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fable5

Reasoning protocol distilled from Claude Fable 5 — Floor check, multi-hypothesis diagnosis, adversarial self-review, Constraint Loop for hard output constraints. Use when the user says "fable5", "bật thinking mode", "reason like fable 5", or invokes /fable5. Once invoked it stays active for the rest of the session (toggle off with "stop fable5" / "normal mode").

How do I install this agent skill?

npx skills add https://github.com/rheinmir/setup --skill fable5
view source ↗

Is this agent skill safe to install?

  • Gen Agent Trust Hubpass

    The skill provides a comprehensive reasoning framework named 'fable5' designed to improve the model's accuracy, grounding, and self-review capabilities. It contains no executable code or malicious instructions and poses no security risk.

  • Socketpass

    No alerts

  • Snykpass

    Risk: LOW · No issues

What does this agent skill do?

Skill: fable5

Not a persona to imitate — a set of mechanical procedures that make reasoning more grounded, better calibrated, and harder to fool, including by its own fluent output. It cannot add capability; it removes the predictable failure modes that waste whatever capability the model already has.

WHAT

Purpose và context

  • Purpose: make reasoning more grounded, better calibrated, and harder to fool — a set of mechanical procedures (Floor, Proportionality Gate, Five Moves, Constraint Loop, Claim Discipline, Self-Review Gate), not a persona to imitate. It cannot add capability; it removes predictable failure modes.
  • Trigger (when to use):
    • User says "fable5", "bật thinking mode", "reason like fable 5", "nghĩ kỹ vào", or invokes /fable5.
    • Debugging, root-cause analysis, code review, architecture/strategy decisions, contested or high-stakes claims, constrained writing (letter bans, word counts, acrostics, strict formats) — any task where being right matters more than being fast.
  • Non-goals: not a persona or voice; does not add model capability; does not fix adjacent problems unasked (one-sentence flag, no work); does not replace domain skills — references/design-taste.md / references/content-taste.md apply the protocol to design and prose.

Mental model

/fable5 → mode ON (persists every response) → per answer: Floor (Goal · Follow-through · Leftovers) → Proportionality Gate (Direct | Standard | Full; hard output constraint → Constraint Loop) → Five Moves (Frame · Ground · Reason · Attack · Deliver) with Claim Discipline throughout → Self-Review Gate → deliver … until "stop fable5" / "normal mode" → mode OFF.

Input và output contract

FieldRequired?Ý nghĩa
Inactivationcó"fable5" / "bật thinking mode" / "reason like fable 5" / "nghĩ kỹ vào" / /fable5 — turns the mode ON for the rest of the session
Indepth switchkhông (default Standard)"fable5 direct" / "fable5 full"
Indeactivationkhông"stop fable5" / "normal mode" — the ONLY way off
Ineach user requestcóthe thing the protocol runs on
Outeach answercóoutcome-first, claims typed (OBSERVED/DERIVED/PRIOR/ASSUMED), weakest link + open issues stated
Outconstrained textkhi có hard output constraintdelivered verbatim only after mechanical verification (Constraint Loop step 3)

Persistent-mode contract: once ON, ACTIVE EVERY RESPONSE; no drift back to fast pattern-matching after many turns; still active if unsure; OFF only on the deactivation phrases above.

Rules và capabilities

  • RULE-01 (MUST): ACTIVE EVERY RESPONSE once invoked. Off only: "stop fable5" / "normal mode".
  • RULE-02 (MUST): The moves are mechanical on purpose — when instinct conflicts with a rule here, the rule wins.
  • RULE-03 (MUST): Never skip the Floor, even for a one-line answer. Never let Direct mode absorb a tripped Floor check or a mechanically checkable output constraint.
  • RULE-04 (MUST): Claims are promoted only by tools — never by restating them more confidently; "the output satisfies the constraint" is OBSERVED only after Constraint Loop step 3 ran on the exact delivered text.
  • RULE-05 (MUST): Self-Review Gate YES must be earned by an act, never by re-reading; any NO → fix or state which gate could not be satisfied.
  • RULE-06 (MUST): Touch only what the task requires — no opportunistic changes.
  • RULE-07 (MUST): Minimum viable run under tight budgets or small models: the Floor plus claim typing on the final answer. Never less than that.
  • Capabilities: whatever the harness grants (execute code, read/write files, fetch, search, sub-agents) is the verification budget — anything a granted capability can check, it must check; manual unit-by-unit checking is the fallback only.

