Codex compatibility note:
- Invoke repository skills with
$skill-name in Codex; this mirrored copy rewrites legacy Claude /skill-name references.
- Task tracker mandate: BEFORE executing any workflow or skill step, create/update task tracking for all steps and keep it synchronized as progress changes.
- User-question prompts mean to ask the user directly in Codex.
- Ignore Claude-specific mode-switch instructions when they appear.
- Strict execution contract: when a user explicitly invokes a skill, execute that skill protocol as written.
- Subagent authorization: when a skill is user-invoked or AI-detected and its protocol requires subagents, that skill activation authorizes use of the required
spawn_agent subagent(s) for that task.
- Do not skip, reorder, or merge protocol steps unless the user explicitly approves the deviation first.
- For workflow skills, execute each listed child-skill step explicitly and report step-by-step evidence.
- If a required step/tool cannot run in this environment, stop and ask the user before adapting.
Codex Project-Reference Loading (No Hooks)
Codex uses static project-reference loading instead of runtime-injected project docs.
When coding, planning, debugging, testing, or reviewing, open project docs explicitly using this routing.
Always read:
docs/project-config.json (project-specific paths, commands, modules, and workflow/test settings)
docs/project-reference/docs-index-reference.md (routes to the full docs/project-reference/* catalog)
docs/project-reference/lessons.md (always-on guardrails and anti-patterns)
Missing/stale context route: If docs/project-config.json, the docs index, lessons.md, CLAUDE.md, AGENTS.md, or any task-required reference doc is missing or stale, auto-run $project-init or the narrow setup route ($project-config, $docs-init, $scan-all, $scan --target=<key>, $claude-md-init) before ordinary project-specific work. If Codex mirrors or AGENTS.md are missing/stale, ask the user to run $sync-codex; do not auto-run it.
Situation-based docs:
- Project structure/architecture/tech-stack/deployment/setup (any layer — backend, frontend, or infra):
project-structure-reference.md
- Backend/CQRS/API/domain/entity changes:
backend-patterns-reference.md, domain-entities-reference.md
- Frontend/UI/styling/design-system:
frontend-patterns-reference.md, scss-styling-guide.md, design-system/README.md
- Spec authoring,
docs/specs/ pathing, or TC format: feature-spec-reference.md, spec-system-reference.md, spec-principles.md
- Behavior/public-contract changes or spec-test-code sync:
workflow-spec-test-code-cycle-reference.md plus the spec docs above
- Derived spec indexes/ERDs/reimplementation guides:
spec-system-reference.md and source Feature Specs under docs/specs/
- Integration test implementation/review:
integration-test-reference.md
- E2E test implementation/review:
e2e-test-reference.md
- Code review/audit work:
code-review-rules.md plus domain docs above based on changed files
Do not read all docs blindly. Start from docs-index-reference.md, then open only relevant files for the task.
Renamed: formerly workflow-product-discovery — now $workflow-idea-to-spec. The old name no longer resolves as a slash command.
Quick Summary
Goal: [Workflow] Trigger the spec-driven Idea-to-Spec workflow to convert a raw idea — a raw vision or problem → structured brainstorm framing → canonical, provisional Feature Spec (the tech-free 8-section spec + §8 test specs at docs/specs/{Bucket}/README.{Feature}.md, Evidence: TBD until code lands) → reviewed and docs-synced. This workflow STOPS at the reviewed Feature Spec — it does NOT produce a PBI backlog. For a backlog, chain workflow-spec-to-pbi afterward; for idea → full backlog in one pass use workflow-idea-to-pbi; for code→spec (implementation already exists) use workflow-code-to-spec.
Workflow:
- Frame — brainstorm the idea, analyze domain, validate the problem framing (why-review).
- Author — capture the idea, then author the canonical provisional Feature Spec (
spec [mode=draft]) + §8 test specs (spec [mode=tests]).
- Review & Sync — review the test specs and the Feature Spec, validate rationale (why-review), sync docs.
Key Rules:
- MUST ATTENTION keep claims evidence-based (
file:line) with confidence >80% to act.
- MUST ATTENTION keep task tracking updated as each step starts/completes.
- MUST ATTENTION define success criteria before execution and loop until observable verification passes.
- MUST ATTENTION when creating/reviewing specs or tests, name
Business Intent / Invariant Guarded or the protected business intent/invariant and ensure the test would fail if that intent breaks.
- MUST ATTENTION author the spec via
spec [mode=draft] — idea-sourced, no code yet → §8 Evidence: TBD, Status: Planned, frontmatter provisional: true.
- NEVER decompose into PBIs/stories/backlog here — that is
workflow-spec-to-pbi's job. NEVER skip the Feature Spec authoring core.
When to Use
- PO/BA has a raw product vision, problem statement, or "we need to build X" starting point and wants a canonical Feature Spec
- Team wants to capture intended behavior as a tech-free spec BEFORE any code exists (spec-first / TDD-first)
- A single idea or capability needs a reviewed, AI-implementable Feature Spec as the source of truth for later implementation
When NOT to Use
- Implementation already exists and you want a spec FROM code → use
workflow-code-to-spec
- You want a full grooming-ready PBI backlog from the idea in one pass → use
workflow-idea-to-pbi
- You already have a Feature Spec and want PBIs from it → use
workflow-spec-to-pbi
- Implementation work (code writing) → use
workflow-feature or workflow-big-feature
- Bug fixes → use
workflow-bugfix
Key Mechanics
1. Brainstorm → Converge on the Capability to Spec
The $brainstorm step frames the idea using the Double Diamond process:
- Problem framing: POV statement, 5 Whys / Fishbone, JTBD job stories, HMW questions
- Opportunity framing: Opportunity Solution Tree (enhancement) OR Lean Canvas (new product)
- Ideation: SCAMPER, Crazy 8s, Impact Mapping
- Convergence: pick the single feature/capability to author as a Feature Spec
Output: the converged capability (or a short list if multiple distinct capabilities emerge).
AI presents the framing and confirms scope: "Which capability should we author as a Feature Spec?" If multiple distinct capabilities are in scope, confirm with the user and author one Feature Spec per capability (sub-agent per capability for 4+ — see Scale awareness).
1a. Spec-Discovery (Landscape Investigation — After brainstorm, Before domain-analysis)
$spec-discovery investigates the surrounding system BEFORE authoring: it Globs docs/specs/** to classify every related / overlapping / affected Feature Spec, scouts related code (graph-expanded when .code-graph/graph.db exists), and surfaces gaps, missing test cases / user stories, and the invariant landscape the idea must respect. It ends in a BLOCKING scope-decision gate — author a NEW spec, EXTEND an existing one, or SPLIT into N — so no duplicate / overlapping spec is authored. Greenfield (no specs + no code) short-circuits with a recorded reason.
2. Why-Review Gate (After domain-analysis, Before spec authoring)
Before authoring the spec, validate the idea framing with $why-review:
Challenge prompts:
- Is this truly the right problem to solve? What was deprioritized and why?
- Pre-mortem: if this is built and misses in 6 months, what was the root cause?
- Are there systemic alternatives (infrastructure change, process change) that make this unnecessary?
| Result |
Action |
| PASS |
Proceed to spec authoring |
| WARN |
Document risk, acknowledge with user, proceed |
| FAIL |
Revisit brainstorm framing before authoring |
3. Spec Authoring Flow (core mechanic — idea → provisional Feature Spec)
These steps run in sequence. Spec-driven order: idea → draft Feature Spec → test specs → review.
| Step |
Purpose |
Output |
$idea |
Capture the converged idea as a structured artifact |
team-artifacts/ideas/{date}-po-idea-{slug}.md |
$spec [mode=draft] |
Author the canonical tech-free 8-section Feature Spec §1-7 FROM the idea text (no code grep; provisional: true marker) |
docs/specs/{Bucket}/README.{Feature}.md |
$spec [mode=tests] |
Author §8 TC-{FEATURE}-{NNN} behavioral test cases (Evidence: TBD, Status: Planned — before any code) |
Feature Spec §8 Test Specifications |
$artifact-review --type=spec-tests |
Test-spec quality check |
Reviewed §8 TCs |
$artifact-review |
Feature Spec quality check |
Reviewed Feature Spec |
$design-spec |
UI ideas only — author tech-agnostic UI specs (NO mockup/backlog; spec-only contract preserved); gated by SYNC:existing-ui-research. Skip for backend-only ideas |
UI design specs |
$spec-clarify |
Brainstorm open questions, audit non-obvious decisions, confirm with user (BLOCKING) |
Clarified spec + Decisions Log |
$why-review |
Validate the authored spec's rationale and completeness |
Why-Review checklist |
$docs-update |
Sync the Feature Spec (§8) and derived bucket indexes |
Docs-update report |
Provisional output: because no code exists yet, the spec is provisional — §8 TCs carry Evidence: TBD and Status: Planned, and frontmatter carries provisional: true. The first workflow-code-to-spec / spec [mode=update] run against real code upgrades TBD → real [Source:] anchors and clears the provisional flag.
