duc01226/easyplatform

code-simplifier

[Code Quality] Use when you need to simplify and refine code for clarity, consistency, and maintainability while preserving all functionality.

First seen Jan 24, 2026

Installation

$ npx skills add duc01226/easyplatform --skill code-simplifier

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More details

Agent compatibility

Declared targets from SKILL.md / docs. Unmarked agents are not listed — the skill may still install via the CLI.

Claude Code Declared
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Codex Not declared
GitHub Copilot Not declared
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Cline Not declared
OpenCode Not declared

Repository health

Stars 9
License LICENSE
Default branch main
Open issues 2
Status Active

Skill metadata

Parsed from SKILL.md frontmatter.

Version2.3.0
Declared agents claude-code

Package contents

Files included with this skill beyond the listing page.

  • skill md SKILL.md 53,299 B
  • docs SUMMARY.md 165 B

History

  1. First seen on skills.sh
  2. First recorded snapshot · 63 installs

SKILL.md

<!-- PROMPT-ENHANCE:STEP-TASK-ANCHOR:START -->

[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.

<!-- PROMPT-ENHANCE:STEP-TASK-ANCHOR:END -->

Quick Summary

Goal: Lower the cost of the next change — cut coupling, hidden state, duplicated knowledge, unclear intent — by simplifying and refining code for clarity, consistency, and maintainability without altering any observable behavior. — why: every simplification serves future change cost, not aesthetics.

Summary: (read-this-if-nothing-else digest — purpose + every main step)

  • Purpose — skeptical-first MUTATOR, not a suggester: grep all usages + trace consumers (graph downstream when graph.db exists) and cite file:line BEFORE touching anything; apply a simplification ONLY when certain it preserves behavior, never when unsure. — why: an unverified "safe" rewrite silently breaks a downstream consumer.
  • Main steps, run in order: (1) Phase 0 Detect artifact type (backend/frontend/test/config) + scope; (2) Identify Targets — recent git changes or named files, HARD-SKIP generated/migration/vendor; (3) Analyze via the 5 Simplification Dimensions; (4) Apply one refactoring type at a time (KISS/DRY/YAGNI, behavior-preserving); (5) Verify related tests after EACH change; (6) Self-Recursive Loop (analyze→simplify→verify) until zero findings or a no-progress/unsafe/owner-decision stop hits — do NOT spawn a fresh-context reviewer for your own findings; (7) Self-Review Gate.
  • The 5 Simplification Dimensions (step 3): readability · DRY/abstraction (≥3 occurrences, YAGNI gate) · right-responsibility-lowest-layer (Entity > Domain Service > App Service > Controller) · complexity reduction (flatten nesting, extract >20-line methods) · DB paging+indexes — every technique answers ONE test: does this make the next change cheaper?
  • Self-Review Gate (step 7) — this skill owns review of its own output: when it changed any file, self-invoke /code-review scoped to ONLY those changed files (recursion-safe leaf — NEVER /changes-review); skip + log the reason when nothing changed. — why: the simplifier rewrites code after the main review batch, so its output ships unreviewed without this gate.
  • Read FIRST: docs/project-reference/code-review-rules.md (anti-patterns/checklists) then project-structure-reference.md — before any modification.

MANDATORY IMPORTANT MUST ATTENTION Plan task to READ:

- docs/project-reference/code-review-rules.md — anti-patterns, review checklists (READ FIRST)
- project-structure-reference.md — project patterns/structure

If not found, search for: project documentation, coding standards, architecture docs.

Workflow:

  1. Phase 0: Detect — Classify artifact type (backend/frontend/test/config) and scope
  2. Identify Targets — Recent git changes or specified files (skip generated/vendor)
  3. Analyze — Apply simplification dimensions (see below)
  4. Apply — One refactoring type at a time following KISS/DRY/YAGNI
  5. Verify — Run related tests, confirm no behavior changes
  6. Self-Recursive Check — Re-run this skill's simplification analysis until no simplification findings remain
  7. Self-Review Gate (MANDATORY when code changed) — If this skill modified any files, self-invoke /code-review scoped to ONLY those changed files; skip + log if nothing changed

Key Rules:

  • Preserve all existing functionality — no behavior changes
  • Follow the project's documented patterns (entity expressions, fluent helpers, store base, BEM)
  • Easy to Change is the primary simplification goal for source files; DRY, SOLID, abstraction, and patterns are valid only when they lower future edit sites or cognitive load
  • Tests pass after every change
  • Apply simplification only when certain it preserves behavior — NEVER apply when unsure

Phase 0: Artifact Detection

MUST ATTENTION classify before simplifying — detection drives focus and optional escalation only:

