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.
[BLOCKING] Execute skill steps in declared order. NEVER skip, reorder, or merge steps without explicit user approval.
[BLOCKING] Before each step or sub-skill call, update task tracking: set in_progress when step starts, set completed when step ends.
[BLOCKING] Every completed/skipped step MUST include brief evidence or explicit skip reason.
[BLOCKING] If Task tools are unavailable, create and maintain an equivalent step-by-step plan tracker with the same status transitions.
Quick Summary
Goal: Wire every feedforward guide and feedback sensor into the greenfield project so all later AI coding agents operate with maximum guidance and self-correct against quality gates BEFORE human review — raising first-attempt quality and catching defects at the earliest, cheapest stage.
Summary:
- BLOCK on the
$linter-setup prerequisite first — computational sensors (linters, hooks, CI gates) MUST exist before any phase runs; this skill never installs them itself.
- Walk phases A→F as a hard barrier sequence: detect stack → author feedforward guides (CLAUDE.md conventions, anti-patterns, pattern catalog) → confirm computational sensors → wire inferential review skills to lifecycle gates → define behaviour/test strategy → emit inventory.
- Treat every feedforward-guide and sensor choice as ask the user directly-gated — never auto-decide content — why: harness conventions bind every future agent and silent choices propagate.
- Write
.ai/workspace/harness/harness-inventory.md incrementally (append per phase, never held in memory) — keep it a LIVING document updated as new sensors are added.
Main steps (run in order — each BLOCKS the next):
- Guards — BLOCK until
$linter-setup verified (linter config + pre-commit hook + CI gate present); detect existing inventory (enhance, never skip).
- Phase A — Stack Detection — read plan / architecture-design / tech-stack reports; write
stack-profile.md; ask the user directly on any undetectable field.
- Phase B — Feedforward Guides — author/enhance CLAUDE.md/AGENTS.md (architecture patterns, anti-patterns, naming, module boundaries) + skill-activation rules +
docs/architecture/* notes + pattern catalog; confirm by asking the user directly.
- Phase C — Computational Sensors — confirm
$linter-setup outputs; list config paths (invoke $linter-setup if any missing).
- Phase D — Inferential Sensors — wire review skills to lifecycle gates (
$why-review pre-impl · $code-review pre-commit · $domain-entities-review post-impl · $production-readiness-review + $security-review pre-release · $scan-codebase-health recurring · $integration-test-review feature-area TC audit BOTH pre-release AND recurring — closes the diff-scoped blind spot); record under "## Review Gates".
- Phase E — Behaviour Harness — pick spec format, define test pyramid + approved fixtures, gate on mutation score (NEVER line %), add property/behavior coverage; write
test-strategy.md.
- Phase F — Inventory Report — append
harness-inventory.md (feedforward + computational/inferential sensors + open gaps); present by asking the user directly.
- Next Steps — ask the user directly:
$feature-implement (recommended) · $why-review · skip.
Produces:
- Feedforward guides: CLAUDE.md/AGENTS.md conventions, architecture docs, pattern catalogs, skill activation rules
- Computational feedback sensors: configured via
$linter-setup (linters, formatters, pre-commit hooks, CI gates)
- Inferential feedback sensors: AI review skills wired to lifecycle stages
- Harness inventory:
.ai/workspace/harness/harness-inventory.md
When invoked: After $scaffold + $linter-setup in greenfield workflow. Assumes scaffolding complete.
Does NOT do: Install linters or configure formatters — that is $linter-setup's responsibility.
Activation Guards
Check 1 — Linter-setup prerequisite (BLOCK if missing):
Before running any phases, verify $linter-setup completed by checking for:
- Linter config file at project root (e.g.,
.eslintrc, pyproject.toml, .editorconfig)
- Pre-commit hook config (e.g.,
.husky/, .pre-commit-config.yaml)
- CI quality gate definition
If any missing → ask the user directly: "$linter-setup appears incomplete. Computational feedback sensors must be in place before harness setup. Run $linter-setup first, then return here?"
BLOCK Phase A/B/C/D/E until linter-setup verification passes.
Check 2 — Existing harness inventory:
Check for .ai/workspace/harness/harness-inventory.md
- If found → ask the user directly: "Harness inventory already exists — re-run to enhance existing harness, or skip?"
- Proceed even when
CLAUDE.md/AGENTS.md present — those are feedforward guides this skill may enhance, NEVER signals to skip
Phase A — Stack Detection
Read from: plan.md frontmatter → architecture-design report → tech-stack-comparison report.
Extract:
- Primary language(s) and framework(s)
- Test framework and test runner
- CI provider/tooling
- Package manager and monorepo structure (if any)
- Module system and build tooling
Write detection result to .ai/workspace/harness/stack-profile.md.
If any field undetectable → ask the user directly to confirm before proceeding.
Phase B — Feedforward Guide Setup (Inferential)
For each guide type, check if it exists; if not, create or enhance:
1. CLAUDE.md / AGENTS.md — Architecture conventions
- Add section: "Architecture Patterns" — document the patterns chosen in
$architecture-design (e.g., Clean Architecture, CQRS, Repository)
- Add section: "Anti-Patterns" — explicit list of patterns to avoid for this stack
- Add section: "Naming Conventions" — language-idiomatic conventions for this repository
- Add section: "Module Boundaries" — which layers may import which; dependency direction rules
2. Skill activation rules
- Document in CLAUDE.md which skills auto-activate for common task types in this stack
- Example: "When modifying domain entities → activate
$domain-entities-review"
- Example: "Before any commit → run
$code-review"
3. Architecture notes
- Create
docs/architecture/ with:
bounded-contexts.md — domain boundaries and ownership
dependency-rules.md — allowed import directions between layers
naming-conventions.md — project-specific naming for files, classes, functions
4. Pattern catalog
- Create
docs/architecture/pattern-catalog.md
- Document each pattern chosen in
$architecture-design with DO/DON'T examples
- Anchor to actual project files once scaffolding produces them
Present list of guides created/updated by asking the user directly: "Feedforward guides above will be created/enhanced. Confirm or adjust?"
Phase C — Computational Feedback Sensors
Confirm $linter-setup has completed:
- Check for linter config file at project root (e.g.,
.eslintrc, pyproject.toml, .editorconfig)
- Check for pre-commit hook config (e.g.,
.husky/, .pre-commit-config.yaml)
- Check for CI quality gate definition
If any missing → invoke $linter-setup before continuing.