Spec-hub coupling (§6 interaction surface ↔ UI artifacts): the $design-spec produced here is NOT a standalone artifact — it is the deep companion of the governing Feature Spec's §6 interaction surface (View Inventory / Navigation Map / Key UI States / per-story click-path). design-spec seeds from §6 and records its own path in the spec's design_spec: frontmatter so the spec stays the navigable hub: a reader goes spec → §6 thin intent → design-spec deep companion, and the two never drift. Keep deep visual fidelity (layout, tokens, pixel detail) in the design-spec, never in §6. See the SYNC:ui-intent-layer block below for the full rule — do not restate it here. Backend-only ideas (no UI) → skip $design-spec and state that reason.
4. Handoff
At $workflow-end, AI presents:
- Session summary: M Feature Specs authored (provisional), §8 TC counts, open questions (confidence < 80%)
- Feature Specs authored:
docs/specs/{Bucket}/README.{Feature}.md paths
- Provisional note: these specs carry
Evidence: TBD + provisional: true until code lands — reconcile via workflow-code-to-spec / spec [mode=update] once implemented
- Recommended next workflow:
$start-workflow workflow-spec-to-pbi (decompose the Feature Spec(s) into a grooming-ready PBI backlog) OR $start-workflow workflow-feature (implement directly from the spec)
Conditional Skip Rules
| Step |
Skip When |
$domain-analysis |
No new domain entities or aggregates involved |
$why-review (gate) |
User has already validated the idea rationale; no alternatives available |
IMPORTANT MANDATORY Steps: $web-research -> $deep-research -> $brainstorm -> $spec-discovery -> $domain-analysis -> $why-review -> $idea -> $spec [mode=draft] -> $spec [mode=tests] -> $artifact-review --type=spec-tests -> $artifact-review -> $design-spec -> $spec-clarify -> $why-review -> $docs-update -> $feature-presentation -> $workflow-end -> $watzup
[BLOCKING] Each step MUST ATTENTION invoke its skill invocation — marking a task completed without skill invocation is a workflow violation. NEVER batch-complete validation gates.
Activate the workflow-idea-to-spec workflow. Run $start-workflow workflow-idea-to-spec with the user's prompt as context.
Steps:
$web-research → $deep-research → $brainstorm → $spec-discovery → $domain-analysis → $why-review → $idea → $spec [mode=draft] → $spec [mode=tests] → $artifact-review --type=spec-tests → $artifact-review → $design-spec → $spec-clarify → $why-review → $docs-update → $feature-presentation → $workflow-end → $watzup
Scale awareness: When the brainstorm converges on multiple distinct capabilities, this workflow authors one Feature Spec per capability. For 4+ capabilities, spawn one spec sub-agent per capability in ONE message (each gets the framing context + output path); the main context assembles and reviews. Use incremental-write patterns to prevent context overrun.
AI Mistake Prevention — Failure modes to avoid on every task:
Re-read files after context changes. Context compaction, resume, or long-running work can make memory stale; verify current files before acting.
Verify generated content against source evidence. AI hallucinates APIs, names, claims, and document facts. Check the relevant source before documenting or referencing.
Check downstream references before deleting or renaming. Removing an artifact can stale docs, generated mirrors, configs, and callers; map references first.
Trace the full impact chain after edits. Changing a definition can miss derived outputs and consumers. Follow the affected chain before declaring done.
Verify ALL affected outputs, not just the first. One green check is not all green checks; validate every output surface the change can affect.
Assume existing values are intentional — ask WHY before changing OR flagging one as a defect. Before changing or reporting a constant, limit, flag, cutoff, wording, or pattern, read nearby context and history, the CALLER's ordering, and 2+ sibling call sites of the same convention. A doc stating WHAT without WHY is missing rationale, not proof of a missing guard.
Surface ambiguity before acting — don't pick silently. Multiple valid interpretations require an explicit question or stated assumption with risk.
Assert the outcome your system owns, not the intermediate state your infrastructure owns. When verifying async work, assert the final business state — never the delivery/retry bookkeeping held in shared infrastructure that any co-running process can write. Such a check passes when run alone and flakes the moment anything else shares that infrastructure.
Keep shared guidance role-relevant. Universal guidance must help every receiving skill or agent; code-specific obligations belong only in code-specific protocols.
Nested Task Expansion Contract — For workflow-step invocation, the [Workflow] ... row is only a parent container; the child skill still creates visible phase tasks.
- Call the current task list first. If a matching active parent workflow row exists, set
nested=true and record parentTaskId; otherwise run standalone.
- Create one task per declared phase before phase work. When nested, prefix subjects
[N.M] $skill-name — phase.
- When nested, link the parent with
TaskUpdate(parentTaskId, addBlockedBy: [childIds]).
- Orchestrators must pre-expand a child skill's phase list and link the workflow row before invoking that child skill or sub-agent.
- Mark exactly one child
in_progress before work and completed immediately after evidence is written.
- Complete the parent only after all child tasks are completed or explicitly cancelled with reason.
Blocked until: the current task list done, child phases created, parent linked when nested, first child marked in_progress.
Critical Thinking Mindset — Apply critical thinking, sequential thinking. Every claim needs traced proof, confidence >80% to act.
Anti-hallucination: Never present guess as fact — cite sources for every claim, admit uncertainty freely, self-check output for errors, cross-reference independently, stay skeptical of own confidence — certainty without evidence root of all hallucination.
Incremental Result Persistence — MANDATORY for all sub-agents or heavy inline steps processing >3 files.
- Before starting: Create report file
plans/reports/{skill}-{date}-{slug}.md
- After each file/section reviewed: Append findings to report immediately — never hold in memory
- Return to main agent: Summary only (per SYNC:subagent-return-contract) with
Full report: path
- Main agent: Reads report file only when resolving specific blockers
Why: Context cutoff mid-execution loses ALL in-memory findings. Each disk write survives compaction. Partial results are better than no results.
Report naming: plans/reports/{skill-name}-{YYMMDD}-{HHmm}-{slug}.md
Sub-Agent Return Contract — When this skill spawns a sub-agent, the sub-agent MUST return ONLY this structure. Main agent reads only this summary — NEVER requests full sub-agent output inline.
## Sub-Agent Result: [skill-name]
Status: ✅ PASS | ⚠️ PARTIAL | ❌ FAIL
Confidence: [0-100]%
### Findings (Critical/High only — max 10 bullets)
- [severity] [file:line] [finding]
### Actions Taken
- [file changed] [what changed]
### Blockers (if any)
- [blocker description]
Full report: plans/reports/[skill-name]-[date]-[slug].md
Main agent reads Full report file ONLY when: (a) resolving a specific blocker, or (b) building a fix plan.
Sub-agent writes full report incrementally (per SYNC:incremental-persistence) — not held in memory.
Context budget — the return payload is a SUMMARY, not a transcript: ≤10 finding bullets, no raw file contents / full diffs / verbatim logs inline, no re-pasted source. Everything beyond the summary lives in the Full report on disk. A sub-agent that would exceed the summary shape MUST write the detail to its report and return only the pointer — the orchestrator's context is the scarce resource the whole map-reduce protects.
[BLOCKING] Capture a tech-agnostic UI/UX intent layer in every UI-bearing spec — a reader must be able to visualize how the feature works without naming any technology. When the feature has a user interface, the spec MUST ATTENTION carry an interaction-surface section so the application — not just its API — can be rebuilt on any stack:
- View Inventory — list each view/screen by its UX ROLE and purpose (e.g. "list of items", "item editor", "confirmation step") and what information it presents. Describe by role, never by an implementation name.
- Navigation Map — how a user moves between views: entry points, transitions, and exits. Trace how this surface connects to neighboring features already in the system.
- Key observable UI States — the distinct states a user can observe per view (empty, loading, populated, error, success, permission-denied, etc.) — described as what the user perceives, not how it is rendered.
- Per-story interaction flow — for each user story, the step-by-step click/action path from intent to outcome, cross-referenced to the logical IDs the spec already owns (
US-/OP-/BR-).
- Couple to the companion design artifact — keep deep visual fidelity (layout, tokens, pixel detail) OUT of the spec; it lives in the linked
design-spec/mockup. Record that companion's path in the spec frontmatter so the spec stays the navigable hub.
M1-clean (NON-NEGOTIABLE): the prose names ZERO frameworks, routes/URLs, CSS, or component-class names — only roles, information, states, and flows. Technology detail belongs in the companion design artifact, never here.
Skip ONLY when the feature is backend-only (no UI) — state that reason explicitly in the section.
MUST ATTENTION apply critical + sequential thinking — every claim needs appropriate traced evidence (file:line for repo/code claims; source URL or artifact section for research, product, content, and docs claims); confidence >80% to act, <60% DO NOT recommend. Anti-hallucination: never present guess as fact, admit uncertainty freely, cross-reference independently, stay skeptical of own confidence.