Artifact Type Detection Key Focus
Backend Backend source files for the current stack (e.g. .cs) Domain-model expressions, fluent API, DRY via OOP, SOLID
Frontend Frontend source files for the current stack (e.g. .ts, .html, .scss) BEM, store base, subscription cleanup, component base
Tests Test source files for the current stack (e.g. Test.cs, .spec.ts) Assertions, async-assertion helpers (e.g. an await-until-condition poll helper), data isolation
Config/Generated Migrations, generated/vendor files (e.g. .generated.) SKIP — NEVER simplify generated/migration code

Optional escalation by artifact:

Artifact Escalate only when
Source code/diffs Broad review is requested after simplifier loop is clean
Security-sensitive Security-specific risk is present
Performance-critical Performance behavior is part of the change
Plans/docs/specs Artifact review is explicitly requested

First Principle — Easy to Change

The success metric of every coding decision is future change cost.
DRY, SRP, abstraction, design patterns, naming, layering, tests — every
technique exists to serve one goal: making the next change cheaper.

When evaluating code, a refactor, a test, or an abstraction, ask: does this make the next change cheaper or more expensive?

  • Reject "best practices" that raise change cost (premature abstraction,

speculative generality, leaky indirection, ceremony without payoff).

  • Name the real enemies in findings: **coupling, hidden state, duplicated

knowledge, unclear intent, irreversible decisions exposed too early**.

  • Favor project-owned boundaries around external libraries, for example

component/service input-output contracts, when they localize future library changes; reject pass-through wrappers that add ceremony without lowering change cost.

  • A simpler design that is easy to change beats a sophisticated design that

isn't.

Apply this lens before invoking any specific rule, pattern, or checklist below — if a downstream rule would raise change cost, this principle wins.


Simplification Mindset

Skeptical-first: Verify before simplifying. Every change needs proof preserving behavior.

  • NEVER assume code redundant — trace call paths and read implementations first
  • Before removing/replacing: grep all usages confirming nothing depends on current form
  • Before flagging convention violation: grep 3+ existing examples — codebase convention wins
  • Every simplification requires file:line evidence of what was verified
  • Apply simplification only when certain it preserves behavior; if unsure → DO NOT apply

Simplification Dimensions

Dimension-based reasoning replaces fixed checklists. Each dimension has a Think: prompt forcing first-principles reasoning.

Dimension 1: Readability

Think: Would a new engineer understand this in 30 seconds? What forces multiple file traces?

  • Schema visibility: functions computing data structures need output-shape comment
  • Non-obvious pipelines: A→B→C transformations need brief pipeline explanation
  • Self-documenting signatures: params explain role; remove unused params
  • Magic values: replace unexplained numbers/strings with named constants
  • Naming clarity: names reveal intent without reading implementation

Dimension 2: DRY & Abstraction

Think: Pattern appearing ≥3 places? What base class/generic eliminates duplication?

  • Same-suffix classes (Entity, Dto, *Service) → shared base
  • Repeated logic blocks → extract to helper/extension method
  • YAGNI gate: NEVER extract for hypothetical future use — 3+ occurrences required

Dimension 3: Right Responsibility

Think: Logic in lowest layer that can own it? Could moving it down enable reuse?

  • Entity/Model → Domain Service → Application Service → Controller (logic belongs lowest)
  • Business logic in controllers → move down
  • Mapping in handlers → move to DTO methods

Dimension 4: Complexity Reduction

Think: What is cognitive load? Can nesting/conditionals flatten?

  • Nesting >3 → refactor (early returns, extract methods)
  • Methods >20 lines → extract
  • Complex conditionals → flatten or Strategy pattern (3+ branching occurrences only)

Dimension 5: Database Performance

MANDATORY IMPORTANT MUST ATTENTION

1. Paging: ALL list queries MUST use pagination. NEVER unbounded GetAll(), ToList(), Find() without Skip/Take or cursor-based paging.
2. Indexes: ALL filter fields, foreign keys, sort columns MUST have database indexes. Entity expressions must match index field order. Collections need index management methods.

Project Patterns

Backend

  • Extract entity static expressions (search: entity expression pattern)
  • Use fluent helpers (search: fluent helper pattern in docs/project-reference/backend-patterns-reference.md)
  • Move mapping to DTO mapping methods (search: DTO mapping pattern)
  • Use project validation fluent API (see docs/project-reference/backend-patterns-reference.md)
  • Verify entity expressions have database indexes
  • Verify document DB collections have index management methods

Frontend

  • Use project store base (search: store base class) for state management
  • Apply subscription cleanup (search: subscription cleanup pattern) to all subscriptions
  • BEM class naming on ALL template elements
  • Use the project's base classes (search: base component class, store component base class)

Graph Intelligence (MANDATORY if graph.db exists)

Before simplifying, trace what depends on target:

python .claude/scripts/code_graph trace <file> --direction downstream --json

Verify simplified code preserves same interface for all traced consumers. Cross-service MESSAGE_BUS consumers are especially fragile — may depend on exact message shape.