Output: confirmation that computational sensors are in place, with file paths listed.
Phase D — Inferential Feedback Sensors
Configure which AI review skills fire at each lifecycle stage. Present to user by asking the user directly:
"Which inferential sensors should be mandatory vs optional for this repository?"
Pre-implementation (planning gate):
$why-review — validate design rationale before committing to implementation approach
Pre-commit (lightweight review):
- Document in CLAUDE.md: run
$code-review before committing significant changes
Post-implementation (domain model changes):
$domain-entities-review — when domain entity files are in the changeset
Pre-release (mandatory gates):
$production-readiness-review — reliability and operational readiness
$security-review — security review before production release
Recurring drift detection:
$scan-codebase-health — schedule quarterly (or on CI schedule) to detect drift
$integration-test-review — Missing Integration Test / Spec-Coverage Gate: feature-area-wide TC audit (Phase 3 addendum in that skill) catches orphaned Section-8 TCs and uncovered changed behavior. Wire BOTH pre-release (mandatory gate, alongside $production-readiness-review and $security-review) AND same recurring cadence as $scan-codebase-health — a diff-scoped run alone cannot see a TC whose covering test regressed outside the current change set; only a periodic feature-area sweep does.
Add the agreed sensor configuration to CLAUDE.md under "## Review Gates".
Phase E — Behaviour Harness (Spec + Test Strategy)
Define the project's behaviour harness plan:
Functional spec format:
- ask the user directly: "Feature documentation format?" Options: feature-spec (8-section tech-free), TDD specs only, lightweight ADRs
- Establish
docs/specs/ or equivalent spec home
Test strategy pyramid:
- Unit: pure functions, domain entities, business logic (no I/O)
- Integration: subcutaneous CQRS tests, repository tests with real DB
- E2E: critical user journeys only (not full coverage — too slow)
Approved fixtures pattern:
- Pre-seed reference/lookup data as approved snapshots
- Integration tests are additive (never delete/reset data)
Test-strength sensors (NOT a line-coverage gate):
- Line coverage is a diagnostic only — NEVER gate a build on it. Low coverage is a useful NEGATIVE signal (an area is untested → investigate); high coverage is NOT evidence of quality (lines can execute with no meaningful assertion). Report it as a diagnostic; do not fail CI on a coverage %.
- Mutation score is the real test-strength metric — gate on this. ask the user directly: "Configure a mutation-testing tool (e.g. Stryker / PITest / mutmut, per stack) as the CI test-quality gate?" A surviving mutant = a fault your tests did not catch = a missing/weak assertion. Add a minimum mutation-score threshold to CI as the computational test-strength sensor.
- Property coverage (optional second sensor): each named business invariant guarded by ≥1 property/metamorphic test. Track which invariants have a property test; an unguarded invariant is a gap to fill.
- Keep behavior/change-coverage (meaningful, not a %): every behavior-changing file must have a test that asserts the changed outcome — see
$integration-test-review Gate 7. This is the right notion of "coverage"; the line-% is not.
Document agreed test strategy to docs/architecture/test-strategy.md.
Phase F — Harness Inventory Report
Write .ai/workspace/harness/harness-inventory.md:
# Harness Inventory
Generated: {date}
Stack: {detected stack from Phase A}
## Feedforward Guides
| Type | File/Skill | Purpose |
| ------------- | ------------------------------------ | ------------------------------- |
| Inferential | CLAUDE.md §Architecture Patterns | Shapes AI architectural choices |
| Inferential | CLAUDE.md §Anti-Patterns | Prevents known bad patterns |
| Inferential | docs/architecture/pattern-catalog.md | DO/DON'T examples per pattern |
| Computational | .editorconfig | Cross-IDE consistency |
## Feedback Sensors — Computational
| Stage | Tool/Hook | What it catches |
| ---------- | ----------------- | ---------------------------------------------- |
| Pre-commit | {linter} | Style violations, common errors |
| Pre-commit | {formatter} | Code formatting drift |
| CI | {type-checker} | Type errors |
| CI | {static-analyzer} | Security, complexity, dead code |
| CI | {mutation-tool} | Weak/missing assertions (test-strength GATE) |
| CI | {coverage-tool} | Untested areas (DIAGNOSTIC only — never gated) |
## Feedback Sensors — Inferential
| Stage | Skill/Agent | What it catches |
| ----------------------- | ------------------------------------------------ | -------------------------------------------------- |
| Pre-implementation | $why-review | Design rationale gaps |
| Pre-commit | $code-review | Convention drift, logic errors |
| Post-implementation | $domain-entities-review | Domain model quality |
| Pre-release | $production-readiness-review | Operational readiness |
| Pre-release | $security-review | Security vulnerabilities |
| Pre-release + Recurring | $integration-test-review (feature-area TC audit) | Orphaned Section-8 TCs, uncovered changed behavior |
## Open Gaps
| Area | Reason | Risk |
| ------------------------ | -------- | -------------- |
| {area not yet harnessed} | {reason} | {LOW/MED/HIGH} |
Present inventory to user for review by asking the user directly.
Next Steps
ask the user directly:
- "$feature-implement (Recommended)" — Begin implementing the project plan with full harness in place
- "$why-review" — Review harness design rationale before proceeding
- "Skip" — Proceed manually without workflow guidance
[IMPORTANT] Use task tracking to break ALL work into small tasks BEFORE starting — including tasks for each file read. This prevents context loss from long files. For simple tasks, AI MUST ATTENTION ask user whether to skip.
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.
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.
Harness Engineering — An outer agent harness has two jobs: raise first-attempt quality + provide self-correction feedback loops before human review.