MUST ATTENTION apply AI mistake prevention — verify generated content against evidence, trace downstream references before deleting or renaming, verify all affected outputs, re-read files after context loss, and surface ambiguity before acting.
- MANDATORY Parent workflow rows do not replace child phase tracking; expand phases and link the parent when nested.
- MANDATORY Orchestrators pre-expand child skill phases before invocation; use
[N.M] $skill-name — phase prefixes and one-in_progress discipline.
- MANDATORY For UI-bearing specs, author/maintain the tech-agnostic interaction-surface layer (View Inventory + Navigation Map + observable UI States + per-story
US-/OP-/BR--traced flow); keep deep visual fidelity in the linked design-spec/mockup recorded in frontmatter; name ZERO frameworks/routes/CSS/component classes; skip ONLY for backend-only features with a stated reason.
Parallel Sub-Agent Dispatch — Plan parallelism the moment a task breakdown exists, BEFORE executing it — running provably independent tasks sequentially wastes wall-clock. Applies to every multi-step job: workflow steps, planning, batch updates, investigation, research, scans, reviews, doc sync. Plan execution is metadata-gated, NEVER default-parallel — fan-out follows ONLY what the plan declares (PAR/SEQ tags + per-phase write set); an untagged plan runs sequentially — why: a derived write set cannot see cascade or generated writes.
- Tag every task
PAR or SEQ. PAR = inputs exclude every pending task's output AND write set disjoint from every other PAR. Else SEQ — MUST ATTENTION name the dependency forcing it.
- Group
PAR into waves. No edge between members. Two writers of one file NEVER share a wave. Read-only work (search, investigation, review, research) parallelizes freely.
- Declare before dispatch:
Parallel plan: wave 1 = [...] · wave 2 = [...] · SEQ = [...] (reason).
- Spawn each wave in ONE message — every
spawn_agent call in one response, NEVER dripped per turn. Route each task to its specialist (.claude/skills/shared/sub-agent-selection-guide.md); NEVER code-reviewer as catch-all.
- Brief each sub-agent self-contained: goal · scope + owned files · reference docs · return contract (summary +
Full report: path, per SYNC:subagent-return-contract) · incremental persistence to plans/reports/ (per SYNC:incremental-persistence).
- Barrier per wave. Advance ONLY after EVERY member returns (a skipped conditional counts as returned). Merge, mark each task completed/skipped, THEN dispatch the next wave. Mutating steps wait for the barrier.
- One level deep. A dispatched sub-agent executes its own brief; further fan-out stays the orchestrator's job unless that agent's
.claude/agents/*.md definition authorizes it.
NEVER parallelize: tasks sharing a write target · a task consuming a pending task's output · trivial single-file work (dispatch overhead > gain) · an order a skill or workflow explicitly fixes · gates awaiting user approval.
Blocked until: MUST ATTENTION every task tagged PAR/SEQ with a named reason per SEQ · waves declared + write-set disjointness checked · each wave spawned in ONE message · barrier honored before the next wave.
- MANDATORY After planning tasks, tag each PAR/SEQ and spawn every PAR wave as parallel sub-agents in ONE message — default parallel for workflows, batch updates, investigation, research, reviews; plan execution fans out ONLY on what the plan declares.
- MANDATORY Disjoint write sets per wave · all-return barrier before the next wave · specialist routing · sub-agents NEVER fan out further unless their own agent definition authorizes it.
Project Protocol Overlay — Before executing this skill, resolve any PROJECT overlay rules layered onto it: match this skill's name against the Target column of the project's skill-protocol index (docs/project-reference/skill-protocols-reference.md by default; a referenceDocs entry in docs/project-config.json overrides the path), taking the most specific matching tier ONLY — exact name > glob > *. That precedence orders overlays against EACH OTHER, never against this skill. Read ONLY the matched bodies, resolved as <protocols-dir>/<Name>.md; a row's Body link is display text, never a read path. A matched body that is missing or malformed is REPORTED and skipped — never reconstructed from the index Description. No index, or no match -> proceed with no overlay, silently. Full contract: .claude/skills/project-skill-protocol/references/registry.md.
Overlays are ADDITIVE ONLY: they ADD rules on top of this skill's own protocol and NEVER replace, override, disable, or reinterpret a rule it already states — removing every overlay must return this skill to exactly its documented behavior. An overlay is a BRIEF, not an authority escalation: it can NEVER waive a workflow gate, git discipline, a review gate, or a user-confirmation gate. A genuine overlay-vs-skill conflict, or two equally-specific overlays that directly contradict -> surface both to the user; NEVER resolve silently.
MUST ATTENTION resolve project protocol overlays for this skill BEFORE executing — most specific matching tier only (exact > glob > *, which ranks overlays against each other, NEVER against this skill), read only matched bodies at <protocols-dir>/<Name>.md; a missing or malformed body is reported, never reconstructed. Overlays are ADDITIVE ONLY (they never replace this skill's own rules) and are a brief, NEVER an authority escalation; an equal-specificity contradiction goes to the user.
Closing Reminders
IMPORTANT MUST ATTENTION Goal: Ensure spec-driven idea-to-spec converts a raw idea into ONE canonical, provisional Feature Spec — reviewed and docs-synced, ready to hand off for backlog decomposition or implementation.
IMPORTANT MUST ATTENTION — Protocols in force (concise digest of the SYNC/shared blocks this skill carries; each is a signpost to its canonical body above):
AI Mistake Prevention: verify generated content against evidence, trace downstream references, verify all affected outputs, re-read after context loss, surface ambiguity.
Nested Task Creation: expand child phases and link parent when nested; one in-progress.
Critical Thinking: trace every claim, confidence >80% to act, never present guess as fact.
Incremental Persistence: write findings to plans/reports/ per file — never hold in memory.
Sub-Agent Return Contract: return summary only (≤10 bullets) with Full report: path.
MANDATORY IMPORTANT MUST ATTENTION break work into small todo tasks using task tracking BEFORE starting — one task per workflow step (per capability when multiple capabilities are in scope)
MANDATORY IMPORTANT MUST ATTENTION brainstorm converges on the capability to spec BEFORE the $idea step
MANDATORY IMPORTANT MUST ATTENTION SPEC-DRIVEN ORDER — author the Feature Spec ($spec [mode=draft] → $spec [mode=tests]) and review it; this workflow STOPS at the reviewed spec
MANDATORY IMPORTANT MUST ATTENTION PROVISIONAL OUTPUT — §8 carries Evidence: TBD / Status: Planned and frontmatter provisional: true; reconcile against code later via workflow-code-to-spec
MANDATORY IMPORTANT MUST ATTENTION NEVER decompose into PBIs/stories/backlog here — chain workflow-spec-to-pbi for a backlog
MANDATORY IMPORTANT MUST ATTENTION why-review runs after domain-analysis — FAIL revisits framing, WARN requires user acknowledgment
MANDATORY IMPORTANT MUST ATTENTION validate decisions with user by asking the user directly — never auto-select scope
MANDATORY IMPORTANT MUST ATTENTION add a final review todo task to verify the authored Feature Spec(s)
Parallel Sub-Agent Dispatch: Tag tasks PAR/SEQ, group PAR into disjoint-write-set waves, spawn each wave in ONE message, barrier before advancing.
[TASK-PLANNING] Before acting, analyze task scope and systematically break it into small todo tasks and sub-tasks using task tracking.
[IMPORTANT] Analyze how big the task is and break it into many small todo tasks systematically before starting — this is very important.
Anti-Rationalization:
| Evasion |
Rebuttal |
| "Purpose obvious" |
Anchor it anyway — primacy/recency keeps outcome active through long prompts. |
| "Existing reminders enough" |
Echo Goal in Closing Reminders — bottom anchor prevents drift. |
| "Skip evidence for prompt edits" |
Cite changed file evidence and verify no stale protocol text remains. |
| "Decompose into PBIs while I'm here" |
Out of scope — this workflow STOPS at the spec. Chain workflow-spec-to-pbi. |
Hookless Prompt Protocol Mirror (Auto-Synced)
Source: .claude/.ck.json + .claude/skills/shared/sync-inline-versions.md (:full blocks) + .claude/scripts/lib/hookless-prompt-protocol.cjs
[WORKFLOW-EXECUTION-PROTOCOL] [BLOCKING] Workflow Execution Protocol — MANDATORY IMPORTANT MUST CRITICAL. Do not skip for any reason.