Additional queries:

  • Verify no callers break: python .claude/scripts/codegraph query callersof <function> --json
  • Check dependents: python .claude/scripts/codegraph query importersof <module> --json
  • Batch analysis: python .claude/scripts/code_graph batch-query file1 file2 --json

Execution

Agent(subagent_type="code-simplifier", prompt="Review and simplify [target files]")

Example:

// Before
function getData() {
    const result = fetchData();
    if (result !== null && result !== undefined) {
        return result;
    } else {
        return null;
    }
}

// After
function getData() {
    return fetchData() ?? null;
}

Constraints

  • Preserve functionality — no behavior changes
  • Tests passing — verify after every change
  • Follow patterns — use the project's conventions, never invent
  • Doc staleness — cross-ref changed files against feature docs, test specs, READMEs; flag updates needed
  • Preserve ALL invariants; never weaken a property/mutation test — a refactor MUST keep every [HARD] §4 rule / §5 invariant intact and MUST NOT delete, relax, or trivialize any property test or mutation test that guards them. If a simplification changes observable behavior, that is NOT a silent change — it is a Dual-Feedback finding (feed the spec AND the tests, then re-review), report it and stop, never ship it. After simplifying, the package MUST still pass the SAME property/mutation bar it passed before — green tests on a weakened bar are not a pass.

Self-Recursive Verification (MANDATORY after simplifications)

After simplifications applied, verification requires a self-recursive simplification pass over the updated diff. Do NOT spawn fresh-context reviewer to re-review this skill's own findings. Repeat analyze → simplify → verify until this skill finds no further simplification opportunities, or stop on unsafe/no-progress/user-decision blocker.

Self-Review Gate (MANDATORY when this skill changed code)

This skill is a code MUTATOR. It owns the review of its own output. Once the self-recursive simplification loop above is clean, gate the result:

1. Did this skill modify any files? Determine the exact set of files this skill changed (its own edits — not the whole working tree).
- No files changed → SKIP this gate and log the skip reason ("code-simplifier made no changes — no self-review needed"). Done.
- Files changed → continue.
2. Self-invoke /code-review scoped to ONLY the changed files. Pass the explicit changed-file set as the review target — not the full diff, not unrelated files.
3. Integrate the /code-review findings. If it surfaces blocking issues caused by the simplification, fix them (behavior-preserving only) and re-run the self-recursive loop + this gate. If issues are out of simplification scope, report them up — do not silently drop.

Recursion safety: /code-review is a LEAF review skill — it does NOT invoke /code-simplifier back, so there is no cycle. Use /code-review here, NEVER /changes-review (the heavyweight workflow that itself contains /code-simplifier and would recurse).

Why this gate exists: /code-simplifier rewrites code after the main review batch has already run. Without this gate, the simplifier's output would ship unreviewed. This gate moves that review responsibility into the mutator itself — so the workflow-review-changes workflow no longer needs a separate /code-review step after /code-simplifier.

Used standalone (outside a review workflow), this self-review gate is sufficient for the simplifier's own changes; you may still finish with /changes-review or the active workflow's review gate for broader, whole-changeset coverage.

Workflow Recommendation

MANDATORY — NO EXCEPTIONS: If NOT already in workflow, use AskUserQuestion to ask user. Do NOT decide this is "simple enough to skip" — the user decides:

1. Activate workflow-review-changes workflow (Recommended) — full changes-review restart gate → validated fix cycle (plan → plan-review → feature-implement) → re-review → docs
2. Execute /code-simplifier directly — run standalone (this skill self-reviews its own changes via the Self-Review Gate)


Next Steps

MANDATORY — NO EXCEPTIONS after completing, use AskUserQuestion:

  • "/workflow-review-changes (Recommended)" — Review all changes before commit
  • "/code-review" — Full code review
  • "Skip, continue manually" — user decides

AI Agent Integrity Gate (NON-NEGOTIABLE)

Completion ≠ Correctness. Before reporting work done, prove it:

1. Grep every removed name. Extraction/rename/delete → grep confirms 0 dangling refs across ALL file types.
2. Ask WHY before changing. Existing values intentional until proven otherwise. No "fix" without traced rationale.
3. Verify ALL outputs. One build passing ≠ all builds passing. Check every affected stack.
4. Evaluate pattern fit. Copying nearby code? Verify preconditions match — same scope, lifetime, base class, constraints.
5. New artifact = wired artifact. Created? Prove registered, imported, reachable by all consumers.