Controls split:
| Axis |
Type |
Examples |
Frequency |
| Feedforward |
Computational |
.editorconfig, strict compiler flags, enforced module boundaries |
Always-on |
| Feedforward |
Inferential |
CLAUDE.md conventions, skill prompts, architecture notes, pattern catalogs |
Always-on |
| Feedback |
Computational |
Linters, type checks, pre-commit hooks, ArchUnit/arch-fitness tests, mutation-score gate, CI gates |
Pre-commit → CI |
| Feedback |
Inferential |
$code-review skill, $production-readiness-review, $security-review, LLM-as-judge passes |
Post-commit → CI |
Test-strength sensor — gate on mutation score, NOT line coverage. Line coverage is a DIAGNOSTIC only: low coverage is a useful NEGATIVE signal (something is untested); high coverage is NOT evidence of quality (tests can execute lines without asserting intent) — NEVER fail a build on a line-coverage %. The real test-strength metric is mutation score (inject faults into changed code; surviving mutant = a missing/weak assertion = write the killing test); gate the build on it where a mutation tool exists. Add property coverage as a second sensor — each [HARD] §4 rule / §5 invariant guarded by ≥1 property/metamorphic test. The property tests themselves are REQUIRED for invariant-owning behaviors (spec [mode=tests] + integration-test force them, not opt-in); what is optional is only wiring property coverage as an automated CI sensor on top. Keep behavior/change-coverage (does each behavior-changing file have a test that asserts the changed outcome) — that notion is meaningful and stays.
Three harness types:
- Maintainability — Complexity, duplication, line-coverage (diagnostic only — never a gate), style. Easiest: rich deterministic tooling.
- Architecture fitness — Module boundaries, dependency direction, performance budgets, observability conventions.
- Behaviour — Functional correctness. Hardest: gate on mutation score + property coverage; line coverage stays a diagnostic.
Keep quality left: pre-commit sensors fire first (cheap), CI sensors fire second, post-review last (expensive).
Research-driven: Never hardcode tool choices. Detect tech stack → research ecosystem → present top 2-3 options → user decides. Enforce strictest defaults; loosen only with explicit approval.
Harnessability signals: Strong typing, explicit module boundaries, opinionated frameworks = easier to harness. Treat these as greenfield architectural choices, not just style preferences.
Prompt-Enhance Closing Anchors
IMPORTANT MUST ATTENTION follow declared step order for this skill; NEVER skip, reorder, or merge steps without explicit user approval
IMPORTANT MUST ATTENTION for every step/sub-skill call: set in_progress before execution, set completed after execution
IMPORTANT MUST ATTENTION every skipped step MUST include explicit reason; every completed step MUST include concise evidence
IMPORTANT MUST ATTENTION if Task tools unavailable, maintain an equivalent step-by-step plan tracker with synchronized statuses
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: Wire every feedforward guide and feedback sensor into the project so all later AI agents self-correct against quality gates BEFORE human review — raising first-attempt quality and catching defects at the earliest, cheapest stage.
IMPORTANT MUST ATTENTION Protocols in force (concise digest of the SYNC/shared blocks this skill carries):
- Critical Thinking: critical + sequential thinking; every claim traced, confidence >80% to act.
- AI Mistake Prevention: verify generated content against evidence, trace downstream references, verify all affected outputs, re-read after context loss, surface ambiguity.
- Harness Engineering: feedforward + feedback loops; gate on mutation score, never line-coverage %, keep quality left.
IMPORTANT MUST ATTENTION Main steps (in order — each BLOCKS the next): Guards (verify $linter-setup) → A Stack Detection (stack-profile.md) → B Feedforward Guides (CLAUDE.md patterns/anti-patterns/naming/boundaries + skill-activation rules + pattern catalog) → C Computational Sensors (confirm linter/hook/CI) → D Inferential Sensors (wire $why-review, $code-review, $domain-entities-review, $production-readiness-review, $security-review, $scan-codebase-health, $integration-test-review missing-test/spec-coverage gate to gates) → E Behaviour Harness (spec format + test pyramid + mutation-score gate + test-strategy.md) → F Inventory Report (harness-inventory.md) → Next Steps. NEVER skip or reorder — why: each phase consumes the prior phase's verified output.
IMPORTANT MUST ATTENTION BLOCK on the $linter-setup prerequisite first — ALWAYS verify computational sensors (linter config, pre-commit hook, CI gate) exist before any phase runs — why: keep quality left; cheapest gates must precede inferential ones, and this skill never installs them itself
IMPORTANT MUST ATTENTION NEVER auto-decide feedforward-guide or sensor content — present the draft and confirm by asking the user directly — why: harness conventions bind every future agent; silent choices propagate to all later sessions
IMPORTANT MUST ATTENTION write .ai/workspace/harness/harness-inventory.md incrementally (append after each phase) — NEVER hold findings in memory — why: long context drifts and silently drops findings
IMPORTANT MUST ATTENTION walk phases A→F as a hard barrier sequence — NEVER skip or reorder; each phase BLOCKS the next until its guard passes — why: a later phase consumes the prior phase's verified output
IMPORTANT MUST ATTENTION gate the behaviour harness on mutation score + property coverage — NEVER fail a build on a line-coverage % — why: lines execute without asserting intent, so coverage % is a diagnostic only, never a quality gate
IMPORTANT MUST ATTENTION wire $integration-test-review's feature-area-wide TC audit as a Phase D sensor BOTH pre-release AND on the SAME recurring cadence as $scan-codebase-health — never pre-release only — why: a diff-scoped-only run cannot see a §8 TC whose covering test regressed outside the current change set; only a periodic feature-area sweep catches it
IMPORTANT MUST ATTENTION research tool choices per detected stack — NEVER hardcode a linter/formatter/mutation tool — present top 2-3 options, enforce strictest defaults, loosen only with explicit approval — why: harnessability depends on the actual stack, not a default
IMPORTANT MUST ATTENTION harness inventory is a LIVING document — update it when new sensors are added later — why: a stale inventory misrepresents the active feedback loop
IMPORTANT MUST ATTENTION grep 3+ existing guides/sensors before authoring a new one; verify fit (same stack, gate stage, lifecycle) before copying a nearby pattern — why: closest example ≠ matching preconditions
IMPORTANT MUST ATTENTION cite file:line / config-path evidence for every detected sensor and stack fact (confidence >80% to act, <60% DO NOT recommend) — NEVER speculate a tool exists; grep the config to confirm — why: a hallucinated sensor leaves a real gap unguarded
IMPORTANT MUST ATTENTION bootstrap task tracking before phases — task tracking one todo per phase, mark in_progress/completed as you go; on context loss the current task list first — why: resume work, never duplicate phases
Anti-Rationalization:
| Evasion |
Rebuttal |
| "Linter probably set up — skip the prereq check" |
Grep for the config files. No file:line proof = BLOCK Phase A/B/C/D/E until verified. |
| "I'll pick the obvious linter myself" |
NEVER auto-decide — present top 2-3 by asking the user directly; the user owns binding conventions. |
| "High line coverage means tests are strong" |
Coverage is a diagnostic, not a gate. Gate on mutation score; lines run without asserting. |
| "Inventory's small, I'll hold it in memory" |
Append per phase to the inventory file — context loss silently drops findings. |
| "CLAUDE.md exists, harness already done" |
CLAUDE.md is a feedforward guide to ENHANCE, never a signal to skip phases. |
IMPORTANT MUST ATTENTION BLOCK on $linter-setup before any phase · NEVER auto-decide harness content (ask the user directly-gate) · gate behaviour on mutation score, NEVER on line-coverage %.