Generic portability boundary: Reusable skills and protocol text stay project-neutral; project-specific conventions are discovered from docs/project-config.json and docs/project-reference/. Apply shared AI-SDD from shared/sdd-artifact-contract.md. Read docs/project-config.json and docs/project-reference/docs-index-reference.md, then open the project reference docs named there. For spec, test-case, behavior-change, public-contract, or docs/specs/ work, route through the local spec docs named by the docs index: feature-spec-reference.md, spec-system-reference.md, spec-principles.md, and workflow-spec-test-code-cycle-reference.md when specs/tests/code must stay synchronized. If either file or a required reference doc is missing or stale, auto-run $project-init (or the narrow lower-level route such as $project-config, $docs-init, $scan-all, or $scan --target=<key>) before ordinary project-specific work. Any supported AI tool may execute when this shared context and local docs are available.
- DETECT: If the prompt starts with an explicit slash skill/workflow command, execute it directly. Otherwise match the prompt against the workflow catalog and skill list.
- ANALYZE: Choose the best option: execute directly, invoke a skill, activate a standard workflow, or compose a custom step combination.
- AUTO-SELECT: Pick the best option yourself. Do not ask the user to choose between direct execution, skill, standard workflow, or custom workflow.
- ACTIVATE: For a selected workflow, call
$start-workflow <workflowId>; for a selected skill, invoke that skill; for a custom workflow, sequence custom steps directly; for direct execution, proceed with the task.
- CREATE TASKS: task tracking for ALL workflow/skill/custom steps before execution when the selected path has multiple steps.
- PARALLELIZE: Before executing the task list, tag each task
PAR (independent inputs + write set disjoint from every other PAR task) or SEQ (name the blocking dependency), group PAR tasks into waves, declare the wave plan, and spawn each wave's sub-agents in ONE message — all-return barrier per wave, fan-out one level deep unless a sub-agent's own definition authorizes further fan-out. Sequential-by-default is a defect when tasks are independent; do not parallelize shared write targets, output-consuming tasks, trivial single-file work, ordering a skill or workflow explicitly fixes, or user-approval gates.
- EXECUTE: Advance per the Workflow Step Advancement & Parallel Phases rule in your context instructions — model-driven; a sub-agent completion advances a step identically to an inline call; a parallel-phase group is an all-return barrier (advance only after ALL members return, never serialize it)
Shared AI-SDD Protocol Markers
Source: .claude/skills/shared/sync-inline-versions.md
SYNC:ai-sdd-artifact-contract
AI-SDD Artifact Contract — Shared spec-driven development rules stay portable and source-owned.
- Keep reusable AI-SDD principles in
.claude; put repository-specific paths, commands, owners, products, and formats in project config/reference docs.
- Preserve cycle:
spec -> plan -> tasks -> implement -> verify -> update spec/docs.
- Trace every requirement or invariant through decision, task, TC/test, source evidence, and docs/spec update.
- Treat code-to-spec extraction as reference-only until accepted by the canonical spec owner.
- Any supported AI tool may plan, implement, review, or verify with synced context; using multiple tools is optional.
- Update
.claude source first, then sync generated mirrors; do not manually edit .agents, .codex, or AGENTS.md. — why: mirrors are generated artifacts; hand-edits are overwritten on the next sync
- If
docs/project-config.json, root instruction files, or a required project-reference doc is missing or stale, auto-run $project-init or the narrow lower-level route before ordinary project-specific work.
Active reference: shared/sdd-artifact-contract.md in the active skills root.
SYNC:ai-sdd-artifact-contract:reminder
- MANDATORY Apply
shared/sdd-artifact-contract.md; keep reusable AI-SDD in .claude and local rules in project docs.
- MANDATORY Code-to-spec extraction is reference-only until canonical acceptance; any supported AI tool may execute with synced context.
- MANDATORY Update
.claude source before syncing generated mirrors; do not manually edit .agents, .codex, or AGENTS.md.
- MANDATORY Missing or stale project config, root instruction files, or required reference docs route project-specific work through
$project-init or the narrow setup route automatically.
[TASK-PLANNING] [MANDATORY] BEFORE executing any workflow or skill step, create/update task tracking for all planned steps, then keep it synchronized as each step starts/completes.
[LESSON-LEARNED-REMINDER] [BLOCKING] Task Planning & Continuous Improvement — MANDATORY. Do not skip.
Break work into small tasks (task tracking) before starting. Add final task: "Analyze AI mistakes & lessons learned".
Extract lessons — ROOT CAUSE ONLY, not symptom fixes:
- Name the FAILURE MODE (reasoning/assumption failure), not symptom — "assumed API existed without reading source" not "used wrong enum value".
- Generality test: does this failure mode apply to ≥3 contexts/codebases? If not, abstract one level up.
- Write as a universal rule — strip project-specific names/paths/classes. Useful on any codebase.
- Consolidate: multiple mistakes sharing one failure mode → ONE lesson.
- Recurrence gate: "Would this recur in future session WITHOUT this reminder?" — No → skip
$learn.
- Auto-fix gate: "Could
$code-review/$code-simplifier/$security-review/$lint catch this?" — Yes → improve review skill instead.
- BOTH gates pass → ask user to run
$learn.
[CRITICAL-THINKING-MINDSET] Apply critical thinking, sequential thinking. Every claim needs traced proof, confidence >80% to act.
Anti-hallucination principle: Never present guess as fact — cite sources for every claim, admit uncertainty freely, self-check output for errors, cross-reference independently, stay skeptical of own confidence — certainty without evidence root of all hallucination.
AI Attention principle (Primacy-Recency): Put the 3 most critical rules at both top and bottom of long prompts/protocols so instruction adherence survives long context windows.
Goal-driven execution: Define success criteria first, loop until verified, and stop only when observable checks pass.
Tests verify intent: Tests must protect business rules/invariants and fail when the protected intent breaks, not only mirror current behavior.
Common AI Mistake Prevention (System Lessons)
- Re-read files after context compaction. Edit requires prior Read in same context; compaction wipes read state. Re-read before editing.
- Grep for old terms after bulk replacements. AI over-trusts find/replace completeness. Grep full repo after bulk edits for missed refs in docs/configs/catalogs.
- **Check downs
…(truncated)
1---2name: workflow-idea-to-spec3description: [Workflow] Use when activating the Idea-to-Spec workflow — turn a raw idea/vision/problem into ONE canonical (provisional) Feature Spec. STOPS at the reviewed spec; chain workflow-spec-to-pbi for a backlog. For code→spec use workflow-code-to-spec.4---5
6> Codex compatibility note:
7>
8> - Invoke repository skills with `$skill-name` in Codex; this mirrored copy rewrites legacy Claude `/skill-name` references.
9> - Task tracker mandate: BEFORE executing any workflow or skill step, create/update task tracking for all steps and keep it synchronized as progress changes.
10> - User-question prompts mean to ask the user directly in Codex.
11> - Ignore Claude-specific mode-switch instructions when they appear.
12> - Strict execution contract: when a user explicitly invokes a skill, execute that skill protocol as written.
13> - Subagent authorization: when a skill is user-invoked or AI-detected and its protocol requires subagents, that skill activation authorizes use of the required `spawn_agent` subagent(s) for that task.
14> - Do not skip, reorder, or merge protocol steps unless the user explicitly approves the deviation first.
15> - For workflow skills, execute each listed child-skill step explicitly and report step-by-step evidence.
16> - If a required step/tool cannot run in this environment, stop and ask the user before adapting.
17
18<!-- CODEX:PROJECT-REFERENCE-LOADING:START -->
19
20## Codex Project-Reference Loading (No Hooks)
21
22Codex uses static project-reference loading instead of runtime-injected project docs.
23When coding, planning, debugging, testing, or reviewing, open project docs explicitly using this routing.
24
25**Always read:**
26
27- `docs/project-config.json` (project-specific paths, commands, modules, and workflow/test settings)
28- `docs/project-reference/docs-index-reference.md` (routes to the full `docs/project-reference/*` catalog)
29- `docs/project-reference/lessons.md` (always-on guardrails and anti-patterns)
30
31**Missing/stale context route:** If `docs/project-config.json`, the docs index, `lessons.md`, `CLAUDE.md`, `AGENTS.md`, or any task-required reference doc is missing or stale, auto-run `$project-init` or the narrow setup route (`$project-config`, `$docs-init`, `$scan-all`, `$scan --target=<key>`, `$claude-md-init`) before ordinary project-specific work. If Codex mirrors or `AGENTS.md` are missing/stale, ask the user to run `$sync-codex`; do not auto-run it.
32
33**Situation-based docs:**
34
35- Project structure/architecture/tech-stack/deployment/setup (any layer — backend, frontend, or infra): `project-structure-reference.md`
36- Backend/CQRS/API/domain/entity changes: `backend-patterns-reference.md`, `domain-entities-reference.md`
37- Frontend/UI/styling/design-system: `frontend-patterns-reference.md`, `scss-styling-guide.md`, `design-system/README.md`
38- Spec authoring, `docs/specs/` pathing, or TC format: `feature-spec-reference.md`, `spec-system-reference.md`, `spec-principles.md`
39- Behavior/public-contract changes or spec-test-code sync: `workflow-spec-test-code-cycle-reference.md` plus the spec docs above
40- Derived spec indexes/ERDs/reimplementation guides: `spec-system-reference.md` and source Feature Specs under `docs/specs/`
41- Integration test implementation/review: `integration-test-reference.md`
42- E2E test implementation/review: `e2e-test-reference.md`
43- Code review/audit work: `code-review-rules.md` plus domain docs above based on changed files
44
45Do not read all docs blindly. Start from `docs-index-reference.md`, then open only relevant files for the task.