[IMPORTANT] Use TaskCreate to break ALL work into small tasks BEFORE starting — including tasks for each file read. For simple tasks, ask user whether to skip.

Prerequisites: MUST ATTENTION READ before executing:

  • docs/project-reference/domain-entities-reference.md — domain entity catalog, relationships, cross-service sync (read when task involves business entities/models)

External Memory: Complex/lengthy work → write findings to plans/reports/. Prevents context loss, serves as deliverable.

Evidence Gate: MANDATORY — every claim, finding, recommendation requires file:line proof or traced evidence (confidence >80% to act, <80% verify first).

OOP & DRY Enforcement: MANDATORY — flag duplicated patterns for base class extraction. Same-suffix classes (Entity, Dto, *Service) inherit common base. Verify stack has linting/analyzer configured.

Self-Recursive Simplification Loop

Purpose: Avoid spending tokens on a fresh-context review of this skill's own findings. The simplifier owns its own convergence loop; broader review workflows can still run after the simplifier reports clean.

Loop:

  1. Analyze the current target/diff for simplification findings with file:line evidence.
  2. Apply only behavior-preserving simplifications that satisfy the evidence gate.
  3. Run targeted verification after each change set.
  4. Re-read the updated diff and re-run this skill's simplification dimensions.
  5. Repeat until this skill finds zero simplification findings.

Stop conditions:

  • The same simplification finding repeats for 3 passes with no progress.
  • A simplification needs product/owner input or has behavior-change risk.
  • Verification cannot run or cannot prove behavior preservation.

Rules:

  • Do not spawn a fresh-context reviewer just because simplifications were applied.
  • Do not re-review known findings in a fresh context before fixing them.
  • Do not hand off as clean until the self-recursive pass finds zero simplification findings.
  • After the self-recursive loop is clean, run the Self-Review Gate — if any files were changed, self-invoke /code-review scoped to those files (recursion-safe leaf skill); skip + log if nothing changed.

