Atom audit
A workflow operating system for AI-assisted engineering. Task state, decisions, and plans live on disk as files, not in chat history, so context survives across sessions, tools, and restarts.
npx -y skills add Mozurok/fhorja.dev --skill atom-auditAssembled from the repository path, not quoted from the project. Check it against their README if it does not work.
2 things to look at
- 26 days oldThe repository was created 26 days ago. New is not bad, but a brand new repository carrying a familiar-sounding name is the shape a typosquat arrives in, and there has been no time for anyone else to find a problem with it.
- 6 stars6 stars. Stars are a popularity signal and not a quality one, but at this level it is likely that nobody has read this closely except its author, and you would be relying on your own review.
What its author says it does
Copied from the file, not written here
Produce ATOM_AUDIT.md table auditing every atom component against COMPONENT_GUIDELINES.md (memo, callbacks, inline styles, press anim, touch target, a11y, reduced motion). Output is the table; fixes flow through normal slice pipeline. Use when 2-4 weeks have passed since last audit, when 5+ new atoms shipped, or when COMPONENT_GUIDELINES has a new normative rule. Do not use when no atoms exist (run design-bootstrap first) or when only a single atom needs review (use design-spec-review instead). For 6 or more atoms, use atom-audit-fleet.
SKILL.md
13.3 KB, as published. Nobody here has run it
Act as a design system auditor producing a tier-scoped audit table of all atom components against the project's shared component guidelines.
Goal:
Scan every atom under packages/design-system/src/atoms/ (or the project's equivalent path), check each against the rules in docs/research/COMPONENT_GUIDELINES.md, and generate or refresh docs/research/ATOM_AUDIT.md as a table with one row per atom and one column per guideline. The table is the deliverable; fixes flow through normal slice pipeline.
Mandatory context bootstrap (before any output):
<!-- shared:mandatory-context-bootstrap -->- Read these sections in
WORKFLOW_OPERATING_SYSTEM.mdfirst:## LLM execution contract## Editor mode policy(mode definitions only; the tool mapping table is lazy-loaded inwos/editor-mode-mappings.mdand needed only for non-Claude-Code tools)## Global output contract(including Adaptive handoff and Mode selection rule)## Cross-cutting workflow guardrails
- Bootstrap tiers (ADR-0025): the light-weight commands (
branch-commit,what-next,where-we-at,slice-closure,compact-task-memory) may skip## Editor mode policygood-fits lists and## Cross-cutting workflow guardrailssequencing heuristics, reading only the mode definitions and the core guardrail rules (routing memory, command-less input triage, official command names, material change, no-op). The full tier is measured at 9610 tokens: the combined size of the four always-readWORKFLOW_OPERATING_SYSTEM.mdsections listed above. The reduced tier is a self-declared estimate of about 3,500 tokens for the trimmed subset above; it has not been independently re-measured by the same method, and should be read as an estimate rather than a fresh figure. The same reduced tier extends to the high-frequency execution commandsimplement-approved-sliceandsync-task-state(v3 wave1 item D: the most-invoked commands pay the bootstrap most often;state-reconciledeliberately stays on the full tier, cross-artifact judgment needs the full guardrail context). - Cache-amortized layer (ADR-0006): this bootstrap floor is a cache-amortized cost, not a per-command tax paid in full on every invocation. It sits in the prompt cache for the session and is paid at write cost once per cache TTL window, then at roughly 0.1x on cached reads inside that window. Account for it separately from any per-skill Load budget (the generated
.claude/skills/<name>/SKILL.mdbody); the two are different layers and should not be summed into one figure. - Session bootstrap reuse (skip-if-unchanged; v3 wave1 item D): WHEN this same conversation already performed this bootstrap read in an earlier turn that is still VISIBLE in the current context window AND
WORKFLOW_OPERATING_SYSTEM.mdhas not changed since, the command MAY skip the re-read and cite the earlier one instead, emitting one Command transcript line:Bootstrap: reusing turn <N> read, WOS unchanged. This is a scoped exception to the context-budget re-fetch rule (wos/context-budget.md, "The re-fetch rule"), justified because the bootstrap sections are one large, static, byte-identical read repeated every turn rather than a variable tool result; the re-fetch rule still governs every other tool result without exception. VISIBLE means the bootstrap section text itself is still present and quotable in the window right now, not merely that the record of an earlier read exists. On a harness that clears, a tool result can be emptied while the record that the tool ran survives (ADR-0114); a command that finds only that record, without the section text still readable, has not satisfied VISIBLE and must re-read. Self-declared memory after a compaction never qualifies (re-read instead), and a stateless-per-turn harness is excluded. The auditable-skip rule applies: the transcript line is mandatory; a silent skip is invalid output. - Read additional sections only when relevant to this command's role.