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 downstream references before deleting. Deletions cascade doc/code staleness. Map referencing files before removal.
- After memory loss, check existing state before creating new. Compaction wipes prior-work memory. Query current state to resume — never blindly duplicate.
- Verify AI-generated content against actual code. AI hallucinates APIs, class names, method signatures. Grep to confirm existence before documenting/referencing.
- Trace full dependency chain after edits. Changing a definition misses downstream consumers. Trace the full chain.
- When renaming, grep ALL consumer file types. Some file types silently ignore missing refs (no compile error). Search code, templates, configs, generated files.
- Trace ALL code paths when verifying correctness. Code existing ≠ code executing. Trace early exits, error branches, conditional skips — not just happy path.
- Update docs that embed canonical data when source changes. Docs inlining derived data (workflows, schemas, configs
…(truncated)
1---2name: harness-setup3description: [Quality] Use when setting up an agent quality harness with feedforward guides and feedback sensors.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<!-- PROMPT-ENHANCE:STEP-TASK-ANCHOR:START -->
50
51> **[BLOCKING]** Execute skill steps in declared order. NEVER skip, reorder, or merge steps without explicit user approval.
52> **[BLOCKING]** Before each step or sub-skill call, update task tracking: set `in_progress` when step starts, set `completed` when step ends.
53> **[BLOCKING]** Every completed/skipped step MUST include brief evidence or explicit skip reason.
54> **[BLOCKING]** If Task tools are unavailable, create and maintain an equivalent step-by-step plan tracker with the same status transitions.
55
56<!-- PROMPT-ENHANCE:STEP-TASK-ANCHOR:END -->
57
58## Quick Summary
59
60**Goal:** Wire every feedforward guide and feedback sensor into the greenfield project so all later AI coding agents operate with maximum guidance and self-correct against quality gates BEFORE human review — raising first-attempt quality and catching defects at the earliest, cheapest stage.
61
62**Summary:**
63
64- BLOCK on the `$linter-setup` prerequisite first — computational sensors (linters, hooks, CI gates) MUST exist before any phase runs; this skill never installs them itself.
65- Walk phases A→F as a hard barrier sequence: detect stack → author feedforward guides (CLAUDE.md conventions, anti-patterns, pattern catalog) → confirm computational sensors → wire inferential review skills to lifecycle gates → define behaviour/test strategy → emit inventory.
66- Treat every feedforward-guide and sensor choice as ask the user directly-gated — never auto-decide content — why: harness conventions bind every future agent and silent choices propagate.
67- Write `.ai/workspace/harness/harness-inventory.md` incrementally (append per phase, never held in memory) — keep it a LIVING document updated as new sensors are added.
68
69**Main steps (run in order — each BLOCKS the next):**
70
711. **Guards** — BLOCK until `$linter-setup` verified (linter config + pre-commit hook + CI gate present); detect existing inventory (enhance, never skip).
722. **Phase A — Stack Detection** — read plan / architecture-design / tech-stack reports; write `stack-profile.md`; ask the user directly on any undetectable field.
733. **Phase B — Feedforward Guides** — author/enhance CLAUDE.md/AGENTS.md (architecture patterns, anti-patterns, naming, module boundaries) + skill-activation rules + `docs/architecture/*` notes + pattern catalog; confirm by asking the user directly.
744. **Phase C — Computational Sensors** — confirm `$linter-setup` outputs; list config paths (invoke `$linter-setup` if any missing).
755. **Phase D — Inferential Sensors** — wire review skills to lifecycle gates (`$why-review` pre-impl · `$code-review` pre-commit · `$domain-entities-review` post-impl · `$production-readiness-review` + `$security-review` pre-release · `$scan-codebase-health` recurring · `$integration-test-review` feature-area TC audit BOTH pre-release AND recurring — closes the diff-scoped blind spot); record under "## Review Gates".
766. **Phase E — Behaviour Harness** — pick spec format, define test pyramid + approved fixtures, gate on mutation score (NEVER line %), add property/behavior coverage; write `test-strategy.md`.
777. **Phase F — Inventory Report** — append `harness-inventory.md` (feedforward + computational/inferential sensors + open gaps); present by asking the user directly.
788. **Next Steps** — ask the user directly: `$feature-implement` (recommended) · `$why-review` · skip.
79
80**Produces:**
81
82- Feedforward guides: CLAUDE.md/AGENTS.md conventions, architecture docs, pattern catalogs, skill activation rules
83- Computational feedback sensors: configured via `$linter-setup` (linters, formatters, pre-commit hooks, CI gates)
84- Inferential feedback sensors: AI review skills wired to lifecycle stages
85- Harness inventory: `.ai/workspace/harness/harness-inventory.md`
86
87**When invoked:** After `$scaffold` + `$linter-setup` in greenfield workflow. Assumes scaffolding complete.
88
89**Does NOT do:** Install linters or configure formatters — that is `$linter-setup`'s responsibility.
90
91---
92
93## Activation Guards
94
95**Check 1 — Linter-setup prerequisite (BLOCK if missing):**
96Before running any phases, verify `$linter-setup` completed by checking for:
97
98- Linter config file at project root (e.g., `.eslintrc`, `pyproject.toml`, `.editorconfig`)
99- Pre-commit hook config (e.g., `.husky/`, `.pre-commit-config.yaml`)
100- CI quality gate definition
101
102If any missing → ask the user directly: "$linter-setup appears incomplete. Computational feedback sensors must be in place before harness setup. Run $linter-setup first, then return here?"
103**BLOCK** Phase A/B/C/D/E until linter-setup verification passes.