<!-- SYNC:subagent-return-contract -->

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.

```markdown
## 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.

<!-- /SYNC:subagent-return-contract -->

<!-- SYNC:ui-system-context -->

UI System Context — For ANY task touching .ts, .html, .scss, or .css files:

MUST ATTENTION READ before implementing:

1. docs/project-reference/frontend-patterns-reference.md — component base classes, stores, forms
2. docs/project-reference/scss-styling-guide.md — BEM methodology, SCSS variables, mixins, responsive
3. docs/project-reference/design-system/README.md — design tokens, component inventory, icons

Reference docs/project-config.json for project-specific paths.

<!-- /SYNC:ui-system-context -->

<!-- SYNC:shared-protocol-duplication-policy -->

Shared Protocol Duplication Policy — Inline protocol content in skills (wrapped in <!-- SYNC:tag -->) is INTENTIONAL duplication. Do NOT extract, deduplicate, or replace with file references. AI compliance drops significantly when protocols are behind file-read indirection. To update: edit .claude/skills/shared/sync-inline-versions.md first, then grep SYNC:protocol-name and update all occurrences.

<!-- /SYNC:shared-protocol-duplication-policy -->

<!-- SYNC:source-test-drift-check -->

Source/test drift check. For coding, fix, debug, investigation, test, or review work: when source behavior changes, inspect affected unit/integration/E2E tests and decide from evidence whether tests should change to match intended behavior or the source change is an unintended bug to fix. Do not write tests for migration code; schema/data migrations are one-time execution paths, not core application logic.

<!-- /SYNC:source-test-drift-check -->

<!-- SYNC:ai-mistake-prevention -->

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.

<!-- /SYNC:ai-mistake-prevention -->

<!-- SYNC:critical-thinking-mindset -->

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.

<!-- /SYNC:critical-thinking-mindset -->

<!-- SYNC:understand-code-first -->

Understand Code First — HARD-GATE: Do NOT write, plan, or fix until you READ existing code.

1. Search 3+ similar patterns (grep/glob) — cite file:line evidence
2. Read existing files in target area — understand structure, base classes, conventions
3. Run python .claude/scripts/code_graph trace <file> --direction both --json when .code-graph/graph.db exists
4. Map dependencies via connections or callers_of — know what depends on your target
5. Write investigation to .ai/workspace/analysis/ for non-trivial tasks (3+ files)
6. Re-read analysis file before implementing — never work from memory alone. — why: long context drifts from the file; the file is ground truth
7. NEVER invent new patterns when existing ones work — match exactly or document deviation. — why: divergent patterns fragment the codebase and slow every future reader

BLOCKED until: - [ ] Read target files - [ ] Grep 3+ patterns - [ ] Graph trace (if graph.db exists) - [ ] Assumptions verified with evidence

<!-- /SYNC:understand-code-first -->

<!-- SYNC:design-patterns-quality -->

Design Patterns Quality — Priority checks for every code change:

1. DRY via OOP: Identify classes/modules with the same purpose, naming pattern, or lifecycle. Apply your knowledge of the project's language/framework to determine the idiomatic abstraction (base class, mixin, trait, protocol, decorator). 3+ similar patterns → extract to shared abstraction.
2. Right Responsibility: Logic in LOWEST layer (Entity > Domain Service > Application Service > Controller). Never business logic in controllers.
3. SOLID: Single responsibility (one reason to change). Open-closed (extend, don't modify). Liskov (subtypes substitutable). Interface segregation (small interfaces). Dependency inversion (depend on abstractions).
4. After extraction/move/rename: Grep ENTIRE scope for dangling references. Zero tolerance.
5. YAGNI gate: NEVER recommend patterns unless 3+ occurrences exist. Don't extract for hypothetical future use.

Anti-patterns to flag: God Object, Copy-Paste inheritance, Circular Dependency, Leaky Abstraction.

Serial Attention for Design Quality — Scan one quality dimension at a time (serial passes), not all concerns at once. — why: split attention misses violations that single-focus passes catch.

1. Identify applicable dimensions — Based on the code's language, domain, and patterns, determine which quality dimensions apply: DRY, SOLID principles (SRP/OCP/LSP/ISP/DIP), OOP idioms, cohesion/coupling, GRASP, Law of Demeter, CQRS invariants, etc. Your list is NOT fixed — derive from what the code actually does.
2. One focused pass per dimension — Dedicate single-focus attention to EACH dimension in sequence. Do NOT mix concerns across passes.
3. Threshold: 3+ similar patterns = MANDATORY extraction — Not optional suggestion. Flag as mandatory structural fix requiring action.
4. 2+ violations of same kind = structural finding — Report as "pattern problem" needing architectural resolution, not a list of individual instances.

<!-- /SYNC:design-patterns-quality -->

<!-- SYNC:complexity-prevention -->

Complexity Prevention (Ousterhout) — MANDATORY. Measure code by cost of change: one business change should map to one code change. Flag ALL of the following in review:

1. Change amplification — small business change forces edits in >3 places → structural flaw. Count edit sites for a plausible future change (add variant, add field, add authorization). >3 = reject.
2. Cognitive load — reader must hold too much context to safely modify. Flag deep inheritance, long parameter lists, boolean traps, implicit ordering dependencies.
3. Cross-cutting duplication at entry points — logging, error handling, validation, auth, transactions reimplemented per controller/handler/route. Lift to middleware / interceptor / filter / decorator / aspect.