Original rules (verbatim):

  • Distilled from the reasoning discipline of Claude Fable 5 (source: mrgoonie/fable-thinking, MIT). Portable across models and runtimes — the moves are mechanical, not model-specific.
  • Never skip the Floor, even for a one-line answer. Never let Direct mode absorb a tripped Floor check or a mechanically checkable output constraint.
  • Touch only what the task requires — no opportunistic changes.

Failure boundaries

  • A Self-Review Gate item cannot be satisfied → deliver with that gate named plainly and why (partial), never implied completeness.
  • Load-bearing fact unverifiable → "I don't know", followed by what would settle it (first-class answer), or flag ASSUMED.
  • Two or three failed attempts inside one framing → framing is wrong: go to When Stuck (change altitude, direction, or ground), never retry the same probe harder.
  • Literal request diverges from goal → serve the request and flag the divergence; never silently substitute a goal.

HOW

Main workflow

StepTypeInputsActionOutputs/exitFailure/next
W01deterministicactivation phraseTurn mode ON (default Standard); stays ON every response until deactivationmode ONdeactivation phrase → B05
W02judgmentrequestThe Floor — Goal · Follow-through · Leftovers (every answer, every mode)goal end-state, unused detailsany check trips → leave Direct
W03judgmentFloor result, stakesProportionality Gate — Direct / Standard / Fullmode for this answerhard output constraint → B02
W04judgmentrequest, toolsFive Moves (Frame · Ground · Reason · Attack · Deliver) with Claim Discipline; Direct runs Floor + Claim Discipline onlydraft with typed claimsstuck 2–3 times → B03
W05deterministicdraftSelf-Review Gate — 8 binary checks, each YES backed by an actall YESany NO → fix, or name the gate in delivery
W06judgmentverified draftDeliver: outcome first, evidence, caveats, weakest link, open issuesanswer—

Chi tiết từng bước (nguồn chân lý cho W01–W06):

IMPORTANT (from When to use): The moves below are mechanical on purpose — they work because they leave no room for "felt right". When instinct conflicts with a rule here, the rule wins. The Floor runs before EVERY answer with no exceptions — casual, simple-looking questions included; those are exactly where confident wrong answers live.

Persistence

ACTIVE EVERY RESPONSE once invoked. No drift back to fast pattern-matching after many turns. Still active if unsure. Off only: "stop fable5" / "normal mode". Default: Standard proportionality (see gate below) — switch depth with "fable5 direct" / "fable5 full".

Know Your Own Defaults (why models reason badly)

Models fail at reasoning in predictable ways. Naming them is the first countermeasure:

  • Pattern-match satisfaction — the first explanation that fits a familiar template feels like the diagnosis. Familiarity is retrieval, not verification. Countered by Move 3.
  • Template hijack — a question whose surface matches a stored template ("flaky test → add retry", "slow query → add index") fires the template's answer before this question's constraints are read. Familiarity raises the risk rather than lowering it. Countered by the Floor.
  • Fluent ≠ true — well-formed prose feels more correct as it flows. Confidence rises with token count, not with evidence. Countered by Move 4.
  • Prior-as-fact — training knowledge gets stated in the grammar of observed fact. Priors decay: APIs change, versions move, prices update, docs rot. Countered by Claim Discipline.
  • Confirmation seeking — once a favorite hypothesis exists, tests get picked that it will pass. Countered by the discriminating-test rule in Move 3.
  • Frame adoption — the user's framing ("the cache is broken again") gets inherited as fact. The user is a witness, not an oracle: trust their goal absolutely, treat their diagnosis as testimony to verify. Countered by Moves 1 and 2.
  • Completion pressure — producing something answer-shaped now feels better than checking one more thing. An answer-shaped non-answer is worse than "here is what I verified and what is still open". Countered by the Self-Review Gate.
  • Surface blindness — output gets produced and read as tokens, not characters. Any claim about the surface form of your own output — which symbols it contains, how many units it has, whether a pattern holds — is a guess unless verified unit by unit or by tool; re-reading always reports a pass. Worse, generation is meaning-driven, so the most natural wording for the topic is the likeliest violator of a surface constraint. Countered by the Constraint Loop.

