.

Keep following threads. Each answer opens new threads to explore. Ask about:

  • What excited them
  • What problem sparked this
  • What they mean by vague terms
  • What it would actually look like
  • What's already decided

Consult questioning.md for techniques:

  • Challenge vagueness
  • Make abstract concrete
  • Surface assumptions
  • Find edges
  • Reveal motivation

Check context (background, not out loud):

As you go, mentally check the context checklist from questioning.md. If gaps remain, weave questions naturally. Don't suddenly switch to checklist mode.

Decision gate:

When you could write a clear PROJECT.md, use AskUserQuestion:

  • header: "Ready?"
  • question: "I think I understand what you're after. Ready to create PROJECT.md?"
  • options:
    • "Create PROJECT.md" — Let's move forward
    • "Keep exploring" — I want to share more / ask me more

If "Keep exploring" — ask what they want to add, or identify gaps and probe naturally.

Loop until "Create PROJECT.md" selected.

4. Write PROJECT.md

If auto mode: Synthesize from provided document. No "Ready?" gate was shown — proceed directly to commit.

Synthesize all context into .planning/PROJECT.md using the template from templates/project.md.

For greenfield projects:

Initialize requirements as hypotheses:

## Requirements

### Validated

(None yet — ship to validate)

### Active

- [ ] [Requirement 1]
- [ ] [Requirement 2]
- [ ] [Requirement 3]

### Out of Scope

- [Exclusion 1] — [why]
- [Exclusion 2] — [why]

All Active requirements are hypotheses until shipped and validated.

For brownfield projects (codebase map exists):

Infer Validated requirements from existing code:

  1. Read .planning/codebase/ARCHITECTURE.md and STACK.md
  2. Identify what the codebase already does
  3. These become the initial Validated set
## Requirements

### Validated

- ✓ [Existing capability 1] — existing
- ✓ [Existing capability 2] — existing
- ✓ [Existing capability 3] — existing

### Active

- [ ] [New requirement 1]
- [ ] [New requirement 2]

### Out of Scope

- [Exclusion 1] — [why]

Key Decisions:

Initialize with any decisions made during questioning:

## Key Decisions

| Decision | Rationale | Outcome |
|----------|-----------|---------|
| [Choice from questioning] | [Why] | — Pending |

Last updated footer:

---
*Last updated: [date] after initialization*

Evolution section (include at the end of PROJECT.md, before the footer):

## Evolution

This document evolves at phase transitions and milestone boundaries.

**After each phase transition** (via `/gsd-transition`):
1. Requirements invalidated? → Move to Out of Scope with reason
2. Requirements validated? → Move to Validated with phase reference
3. New requirements emerged? → Add to Active
4. Decisions to log? → Add to Key Decisions
5. "What This Is" still accurate? → Update if drifted

**After each milestone** (via `/gsd:complete-milestone`):
1. Full review of all sections
2. Core Value check — still the right priority?
3. Audit Out of Scope — reasons still valid?
4. Update Context with current state

Do not compress. Capture everything gathered.

Commit PROJECT.md:

mkdir -p .planning
gsd_run query commit "docs: initialize project" --files .planning/PROJECT.md

5. Workflow Preferences

If auto mode: Skip — config was collected in Step 2a. Proceed to Step 5.5.

Check for global defaults at ~/.gsd/defaults.json. If the file exists, read and display its contents before asking:

DEFAULTS_RAW=$(cat ~/.gsd/defaults.json 2>/dev/null)

Format the JSON into human-readable bullets using these label mappings:

  • mode → "Mode"
  • granularity → "Granularity"
  • parallelization → "Execution" (true → "Parallel", false → "Sequential")
  • commit_docs → "Git Tracking" (true → "Yes", false → "No")
  • model_profile → "AI Models"
  • workflow.research → "Research" (true → "Yes", false → "No")
  • workflow.plan_check → "Plan Check" (true → "Yes", false → "No")
  • workflow.verifier → "Verifier" (true → "Yes", false → "No")
  • plan_review.source_grounding → "Drift Guard" (true → "Yes", false → "No")

Display above the prompt:

Your saved defaults (~/.gsd/defaults.json):
  • Mode: [value]
  • Granularity: [value]
  • Execution: [Parallel|Sequential]
  • Git Tracking: [Yes|No]
  • AI Models: [value]
  • Research: [Yes|No]
  • Plan Check: [Yes|No]
  • Verifier: [Yes|No]
  • Drift Guard: [Yes|No]

Then ask:

AskUserQuestion([
  {
    question: "Use these saved defaults?",
    header: "Defaults",
    multiSelect: false,
    options: [
      { label: "Use as-is (Recommended)", description: "Proceed with the defaults shown above" },
      { label: "Modify some settings", description: "Keep defaults, change a few" },
      { label: "Configure fresh", description: "Walk through all questions from scratch" }
    ]
  }
])

If "Use as-is": use the defaults values for config.json and skip directly to Commit config.json below.

If "Modify some settings": present a selection of every setting with its current saved value.

If TEXT_MODE is active (non-Claude runtimes): display a numbered list and ask the user to type the numbers of settings they want to change (comma-separated). Parse the response and proceed.