4. Leaked implementation technology — repos returning IQueryable/QuerySet/Criteria/raw cursors/ORM entities to callers. Return finished results + intent-revealing methods (GetActiveVipUsers() not Query()).
5. Type-switch scatteringswitch/if-chains on enum/discriminator in >1 place. New variant = new file, not N edits. One factory/registry switch at the boundary OK; scattered switches = reject.
6. Anemic models — domain objects with only getters/setters, logic floats in services. Move invariants/behavior onto the object (order.Checkout(), not order.Status = ...).
7. Primitive obsession — raw string/int/decimal for account numbers, emails, money, percentages, date ranges, with re-validation at every entry. Wrap in value objects / records / structs that validate once at construction.
8. Inline cross-cutting concerns — authorization/tenant isolation/audit/sanitization hand-written at top of every handler. Flag intent with declarative markers (@RequirePermission("Order.Delete")), enforce once centrally.
9. Shallow modules — tiny class, big interface (many public methods, many flags, many ctor params) wrapping little logic. A module is deep when a small interface hides a lot of implementation. If interface ≈ implementation cost to learn → inline.
10. Missing base class for repeated component/handler lifecycle — 3+ forms/CRUD handlers/list views reimplementing loading/dirty/submit/pagination → extract to base class / hook / composable / mixin / trait.
11. Premature vs delayed abstraction — rule-of-three. First occurrence: write it. Second: notice duplication. Third: extract. Don't build generic frameworks before real variation; don't copy-paste for the 4th time.
12. Embedded utility logic not extracted to helpers — inline paging loops (while (hasMore) { skip += take; ... }), ad-hoc datetime math, string parsing/formatting, collection partitioning, retry/backoff loops, URL/query-string building. If the algorithm is non-trivial AND stack-generic (not business-specific), extract to util/helper/extensions and let consumers call one line. Inline duplicates → duplicated bug surface.
13. Logic in wrong (higher) layer — downshift to callee — business/derivation logic written in the caller when the callee owns the data. Defaults: Controller code that should be App Service. App Service code that should be Domain Service or Entity. Component code that should be ViewModel/Store/Service. Caller reaching into callee's data shape to compute something → move the computation behind an intent-revealing method on the callee. Lowest responsible layer wins (Entity > Domain Service > App Service > Controller · Model/VM > Store > Component). Higher-layer placement = duplicated logic when a sibling caller needs the same thing.
14. Owner owns the rule — extract on first write — if a caller inlines logic that derives, normalizes, validates, or computes from another type's data, MOVE it to the owning type. Single use is sufficient — the trigger is wrong responsibility, not duplication. Sibling callers always arrive; inline copies drift silently with no compile error and no name to grep. Common offenders: Backend — inlined rules in application-layer handlers / commands / queries / services / controllers that belong on the domain entity / value object / domain service. Frontend — inlined derivations / formatting / validation in components that belong on the model / store / view-model / API service. Fix: name the rule once as a method (static or instance) on the owning type; callers invoke by name. Future variant → SECOND named method on the owner, never an inline near-duplicate. Right responsibility first; reuse is the consequence.

Extraction target — where the named rule lives:

| Shape of the rule | Goes to |
| --------------------------------------------- | ----------------------------- |
| Pure function over an entity's own data | static method on the entity |
| Behavior that mutates / guards entity state | instance method on the entity |
| Always-true invariant on a primitive value | value object constructor |
| Needs DI (repo / settings / clock) | helper class registered in DI |
| Domain-agnostic algorithm reused across types | util / extension method |
| Pure shape / projection conversion | DTO mapping |

Pre-commit edit-site test (reject if answer is "many"):

| Change Scenario | Should touch |
| ----------------------------------------------- | ------------------------- |
| Add new variant (customer type, payment method) | 1 new file |
| Change HTTP error response format | 1 middleware/filter |
| Add timestamp field to every persisted entity | 1 base entity/interceptor |
| Add authorization to a new endpoint | 1 declarative marker |
| Swap database/ORM | Data layer only |
| Change business calculation rule | 1 method on owning entity |
| Add loading indicator pattern to forms | 1 base component/hook |
| Add validation rule to a domain primitive | 1 value-object ctor |
| Change paging/retry/datetime algorithm | 1 helper/util function |
| Change a derivation of entity data | 1 method on the entity |

Operating heuristics:

- Write the call site first.
- Count edit sites for plausible future change.
- Prefer removing code over adding it.
- Surface assumptions at boundaries, hide details inside.
- Pre-reuse scan — before writing a non-trivial block, grep for similar algorithms (while.skip, DateTime.Add, split/join chains, paging loops, retry loops). Match existing helper → call it. None exists but pattern is stack-generic → extract to util before second caller appears.
- Layer placement test — ask "if a sibling caller needed this tomorrow, would they re-derive it?" If yes, the logic is in the wrong layer. Move it down.
- Open-case-for-future-reuse — if reviewer spots a block that is likely to appear in another feature (domain-agnostic algorithm, shared lifecycle, recurring derivation), do NOT rationalize with pure YAGNI. Either extract now (if cheap) or create a tracked TODO with the exact extraction target so the second caller does not duplicate silently. Silent duplication is the default failure mode.