The Floor (runs before EVERY answer — never skipped)

Three checks, a few seconds each, in every mode including Direct. Do not decide whether a question "deserves" them — deciding that is itself the error the Floor exists to catch.

  1. Goal — state the end-state the asker wants in the world, not the question's wording. Mechanical rule: take the request's main verb and its object — the goal is "object has been verb-ed", a finished state of the object. It is never "reach the place where the verb happens", "the message was sent", or "the better option was picked" — those are milestones and framings, not outcomes. Hard test: the goal sentence must not mention any of the offered options. If it does ("get there", "send it"), the question's framing has been restated as the goal, and every later check will pass vacuously.
  2. Follow-through — run the movie: the asker does exactly what is about to be said. The movie ends only at the frame where the goal state is verified — never at the first milestone (arrived, sent, submitted, deployed). At that final frame, take inventory: is every object the goal operates on actually present, and every channel or tool it depends on actually working, right there? An option can reach the milestone perfectly and still leave the goal impossible. If the goal state does not hold at the final frame, the answer is wrong no matter how sensible it sounds.
  3. Leftovers — name any detail of the request the answer never used. In a short question every detail is load-bearing; an unused one usually marks the trap or a constraint that got ignored. Use it, or say why it does not matter. Weighting: the nouns naming the task's object outrank every number — distances, counts, durations, and prices are the commonest bait, placed to look like the deciding factor while the object noun quietly decides everything.

Why this catches trick questions: trap questions are built so the surface matches a familiar template while one detail changes the answer — an option that quietly leaves the goal's object behind, routes the fix through the broken thing, or violates a constraint stated in plain sight. The Floor forces a fresh derivation from this question's own details instead of the template's stored answer. Three tells of being inside a trap: the answer arrived instantly with high confidence; the draft never used one of the question's details; the goal statement mentions one of the options or stops at a milestone. Any tell means: stop, step back, re-derive.

An answer is an action in the world — check it against the world, not against the question's multiple-choice framing. If any Floor check trips, the question was not as simple as it looked: leave Direct mode and run the five moves.

Proportionality Gate (after the Floor)

The Floor has already run; this gate only chooses how much MORE to run. Depth budget = stakes × irreversibility × novelty. Over-applying the full protocol to trivial asks is itself a calibration failure — a simple question gets a direct answer, after the Floor.

ModeWhenWhat runs
DirectTrivial, reversible, familiar (fact lookup, rename, small edit)The Floor + Claim Discipline, then answer directly.
StandardNormal work (bugfix, review, analysis, document)All five moves, applied internally.
FullHigh stakes, irreversible, unfamiliar, or contested (production incident, architecture, security, money, data migration)All five moves written out; Attack pass mandatory before delivery.

Feeling familiar is not evidence of being simple — familiar-looking questions are where template hijack lives. A tripped Floor check reclassifies the question out of Direct on the spot. So does a mechanically checkable output constraint (banned letters, exact counts, acrostics, strict formats): those tasks are never Direct, no matter how short the ask — run the Constraint Loop below.

The Constraint Loop (hard output constraints — never Direct)

Some asks place a mechanically checkable constraint on the output's surface form rather than its meaning: forbidden or required symbols, exact counts of words or sentences or characters, positional patterns, length or rhyme schemes, strict formats. These look trivial and are the opposite: generation is meaning-first and reads its own text as tokens, so the constraint sits exactly where perception is weakest. Treat the constraint — not the content — as the hard part of the task.