Which settings do you want to change? (enter numbers, comma-separated)

  1. Mode — Currently: [value]
  2. Granularity — Currently: [value]
  3. Execution — Currently: [Parallel|Sequential]
  4. Git Tracking — Currently: [Yes|No]
  5. AI Models — Currently: [value]
  6. Research — Currently: [Yes|No]
  7. Plan Check — Currently: [Yes|No]
  8. Verifier — Currently: [Yes|No]
  9. Drift Guard — Currently: [Yes|No]

Otherwise (Claude runtime with AskUserQuestion): use a two-block split to stay within the 4-option runtime cap.

AskUserQuestion([
  {
    question: "Do you want to change any core workflow settings (Mode, Granularity, Execution, Git Tracking)?",
    header: "Core Settings",
    multiSelect: false,
    options: [
      { label: "Yes", description: "Choose from core workflow settings" },
      { label: "No", description: "Skip core workflow settings" }
    ]
  }
])

If "Yes", ask:

AskUserQuestion([
  {
    question: "Which core workflow settings do you want to change?",
    header: "Core Select",
    multiSelect: true,
    options: [
      { label: "Mode", description: "Currently: [value]" },
      { label: "Granularity", description: "Currently: [value]" },
      { label: "Execution", description: "Currently: [Parallel|Sequential]" },
      { label: "Git Tracking", description: "Currently: [Yes|No]" }
    ]
  }
])

Then ask:

AskUserQuestion([
  {
    question: "Do you want to change any model/agent settings (AI Models, Research, Plan Check, Verifier)?",
    header: "Agent Settings",
    multiSelect: false,
    options: [
      { label: "Yes", description: "Choose from model/agent settings" },
      { label: "No", description: "Skip model/agent settings" }
    ]
  }
])

If "Yes", ask:

AskUserQuestion([
  {
    question: "Which model/agent settings do you want to change?",
    header: "Agent Select",
    multiSelect: true,
    options: [
      { label: "AI Models", description: "Currently: [value]" },
      { label: "Research", description: "Currently: [Yes|No]" },
      { label: "Plan Check", description: "Currently: [Yes|No]" },
      { label: "Verifier", description: "Currently: [Yes|No]" }
    ]
  }
])

Then ask:

AskUserQuestion([
  {
    question: "Do you want to change the Drift Guard setting (plan-review source-grounding)?",
    header: "Drift Guard",
    multiSelect: false,
    options: [
      { label: "Yes", description: "Toggle Drift Guard (currently: [Yes|No])" },
      { label: "No", description: "Keep current Drift Guard setting" }
    ]
  }
])

For each selected setting across both blocks, ask only that question using the option set from Round 1 / Round 2 below. Merge user answers over the saved defaults — unchanged settings retain their saved values. Then skip to Commit config.json.

If "Configure fresh" or ~/.gsd/defaults.json doesn't exist: proceed with the questions below.

Round 1 — Core workflow settings (4 questions):

questions: [
  {
    header: "Mode",
    question: "How do you want to work?",
    multiSelect: false,
    options: [
      { label: "YOLO (Recommended)", description: "Auto-approve, just execute" },
      { label: "Interactive", description: "Confirm at each step" }
    ]
  },
  {
    header: "Granularity",
    question: "How finely should scope be sliced into phases?",
    multiSelect: false,
    options: [
      { label: "Coarse", description: "Fewer, broader phases (3-5 phases, 1-3 plans each)" },
      { label: "Standard", description: "Balanced phase size (5-8 phases, 3-5 plans each)" },
      { label: "Fine", description: "Many focused phases (8-12 phases, 5-10 plans each)" }
    ]
  },
  {
    header: "Execution",
    question: "Run plans in parallel?",
    multiSelect: false,
    options: [
      { label: "Parallel (Recommended)", description: "Independent plans run simultaneously" },
      { label: "Sequential", description: "One plan at a time" }
    ]
  },
  {
    header: "Git Tracking",
    question: "Commit planning docs to git?",
    multiSelect: false,
    options: [
      { label: "Yes (Recommended)", description: "Planning docs tracked in version control" },
      { label: "No", description: "Keep .planning/ local-only (add to .gitignore)" }
    ]
  }
]

Round 2 — Workflow agents:

These spawn additional agents during planning/execution. They add tokens and time but improve quality.