104
105**Check 2 — Existing harness inventory:**
106Check for `.ai/workspace/harness/harness-inventory.md`
107
108- If found → ask the user directly: "Harness inventory already exists — re-run to enhance existing harness, or skip?"
109- Proceed even when `CLAUDE.md`/`AGENTS.md` present — those are feedforward guides this skill may enhance, NEVER signals to skip
110
111---
112
113## Phase A — Stack Detection
114
115Read from: `plan.md` frontmatter → architecture-design report → tech-stack-comparison report.
116
117Extract:
118
119- Primary language(s) and framework(s)
120- Test framework and test runner
121- CI provider/tooling
122- Package manager and monorepo structure (if any)
123- Module system and build tooling
124
125Write detection result to `.ai/workspace/harness/stack-profile.md`.
126
127If any field undetectable → ask the user directly to confirm before proceeding.
128
129---
130
131## Phase B — Feedforward Guide Setup (Inferential)
132
133For each guide type, check if it exists; if not, create or enhance:
134
135**1. CLAUDE.md / AGENTS.md — Architecture conventions**
136
137- Add section: "Architecture Patterns" — document the patterns chosen in `$architecture-design` (e.g., Clean Architecture, CQRS, Repository)
138- Add section: "Anti-Patterns" — explicit list of patterns to avoid for this stack
139- Add section: "Naming Conventions" — language-idiomatic conventions for this repository
140- Add section: "Module Boundaries" — which layers may import which; dependency direction rules
141
142**2. Skill activation rules**
143
144- Document in CLAUDE.md which skills auto-activate for common task types in this stack
145- Example: "When modifying domain entities → activate `$domain-entities-review`"
146- Example: "Before any commit → run `$code-review`"
147
148**3. Architecture notes**
149
150- Create `docs/architecture/` with:
151 - `bounded-contexts.md` — domain boundaries and ownership
152 - `dependency-rules.md` — allowed import directions between layers
153 - `naming-conventions.md` — project-specific naming for files, classes, functions
154
155**4. Pattern catalog**
156
157- Create `docs/architecture/pattern-catalog.md`
158- Document each pattern chosen in `$architecture-design` with DO/DON'T examples
159- Anchor to actual project files once scaffolding produces them
160
161Present list of guides created/updated by asking the user directly: "Feedforward guides above will be created/enhanced. Confirm or adjust?"
162
163---
164
165## Phase C — Computational Feedback Sensors
166
167Confirm `$linter-setup` has completed:
168
169- Check for linter config file at project root (e.g., `.eslintrc`, `pyproject.toml`, `.editorconfig`)
170- Check for pre-commit hook config (e.g., `.husky/`, `.pre-commit-config.yaml`)
171- Check for CI quality gate definition
172
173If any missing → invoke `$linter-setup` before continuing.
174
175Output: confirmation that computational sensors are in place, with file paths listed.
176
177---
178
179## Phase D — Inferential Feedback Sensors
180
181Configure which AI review skills fire at each lifecycle stage. Present to user by asking the user directly:
182"Which inferential sensors should be mandatory vs optional for this repository?"
183
184**Pre-implementation (planning gate):**
185
186- `$why-review` — validate design rationale before committing to implementation approach
187
188**Pre-commit (lightweight review):**
189
190- Document in CLAUDE.md: run `$code-review` before committing significant changes
191
192**Post-implementation (domain model changes):**
193
194- `$domain-entities-review` — when domain entity files are in the changeset
195
196**Pre-release (mandatory gates):**
197
198- `$production-readiness-review` — reliability and operational readiness
199- `$security-review` — security review before production release
200
201**Recurring drift detection:**
202
203- `$scan-codebase-health` — schedule quarterly (or on CI schedule) to detect drift
204- `$integration-test-review` — Missing Integration Test / Spec-Coverage Gate: feature-area-wide TC audit (Phase 3 addendum in that skill) catches orphaned Section-8 TCs and uncovered changed behavior. Wire BOTH pre-release (mandatory gate, alongside `$production-readiness-review` and `$security-review`) AND same recurring cadence as `$scan-codebase-health` — a diff-scoped run alone cannot see a TC whose covering test regressed outside the current change set; only a periodic feature-area sweep does.
205
206Add the agreed sensor configuration to CLAUDE.md under "## Review Gates".
207
208---
209
210## Phase E — Behaviour Harness (Spec + Test Strategy)
211
212Define the project's behaviour harness plan:
213
214**Functional spec format:**
215
216- ask the user directly: "Feature documentation format?" Options: feature-spec (8-section tech-free), TDD specs only, lightweight ADRs
217- Establish `docs/specs/` or equivalent spec home
218
219**Test strategy pyramid:**
220
221- Unit: pure functions, domain entities, business logic (no I/O)
222- Integration: subcutaneous CQRS tests, repository tests with real DB
223- E2E: critical user journeys only (not full coverage — too slow)
224
225**Approved fixtures pattern:**
226
227- Pre-seed reference/lookup data as approved snapshots
228- Integration tests are additive (never delete/reset data)
229
230**Test-strength sensors (NOT a line-coverage gate):**
231
232- **Line coverage is a diagnostic only — NEVER gate a build on it.** Low coverage is a useful NEGATIVE signal (an area is untested → investigate); high coverage is NOT evidence of quality (lines can execute with no meaningful assertion). Report it as a diagnostic; do not fail CI on a coverage %.
233- **Mutation score is the real test-strength metric — gate on this.** ask the user directly: "Configure a mutation-testing tool (e.g. Stryker / PITest / mutmut, per stack) as the CI test-quality gate?" A surviving mutant = a fault your tests did not catch = a missing/weak assertion. Add a minimum mutation-score threshold to CI as the computational test-strength sensor.
234- **Property coverage (optional second sensor):** each named business invariant guarded by ≥1 property/metamorphic test. Track which invariants have a property test; an unguarded invariant is a gap to fill.
235- **Keep behavior/change-coverage (meaningful, not a %):** every behavior-changing file must have a test that asserts the changed outcome — see `$integration-test-review` Gate 7. This is the right notion of "coverage"; the line-% is not.
236
237Document agreed test strategy to `docs/architecture/test-strategy.md`.