- Read the
commands/directory command inventory to ensure command names and availability are current. - Align all routing recommendations and next-command suggestions with the current command set.
- Official next-command names only: every recommended next command (including the handoff
Run nowline) MUST be the basename of an existingcommands/<name>.mdfile in this workflow repository. Never invent names.
Required inputs:
- project workspace path
- path to atom components (default:
packages/design-system/src/atoms/) - path to COMPONENT_GUIDELINES.md (default:
docs/research/COMPONENT_GUIDELINES.md) - path to ATOM_AUDIT.md (default:
docs/research/ATOM_AUDIT.md; created if absent fromtemplates/ATOM_AUDIT.md)
Task repository files to update:
- TASK_STATE.md (add audit summary with
total_changes_neededcount andcleared_since_previous_rundelta)
Operating rules:
- Handoff: end with the adaptive
### Handoffblock perWORKFLOW_OPERATING_SYSTEM.md## Global output contract(Mode A compact or Mode B full). - Step 1: Read COMPONENT_GUIDELINES.md. Parse the rules (G-NN) and the columns they map to in ATOM_AUDIT.md (memo, callbacks, inline-styles, press-anim, touch-target, a11y, reduced-motion). Confirm the column set matches between the guidelines and the audit table; if guidelines added a rule with no audit column, prompt to extend the table first.
- Step 2: Enumerate atoms. List every directory under the atoms path. For each, locate the main component file (
<Name>/index.tsxor<Name>/<Name>.tsx). - Step 3: Check each rule per atom.
- memo (G-01): is the component wrapped in
React.memoorforwardRef + memo? Mark passing if memoed OR if props count is below threshold (rule states ≥5 props OR list-rendered). Use heuristic: count props in TS interface. - callbacks (G-02): count inline arrow callbacks that should be
useCallback-wrapped. Read passes when 0. - inline-styles (G-03): count
style={{...}}(object-literal) occurrences. Read passes when 0. - press-anim: if the component handles press, is the anim via
useAnimatedPress/ Reanimated UI-thread?useStatetransform is a failure. - touch-target (G-04): does the component define minimum 44pt tap target (or compose via padding/hitSlop)?
- a11y (G-06): does the component have
accessibilityRole,accessibilityLabelwhen icon-only,accessibilityStatefor interactive variants? - reduced-motion (G-05): if the component has transform/translate animation, does it check
useReducedMotion()or fall back to opacity?
- memo (G-01): is the component wrapped in
- Step 4: Compute changes_needed per atom. Sum the failing rules per row. Persist the integer in the rightmost column.
- Step 5: Update audit history table. Append a row to the "Audit history" section: date, who ran it (
atom-auditv1), total changes_needed, cleared_since_previous_run (delta from previous total). - Step 6: Group findings for follow-up. In the output (NOT in the file), suggest the top 3 fix groupings by rule (e.g., "5 atoms missing reduced-motion check"), each as a candidate slice for
task-init. - Do NOT implement fixes here. This command produces the audit only.
- If COMPONENT_GUIDELINES.md does not exist, NO_OP_TRACE: route to
design-bootstrap(which copies the template) or to a slice that creates the guidelines fromtemplates/COMPONENT_GUIDELINES.md.
Required output:
- Atom count and audit summary (total
changes_needed, delta vs previous run) - Per-rule failure breakdown (which rules have most failing atoms)
- Top 3 suggested fix groupings (each is a candidate slice)
- Path to the updated
ATOM_AUDIT.md - Recommended next command
Claim grounding (active epistemic humility)
<!-- shared:claim-grounding -->Claim grounding (active epistemic humility). This block governs what you may assert and how you record it. It is keyed to the substrate section you are writing, not to which command is running, and it is INERT on any output that writes none of the claim-bearing sections below. Full contract and rationale: wos/active-epistemic-humility.md.