Agent When it runs What it does
Researcher Before planning each phase Investigates domain, finds patterns, surfaces gotchas
Plan Checker After plan is created Verifies plan actually achieves the phase goal
Verifier After phase execution Confirms must-haves were delivered

All recommended for important projects. Skip for quick experiments.

questions: [
  {
    header: "Research",
    question: "Research before planning each phase? (adds tokens/time)",
    multiSelect: false,
    options: [
      { label: "Yes (Recommended)", description: "Investigate domain, find patterns, surface gotchas" },
      { label: "No", description: "Plan directly from requirements" }
    ]
  },
  {
    header: "Plan Check",
    question: "Verify plans will achieve their goals? (adds tokens/time)",
    multiSelect: false,
    options: [
      { label: "Yes (Recommended)", description: "Catch gaps before execution starts" },
      { label: "No", description: "Execute plans without verification" }
    ]
  },
  {
    header: "Verifier",
    question: "Verify work satisfies requirements after each phase? (adds tokens/time)",
    multiSelect: false,
    options: [
      { label: "Yes (Recommended)", description: "Confirm deliverables match phase goals" },
      { label: "No", description: "Trust execution, skip verification" }
    ]
  }
]

// Model profile uses a two-question split because AskUserQuestion enforces a hard
// 4-option cap and there are 5 valid profiles (quality, balanced, budget, adaptive,
// inherit). Q1 routes between adaptive/standard-tier/inherit; Q2 (shown only when
// Q1 = "Standard tier…") picks among the three standard profiles. Mirrors the
// /gsd:settings split (#3784, #1516).
questions: [
  {
    header: "AI Models",
    question: "Which AI models for planning agents?",
    multiSelect: false,
    options: [
      { label: "Adaptive (Recommended)", description: "Role-based cost optimization: heavy roles use the highest-tier model available on the active runtime, light roles use the cheapest. Best balance of quality and cost across all supported runtimes (Claude, Codex, Gemini, OpenRouter, local)." },
      { label: "Standard tier…", description: "Choose Quality, Balanced, or Budget — flat tier applied to all agents" },
      { label: "Inherit", description: "Use the current session model for all agents (required for non-Claude runtimes: Codex, Gemini CLI, OpenCode /model, OpenRouter, local models)" }
    ]
  }
]

**Conditional visibility — model_profile (Q2):**
  Only ask this question when Q1's answer is "Standard tier…".
  If Q1 = "Adaptive (Recommended)" → write model_profile=adaptive and SKIP Q2.
  If Q1 = "Inherit"                → write model_profile=inherit and SKIP Q2.
  If user cancels Q2 after picking "Standard tier…" → leave existing model_profile value unchanged.

questions: [
  {
    question: "Which standard profile? (Quality / Balanced / Budget)",
    header: "Model Tier",
    multiSelect: false,
    options: [
      { label: "Quality", description: "Opus everywhere except verification (highest cost) — Claude only" },
      { label: "Balanced", description: "Opus for planning, Sonnet for research/execution/verification — Claude only" },
      { label: "Budget", description: "Sonnet for writing, Haiku for research/verification (lowest cost) — Claude only" }
    ]
  }
]

// Map UI choices → config values:
//   Q1 "Adaptive (Recommended)"         → model_profile = "adaptive"
//   Q1 "Inherit"                        → model_profile = "inherit"
//   Q1 "Standard tier…" + Q2 "Quality"  → model_profile = "quality"
//   Q1 "Standard tier…" + Q2 "Balanced" → model_profile = "balanced"
//   Q1 "Standard tier…" + Q2 "Budget"   → model_profile = "budget"

PR body onboarding: Ask which optional PRD-style sections /gsd:ship should append to generated PR bodies. Use the same ship.pr_body_sections mapping as Step 2a: selected sections get enabled: true, seeded-but-unselected sections get enabled: false, and selecting none writes an empty list. Prefer lean/agile PRD sections that make user value, acceptance criteria, Definition of Done, and stakeholder traceability explicit.

Recommended options:

  • User Stories & Acceptance Criteria
  • Risks & Dependencies
  • Success Metrics & Release Criteria
  • Stakeholder Review & Approval

Create .planning/config.json with all settings (CLI fills in remaining defaults automatically):

mkdir -p .planning
gsd_run query config-new-project '{"mode":"[yolo|interactive]","granularity":"[selected]","parallelization":true|false,"commit_docs":true|false,"model_profile":"quality|balanced|budget|adaptive|inherit","workflow":{"research":true|false,"plan_check":true|false,"verifier":true|false,"nyquist_validation":[false if granularity=coarse, true otherwise]},"plan_review":{"source_grounding":true|false},"ship":{"pr_body_sections":[{"heading":"User Stories & Acceptance Criteria","enabled":true|false,"source":"REQUIREMENTS.md ## User Stories || REQUIREMENTS.md ## Acceptance Criteria","fallback":"- Acceptance criteria are covered by the linked requirements and verification evidence."},{"heading":"Risks & Dependencies","enabled":true|false,"source":"PLAN.md ## Risks || PLAN.md ## Dependencies","fallback":"- No known high-risk rollout dependencies."},{"heading":"Success Metrics & Release Criteria","enabled":true|false,"source":"REQUIREMENTS.md ## Definition of Done || VERIFICATION.md ## Release Criteria","fallback":"- Release when automated verification and required manual checks pass."},{"heading":"Stakeholder Review & Approval","enabled":true|false,"template":"- Product owner approval pending for {phase_name}."}]}}'

Note: Run /gsd:settings anytime to update model profile, workflow agents, branching strategy, and other preferences.