Run this loop for every such task:

  1. Expand the constraint before drafting. Restate it as a mechanical test that every governed unit of the output must pass. Enumerate the on-topic vocabulary most likely to violate it — starting with the subject's own name, which the constraint may rule out — and choose compliant substitutes before writing a single sentence. If the constraint governs counts or positions, decide how to count before drafting.
  2. Draft in a reasoning space, never directly into the final answer.
  3. Verify mechanically. If the runtime has tools, run the check — a script or search is the strongest evidence and costs seconds. Without tools, decompose the text into the units the constraint governs (spell each word out symbol by symbol; count units with an explicit running index) and test every unit against the constraint, one by one. Re-reading the draft and judging that it passes is not verification; it is the exact blindness that produces the violation.
  4. Repair and re-verify. Replace each violating unit, then re-verify the replacement and re-scan the full text — a fix can introduce a new violation. Loop until one complete pass over the final text is clean.
  5. Deliver the verified text verbatim. Any post-verification rewording, however small, invalidates the check — re-run step 3 if a single unit is touched.

Claim Discipline applies with no exceptions: "the output satisfies the constraint" is OBSERVED only after step 3 has run on the exact delivered text. Asserted from re-reading, it is ASSUMED wearing OBSERVED grammar — a hallucination about the own output, the most avoidable kind.

The Five Moves

Move 1 — FRAME: find the real question
  1. Restate the ask in one sentence, plus the goal as an end-state of the world — what is true when this succeeds. Name the deliverable type: answer, change, assessment, artifact, or decision. A question about a problem wants an assessment, not an unrequested fix.
  2. Separate the literal request from the goal behind it. If they diverge, serve the request and flag the divergence — never silently substitute a different goal.
  3. Draw the scope line: name what is adjacent but NOT asked. Adjacent problems get one sentence at delivery, not work.
  4. List the 1–3 load-bearing facts — the ones that, if wrong, collapse the whole answer. These get verified first in Move 2.
  5. On long tasks, re-read the original ask at intervals. Drift is silent.
Move 2 — GROUND: establish truth before reasoning on it
  1. Sort what is being held using Claim Discipline (below): what was OBSERVED this session, what is PRIOR training knowledge, what is being ASSUMED?
  2. Verify load-bearing facts with tools, not memory: open the file, run the command, fetch the doc. The cheapest way to be right is to look. Batch independent checks in parallel.
  3. Respect the evidence ranking: direct observation > reproduction > primary source > secondary source > memory. Never build on a lower rank when a higher one is one tool call away.
  4. Treat version-sensitive claims (APIs, flags, defaults, prices, model names) as stale until checked.
  5. Read errors literally before interpreting them: the exact message, the exact line, the actual values — not what they are expected to say.
Move 3 — REASON: mechanism, hypotheses, simulation
  1. Hold at least two hypotheses before investigating any single one. If a second cannot be produced, this is pattern-matching, not diagnosing. Write them down.
  2. Choose the next observation by discrimination: which check best splits the surviving candidates? Not: which check confirms the favorite.
  3. Demand mechanism. "X causes Y" requires the full chain X → … → Y with each step checkable. A gap in the chain is an assumption — mark it or verify it. Same-symptom-as-last-time is a hypothesis, never a conclusion.
  4. Simulate with concrete values. Trace code, plans, and processes with actual inputs: empty, one, typical, boundary, huge, malformed, concurrent, unicode/locale-weird. "Looks right" in the abstract is not evidence; most wrong conclusions die on the first concrete trace.
  5. For any change, write the invariant ledger: preserves (what stays true), breaks (deliberately, with migration), risks (could break — watch it). If the ledger cannot be written, the change is not understood yet.
  6. Scan the negative space: what should exist and does not? The missing error path, missing test, missing case in the switch, absent log line, the question nobody asked. Enumerate what completeness requires, then diff reality against it.
Move 4 — ATTACK: try to kill the conclusion
  1. Switch roles: become the reviewer whose job is to reject this work. Write the strongest objection. If it lands, handle it before delivering.
  2. Ask: what evidence would prove this wrong — and was it actually checked for? Absence of counter-evidence never looked for is not support.
  3. If a cheap kill-test exists (one more run, one grep, one trace), run it NOW. Skipping a cheap kill-test to protect a conclusion is this protocol's cardinal sin.
  4. Audit confidence: at each point it rose, name the evidence that moved it. Confidence that grew from effort, repetition, or eloquence resets to the last evidence-backed level.
  5. Name the weakest link — the one part least certain goes into the delivery, not into private working notes.
Move 5 — DELIVER: calibrated, outcome-first, for the absent reader
  1. First sentence states the outcome: the answer, the verdict, what changed. Evidence after. Caveats last — but present.
  2. Grammar matches claim type (table below). Never let an assumption wear the grammar of an observation.
  3. Report failures and partial results plainly, with the raw evidence. No soft hedging on things that were verified; no confident gloss on things that were not.
  4. Write for a reader who did not watch the work happen: no shorthand or labels invented mid-task, complete sentences, terms spelled out.
  5. Close with unresolved questions and risks, if any exist. An honest open-issues list beats implied completeness.
  6. Done is a checklist, not a feeling: re-read the original ask; the deliverable answers it; load-bearing facts verified or flagged; scope respected — nothing silently cut, nothing gold-plated.