238
239---
240
241## Phase F — Harness Inventory Report
242
243Write `.ai/workspace/harness/harness-inventory.md`:
244
245```markdown
246# Harness Inventory
247
248Generated: {date}
249Stack: {detected stack from Phase A}
250
251## Feedforward Guides
252
253| Type | File/Skill | Purpose |
254| ------------- | ------------------------------------ | ------------------------------- |
255| Inferential | CLAUDE.md §Architecture Patterns | Shapes AI architectural choices |
256| Inferential | CLAUDE.md §Anti-Patterns | Prevents known bad patterns |
257| Inferential | docs/architecture/pattern-catalog.md | DO/DON'T examples per pattern |
258| Computational | .editorconfig | Cross-IDE consistency |
259
260## Feedback Sensors — Computational
261
262| Stage | Tool/Hook | What it catches |
263| ---------- | ----------------- | ---------------------------------------------- |
264| Pre-commit | {linter} | Style violations, common errors |
265| Pre-commit | {formatter} | Code formatting drift |
266| CI | {type-checker} | Type errors |
267| CI | {static-analyzer} | Security, complexity, dead code |
268| CI | {mutation-tool} | Weak/missing assertions (test-strength GATE) |
269| CI | {coverage-tool} | Untested areas (DIAGNOSTIC only — never gated) |
270
271## Feedback Sensors — Inferential
272
273| Stage | Skill/Agent | What it catches |
274| ----------------------- | ------------------------------------------------ | -------------------------------------------------- |
275| Pre-implementation | $why-review | Design rationale gaps |
276| Pre-commit | $code-review | Convention drift, logic errors |
277| Post-implementation | $domain-entities-review | Domain model quality |
278| Pre-release | $production-readiness-review | Operational readiness |
279| Pre-release | $security-review | Security vulnerabilities |
280| Pre-release + Recurring | $integration-test-review (feature-area TC audit) | Orphaned Section-8 TCs, uncovered changed behavior |
281
282## Open Gaps
283
284| Area | Reason | Risk |
285| ------------------------ | -------- | -------------- |
286| {area not yet harnessed} | {reason} | {LOW/MED/HIGH} |
287```
288
289Present inventory to user for review by asking the user directly.
290
291---
292
293## Next Steps
294
295ask the user directly:
296
297- **"$feature-implement (Recommended)"** — Begin implementing the project plan with full harness in place
298- **"$why-review"** — Review harness design rationale before proceeding
299- **"Skip"** — Proceed manually without workflow guidance
300
301---
302
303> **[IMPORTANT]** Use task tracking to break ALL work into small tasks BEFORE starting — including tasks for each file read. This prevents context loss from long files. For simple tasks, AI MUST ATTENTION ask user whether to skip.
304
305<!-- SYNC:critical-thinking-mindset -->
306
307> **Critical Thinking Mindset** — Apply critical thinking, sequential thinking. Every claim needs traced proof, confidence >80% to act.
308> **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.
309
310<!-- /SYNC:critical-thinking-mindset -->
311
312<!-- SYNC:ai-mistake-prevention -->
313
314> **AI Mistake Prevention** — Failure modes to avoid on every task:
315>
316> **Re-read files after context changes.** Context compaction, resume, or long-running work can make memory stale; verify current files before acting.
317> **Verify generated content against source evidence.** AI hallucinates APIs, names, claims, and document facts. Check the relevant source before documenting or referencing.
318> **Check downstream references before deleting or renaming.** Removing an artifact can stale docs, generated mirrors, configs, and callers; map references first.
319> **Trace the full impact chain after edits.** Changing a definition can miss derived outputs and consumers. Follow the affected chain before declaring done.
320> **Verify ALL affected outputs, not just the first.** One green check is not all green checks; validate every output surface the change can affect.
321> **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.
322> **Surface ambiguity before acting — don't pick silently.** Multiple valid interpretations require an explicit question or stated assumption with risk.
323> **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.
324> **Keep shared guidance role-relevant.** Universal guidance must help every receiving skill or agent; code-specific obligations belong only in code-specific protocols.
325
326<!-- /SYNC:ai-mistake-prevention -->
327
328<!-- SYNC:harness-setup -->
329
330> **Harness Engineering** — An outer agent harness has two jobs: raise first-attempt quality + provide self-correction feedback loops before human review.
331>
332> **Controls split:**
333>
334> | Axis | Type | Examples | Frequency |
335> | ----------- | ------------- | -------------------------------------------------------------------------------------------------- | ---------------- |
336> | Feedforward | Computational | `.editorconfig`, strict compiler flags, enforced module boundaries | Always-on |
337> | Feedforward | Inferential | `CLAUDE.md` conventions, skill prompts, architecture notes, pattern catalogs | Always-on |
338> | Feedback | Computational | Linters, type checks, pre-commit hooks, ArchUnit/arch-fitness tests, mutation-score gate, CI gates | Pre-commit → CI |
339> | Feedback | Inferential | `$code-review` skill, `$production-readiness-review`, `$security-review`, LLM-as-judge passes | Post-commit → CI |
340>
341> **Test-strength sensor — gate on mutation score, NOT line coverage.** Line coverage is a DIAGNOSTIC only: low coverage is a useful NEGATIVE signal (something is untested); high coverage is NOT evidence of quality (tests can execute lines without asserting intent) — NEVER fail a build on a line-coverage %. The real test-strength metric is **mutation score** (inject faults into changed code; surviving mutant = a missing/weak assertion = write the killing test); gate the build on it where a mutation tool exists. Add **property coverage** as a second sensor — each [HARD] §4 rule / §5 invariant guarded by ≥1 property/metamorphic test. The property tests themselves are REQUIRED for invariant-owning behaviors (`spec [mode=tests]` + `integration-test` force them, not opt-in); what is optional is only wiring property coverage as an _automated CI sensor_ on top. Keep **behavior/change-coverage** (does each behavior-changing file have a test that asserts the changed outcome) — that notion is meaningful and stays.
342>
343> **Three harness types:**
344>
345> 1. **Maintainability** — Complexity, duplication, line-coverage (diagnostic only — never a gate), style. Easiest: rich deterministic tooling.
346> 2. **Architecture fitness** — Module boundaries, dependency direction, performance budgets, observability conventions.
347> 3. **Behaviour** — Functional correctness. Hardest: gate on mutation score + property coverage; line coverage stays a diagnostic.