- When in doubt ask: "What would need to change if the requirement shifts?"

The measure of good code is the cost of change. Not shortest. Not cleverest. Not most abstracted. Cheapest to safely modify having read a small local portion.

<!-- /SYNC:complexity-prevention -->

<!-- SYNC:severity-rubric -->

Severity Rubric — Classify every finding by consequence, not by how easy it is to fix. One scale across all reviews so a "High" means the same thing everywhere.

| Severity | Action | Definition |
| -------- | ----------- | ------------------------------------------------------------------------- |
| CRITICAL | Block merge | Silent runtime failure, data corruption, validation bypass, security hole |
| HIGH | Must fix | Incorrect behavior, invariant gap, architectural violation |
| MEDIUM | Should fix | Design debt, maintainability, likely future bug |
| LOW | Nice to fix | Convention, documentation, minor clarity |

Score-based skills map their numeric scale onto these tiers — do not invent a parallel vocabulary:

- 0-2 criterion scoring (e.g. production-readiness-review): 0 = CRITICAL/HIGH (criterion unmet, blocks production readiness), 1 = MEDIUM (partial, should fix), 2 = pass (no finding).
- Two-axis scoring (e.g. performance-review, impact × likelihood): map the resulting cell to the nearest tier — high-impact + high-likelihood → CRITICAL/HIGH; low-impact OR low-likelihood → MEDIUM/LOW.

A finding's tier drives the gate: CRITICAL/HIGH must be resolved or explicitly accepted by the owner before PASS; MEDIUM/LOW may ship with a tracked follow-up.

<!-- /SYNC:severity-rubric -->

<!-- SYNC:evidence-based-reasoning:reminder -->

  • MANDATORY IMPORTANT MUST ATTENTION cite file:line evidence for every claim. Confidence >80% to act, <60% = do NOT recommend.

<!-- /SYNC:evidence-based-reasoning:reminder -->

<!-- SYNC:critical-thinking-mindset:reminder -->

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.

<!-- /SYNC:critical-thinking-mindset:reminder -->

<!-- SYNC:complexity-prevention:reminder -->

MUST ATTENTION apply complexity prevention — one business change = one code change. Flag change amplification (>3 edit sites for future change), scattered type-switches, anemic models, primitive obsession, leaked technology through abstractions, shallow modules, un-extracted utility logic (paging/datetime/string/retry → helpers), and logic in the wrong higher layer (downshift to callee/entity/VM). Don't rationalize silent duplication with pure YAGNI.

<!-- /SYNC:complexity-prevention:reminder -->

<!-- SYNC:ai-mistake-prevention:reminder -->

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.

<!-- /SYNC:ai-mistake-prevention:reminder -->

<!-- SYNC:severity-rubric:reminder -->

  • MANDATORY Classify findings Critical/High/Medium/Low by consequence; Critical/High block PASS until fixed or owner-accepted.
  • MANDATORY Score-based skills (sre 0-2, perf two-axis) map onto the same four tiers — no parallel severity vocabulary.

<!-- /SYNC:severity-rubric:reminder -->

<!-- PROMPT-ENHANCE:STEP-TASK-CLOSING:START -->

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

<!-- PROMPT-ENHANCE:STEP-TASK-CLOSING:END -->

<!-- SYNC:parallel-subagent-dispatch -->

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.

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.
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.
3. Declare before dispatch: Parallel plan: wave 1 = [...] · wave 2 = [...] · SEQ = [...] (reason).
4. Spawn each wave in ONE message — every 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.
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).
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.
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.

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.

<!-- /SYNC:parallel-subagent-dispatch -->

<!-- SYNC:parallel-subagent-dispatch:reminder -->

  • 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.

<!-- /SYNC:parallel-subagent-dispatch:reminder -->

<!-- SYNC:project-protocol-overlay -->

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.

<!-- /SYNC:project-protocol-overlay -->

<!-- SYNC:project-protocol-overlay:reminder -->

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.

<!-- /SYNC:project-protocol-overlay:reminder -->

Closing Reminders

IMPORTANT MUST ATTENTION Goal: lower the cost of the next change — cut coupling, hidden state, duplicated knowledge, unclear intent — by simplifying and refining code for clarity, consistency, maintainability WITHOUT altering any observable behavior. — why: every simplification serves future change cost, not aesthetics.

IMPORTANT MUST ATTENTION Main steps (run in declared order, never skip/merge): (1) Phase 0 Detect artifact type + scope → (2) Identify Targets (skip generated/migration/vendor) → (3) Analyze via the 5 Dimensions → (4) Apply one refactoring type at a time → (5) Verify tests after EACH change → (6) Self-Recursive Loop until zero findings → (7) Self-Review Gate (/code-review on changed files). — why: AI keeps forgetting the skill's own steps; surfacing them here is the recency anchor.

Protocols in force (concise digest of the SYNC/shared blocks this skill carries):

  • Subagent Return Contract: sub-agents return only the summary shape; full detail to report file.
  • UI System Context: read frontend-patterns, scss-styling-guide, design-system before touching UI files.
  • Shared Protocol Duplication Policy: inline SYNC duplication is intentional — NEVER extract behind file reference.
  • Source/Test Drift Check: when source behavior changes, decide from evidence whether tests follow or source is a bug.
  • AI Mistake Prevention: verify generated content against evidence, trace downstream references, verify all affected outputs, re-read after context loss, surface ambiguity.