46
47<!-- CODEX:PROJECT-REFERENCE-LOADING:END -->
48
49> **Renamed:** formerly `workflow-product-discovery` — now `$workflow-idea-to-spec`. The old name no longer resolves as a slash command.
50
51## Quick Summary
52
53**Goal:** [Workflow] Trigger the spec-driven Idea-to-Spec workflow to convert a raw idea — a raw vision or problem → structured brainstorm framing → canonical, provisional Feature Spec (the tech-free 8-section spec + §8 test specs at `docs/specs/{Bucket}/README.{Feature}.md`, `Evidence: TBD` until code lands) → reviewed and docs-synced. This workflow **STOPS at the reviewed Feature Spec** — it does NOT produce a PBI backlog. For a backlog, chain `workflow-spec-to-pbi` afterward; for idea → full backlog in one pass use `workflow-idea-to-pbi`; for code→spec (implementation already exists) use `workflow-code-to-spec`.
54
55**Workflow:**
56
571. **Frame** — brainstorm the idea, analyze domain, validate the problem framing (why-review).
582. **Author** — capture the idea, then author the canonical provisional Feature Spec (`spec [mode=draft]`) + §8 test specs (`spec [mode=tests]`).
593. **Review & Sync** — review the test specs and the Feature Spec, validate rationale (why-review), sync docs.
60
61**Key Rules:**
62
63- MUST ATTENTION keep claims evidence-based (`file:line`) with confidence >80% to act.
64- MUST ATTENTION keep task tracking updated as each step starts/completes.
65- MUST ATTENTION define success criteria before execution and loop until observable verification passes.
66- MUST ATTENTION when creating/reviewing specs or tests, name `Business Intent / Invariant Guarded` or the protected business intent/invariant and ensure the test would fail if that intent breaks.
67- MUST ATTENTION author the spec via `spec [mode=draft]` — idea-sourced, no code yet → §8 `Evidence: TBD`, `Status: Planned`, frontmatter `provisional: true`.
68- NEVER decompose into PBIs/stories/backlog here — that is `workflow-spec-to-pbi`'s job. NEVER skip the Feature Spec authoring core.
69
70## When to Use
71
72- PO/BA has a raw product vision, problem statement, or "we need to build X" starting point and wants a canonical Feature Spec
73- Team wants to capture intended behavior as a tech-free spec BEFORE any code exists (spec-first / TDD-first)
74- A single idea or capability needs a reviewed, AI-implementable Feature Spec as the source of truth for later implementation
75
76## When NOT to Use
77
78- Implementation already exists and you want a spec FROM code → use `workflow-code-to-spec`
79- You want a full grooming-ready PBI backlog from the idea in one pass → use `workflow-idea-to-pbi`
80- You already have a Feature Spec and want PBIs from it → use `workflow-spec-to-pbi`
81- Implementation work (code writing) → use `workflow-feature` or `workflow-big-feature`
82- Bug fixes → use `workflow-bugfix`
83
84## Key Mechanics
85
86### 1. Brainstorm → Converge on the Capability to Spec
87
88The `$brainstorm` step frames the idea using the Double Diamond process:
89
90- **Problem framing:** POV statement, 5 Whys / Fishbone, JTBD job stories, HMW questions
91- **Opportunity framing:** Opportunity Solution Tree (enhancement) OR Lean Canvas (new product)
92- **Ideation:** SCAMPER, Crazy 8s, Impact Mapping
93- **Convergence:** pick the single feature/capability to author as a Feature Spec
94
95Output: the converged capability (or a short list if multiple distinct capabilities emerge).
96AI presents the framing and confirms scope: **"Which capability should we author as a Feature Spec?"** If multiple distinct capabilities are in scope, confirm with the user and author one Feature Spec per capability (sub-agent per capability for 4+ — see Scale awareness).
97
98### 1a. Spec-Discovery (Landscape Investigation — After brainstorm, Before domain-analysis)
99
100`$spec-discovery` investigates the surrounding system BEFORE authoring: it Globs `docs/specs/**` to classify every related / overlapping / affected Feature Spec, scouts related code (graph-expanded when `.code-graph/graph.db` exists), and surfaces gaps, missing test cases / user stories, and the **invariant landscape** the idea must respect. It ends in a **BLOCKING scope-decision gate** — author a NEW spec, EXTEND an existing one, or SPLIT into N — so no duplicate / overlapping spec is authored. Greenfield (no specs + no code) short-circuits with a recorded reason.
101
102### 2. Why-Review Gate (After domain-analysis, Before spec authoring)
103
104Before authoring the spec, validate the idea framing with `$why-review`:
105
106**Challenge prompts:**
107
108- Is this truly the right problem to solve? What was deprioritized and why?
109- Pre-mortem: if this is built and misses in 6 months, what was the root cause?
110- Are there systemic alternatives (infrastructure change, process change) that make this unnecessary?
111
112| Result | Action |
113| ------ | --------------------------------------------- |
114| PASS | Proceed to spec authoring |
115| WARN | Document risk, acknowledge with user, proceed |
116| FAIL | Revisit brainstorm framing before authoring |
117
118### 3. Spec Authoring Flow (core mechanic — idea → provisional Feature Spec)
119
120These steps run in sequence. **Spec-driven order: idea → draft Feature Spec → test specs → review.**
121
122| Step | Purpose | Output |
123| ------------------------------------ | ------------------------------------------------------------------------------------------------------------------------------------------------------------------ | ----------------------------------------------- |
124| `$idea` | Capture the converged idea as a structured artifact | `team-artifacts/ideas/{date}-po-idea-{slug}.md` |
125| `$spec [mode=draft]` | Author the canonical tech-free 8-section Feature Spec §1-7 FROM the idea text (no code grep; `provisional: true` marker) | `docs/specs/{Bucket}/README.{Feature}.md` |
126| `$spec [mode=tests]` | Author §8 TC-{FEATURE}-{NNN} behavioral test cases (`Evidence: TBD`, `Status: Planned` — before any code) | Feature Spec §8 Test Specifications |
127| `$artifact-review --type=spec-tests` | Test-spec quality check | Reviewed §8 TCs |
128| `$artifact-review` | Feature Spec quality check | Reviewed Feature Spec |
129| `$design-spec` | UI ideas only — author tech-agnostic UI specs (NO mockup/backlog; spec-only contract preserved); gated by `SYNC:existing-ui-research`. Skip for backend-only ideas | UI design specs |
130| `$spec-clarify` | Brainstorm open questions, audit non-obvious decisions, confirm with user (BLOCKING) | Clarified spec + Decisions Log |
131| `$why-review` | Validate the authored spec's rationale and completeness | Why-Review checklist |
132| `$docs-update` | Sync the Feature Spec (§8) and derived bucket indexes | Docs-update report |
133
134**Provisional output:** because no code exists yet, the spec is provisional — §8 TCs carry `Evidence: TBD` and `Status: Planned`, and frontmatter carries `provisional: true`. The first `workflow-code-to-spec` / `spec [mode=update]` run against real code upgrades `TBD` → real `[Source:]` anchors and clears the provisional flag.
135
136> **Spec-hub coupling (§6 interaction surface ↔ UI artifacts):** the `$design-spec` produced here is NOT a standalone artifact — it is the deep companion of the governing Feature Spec's **§6 interaction surface** (View Inventory / Navigation Map / Key UI States / per-story click-path). `design-spec` seeds from §6 and records its own path in the spec's `design_spec:` frontmatter so the spec stays the navigable hub: a reader goes spec → §6 thin intent → `design-spec` deep companion, and the two never drift. Keep deep visual fidelity (layout, tokens, pixel detail) in the `design-spec`, never in §6. See the `SYNC:ui-intent-layer` block below for the full rule — do not restate it here. Backend-only ideas (no UI) → skip `$design-spec` and state that reason.