348>
349> **Keep quality left:** pre-commit sensors fire first (cheap), CI sensors fire second, post-review last (expensive).
350>
351> **Research-driven:** Never hardcode tool choices. Detect tech stack → research ecosystem → present top 2-3 options → user decides. Enforce strictest defaults; loosen only with explicit approval.
352>
353> **Harnessability signals:** Strong typing, explicit module boundaries, opinionated frameworks = easier to harness. Treat these as greenfield architectural choices, not just style preferences.
354
355<!-- /SYNC:harness-setup -->
356
357<!-- PROMPT-ENHANCE:STEP-TASK-CLOSING:START -->
358
359## Prompt-Enhance Closing Anchors
360
361**IMPORTANT MUST ATTENTION** follow declared step order for this skill; NEVER skip, reorder, or merge steps without explicit user approval
362**IMPORTANT MUST ATTENTION** for every step/sub-skill call: set `in_progress` before execution, set `completed` after execution
363**IMPORTANT MUST ATTENTION** every skipped step MUST include explicit reason; every completed step MUST include concise evidence
364**IMPORTANT MUST ATTENTION** if Task tools unavailable, maintain an equivalent step-by-step plan tracker with synchronized statuses
365
366<!-- PROMPT-ENHANCE:STEP-TASK-CLOSING:END -->
367
368<!-- SYNC:project-protocol-overlay -->
369
370> **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`.
371>
372> 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.
373
374<!-- /SYNC:project-protocol-overlay -->
375
376<!-- SYNC:project-protocol-overlay:reminder -->
377
378**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.
379
380<!-- /SYNC:project-protocol-overlay:reminder -->
381
382## Closing Reminders
383
384**IMPORTANT MUST ATTENTION Goal:** Wire every feedforward guide and feedback sensor into the project so all later AI agents self-correct against quality gates BEFORE human review — raising first-attempt quality and catching defects at the earliest, cheapest stage.
385
386**IMPORTANT MUST ATTENTION Protocols in force (concise digest of the SYNC/shared blocks this skill carries):**
387
388- **Critical Thinking:** critical + sequential thinking; every claim traced, confidence >80% to act.
389- **AI Mistake Prevention:** verify generated content against evidence, trace downstream references, verify all affected outputs, re-read after context loss, surface ambiguity.
390- **Harness Engineering:** feedforward + feedback loops; gate on mutation score, never line-coverage %, keep quality left.
391
392**IMPORTANT MUST ATTENTION Main steps (in order — each BLOCKS the next):** Guards (verify `$linter-setup`) → A Stack Detection (`stack-profile.md`) → B Feedforward Guides (CLAUDE.md patterns/anti-patterns/naming/boundaries + skill-activation rules + pattern catalog) → C Computational Sensors (confirm linter/hook/CI) → D Inferential Sensors (wire `$why-review`, `$code-review`, `$domain-entities-review`, `$production-readiness-review`, `$security-review`, `$scan-codebase-health`, `$integration-test-review` missing-test/spec-coverage gate to gates) → E Behaviour Harness (spec format + test pyramid + mutation-score gate + `test-strategy.md`) → F Inventory Report (`harness-inventory.md`) → Next Steps. NEVER skip or reorder — why: each phase consumes the prior phase's verified output.
393
394**IMPORTANT MUST ATTENTION** BLOCK on the `$linter-setup` prerequisite first — ALWAYS verify computational sensors (linter config, pre-commit hook, CI gate) exist before any phase runs — why: keep quality left; cheapest gates must precede inferential ones, and this skill never installs them itself
395**IMPORTANT MUST ATTENTION** NEVER auto-decide feedforward-guide or sensor content — present the draft and confirm by asking the user directly — why: harness conventions bind every future agent; silent choices propagate to all later sessions
396**IMPORTANT MUST ATTENTION** write `.ai/workspace/harness/harness-inventory.md` incrementally (append after each phase) — NEVER hold findings in memory — why: long context drifts and silently drops findings
397**IMPORTANT MUST ATTENTION** walk phases A→F as a hard barrier sequence — NEVER skip or reorder; each phase BLOCKS the next until its guard passes — why: a later phase consumes the prior phase's verified output
398**IMPORTANT MUST ATTENTION** gate the behaviour harness on mutation score + property coverage — NEVER fail a build on a line-coverage % — why: lines execute without asserting intent, so coverage % is a diagnostic only, never a quality gate
399**IMPORTANT MUST ATTENTION** wire `$integration-test-review`'s feature-area-wide TC audit as a Phase D sensor BOTH pre-release AND on the SAME recurring cadence as `$scan-codebase-health` — never pre-release only — why: a diff-scoped-only run cannot see a §8 TC whose covering test regressed outside the current change set; only a periodic feature-area sweep catches it
400**IMPORTANT MUST ATTENTION** research tool choices per detected stack — NEVER hardcode a linter/formatter/mutation tool — present top 2-3 options, enforce strictest defaults, loosen only with explicit approval — why: harnessability depends on the actual stack, not a default
401**IMPORTANT MUST ATTENTION** harness inventory is a LIVING document — update it when new sensors are added later — why: a stale inventory misrepresents the active feedback loop
402**IMPORTANT MUST ATTENTION** grep 3+ existing guides/sensors before authoring a new one; verify fit (same stack, gate stage, lifecycle) before copying a nearby pattern — why: closest example ≠ matching preconditions
403**IMPORTANT MUST ATTENTION** cite `file:line` / config-path evidence for every detected sensor and stack fact (confidence >80% to act, <60% DO NOT recommend) — NEVER speculate a tool exists; grep the config to confirm — why: a hallucinated sensor leaves a real gap unguarded
404**IMPORTANT MUST ATTENTION** bootstrap task tracking before phases — task tracking one todo per phase, mark `in_progress`/`completed` as you go; on context loss the current task list first — why: resume work, never duplicate phases
405
406**Anti-Rationalization:**
407
408| Evasion | Rebuttal |
409| ------------------------------------------------ | --------------------------------------------------------------------------------------------------- |
410| "Linter probably set up — skip the prereq check" | Grep for the config files. No `file:line` proof = BLOCK Phase A/B/C/D/E until verified. |
411| "I'll pick the obvious linter myself" | NEVER auto-decide — present top 2-3 by asking the user directly; the user owns binding conventions. |
412| "High line coverage means tests are strong" | Coverage is a diagnostic, not a gate. Gate on mutation score; lines run without asserting. |
413| "Inventory's small, I'll hold it in memory" | Append per phase to the inventory file — context loss silently drops findings. |
414| "CLAUDE.md exists, harness already done" | CLAUDE.md is a feedforward guide to ENHANCE, never a signal to skip phases. |
415
416**IMPORTANT MUST ATTENTION** BLOCK on `$linter-setup` before any phase · NEVER auto-decide harness content (ask the user directly-gate) · gate behaviour on mutation score, NEVER on line-coverage %.