If commit_docs = No:

  • Set commit_docs: false in config.json
  • Add .planning/ to .gitignore (create if needed)

If commit_docs = Yes:

  • No additional gitignore entries needed

Commit config.json:

gsd_run query commit "chore: add project config" --files .planning/config.json

5.1. Sub-Repo Detection

Detect multi-repo workspace:

Check for directories with their own .git folders (separate repos within the workspace):

find . -maxdepth 1 -type d -not -name ".*" -not -name "node_modules" -exec test -d "{}/.git" \; -print

If sub-repos found:

Strip the ./ prefix to get directory names (e.g., ./backend → backend).

Use AskUserQuestion:

  • header: "Multi-Repo Workspace"
  • question: "I detected separate git repos in this workspace. Which directories contain code that GSD should commit to?"
  • multiSelect: true
  • options: one option per detected directory
    • "[directory name]" — Separate git repo

If user selects one or more directories:

  • Set planning.sub_repos in config.json to the selected directory names array (e.g., ["backend", "frontend"])
  • Auto-set planning.commit_docs to false (planning docs stay local in multi-repo workspaces)
  • Add .planning/ to .gitignore if not already present

Config changes are saved locally — no commit needed since commit_docs is false in multi-repo mode.

If no sub-repos found or user selects none: Continue with no changes to config.

5.5. Resolve Model Profile

Use models from init: researcher_model, synthesizer_model, roadmapper_model.

6. Research Decision

If auto mode: Default to "Research first" without asking.

Use AskUserQuestion:

  • header: "Research"
  • question: "Research the domain ecosystem before defining requirements?"
  • options:
    • "Research first (Recommended)" — Discover standard stacks, expected features, architecture patterns
    • "Skip research" — I know this domain well, go straight to requirements

If "Research first":

Display stage banner:

━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━
 GSD ► RESEARCHING
━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━

Researching [domain] ecosystem...

Create research directory:

mkdir -p .planning/research

Determine milestone context:

Check if this is greenfield or subsequent milestone:

  • If no "Validated" requirements in PROJECT.md → Greenfield (building from scratch)
  • If "Validated" requirements exist → Subsequent milestone (adding to existing app)

Display spawning indicator:

◆ Spawning 4 researchers in parallel... (each runs in a subagent — no output until they return, ~1–5 min; expected, not a freeze)
  → Stack research
  → Features research
  → Architecture research
  → Pitfalls research

Spawn 4 parallel gsd-project-researcher agents with path references:

Model omission (#2517). Omit the model parameter entirely when the value it would carry (researcher_model, synthesizer_model, roadmapper_model) is "inherit" or empty. An empty value 404s on runtimes without native tier aliases — the default on non-Claude runtimes. Omitting it inherits the orchestrator's model. See @gsd-core/references/model-profile-resolution.md.

Agent(prompt="<research_type>
Project Research — Stack dimension for [domain].
</research_type>

<milestone_context>
[greenfield OR subsequent]

Greenfield: Research the standard stack for building [domain] from scratch.
Subsequent: Research what's needed to add [target features] to an existing [domain] app. Don't re-research the existing system.
</milestone_context>

<question>
What's the standard 2025 stack for [domain]?
</question>

<files_to_read>
- {project_path} (Project context and goals)
</files_to_read>

${AGENT_SKILLS_RESEARCHER}

<downstream_consumer>
Your STACK.md feeds into roadmap creation. Be prescriptive:
- Specific libraries with versions
- Clear rationale for each choice
- What NOT to use and why
</downstream_consumer>

<quality_gate>
- [ ] Versions are current (verify with Context7/official docs, not training data)
- [ ] Rationale explains WHY, not just WHAT
- [ ] Confidence levels assigned to each recommendation
</quality_gate>

<!-- #2508 runtime-aware-dispatch -->

> **Runtime-aware dispatch (#2508 Phase 4).** GSD workflows dispatch specialized subagents by role. Before dispatching on a built-in-only runtime (kimi-code — three built-ins only), resolve the role to a built-in via `gsd_run query resolve-dispatch-type --requested <role> --raw`. On named-dispatch runtimes (Claude/OpenCode/…) the role is returned unchanged; on kimi-code it maps to `coder`/`explore`/`plan` by role-suffix. The persona rides `${AGENT_SKILLS_<ROLE>}` (Phase 3) regardless. See @gsd-core/references/runtime-aware-dispatch.md.

<output>
Write to: {research_dir}/STACK.md
Use template: ~/.claude/gsd-core/templates/research-project/STACK.md
</output>
", subagent_type="gsd-project-researcher", model="{researcher_model}", description="Stack research")

Agent(prompt="<research_type>
Project Research — Features dimension for [domain].
</research_type>

<milestone_context>
[greenfield OR subsequent]

Greenfield: What features do [domain] products have? What's table stakes vs differentiating?
Subsequent: How do [target features] typically work? What's expected behavior?
</milestone_context>

<question>
What features do [domain] products have? What's table stakes vs differentiating?
</question>

<files_to_read>
- {project_path} (Project context)
</files_to_read>

${AGENT_SKILLS_RESEARCHER}

<downstream_consumer>
Your FEATURES.md feeds into requirements definition. Categorize clearly:
- Table stakes (must have or users leave)
- Differentiators (competitive advantage)
- Anti-features (things to deliberately NOT build)
</downstream_consumer>