137
138### 4. Handoff
139
140At `$workflow-end`, AI presents:
141
142- Session summary: M Feature Specs authored (provisional), §8 TC counts, open questions (confidence < 80%)
143- Feature Specs authored: `docs/specs/{Bucket}/README.{Feature}.md` paths
144- Provisional note: these specs carry `Evidence: TBD` + `provisional: true` until code lands — reconcile via `workflow-code-to-spec` / `spec [mode=update]` once implemented
145- Recommended next workflow: `$start-workflow workflow-spec-to-pbi` (decompose the Feature Spec(s) into a grooming-ready PBI backlog) OR `$start-workflow workflow-feature` (implement directly from the spec)
146
147## Conditional Skip Rules
148
149| Step | Skip When |
150| -------------------- | ------------------------------------------------------------------------ |
151| `$domain-analysis` | No new domain entities or aggregates involved |
152| `$why-review` (gate) | User has already validated the idea rationale; no alternatives available |
153
154---
155
156**IMPORTANT MANDATORY Steps:** $web-research -> $deep-research -> $brainstorm -> $spec-discovery -> $domain-analysis -> $why-review -> $idea -> $spec [mode=draft] -> $spec [mode=tests] -> $artifact-review --type=spec-tests -> $artifact-review -> $design-spec -> $spec-clarify -> $why-review -> $docs-update -> $feature-presentation -> $workflow-end -> $watzup
157
158> **[BLOCKING]** Each step MUST ATTENTION invoke its skill invocation — marking a task `completed` without skill invocation is a workflow violation. NEVER batch-complete validation gates.
159
160Activate the `workflow-idea-to-spec` workflow. Run `$start-workflow workflow-idea-to-spec` with the user's prompt as context.
161
162**Steps:**
163$web-research → $deep-research → $brainstorm → $spec-discovery → $domain-analysis → $why-review → $idea → $spec [mode=draft] → $spec [mode=tests] → $artifact-review --type=spec-tests → $artifact-review → $design-spec → $spec-clarify → $why-review → $docs-update → $feature-presentation → $workflow-end → $watzup
164
165> **Scale awareness:** When the brainstorm converges on multiple distinct capabilities, this workflow authors one Feature Spec per capability. For 4+ capabilities, spawn one `spec` sub-agent per capability in ONE message (each gets the framing context + output path); the main context assembles and reviews. Use incremental-write patterns to prevent context overrun.
166
167<!-- SYNC:ai-mistake-prevention -->
168
169> **AI Mistake Prevention** — Failure modes to avoid on every task:
170>
171> **Re-read files after context changes.** Context compaction, resume, or long-running work can make memory stale; verify current files before acting.
172> **Verify generated content against source evidence.** AI hallucinates APIs, names, claims, and document facts. Check the relevant source before documenting or referencing.
173> **Check downstream references before deleting or renaming.** Removing an artifact can stale docs, generated mirrors, configs, and callers; map references first.
174> **Trace the full impact chain after edits.** Changing a definition can miss derived outputs and consumers. Follow the affected chain before declaring done.
175> **Verify ALL affected outputs, not just the first.** One green check is not all green checks; validate every output surface the change can affect.
176> **Assume existing values are intentional — ask WHY before changing OR flagging one as a defect.** Before changing or reporting a constant, limit, flag, cutoff, wording, or pattern, read nearby context and history, the CALLER's ordering, and 2+ sibling call sites of the same convention. A doc stating WHAT without WHY is missing rationale, not proof of a missing guard.
177> **Surface ambiguity before acting — don't pick silently.** Multiple valid interpretations require an explicit question or stated assumption with risk.
178> **Assert the outcome your system owns, not the intermediate state your infrastructure owns.** When verifying async work, assert the final business state — never the delivery/retry bookkeeping held in shared infrastructure that any co-running process can write. Such a check passes when run alone and flakes the moment anything else shares that infrastructure.
179> **Keep shared guidance role-relevant.** Universal guidance must help every receiving skill or agent; code-specific obligations belong only in code-specific protocols.
180
181<!-- /SYNC:ai-mistake-prevention -->
182
183<!-- SYNC:nested-task-creation -->
184
185> **Nested Task Expansion Contract** — For workflow-step invocation, the `[Workflow] ...` row is only a parent container; the child skill still creates visible phase tasks.
186>
187> 1. Call the current task list first. If a matching active parent workflow row exists, set `nested=true` and record `parentTaskId`; otherwise run standalone.
188> 2. Create one task per declared phase before phase work. When nested, prefix subjects `[N.M] $skill-name — phase`.
189> 3. When nested, link the parent with `TaskUpdate(parentTaskId, addBlockedBy: [childIds])`.
190> 4. Orchestrators must pre-expand a child skill's phase list and link the workflow row before invoking that child skill or sub-agent.
191> 5. Mark exactly one child `in_progress` before work and `completed` immediately after evidence is written.
192> 6. Complete the parent only after all child tasks are completed or explicitly cancelled with reason.
193>
194> **Blocked until:** the current task list done, child phases created, parent linked when nested, first child marked `in_progress`.
195
196<!-- /SYNC:nested-task-creation -->
197
198<!-- SYNC:critical-thinking-mindset -->
199
200> **Critical Thinking Mindset** — Apply critical thinking, sequential thinking. Every claim needs traced proof, confidence >80% to act.
201> **Anti-hallucination:** Never present guess as fact — cite sources for every claim, admit uncertainty freely, self-check output for errors, cross-reference independently, stay skeptical of own confidence — certainty without evidence root of all hallucination.
202
203<!-- /SYNC:critical-thinking-mindset -->
204
205<!-- SYNC:incremental-persistence -->
206
207> **Incremental Result Persistence** — MANDATORY for all sub-agents or heavy inline steps processing >3 files.
208>
209> 1. **Before starting:** Create report file `plans/reports/{skill}-{date}-{slug}.md`
210> 2. **After each file/section reviewed:** Append findings to report immediately — never hold in memory
211> 3. **Return to main agent:** Summary only (per SYNC:subagent-return-contract) with `Full report:` path
212> 4. **Main agent:** Reads report file only when resolving specific blockers
213>
214> **Why:** Context cutoff mid-execution loses ALL in-memory findings. Each disk write survives compaction. Partial results are better than no results.
215>
216> **Report naming:** `plans/reports/{skill-name}-{YYMMDD}-{HHmm}-{slug}.md`
217
218<!-- /SYNC:incremental-persistence -->
219
220<!-- SYNC:subagent-return-contract -->
221
222> **Sub-Agent Return Contract** — When this skill spawns a sub-agent, the sub-agent MUST return ONLY this structure. Main agent reads only this summary — NEVER requests full sub-agent output inline.
223>
224> ```markdown
225> ## Sub-Agent Result: [skill-name]
226>
227> Status: ✅ PASS | ⚠️ PARTIAL | ❌ FAIL
228> Confidence: [0-100]%
229>
230> ### Findings (Critical/High only — max 10 bullets)
231>
232> - [severity] [file:line] [finding]
233>
234> ### Actions Taken
235>
236> - [file changed] [what changed]
237>
238> ### Blockers (if any)
239>
240> - [blocker description]
241>
242> Full report: plans/reports/[skill-name]-[date]-[slug].md
243> ```
244>
245> Main agent reads `Full report` file ONLY when: (a) resolving a specific blocker, or (b) building a fix plan.
246> Sub-agent writes full report incrementally (per SYNC:incremental-persistence) — not held in memory.
247>
248> **Context budget** — the return payload is a SUMMARY, not a transcript: ≤10 finding bullets, no raw file contents / full diffs / verbatim logs inline, no re-pasted source. Everything beyond the summary lives in the `Full report` on disk. A sub-agent that would exceed the summary shape MUST write the detail to its report and return only the pointer — the orchestrator's context is the scarce resource the whole map-reduce protects.
249
250<!-- /SYNC:subagent-return-contract -->
251
252<!-- SYNC:ui-intent-layer -->
253
254> **[BLOCKING] Capture a tech-agnostic UI/UX intent layer in every UI-bearing spec — a reader must be able to visualize how the feature works without naming any technology.** When the feature has a user interface, the spec MUST ATTENTION carry an interaction-surface section so the application — not just its API — can be rebuilt on any stack:
255>
256> 1. **View Inventory** — list each view/screen by its UX ROLE and purpose (e.g. "list of items", "item editor", "confirmation step") and what information it presents. Describe by role, never by an implementation name.
257> 2. **Navigation Map** — how a user moves between views: entry points, transitions, and exits. Trace how this surface connects to neighboring features already in the system.
258> 3. **Key observable UI States** — the distinct states a user can observe per view (empty, loading, populated, error, success, permission-denied, etc.) — described as what the user perceives, not how it is rendered.
259> 4. **Per-story interaction flow** — for each user story, the step-by-step click/action path from intent to outcome, cross-referenced to the logical IDs the spec already owns (`US-`/`OP-`/`BR-`).
260> 5. **Couple to the companion design artifact** — keep deep visual fidelity (layout, tokens, pixel detail) OUT of the spec; it lives in the linked `design-spec`/mockup. Record that companion's path in the spec frontmatter so the spec stays the navigable hub.
261>
262> **M1-clean (NON-NEGOTIABLE):** the prose names ZERO frameworks, routes/URLs, CSS, or component-class names — only roles, information, states, and flows. Technology detail belongs in the companion design artifact, never here.