417
418<!-- CODEX:SYNC-PROMPT-PROTOCOLS:START -->
419
420## Hookless Prompt Protocol Mirror (Auto-Synced)
421
422Source: `.claude/.ck.json` + `.claude/skills/shared/sync-inline-versions.md` (`:full` blocks) + `.claude/scripts/lib/hookless-prompt-protocol.cjs`
423
424## [WORKFLOW-EXECUTION-PROTOCOL] [BLOCKING] Workflow Execution Protocol — MANDATORY IMPORTANT MUST CRITICAL. Do not skip for any reason.
425
426**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 `$scan --target=<key>`) before ordinary project-specific work. Any supported AI tool may execute when this shared context and local docs are available.
427
4281. **DETECT:** If the prompt starts with an explicit slash skill/workflow command, execute it directly. Otherwise match the prompt against the workflow catalog and skill list.
4292. **ANALYZE:** Choose the best option: execute directly, invoke a skill, activate a standard workflow, or compose a custom step combination.
4303. **AUTO-SELECT:** Pick the best option yourself. Do not ask the user to choose between direct execution, skill, standard workflow, or custom workflow.
4314. **ACTIVATE:** For a selected workflow, call `$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.
4325. **CREATE TASKS:** task tracking for ALL workflow/skill/custom steps before execution when the selected path has multiple steps.
4336. **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.
4347. **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)
435
436## Shared AI-SDD Protocol Markers
437
438Source: `.claude/skills/shared/sync-inline-versions.md`
439
440## SYNC:ai-sdd-artifact-contract
441
442> **AI-SDD Artifact Contract** — Shared spec-driven development rules stay portable and source-owned.
443>
444> 1. Keep reusable AI-SDD principles in `.claude`; put repository-specific paths, commands, owners, products, and formats in project config/reference docs.
445> 2. Preserve cycle: `spec -> plan -> tasks -> implement -> verify -> update spec/docs`.
446> 3. Trace every requirement or invariant through decision, task, TC/test, source evidence, and docs/spec update.
447> 4. Treat code-to-spec extraction as reference-only until accepted by the canonical spec owner.
448> 5. Any supported AI tool may plan, implement, review, or verify with synced context; using multiple tools is optional.
449> 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
450> 7. If `docs/project-config.json`, root instruction files, or a required project-reference doc is missing or stale, auto-run `$project-init` or the narrow lower-level route before ordinary project-specific work.
451>
452> **Active reference:** `shared/sdd-artifact-contract.md` in the active skills root.
453
454---
455
456## SYNC:ai-sdd-artifact-contract:reminder
457
458- **MANDATORY** Apply `shared/sdd-artifact-contract.md`; keep reusable AI-SDD in `.claude` and local rules in project docs.
459- **MANDATORY** Code-to-spec extraction is reference-only until canonical acceptance; any supported AI tool may execute with synced context.
460- **MANDATORY** Update `.claude` source before syncing generated mirrors; do not manually edit `.agents`, `.codex`, or `AGENTS.md`.
461- **MANDATORY** Missing or stale project config, root instruction files, or required reference docs route project-specific work through `$project-init` or the narrow setup route automatically.
462 **[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.
463
464## [LESSON-LEARNED-REMINDER] [BLOCKING] Task Planning & Continuous Improvement — MANDATORY. Do not skip.
465
466Break work into small tasks (task tracking) before starting. Add final task: "Analyze AI mistakes & lessons learned".
467
468**Extract lessons — ROOT CAUSE ONLY, not symptom fixes:**
469
4701. Name the FAILURE MODE (reasoning/assumption failure), not symptom — "assumed API existed without reading source" not "used wrong enum value".
4712. Generality test: does this failure mode apply to ≥3 contexts/codebases? If not, abstract one level up.
4723. Write as a universal rule — strip project-specific names/paths/classes. Useful on any codebase.
4734. Consolidate: multiple mistakes sharing one failure mode → ONE lesson.
4745. **Recurrence gate:** "Would this recur in future session WITHOUT this reminder?" — No → skip `$learn`.
4756. **Auto-fix gate:** "Could `$code-review`/`$code-simplifier`/`$security-review`/`$lint` catch this?" — Yes → improve review skill instead.
4767. BOTH gates pass → ask user to run `$learn`.
477 **[CRITICAL-THINKING-MINDSET]** Apply critical thinking, sequential thinking. Every claim needs traced proof, confidence >80% to act.
478 **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.
479 **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.
480 **Goal-driven execution:** Define success criteria first, loop until verified, and stop only when observable checks pass.
481 **Tests verify intent:** Tests must protect business rules/invariants and fail when the protected intent breaks, not only mirror current behavior.
482
483## Common AI Mistake Prevention (System Lessons)
484
485- **Re-read files after context compaction.** Edit requires prior Read in same context; compaction wipes read state. Re-read before editing.
486- **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.
487- **Check downstream references before deleting.** Deletions cascade doc/code staleness. Map referencing files before removal.
488- **After memory loss, check existing state before creating new.** Compaction wipes prior-work memory. Query current state to resume — never blindly duplicate.
489- **Verify AI-generated content against actual code.** AI hallucinates APIs, class names, method signatures. Grep to confirm existence before documenting/referencing.
490- **Trace full dependency chain after edits.** Changing a definition misses downstream consumers. Trace the full chain.
491- **When renaming, grep ALL consumer file types.** Some file types silently ignore missing refs (no compile error). Search code, templates, configs, generated files.
492- **Trace ALL code paths when verifying correctness.** Code existing ≠ code executing. Trace early exits, error branches, conditional skips — not just happy path.
493- **Update docs that embed canonical data when source changes.** Docs inlining derived data (workflows, schemas, configs
494
495…(truncated)