<quality_gate>
- [ ] Categories are clear (table stakes vs differentiators vs anti-features)
- [ ] Complexity noted for each feature
- [ ] Dependencies between features identified
</quality_gate>

<output>
Write to: {research_dir}/FEATURES.md
Use template: ~/.claude/gsd-core/templates/research-project/FEATURES.md
</output>
", subagent_type="gsd-project-researcher", model="{researcher_model}", description="Features research")

Agent(prompt="<research_type>
Project Research — Architecture dimension for [domain].
</research_type>

<milestone_context>
[greenfield OR subsequent]

Greenfield: How are [domain] systems typically structured? What are major components?
Subsequent: How do [target features] integrate with existing [domain] architecture?
</milestone_context>

<question>
How are [domain] systems typically structured? What are major components?
</question>

<files_to_read>
- {project_path} (Project context)
</files_to_read>

${AGENT_SKILLS_RESEARCHER}

<downstream_consumer>
Your ARCHITECTURE.md informs phase structure in roadmap. Include:
- Component boundaries (what talks to what)
- Data flow (how information moves)
- Suggested build order (dependencies between components)
</downstream_consumer>

<quality_gate>
- [ ] Components clearly defined with boundaries
- [ ] Data flow direction explicit
- [ ] Build order implications noted
</quality_gate>

<output>
Write to: {research_dir}/ARCHITECTURE.md
Use template: ~/.claude/gsd-core/templates/research-project/ARCHITECTURE.md
</output>
", subagent_type="gsd-project-researcher", model="{researcher_model}", description="Architecture research")

Agent(prompt="<research_type>
Project Research — Pitfalls dimension for [domain].
</research_type>

<milestone_context>
[greenfield OR subsequent]

Greenfield: What do [domain] projects commonly get wrong? Critical mistakes?
Subsequent: What are common mistakes when adding [target features] to [domain]?
</milestone_context>

<question>
What do [domain] projects commonly get wrong? Critical mistakes?
</question>

<files_to_read>
- {project_path} (Project context)
</files_to_read>

${AGENT_SKILLS_RESEARCHER}

<downstream_consumer>
Your PITFALLS.md prevents mistakes in roadmap/planning. For each pitfall:
- Warning signs (how to detect early)
- Prevention strategy (how to avoid)
- Which phase should address it
</downstream_consumer>

<quality_gate>
- [ ] Pitfalls are specific to this domain (not generic advice)
- [ ] Prevention strategies are actionable
- [ ] Phase mapping included where relevant
</quality_gate>

<output>
Write to: {research_dir}/PITFALLS.md
Use template: ~/.claude/gsd-core/templates/research-project/PITFALLS.md
</output>
", subagent_type="gsd-project-researcher", model="{researcher_model}", description="Pitfalls research")

ORCHESTRATOR RULE — CODEX RUNTIME: After calling all 4 researcher Agent() calls above, do NOT read research files or synthesize content independently while the subagents are active. Wait for all 4 researchers to complete before spawning the synthesizer. This prevents duplicate work and wasted context.

After all 4 agents complete, spawn synthesizer to create SUMMARY.md:

Agent(prompt="
<task>
Synthesize research outputs into SUMMARY.md.
</task>

<files_to_read>
- {research_dir}/STACK.md
- {research_dir}/FEATURES.md
- {research_dir}/ARCHITECTURE.md
- {research_dir}/PITFALLS.md
</files_to_read>

${AGENT_SKILLS_SYNTHESIZER}

<output>
Write to: {research_dir}/SUMMARY.md
Use template: ~/.claude/gsd-core/templates/research-project/SUMMARY.md
Commit after writing.
</output>
", subagent_type="gsd-research-synthesizer", model="{synthesizer_model}", description="Synthesize research")

ORCHESTRATOR RULE — CODEX RUNTIME: After calling Agent() above, stop working on this task immediately. Do not read more files, edit code, or run tests related to this task while the subagent is active. Wait for the subagent to return its result. This prevents duplicate work, conflicting edits, and wasted context. Only resume when the subagent result is available.

Synthesizer output self-heal (#222) — verify SUMMARY.md materialized: The synthesizer's canonical output is .planning/research/SUMMARY.md on disk; its brief structured return (## SYNTHESIS COMPLETE plus a few ### confirmation lines) is NOT the file content. A known LLM false-refusal (issue #222) sometimes makes the agent return the full SUMMARY.md document inline — fabricating a write restriction (e.g. "the runtime is blocking file writes") — instead of writing the file. Prompt hardening alone does not fully eliminate it, so the orchestrator MUST absorb the failure deterministically before spawning gsd-roadmapper:

  1. Verify .planning/research/SUMMARY.md exists AND is substantive — non-empty, and free of any leftover <!-- gsd:write-continue --> continuation sentinel (which marks a truncated/incomplete write). You may validate with gsd_run verify-summary .planning/research/SUMMARY.md — it exits 0 regardless, so check its JSON passed field ("passed": false means missing or invalid), not the process exit code. If it passes, continue normally.
  2. If it is MISSING or invalid AND the synthesizer's return message contains the FULL SUMMARY.md document — recognizable by the template's top-level markers # Project Research Summary, ## Key Findings, ## Implications for Roadmap, and ## Sources, not merely the brief ## SYNTHESIS COMPLETE confirmation — the false-refusal fired: write that returned document to .planning/research/SUMMARY.md with the Write tool, then commit ALL research artifacts the synthesizer owns (it commits on behalf of the four researchers) with gsd_run query commit "docs: complete project research" --files .planning/research/ unless they are already committed. Log ⚠ #222 self-heal: synthesizer returned SUMMARY.md inline without writing it; orchestrator persisted the file.
  3. If it is MISSING or invalid AND the return is only a brief confirmation (no full SUMMARY document to recover), the synthesizer genuinely failed — surface the error and stop; do NOT spawn gsd-roadmapper against a missing or incomplete SUMMARY.md.

This guarantees gsd-roadmapper (which lists SUMMARY.md as required reading) never runs against a missing or truncated SUMMARY.md.

Display research complete banner and key findings:

━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━
 GSD ► RESEARCH COMPLETE ✓
━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━

## Key Findings

**Stack:** [from SUMMARY.md]
**Table Stakes:** [from SUMMARY.md]
**Watch Out For:** [from SUMMARY.md]

Files: `.planning/research/`

If "Skip research": Continue to Step 7.

7. Define Requirements

Display stage banner:

━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━
 GSD ► DEFINING REQUIREMENTS
━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━

Load context:

Read PROJECT.md and extract:

  • Core value (the ONE thing that must work)
  • Stated constraints (budget, timeline, tech limitations)
  • Any explicit scope boundaries

If research exists: Read research/FEATURES.md and extract feature categories.

If auto mode:

  • Auto-include all table stakes features (users expect these)
  • Include features explicitly mentioned in provided document
  • Auto-defer differentiators not mentioned in document
  • Skip per-category AskUserQuestion loops
  • Skip "Any additions?" question
  • Skip requirements approval gate
  • Generate REQUIREMENTS.md and commit directly

Present features by category (interactive mode only):

Here are the features for [domain]:

## Authentication
**Table stakes:**
- Sign up with email/password
- Email verification
- Password reset
- Session management

**Differentiators:**
- Magic link login
- OAuth (Google, GitHub)
- 2FA

**Research notes:** [any relevant notes]

---

## [Next Category]
...

If no research: Gather requirements through conversation instead.

Ask: "What are the main things users need to be able to do?"

For each capability mentioned:

  • Ask clarifying questions to make it specific
  • Probe for related capabilities
  • Group into categories

Scope each category:

For each category, use AskUserQuestion:

  • header: "[Category]" (max 12 chars)
  • question: "Which [category] features are in v1?"
  • multiSelect: true
  • options:
    • "[Feature 1]" — [brief description]
    • "[Feature 2]" — [brief description]
    • "[Feature 3]" — [brief description]
    • "None for v1" — Defer entire category

Track responses:

  • Selected features → v1 requirements
  • Unselected table stakes → v2 (users expect these)
  • Unselected differentiators → out of scope

Identify gaps:

Use AskUserQuestion:

  • header: "Additions"
  • question: "Any requirements research missed? (Features specific to your vision)"
  • options:
    • "No, research covered it" — Proceed
    • "Yes, let me add some" — Capture additions

Validate core value:

Cross-check requirements against Core Value from PROJECT.md. If gaps detected, surface them.

Generate REQUIREMENTS.md:

Create .planning/REQUIREMENTS.md with:

  • v1 Requirements grouped by category (checkboxes, REQ-IDs)
  • v2 Requirements (deferred)
  • Out of Scope (explicit exclusions with reasoning)
  • Traceability section (empty, filled by roadmap)

REQ-ID format: [CATEGORY]-[NUMBER] (AUTH-01, CONTENT-02)

Requirement quality criteria:

Good requirements are:

  • Specific and testable: "User can reset password via email link" (not "Handle password reset")
  • User-centric: "User can X" (not "System does Y")
  • Atomic: One capability per requirement (not "User can login and manage profile")
  • Independent: Minimal dependencies on other requirements

Reject vague requirements. Push for specificity:

  • "Handle authentication" → "User can log in with email/password and stay logged in across sessions"
  • "Support sharing" → "User can share post via link that opens in recipient's browser"

Present full requirements list (interactive mode only):

Show every requirement (not counts) for user confirmation:

## v1 Requirements

### Authentication
- [ ] **AUTH-01**: User can create account with email/password
- [ ] **AUTH-02**: User can log in and stay logged in across sessions
- [ ] **AUTH-03**: User can log out from any page

### Content
- [ ] **CONT-01**: User can create posts with text
- [ ] **CONT-02**: User can edit their own posts

[... full list ...]

---

Does this capture what you're building? (yes / adjust)

If "adjust": Return to scoping.

Commit requirements:

gsd_run query commit "docs: define v1 requirements" --files .planning/REQUIREMENTS.md

7.5. Project Structure Mode

If auto mode: Set PROJECT_MODE=mvp and skip this prompt.