263>
264> **Skip ONLY** when the feature is backend-only (no UI) — state that reason explicitly in the section.
265
266<!-- /SYNC:ui-intent-layer -->
267
268<!-- SYNC:critical-thinking-mindset:reminder -->
269
270**MUST ATTENTION** apply critical + sequential thinking — every claim needs appropriate traced evidence (`file:line` for repo/code claims; source URL or artifact section for research, product, content, and docs claims); confidence >80% to act, <60% DO NOT recommend. Anti-hallucination: never present guess as fact, admit uncertainty freely, cross-reference independently, stay skeptical of own confidence.
271
272<!-- /SYNC:critical-thinking-mindset:reminder -->
273
274<!-- SYNC:ai-mistake-prevention:reminder -->
275
276**MUST ATTENTION** apply AI mistake prevention — verify generated content against evidence, trace downstream references before deleting or renaming, verify all affected outputs, re-read files after context loss, and surface ambiguity before acting.
277
278<!-- /SYNC:ai-mistake-prevention:reminder -->
279
280<!-- SYNC:nested-task-creation:reminder -->
281
282- **MANDATORY** Parent workflow rows do not replace child phase tracking; expand phases and link the parent when nested.
283- **MANDATORY** Orchestrators pre-expand child skill phases before invocation; use `[N.M] $skill-name — phase` prefixes and one-`in_progress` discipline.
284
285<!-- /SYNC:nested-task-creation:reminder -->
286
287<!-- SYNC:ui-intent-layer:reminder -->
288
289- **MANDATORY** For UI-bearing specs, author/maintain the tech-agnostic interaction-surface layer (View Inventory + Navigation Map + observable UI States + per-story `US-/OP-/BR-`-traced flow); keep deep visual fidelity in the linked `design-spec`/mockup recorded in frontmatter; name ZERO frameworks/routes/CSS/component classes; skip ONLY for backend-only features with a stated reason.
290
291<!-- /SYNC:ui-intent-layer:reminder -->
292
293<!-- SYNC:parallel-subagent-dispatch -->
294
295> **Parallel Sub-Agent Dispatch** — Plan parallelism the moment a task breakdown exists, BEFORE executing it — running provably independent tasks sequentially wastes wall-clock. Applies to every multi-step job: workflow steps, planning, batch updates, investigation, research, scans, reviews, doc sync. **Plan execution is metadata-gated, NEVER default-parallel** — fan-out follows ONLY what the plan declares (`PAR`/`SEQ` tags + per-phase write set); an untagged plan runs sequentially — why: a derived write set cannot see cascade or generated writes.
296>
297> 1. **Tag every task `PAR` or `SEQ`.** `PAR` = inputs exclude every pending task's output AND write set disjoint from every other `PAR`. Else `SEQ` — MUST ATTENTION name the dependency forcing it.
298> 2. **Group `PAR` into waves.** No edge between members. Two writers of one file NEVER share a wave. Read-only work (search, investigation, review, research) parallelizes freely.
299> 3. **Declare before dispatch:** `Parallel plan: wave 1 = [...] · wave 2 = [...] · SEQ = [...] (reason)`.
300> 4. **Spawn each wave in ONE message** — every `spawn_agent` call in one response, NEVER dripped per turn. Route each task to its specialist (`.claude/skills/shared/sub-agent-selection-guide.md`); NEVER `code-reviewer` as catch-all.
301> 5. **Brief each sub-agent self-contained:** goal · scope + owned files · reference docs · return contract (summary + `Full report:` path, per SYNC:subagent-return-contract) · incremental persistence to `plans/reports/` (per SYNC:incremental-persistence).
302> 6. **Barrier per wave.** Advance ONLY after EVERY member returns (a skipped conditional counts as returned). Merge, mark each task completed/skipped, THEN dispatch the next wave. Mutating steps wait for the barrier.
303> 7. **One level deep.** A dispatched sub-agent executes its own brief; further fan-out stays the orchestrator's job unless that agent's `.claude/agents/*.md` definition authorizes it.
304>
305> **NEVER parallelize:** tasks sharing a write target · a task consuming a pending task's output · trivial single-file work (dispatch overhead > gain) · an order a skill or workflow explicitly fixes · gates awaiting user approval.
306>
307> **Blocked until:** MUST ATTENTION every task tagged PAR/SEQ with a named reason per SEQ · waves declared + write-set disjointness checked · each wave spawned in ONE message · barrier honored before the next wave.
308
309<!-- /SYNC:parallel-subagent-dispatch -->
310
311<!-- SYNC:parallel-subagent-dispatch:reminder -->
312
313- **MANDATORY** After planning tasks, tag each PAR/SEQ and spawn every PAR wave as parallel sub-agents in ONE message — default parallel for workflows, batch updates, investigation, research, reviews; plan execution fans out ONLY on what the plan declares.
314- **MANDATORY** Disjoint write sets per wave · all-return barrier before the next wave · specialist routing · sub-agents NEVER fan out further unless their own agent definition authorizes it.
315
316<!-- /SYNC:parallel-subagent-dispatch:reminder -->
317
318<!-- SYNC:project-protocol-overlay -->
319
320> **Project Protocol Overlay** — Before executing this skill, resolve any PROJECT overlay rules layered onto it: match this skill's name against the `Target` column of the project's skill-protocol index (`docs/project-reference/skill-protocols-reference.md` by default; a `referenceDocs` entry in `docs/project-config.json` overrides the path), taking the most specific matching tier ONLY — exact name > glob > `*`. **That precedence orders overlays against EACH OTHER, never against this skill.** Read ONLY the matched bodies, resolved as `<protocols-dir>/<Name>.md`; a row's Body link is display text, never a read path. A matched body that is missing or malformed is REPORTED and skipped — never reconstructed from the index Description. No index, or no match -> proceed with no overlay, silently. Full contract: `.claude/skills/project-skill-protocol/references/registry.md`.
321>
322> Overlays are **ADDITIVE ONLY**: they ADD rules on top of this skill's own protocol and NEVER replace, override, disable, or reinterpret a rule it already states — removing every overlay must return this skill to exactly its documented behavior. An overlay is a BRIEF, not an authority escalation: it can NEVER waive a workflow gate, git discipline, a review gate, or a user-confirmation gate. A genuine overlay-vs-skill conflict, or two equally-specific overlays that directly contradict -> surface both to the user; NEVER resolve silently.
323
324<!-- /SYNC:project-protocol-overlay -->
325
326<!-- SYNC:project-protocol-overlay:reminder -->
327
328**MUST ATTENTION** resolve project protocol overlays for this skill BEFORE executing — most specific matching tier only (exact > glob > `*`, which ranks overlays against each other, NEVER against this skill), read only matched bodies at `<protocols-dir>/<Name>.md`; a missing or malformed body is reported, never reconstructed. Overlays are ADDITIVE ONLY (they never replace this skill's own rules) and are a brief, NEVER an authority escalation; an equal-specificity contradiction goes to the user.
329
330<!-- /SYNC:project-protocol-overlay:reminder -->
331
332## Closing Reminders
333
334**IMPORTANT MUST ATTENTION Goal:** Ensure spec-driven idea-to-spec converts a raw idea into ONE canonical, provisional Feature Spec — reviewed and docs-synced, ready to hand off for backlog decomposition or implementation.
335
336**IMPORTANT MUST ATTENTION — Protocols in force (concise digest of the SYNC/shared blocks this skill carries; each is a signpost to its canonical body above):**
337
338- **AI Mistake Prevention:** verify generated content against evidence, trace downstream references, verify all affected outputs, re-read after context loss, surface ambiguity.
339- **Nested Task Creation:** expand child phases and link parent when nested; one in-progress.
340- **Critical Thinking:** trace every claim, confidence >80% to act, never present guess as fact.
341- **Incremental Persistence:** write findings to `plans/reports/` per file — never hold in memory.
342- **Sub-Agent Return Contract:** return summary only (≤10 bullets) with `Full report:` path.
343
344- **MANDATORY IMPORTANT MUST ATTENTION** break work into small todo tasks using task tracking BEFORE starting — one task per workflow step (per capability when multiple capabilities are in scope)
345- **MANDATORY IMPORTANT MUST ATTENTION** brainstorm converges on the capability to spec BEFORE the `$idea` step
346- **MANDATORY IMPORTANT MUST ATTENTION** SPEC-DRIVEN ORDER — author the Feature Spec (`$spec [mode=draft]` → `$spec [mode=tests]`) and review it; this workflow STOPS at the reviewed spec
347- **MANDATORY IMPORTANT MUST ATTENTION** PROVISIONAL OUTPUT — §8 carries `Evidence: TBD` / `Status: Planned` and frontmatter `provisional: true`; reconcile against code later via `workflow-code-to-spec`
348- **MANDATORY IMPORTANT MUST ATTENTION** NEVER decompose into PBIs/stories/backlog here — chain `workflow-spec-to-pbi` for a backlog
349- **MANDATORY IMPORTANT MUST ATTENTION** why-review runs after domain-analysis — FAIL revisits framing, WARN requires user acknowledgment
350- **MANDATORY IMPORTANT MUST ATTENTION** validate decisions with user by asking the user directly — never auto-select scope
351- **MANDATORY IMPORTANT MUST ATTENTION** add a final review todo task to verify the authored Feature Spec(s)
352- **Parallel Sub-Agent Dispatch:** Tag tasks PAR/SEQ, group PAR into disjoint-write-set waves, spawn each wave in ONE message, barrier before advancing.