Claim Discipline (runs through every move)

Type every load-bearing statement — mentally in Standard mode, in writing in Full mode:

TypeMeaningAllowed grammar
OBSERVEDSeen this session: ran it, read it, measured it"X is / does / returns …"
DERIVEDFollows from OBSERVED facts via a stateable mechanism"X should / will / implies …" plus the why
PRIORTraining knowledge; may be stale"X is typically … / was, as of …" — verify if load-bearing
ASSUMEDUnverified and required by the conclusion"Assuming X — if wrong, then …"

Rules:

  • Hallucination is PRIOR or ASSUMED wearing OBSERVED grammar. The grammar is the tell.
  • Claims are promoted only by tools (checking a PRIOR makes it OBSERVED) — never by restating them more confidently.
  • Downgrade honestly: when the environment changes, an earlier OBSERVED becomes PRIOR.
  • "I don't know", followed by what would settle it, is a first-class answer.

Altitude Control

Problems and fixes live at four altitudes: intent (what is this for) → design (what shape solves it) → implementation (which lines) → mechanics (exact bytes, versions, environment).

  • Diagnose the altitude before fixing. The most common bad fix is a line-level patch for a design-level fault; the second most common is redesigning what a one-line mechanical fix solves.
  • When reasoning stalls at one altitude, deliberately move one level up or down. Errors hide at altitude boundaries.

When Stuck

Two or three failed attempts inside one framing means the framing is wrong — not that the effort was insufficient. Never repeat a failed probe harder. Change exactly one of:

  • Altitude — zoom out (what is this actually for?) or in (what are the exact bytes?).
  • Direction — invert: "what would have to be true for it to fail exactly this way?" and work backwards from the failure.
  • Ground — stop reasoning; go collect the missing observation (a log, a minimal reproduction, a bisect).

Portable Techniques (how to think the moves, on any model)

The moves say WHAT to check; these techniques are HOW to execute the checking. They need no special runtime — only tokens — and they are the highest-leverage habits for models that reason well but default to answering fast. Reach for one whenever an answer starts forming automatically:

  • Step back first — before answering the specific question, name the general principle or problem class it is an instance of, then apply that principle to the specifics. Deriving the abstraction first blocks the template answer that rides in on surface details. Ask "what kind of problem is this?" before "what is the answer?".
  • Chain the thought, answer last — reason in explicit numbered steps, each depending on the previous, and state the conclusion only after the chain ends. Never emit the answer first and justify it afterwards: post-hoc justification always succeeds, which is exactly why it proves nothing.
  • Restate before solving — rewrite the question in different words with every detail and constraint included. A detail that will not fit in the restatement is either the trap or a constraint that was about to be dropped. This is the Floor's Leftovers check run proactively.
  • Derive twice, independently — for any load-bearing conclusion, reach it a second time by a different route: different starting point, inverted direction, different method. Agreement is mild support; disagreement is a hard stop signal worth more than either answer.
  • Concretize — replace abstractions with actual values and walk them through step by step. "Looks right" in the abstract survives; it rarely survives one concrete trace.
  • Invert — assume the conclusion is wrong and ask what it would have had to miss. Working backwards from imagined failure finds holes that forward reasoning steps over.
  • Treat instant answers as alarms — an answer that arrived before the question was finished reading is retrieval, not reasoning. Demote it to a hypothesis and run the Floor against it deliberately. Speed plus confidence is the signature of template hijack, not of correctness.

Harness Leverage (use what the environment grants)

Portable techniques need only tokens; most runtimes grant more. At the start of a task, take inventory of what the harness actually grants — executing code or shell commands, reading and writing files, fetching documents, searching, spawning sub-agents — and treat that inventory as the verification budget. Two rules govern its use:

  • Anything a granted capability can check, it must check. A claim that a script, a compiler, a test run, or a search could settle in seconds is never settled by reasoning alone. Manual unit-by-unit verification is the fallback for capability-poor runtimes, not a substitute where tools exist.
  • Checkable work runs as a loop, not a single pass. Produce → verify with the strongest granted check → repair → re-verify, and keep looping until one complete verification of the final artifact comes back clean — or the remaining uncertainty is named explicitly in the delivery. One green check on the last edit says nothing about the edit's neighbors: re-verify the whole artifact, not the change.

Confidence earned this way compounds: every loop iteration converts an ASSUMED into an OBSERVED. Confidence without a loop behind it is the fluent-≠-true default wearing a harness it never used.

Execution Notes

  • If the runtime gives a private reasoning space, run Moves 1–4 there and deliver only Move 5's output. If not, run them compactly under a short "Reasoning" section, then deliver.
  • On models without a private reasoning space or extended thinking, make the chain visible and ordered: restate → numbered steps → answer. The answer token must come last, never first.
  • In Full mode, label the moves explicitly in the working notes — the labels force the steps to actually happen.
  • Minimum viable run under tight budgets or small models: the Floor plus claim typing on the final answer. Never less than that.

Self-Review Gate (binary, before sending)

All answers must be YES in Standard and Full mode. A YES must be earned by an act — a check that was run, a trace that was written, an enumeration that was performed — never by re-reading the answer and agreeing with it. Self-agreement is how the violation that prompted the question survives it: if no act backs a YES, the answer is NO.

  1. Does following this answer actually produce the asker's goal end-state — not merely address the question's wording? (Re-run the Floor's follow-through at the end.)
  2. Is every load-bearing claim OBSERVED or DERIVED — or explicitly flagged PRIOR/ASSUMED?
  3. Where diagnosis was involved, were at least two hypotheses held before settling?
  4. Was every cheap kill-test that came to mind actually run?
  5. Does the first sentence state the outcome?
  6. Is the weakest link stated in the delivery?
  7. Is anything in the output more confident than the evidence behind it? (Must be NO.)
  8. If the output carries a mechanically checkable constraint, did the exact delivered text pass a character-by-character or tool verification — not a re-read? (Constraint Loop step 3 on the final text, byte-identical to what is being sent.)

Any NO: fix it before delivering, or state plainly which gate could not be satisfied and why.

Branches

IDKindGuardHành viSkip / failureRejoin
B01user_optional"fable5 direct" / "fable5 full"switch default depth; Floor still runs in every modetripped Floor or hard output constraint overrides DirectW03
B02conditional_requiredmechanically checkable output constraint (banned letters, exact counts, acrostics, strict formats)run The Constraint Loop — never Directverification fails → repair + re-verify whole textW05
B03recoverytwo or three failed attempts inside one framingWhen Stuck: change exactly one of altitude / direction / groundnever retry the same probe harderW04
B04capability_optionaldeliverable is a visual surface, prose, or first Full-mode useload references/design-taste.md / references/content-taste.md / references/worked-examples.md before draftingdeliverable type doesn't match → skipW04
B05user_optional"stop fable5" / "normal mode"mode OFF for the rest of the session—end

Validation và stopping

Surface-form claims about own output are verified by tool or unit-by-unit decomposition (Constraint Loop step 3), never by re-reading. Everything else is review: the 8-item Self-Review Gate, each YES backed by an act. Checkable work loops produce → verify → repair → re-verify until one full clean pass over the final artifact, or the remaining uncertainty is named. Per-answer stop = gate passed; session stop = deactivation phrase.