Mode prompt: Vertical MVP vs Horizontal Layers.

Ask the user how they want to structure the project. Use AskUserQuestion with two options:

  • Vertical MVP — get a working app fast, add features slice by slice. Each phase delivers an end-to-end user capability. (Recommended for new products and rapid-iteration MVPs.)
  • Horizontal Layers — build complete technical layers (DB → API → UI → wiring) and assemble at the end. (Better for infrastructure-heavy projects with multiple developers.)

Set PROJECT_MODE=mvp if the user picks Vertical MVP, otherwise PROJECT_MODE=standard.

When TEXT_MODE=true (per the workflow's existing TEXT_MODE handling for non-Claude runtimes), present the same two options as a plain-text numbered list and ask the user to type their choice number.

8. Create Roadmap

Display stage banner:

━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━
 GSD ► CREATING ROADMAP
━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━

◆ Spawning roadmapper... (runs in a subagent — no output until it returns, ~1–5 min; expected, not a freeze)

ROADMAP.md template — mode-aware emit. When generating the initial ROADMAP.md:

  • If PROJECT_MODE=mvp: under each ### Phase N: header, emit **Mode:** mvp on the line immediately following **Goal:**. This sets every initial phase to MVP mode (per Phase-4-Persistence decision: per-phase mode, not project-wide config).
  • If PROJECT_MODE=standard: emit the standard ROADMAP.md template with no **Mode:** lines (Horizontal Layers standard template — no behavioral change for users who pick Horizontal Layers).

Example MVP-mode emit for Phase 1:

### Phase 1: [Name]
**Goal:** [Goal]
**Mode:** mvp
**Success Criteria**:
1. [Criterion]

Pass PROJECT_MODE to the roadmapper so it applies the correct template.

Spawn gsd-roadmapper agent with path references:

Agent(prompt="
<planning_context>

<files_to_read>
- {project_path} (Project context)
- {requirements_path} (v1 Requirements)
- {research_dir}/SUMMARY.md (Research findings - if exists)
- {config_path} (Granularity and mode settings)
</files_to_read>

${AGENT_SKILLS_ROADMAPPER}

</planning_context>

<instructions>
Create roadmap:
1. Derive phases from requirements (don't impose structure)
2. Map every v1 requirement to exactly one phase
3. Derive 2-5 success criteria per phase (observable user behaviors)
4. Validate 100% coverage
5. Write files immediately (ROADMAP.md, STATE.md, update REQUIREMENTS.md traceability)
6. Return ROADMAP CREATED with summary

Write files first, then return. This ensures artifacts persist even if context is lost.
</instructions>
", subagent_type="gsd-roadmapper", model="{roadmapper_model}", description="Create roadmap")

ORCHESTRATOR RULE — CODEX RUNTIME: After calling Agent() above, stop working on this task immediately. Do not read more files, edit code, or run tests related to this task while the subagent is active. Wait for the subagent to return its result. This prevents duplicate work, conflicting edits, and wasted context. Only resume when the subagent result is available.

Handle roadmapper return:

If ## ROADMAP BLOCKED:

  • Present blocker information
  • Work with user to resolve
  • Re-spawn when resolved

If ## ROADMAP CREATED:

Read the created ROADMAP.md and present it nicely inline:

---

## Proposed Roadmap

**[N] phases** | **[X] requirements mapped** | All v1 requirements covered ✓

| # | Phase | Goal | Requirements | Success Criteria |
|---|-------|------|--------------|------------------|
| 1 | [Name] | [Goal] | [REQ-IDs] | [count] |
| 2 | [Name] | [Goal] | [REQ-IDs] | [count] |
| 3 | [Name] | [Goal] | [REQ-IDs] | [count] |
...

### Phase Details

**Phase 1: [Name]**
Goal: [goal]
Requirements: [REQ-IDs]
Success criteria:
1. [criterion]
2. [criterion]
3. [criterion]

**Phase 2: [Name]**
Goal: [goal]
Requirements: [REQ-IDs]
Success criteria:
1. [criterion]
2. [criterion]

[... continue for all phases ...]

---

If auto mode: Skip approval gate — auto-approve and commit directly.

CRITICAL: Ask for approval before committing (interactive mode only):

Use AskUserQuestion:

  • header: "Roadmap"
  • question: "Does this roadmap structure work for you?"
  • options:
    • "Approve" — Commit and continue
    • "Adjust phases" — Tell me what to change
    • "Review full file" — Show raw ROADMAP.md

If "Approve": Continue to commit.

If "Adjust phases":

  • Get user's adjustment notes

  • Re-spawn roadmapper with revision context:

    Agent(prompt="
    <revision>
    User feedback on roadmap:
    [user's notes]
    
    <files_to_read>
    - {roadmap_path} (Current roadmap to revise)
    </files_to_read>
    
    ${AGENT_SKILLS_ROADMAPPER}
    
    Update the roadmap based on feedback. Edit files in place.
    Return ROADMAP REVISED with changes made.
    </revision>
    ", subagent_type="gsd-roadmapper", model="{roadmapper_model}", description="Revise roadmap")
    

    ORCHESTRATOR RULE — CODEX RUNTIME: After calling Agent() above, stop working on this task immediately. Do not read more files, edit code, or run tests related to this task while the subagent is active. Wait for the subagent to return its result. This prevents duplicate work, conflicting edits, and wasted context. Only resume when the subagent result is available.