353
354**[TASK-PLANNING]** Before acting, analyze task scope and systematically break it into small todo tasks and sub-tasks using task tracking.
355
356> **[IMPORTANT]** Analyze how big the task is and break it into many small todo tasks systematically before starting — this is very important.
357> **Anti-Rationalization:**
358
359| Evasion | Rebuttal |
360| ------------------------------------ | ----------------------------------------------------------------------------- |
361| "Purpose obvious" | Anchor it anyway — primacy/recency keeps outcome active through long prompts. |
362| "Existing reminders enough" | Echo Goal in Closing Reminders — bottom anchor prevents drift. |
363| "Skip evidence for prompt edits" | Cite changed file evidence and verify no stale protocol text remains. |
364| "Decompose into PBIs while I'm here" | Out of scope — this workflow STOPS at the spec. Chain workflow-spec-to-pbi. |
365
366<!-- CODEX:SYNC-PROMPT-PROTOCOLS:START -->
367
368## Hookless Prompt Protocol Mirror (Auto-Synced)
369
370Source: `.claude/.ck.json` + `.claude/skills/shared/sync-inline-versions.md` (`:full` blocks) + `.claude/scripts/lib/hookless-prompt-protocol.cjs`
371
372## [WORKFLOW-EXECUTION-PROTOCOL] [BLOCKING] Workflow Execution Protocol — MANDATORY IMPORTANT MUST CRITICAL. Do not skip for any reason.
373
374**Generic portability boundary:** Reusable skills and protocol text stay project-neutral; project-specific conventions are discovered from docs/project-config.json and docs/project-reference/. Apply shared AI-SDD from `shared/sdd-artifact-contract.md`. Read `docs/project-config.json` and `docs/project-reference/docs-index-reference.md`, then open the project reference docs named there. For spec, test-case, behavior-change, public-contract, or `docs/specs/` work, route through the local spec docs named by the docs index: `feature-spec-reference.md`, `spec-system-reference.md`, `spec-principles.md`, and `workflow-spec-test-code-cycle-reference.md` when specs/tests/code must stay synchronized. If either file or a required reference doc is missing or stale, auto-run `$project-init` (or the narrow lower-level route such as `$project-config`, `$docs-init`, `$scan-all`, or `$scan --target=<key>`) before ordinary project-specific work. Any supported AI tool may execute when this shared context and local docs are available.
375
3761. **DETECT:** If the prompt starts with an explicit slash skill/workflow command, execute it directly. Otherwise match the prompt against the workflow catalog and skill list.
3772. **ANALYZE:** Choose the best option: execute directly, invoke a skill, activate a standard workflow, or compose a custom step combination.
3783. **AUTO-SELECT:** Pick the best option yourself. Do not ask the user to choose between direct execution, skill, standard workflow, or custom workflow.
3794. **ACTIVATE:** For a selected workflow, call `$start-workflow <workflowId>`; for a selected skill, invoke that skill; for a custom workflow, sequence custom steps directly; for direct execution, proceed with the task.
3805. **CREATE TASKS:** task tracking for ALL workflow/skill/custom steps before execution when the selected path has multiple steps.
3816. **PARALLELIZE:** Before executing the task list, tag each task `PAR` (independent inputs + write set disjoint from every other `PAR` task) or `SEQ` (name the blocking dependency), group `PAR` tasks into waves, declare the wave plan, and spawn each wave's sub-agents in ONE message — all-return barrier per wave, fan-out one level deep unless a sub-agent's own definition authorizes further fan-out. Sequential-by-default is a defect when tasks are independent; do not parallelize shared write targets, output-consuming tasks, trivial single-file work, ordering a skill or workflow explicitly fixes, or user-approval gates.
3827. **EXECUTE:** Advance per the **Workflow Step Advancement & Parallel Phases** rule in your context instructions — model-driven; a sub-agent completion advances a step identically to an inline call; a parallel-phase group is an all-return barrier (advance only after ALL members return, never serialize it)
383
384## Shared AI-SDD Protocol Markers
385
386Source: `.claude/skills/shared/sync-inline-versions.md`
387
388## SYNC:ai-sdd-artifact-contract
389
390> **AI-SDD Artifact Contract** — Shared spec-driven development rules stay portable and source-owned.
391>
392> 1. Keep reusable AI-SDD principles in `.claude`; put repository-specific paths, commands, owners, products, and formats in project config/reference docs.
393> 2. Preserve cycle: `spec -> plan -> tasks -> implement -> verify -> update spec/docs`.
394> 3. Trace every requirement or invariant through decision, task, TC/test, source evidence, and docs/spec update.
395> 4. Treat code-to-spec extraction as reference-only until accepted by the canonical spec owner.
396> 5. Any supported AI tool may plan, implement, review, or verify with synced context; using multiple tools is optional.
397> 6. Update `.claude` source first, then sync generated mirrors; do not manually edit `.agents`, `.codex`, or `AGENTS.md`. — why: mirrors are generated artifacts; hand-edits are overwritten on the next sync
398> 7. If `docs/project-config.json`, root instruction files, or a required project-reference doc is missing or stale, auto-run `$project-init` or the narrow lower-level route before ordinary project-specific work.
399>
400> **Active reference:** `shared/sdd-artifact-contract.md` in the active skills root.
401
402---
403
404## SYNC:ai-sdd-artifact-contract:reminder
405
406- **MANDATORY** Apply `shared/sdd-artifact-contract.md`; keep reusable AI-SDD in `.claude` and local rules in project docs.
407- **MANDATORY** Code-to-spec extraction is reference-only until canonical acceptance; any supported AI tool may execute with synced context.
408- **MANDATORY** Update `.claude` source before syncing generated mirrors; do not manually edit `.agents`, `.codex`, or `AGENTS.md`.
409- **MANDATORY** Missing or stale project config, root instruction files, or required reference docs route project-specific work through `$project-init` or the narrow setup route automatically.
410 **[TASK-PLANNING] [MANDATORY]** BEFORE executing any workflow or skill step, create/update task tracking for all planned steps, then keep it synchronized as each step starts/completes.
411
412## [LESSON-LEARNED-REMINDER] [BLOCKING] Task Planning & Continuous Improvement — MANDATORY. Do not skip.
413
414Break work into small tasks (task tracking) before starting. Add final task: "Analyze AI mistakes & lessons learned".
415
416**Extract lessons — ROOT CAUSE ONLY, not symptom fixes:**
417
4181. Name the FAILURE MODE (reasoning/assumption failure), not symptom — "assumed API existed without reading source" not "used wrong enum value".
4192. Generality test: does this failure mode apply to ≥3 contexts/codebases? If not, abstract one level up.
4203. Write as a universal rule — strip project-specific names/paths/classes. Useful on any codebase.
4214. Consolidate: multiple mistakes sharing one failure mode → ONE lesson.
4225. **Recurrence gate:** "Would this recur in future session WITHOUT this reminder?" — No → skip `$learn`.
4236. **Auto-fix gate:** "Could `$code-review`/`$code-simplifier`/`$security-review`/`$lint` catch this?" — Yes → improve review skill instead.
4247. BOTH gates pass → ask user to run `$learn`.
425 **[CRITICAL-THINKING-MINDSET]** Apply critical thinking, sequential thinking. Every claim needs traced proof, confidence >80% to act.
426 **Anti-hallucination principle:** Never present guess as fact — cite sources for every claim, admit uncertainty freely, self-check output for errors, cross-reference independently, stay skeptical of own confidence — certainty without evidence root of all hallucination.
427 **AI Attention principle (Primacy-Recency):** Put the 3 most critical rules at both top and bottom of long prompts/protocols so instruction adherence survives long context windows.
428 **Goal-driven execution:** Define success criteria first, loop until verified, and stop only when observable checks pass.
429 **Tests verify intent:** Tests must protect business rules/invariants and fail when the protected intent breaks, not only mirror current behavior.
430
431## Common AI Mistake Prevention (System Lessons)
432
433- **Re-read files after context compaction.** Edit requires prior Read in same context; compaction wipes read state. Re-read before editing.
434- **Grep for old terms after bulk replacements.** AI over-trusts find/replace completeness. Grep full repo after bulk edits for missed refs in docs/configs/catalogs.
435- **Check downs
436
437…(truncated)