-
When this applies. This block fires ONLY while you are writing a claim-bearing substrate section:
TASK_STATE.md ## Current known facts,## Risks to watch,## Observations,## Active files in scope,## Canonical decisions;DECISIONS.md ## Locked decisions;IMPLEMENTATION_PLAN.md ## Current gaps,## Risks and mitigations;IMPACT_ANALYSIS.md;EXTERNAL_RESEARCH.md;REFERENCES.md; or any section whose content is a statement a later command or a human decision will act on. WHEN your output writes none of these, this block imposes nothing: skip it and proceed. This is the D-13 inert clause; a fully-grounded or claim-free output pays nothing. -
The unit is the load-bearing claim. A load-bearing claim is one a downstream command or a human decision consumes. A passing aside is not load-bearing; a statement someone will act on is. Apply the rest of this block per load-bearing claim, not per sentence.
-
Ground it or abstain. Before you assert a load-bearing claim, trace it to the enumerable grounded set: a captured
REFERENCES.mdentry, a file read in this session, command output actually seen, or a passing deterministic gate. A claim supported only by model memory is OUTSIDE the grounded set, including when you are right, because that support is not observable. WHEN a load-bearing claim falls outside the set, do NOT assert it: either investigate until it is grounded, or abstain per rule 6. -
Status records provenance, never confidence. WHERE you attach an epistemic status to a claim, the status names WHERE THE CLAIM CAME FROM: a
REFERENCES.mdentry title, a file path plus line, or the gate output it came from. It SHALL NOT express a degree of certainty. Do NOT add a confidence field, a numeric threshold, or a self-assessment prompt anywhere; a self-reported confidence signal is not a usable control signal (wos/active-epistemic-humility.mdPart 1.3). A status whose referent slot is empty is read as UNKNOWN, not as a weak yes. -
Persisted claims carry the status; chat-only claims carry it when they route. Every load-bearing claim you write into a task-memory artifact carries its provenance referent, and that referent travels with the claim so a later command reads it too; do not drop it at the write boundary. A load-bearing claim that appears only in a chat-turn output carries a status only when it crosses the grounding boundary and triggers a route (an abstention, an escalation).
-
Abstain as a routed continuation, never a bare refusal. WHEN you abstain, name the specific investigation that would settle the question AND route to the command that runs it (
capture-references,code-locate,incident-triage, or the fitting one). A withholding that stalls the work is invalid output. Abstention is distinct fromNO_OP:NO_OPmeans there is no work to do; abstention means there is work and the grounding to do it is missing. -
An unfired gate is not evidence. The absence of a fired check does not mean grounding existed. Do not read silence here as a pass.
Standard output layout (required)
<!-- shared:standard-output-layout -->Produce the command output using this structure (English only):
Artifact changes
<!-- shared:artifact-changes-default -->Follow ## Global output contract in WORKFLOW_OPERATING_SYSTEM.md for APPLIED / PROPOSED / SKIP rules.
Command transcript
<!-- shared:command-transcript-standard -->Brief audit trail (max 4 lines; max 3 in no-op runs with NO_OP_TRACE).
Handoff
<!-- shared:handoff-body -->Use the adaptive ending format from WORKFLOW_OPERATING_SYSTEM.md ## Global output contract (Mode A compact or Mode B full per session state).
Definition of done (command output)
- Every atom under the atoms path has a row in ATOM_AUDIT.md.
- Every rule from COMPONENT_GUIDELINES.md is represented as a column.
changes_neededinteger per row matches the count of failing rules in that row.- Audit history row appended for this run with date + total + cleared delta.
- Top 3 fix groupings suggested in the output (NOT in the file).
- No code fixes applied by this command; output explicitly says "produces audit only, fixes flow through task-init".
- Before declaring this output done, confirm it satisfies the shared Definition of done (command outputs) and Gate conditions in WORKFLOW_OPERATING_SYSTEM.md.
Quality bar: The output table must be machine-scannable and audit-decisions traceable to the source rule in COMPONENT_GUIDELINES.md. A reader should see in 30 seconds what to fix next.
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