  • Present revised roadmap

  • Loop until user approves

If "Review full file": Display raw cat .planning/ROADMAP.md, then re-ask.

Generate or refresh project instruction file before final commit:

gsd_run query generate-claude-md --output "$INSTRUCTION_FILE"

This ensures new projects get the default GSD workflow-enforcement guidance and current project context in $INSTRUCTION_FILE.

Commit roadmap (after approval or auto mode):

gsd_run query commit "docs: create roadmap ([N] phases)" --files .planning/ROADMAP.md .planning/STATE.md .planning/REQUIREMENTS.md "$INSTRUCTION_FILE"

9. Done

Present completion summary:

━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━
 GSD ► PROJECT INITIALIZED ✓
━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━

**[Project Name]**

| Artifact       | Location                    |
|----------------|-----------------------------|
| Project        | `.planning/PROJECT.md`      |
| Config         | `.planning/config.json`     |
| Research       | `.planning/research/`       |
| Requirements   | `.planning/REQUIREMENTS.md` |
| Roadmap        | `.planning/ROADMAP.md`      |
| Project guide  | `$INSTRUCTION_FILE`         |

**[N] phases** | **[X] requirements** | Ready to build ✓

If auto mode:

╔══════════════════════════════════════════╗
║  AUTO-ADVANCING → DISCUSS PHASE 1        ║
╚══════════════════════════════════════════╝

Exit skill and invoke SlashCommand("/gsd:discuss-phase 1 --auto")

If interactive mode:

Check if Phase 1 has UI indicators (look for **UI hint**: yes in Phase 1 detail section of ROADMAP.md):

PHASE1_SECTION=$(gsd_run query roadmap.get-phase 1 2>/dev/null)
PHASE1_HAS_UI=$(echo "$PHASE1_SECTION" | grep -qi "UI hint.*yes" && echo "true" || echo "false")

If Phase 1 has UI (PHASE1_HAS_UI is true):

───────────────────────────────────────────────────────────────

## ▶ Next Up — [${PROJECT_CODE}] ${PROJECT_TITLE}

**Phase 1: [Phase Name]** — [Goal from ROADMAP.md]

/clear then:

/gsd:discuss-phase 1 — gather context and clarify approach

---

**Also available:**
- /gsd:ui-phase 1 — generate UI design contract (recommended for frontend phases)
- /gsd:plan-phase 1 — skip discussion, plan directly

───────────────────────────────────────────────────────────────

If Phase 1 has no UI:

───────────────────────────────────────────────────────────────

## ▶ Next Up — [${PROJECT_CODE}] ${PROJECT_TITLE}

**Phase 1: [Phase Name]** — [Goal from ROADMAP.md]

/clear then:

/gsd:discuss-phase 1 — gather context and clarify approach

---

**Also available:**
- /gsd:plan-phase 1 — skip discussion, plan directly

───────────────────────────────────────────────────────────────
  • .planning/PROJECT.md
  • .planning/config.json
  • .planning/research/ (if research selected)
    • STACK.md
    • FEATURES.md
    • ARCHITECTURE.md
    • PITFALLS.md
    • SUMMARY.md
  • .planning/REQUIREMENTS.md
  • .planning/ROADMAP.md
  • .planning/STATE.md
  • $INSTRUCTION_FILE (runtime-derived via the shared getProjectInstructionFile policy: AGENTS.md for codex/opencode/kilo/kimi, .github/copilot-instructions.md for copilot, GEMINI.md for gemini/antigravity, .claude/CLAUDE.md for claude)

<success_criteria>

  • .planning/ directory created
  • Git repo initialized
  • Brownfield detection completed
  • Deep questioning completed (threads followed, not rushed)
  • PROJECT.md captures full context → committed
  • config.json has workflow mode, granularity, parallelization → committed
  • Research completed (if selected) — 4 parallel agents spawned → committed
  • Requirements gathered (from research or conversation)
  • User scoped each category (v1/v2/out of scope)
  • REQUIREMENTS.md created with REQ-IDs → committed
  • gsd-roadmapper spawned with context
  • Roadmap files written immediately (not draft)
  • User feedback incorporated (if any)
  • ROADMAP.md created with phases, requirement mappings, success criteria
  • STATE.md initialized
  • REQUIREMENTS.md traceability updated
  • $INSTRUCTION_FILE generated with GSD workflow guidance (runtime-derived via the shared getProjectInstructionFile policy — AGENTS.md for codex/opencode/kilo/kimi, .github/copilot-instructions.md for copilot, GEMINI.md for gemini/antigravity, .claude/CLAUDE.md for claude; an existing hand-crafted file without GSD markers is left untouched unless --force)
  • User knows next step is /gsd:discuss-phase 1

Atomic commits: Each phase commits its artifacts immediately. If context is lost, artifacts persist.

</success_criteria>