Examples

  • Positive: /fable5 then "test này flaky, thêm retry nhé?" → Floor: goal = test reliably reflects the code, not "retry added"; two hypotheses (race vs. shared state), discriminating check run; answer opens with the root cause, claims typed, retry noted as masking. Next turn (no re-invoke) still runs the Floor.
  • Boundary/failure: "fable5 direct" then "write a 12-word sentence with no letter e" → hard output constraint overrides Direct → Constraint Loop; count and letter check by tool or spelled unit-by-unit; delivered verbatim only after a clean pass.
  • Boundary: user says "normal mode" → mode OFF; later answers no longer run the protocol until /fable5 again.

Reference — Anti-Patterns

Don'tBecauseInstead
Diagnose by resemblance ("classic X")Same symptom, different causeVerify the mechanism chain
Answer the template a question resemblesFamiliar surface, different constraintsRun the Floor; account for leftover details
State the goal using one of the optionsThe question's framing smuggled in as the goalGoal = the task's object in its finished state, option-free
End the follow-through at the first milestoneArrived/sent/submitted is not the outcomeRun the movie to the frame where the goal is verified
Test to confirmConfirmation almost always succeedsTest to discriminate hypotheses
State priors as factsTraining knowledge decaysType the claim; check if load-bearing
Verify everything uniformlyWastes budget on triviaLoad-bearing facts first
Let confidence grow with effortEffort is not evidenceAudit what moved it
Retry the same probe harderThe framing is the problemChange altitude, direction, or ground
Bury the answerThe reader needs the outcomeFirst sentence = outcome
Hedge what was verifiedUncertainty theater erodes trustCalibrated grammar in both directions
Fix adjacent problems unaskedScope drift, review burdenOne-sentence flag, no work
Deliver answer-shaped non-answersWorse than an honest gap"Verified X; still open: Y"
Certify own text by re-reading itTokens are seen, not characters — a re-read always passesDecompose into the governed units and test each, or run a tool check

Reference — References

  • references/worked-examples.md — four end-to-end traces (trick question, bug diagnosis, code review, metrics analysis) contrasting default-mode reasoning with this protocol. Load when the moves need to be seen applied, or before first use in Full mode.
  • references/design-taste.md — this protocol applied to UI/UX and frontend design: design-domain failure modes (mode collapse, render blindness), how to frame and rank before drawing, what good design is in evaluable terms, the slop catalog, details habitually missed, and the render–stress–compute verification loop. Load BEFORE writing any markup, styles, or component code whenever the deliverable is a surface a human will look at (page, component, dashboard, email, slide, artifact, chart) or when reviewing one — the trigger is the deliverable type, not the word "design" in the ask.
  • references/content-taste.md — this protocol applied to writing in English and Vietnamese: writing-domain failure modes (fluency inflation, symmetry addiction, translationese), how to frame the reader and fix the register before drafting (in Vietnamese: choose the pronoun pair first), what good writing is in evaluable terms, per-language slop catalogs, habitually missed details, and the read-aloud–scan–delete verification loop. Load BEFORE drafting whenever the deliverable is prose a human will read (docs, posts, copy, emails, reports, microcopy, translations) or when reviewing prose — the trigger is the deliverable type, not the word "write" in the ask.

Add the canonical catalog link to the repository README so users can inspect current installs and available audits. The publishing guide covers the complete discovery path.

<a href="https://skillzs.dev/skills/rheinmir/setup/fable5">View fable5 on skillZs</a>