  • Critical Thinking: traced proof per claim, confidence >80% to act, NEVER present guess as fact.
  • Understand Code First: read target + grep 3+ patterns + graph trace before writing or fixing.
  • Design Patterns Quality: DRY via OOP, lowest-layer responsibility, SOLID, one serial pass per dimension.
  • Complexity Prevention: one business change = one code change; flag change amplification and wrong-layer logic.
  • Severity Rubric: classify findings Critical/High/Medium/Low by consequence; Critical/High block PASS.
  • Parallel Sub-Agent Dispatch: Tag tasks PAR/SEQ, group PAR into disjoint-write-set waves, spawn each wave in ONE message, barrier before advancing.

IMPORTANT MUST ATTENTION apply a simplification ONLY when certain it preserves behavior — grep all usages + trace consumers (graph downstream when graph.db exists) and cite file:line BEFORE touching anything; if unsure → DO NOT apply. — why: an unverified "safe" rewrite silently breaks a downstream consumer. IMPORTANT MUST ATTENTION NEVER simplify generated, migration, or vendor files — HARD-SKIP them in Phase 0. — why: regenerated output overwrites edits and migrations are one-time execution paths, not core logic. IMPORTANT MUST ATTENTION run the Self-Recursive Loop (analyze → simplify → verify) until ZERO simplification findings remain; do NOT spawn a fresh-context reviewer for this skill's own findings. — why: re-reviewing your own findings in fresh context burns tokens the convergence loop already owns.

  • MANDATORY Evidence Gate — every finding/recommendation needs file:line proof or a traced call chain; confidence >80% to act, 60-80% verify first, <60% DO NOT recommend. NEVER use "obviously"/"I think"/"should be" without proof.
  • MANDATORY break work into small todo tasks via TaskCreate BEFORE starting (one task per file read); keep exactly one in_progress; mark completed immediately; add a final review task. On context loss, TaskList first — resume, never duplicate.
  • MANDATORY READ docs/project-reference/code-review-rules.md FIRST, then project-structure-reference.md; search 3+ existing patterns and read the target code BEFORE modification. Run graph trace when graph.db exists.
  • MANDATORY evaluate pattern FIT before copying nearby code — verify same scope, lifetime, base class, constraints; closest example ≠ matching preconditions. — why: a copied pattern with mismatched preconditions compiles but is wrong.
  • MANDATORY reason by the 5 Simplification Dimensions — readability, DRY/abstraction (≥3 occurrences, YAGNI gate), right-responsibility-lowest-layer (Entity > Domain Service > App Service > Controller), complexity reduction, DB paging+indexes; every technique answers ONE test: does this make the next change cheaper?
  • MANDATORY IMPORTANT MUST ATTENTION check DRY via OOP (same-suffix → base class), right responsibility (lowest layer), SOLID; grep ENTIRE scope for dangling refs after every extraction/move/rename — zero tolerance. — why: "primary file done" ≠ secondary files clean.
  • MANDATORY IMPORTANT MUST ATTENTION preserve ALL invariants — NEVER weaken, delete, or trivialize a property/mutation test guarding a [HARD] §4 rule or §5 invariant; a behavior change is a Dual-Feedback finding (feed spec AND tests, re-review) — report and stop, never ship silently. — why: green tests on a weakened bar are not a pass.
  • MANDATORY IMPORTANT MUST ATTENTION verify ALL affected outputs and tests pass after EACH change (apply one refactoring type at a time) — one build green ≠ all green. — why: multi-stack changes regress the stack you didn't check.
  • MANDATORY IMPORTANT MUST ATTENTION Self-Review Gate — when this skill changed code, self-invoke /code-review scoped to ONLY the changed files (recursion-safe leaf skill; NEVER /changes-review — it recurses into /code-simplifier); skip + log the reason when nothing changed. The simplifier owns review of its own output. — why: the simplifier rewrites code after the main review batch, so its output ships unreviewed without this gate.
  • MANDATORY validate route decisions with the user via AskUserQuestion when outside a workflow — never auto-decide "simple enough to skip".

Anti-Rationalization:

Evasion Rebuttal
"Too simple for graph trace" Wrong assumptions waste more time. Run trace anyway when graph.db exists.
"Already searched" Show file:line evidence. No proof = no search.
"Just a small simplification" Small change at wrong layer cascades. Trace consumers first.
"Code is self-explanatory" Future readers need an evidence trail. Document non-obvious intent.
"Simplification is safe" NEVER assume safe — grep ALL usages first; <80% confidence = do not apply.
"Best practice says abstract it" Abstract only when it lowers future change cost; pass-through indirection is complexity, not simplification.
"This pattern is everywhere" Pattern fit ≠ pattern presence. Verify same scope/lifetime/base-class/constraints before copying.
"Tests still pass, ship it" Did you weaken the bar? A relaxed property/mutation test passing is not a pass. Keep the SAME invariant bar.
"Skip recursive check after fixing" Every simplification changes the diff. Re-run this skill's own simplification analysis until it finds zero simplification findings.
"Generated file is messy too" NEVER touch generated/migration/vendor — HARD-SKIP. Regeneration overwrites you.

[TASK-PLANNING] Before acting, analyze task scope and systematically break into small todo tasks using TaskCreate.


Closing reminder — Easy to Change is the success metric. Every finding,
test, refactor, and abstraction must answer one question: _does this make
the next change cheaper or more expensive?_ If it doesn't reduce future
change cost, reject it. Coupling, hidden state, duplicated knowledge, and
unclear intent are the real enemies — call them out by name.