Imported from google/zerocopy (
evals/unsafe-rust/frozen-packages/6d7e197e431b82eb81dbe7eefc79fde811e0e238435d38c69460cc068e631abb/SKILL.md). Install upstream withnpx skills add google/zerocopy --skill 6d7e197e431b82eb81dbe7eefc79fde811e0e238435d38c69460cc068e631abb. Copyright stays with the author.
Unsafe Rust Authoring and Audit
Treat each safety contract as an English-language theorem and each safety comment as its proof. Reject hand-waving, folklore, hidden assumptions, and proof by testing.
Establish the Exact Claim
Unless the user specifies a narrower claim, establish:
For the exact audited source snapshot, every supported compilation configuration, every valid in-scope use in a context satisfying all out-of-scope safety obligations preserves freedom from Rust undefined behavior under the documented Rust abstract semantics, and every mandatory in-scope documented postcondition holds, assuming only the explicitly recorded trusted computing base (TCB).
Interpret valid use as follows:
- For a safe API, quantify over every well-typed safe use. Impose no hidden safety precondition.
- For an unsafe API, quantify over every use satisfying all documented initial, ongoing, and terminal safety obligations.
- For a binary or other entrypoint, quantify over executions satisfying the explicitly recorded deployment assumptions. Do not transfer those assumptions silently to a safe library API.
Prove every documented postcondition of each unsafe API in scope and every documented guarantee consumed by an in-scope soundness proof. Include broader safe-API robustness only when the user or audit scope requests it.
Prove source-level Rust soundness first. State claims about a particular compiler backend, binary, platform, security property, probability, or deployment separately with their additional premises.
Recover the Required Domain
Before proving the claim body or issuing a full verdict, derive the exact
domain quantified by the claim. Let a case retain every relevant dimension of
one valid use or execution: artifact, toolchain, configuration, input, state,
time, and any other dimension on which an obligation or premise can vary. Let
Required(case) denote the cases the claim requires and Covered(case) hold
exactly where every obligation the claim requires for that case has a complete
derivation from applicable premises. A local argument may project onto fewer
dimensions only when it proves the lemma for every required case in each
omitted-dimension fiber—parametrically or by proving those dimensions
irrelevant—and must restore the full case before claim-level closure.
Within one obligation, valid case lemmas may be unioned. Across distinct obligations, claim-level coverage is their pointwise conjunction—not a union of regions in which different obligations happened to be proved.
- Preserve the controlling domain expressions symbolically, including ranges, unions, exclusions, quantifiers, and conditional or moving policies. Record their exact sources and audit cutoff.
- If applicable project sources conflict or materially underdetermine support,
obtain an authorized resolution, derive an explicit conservative audit
domain containing every materially supported candidate predicate, or leave
the affected combined claim
UNPROVED. Do not call a conservative audit domain the resolved project promise. - Treat every asserted set relationship, normalization, enumeration,
partition, exclusion, and policy merge as a proof step. Prove the definition
of the exact relation asserted. For example,
A = BneedsA ⊆ BandB ⊆ A;A ⊊ BneedsA ⊆ Band a witnessw ∈ B \ A; incomparability needs witnessesa ∈ A \ Bandb ∈ B \ A, with each membership and nonmembership proved. Equivalent symbolic derivations are acceptable, but required witnesses must remain explicit. Prove the required containment before using a conservative superset andRequired ⊆ Coveredbefore concludingPROVED. - A finite inventory requires evidence both that every listed member belongs and that no required member is omitted. Endpoints, one representative per apparent category, CI jobs, lockfiles, and other samples do not prove an interval or set inventory.
- Prefer a parametric proof over the symbolic predicate when enumeration would be large or its exact membership is unavailable. Otherwise report proved regions and the unresolved remainder; do not turn it into an implicit exclusion.
- An audit cutoff limits the temporal scope of a claim. It does not establish semantic continuity, enumerate releases before the cutoff, or make sampled documentation applicable between samples.
Apply configuration recovery to derive supported compilation cases and prove every transformation of that predicate.
Use Only Applicable Premises
- Bottom out Rust-language and standard-library facts in exact applicable text from versioned Rust Reference or standard-library documentation.
- Quote and link the smallest sufficient set of passages whose explicitly stated propositions, together with justified inference steps, entail the fact. Open each citation and verify its wording, qualifications, version, and scope. A page, allowlist entry, broad label such as “cfg semantics,” or nearby cited clause does not supply a material proposition the proof never states.
- Attach an applicability domain to every claim and premise, whether stated locally or inherited from an identified project policy or canonical entry. A derivation proves only the cases covered by all premises it consumes.
- Apply a guarantee documented for an older Rust release to a later stable release only when an exact applicable Rust backwards-compatibility commitment preserves that exact proposition throughout the later release's relevant domain. An API's stability badge does not by itself preserve every behavioral statement in its current documentation. Record a non-authoritative compatibility premise explicitly in the TCB. Never infer an earlier-version guarantee merely from later documentation.
- Do not promote this skill, the Rustonomicon, Unsafe Code Guidelines, RFCs, blogs, issue discussions, implementation behavior, Miri, or common practice to Rust axioms. Use them to discover risks and authoritative text, or record the exact additional proposition as a TCB assumption.
- Trust a deliberately selected safe dependency API to behave as documented only when that exact trust is explicit in the TCB. Do not extend this exception to caller-controlled safe code, callbacks, values, or safe trait implementations.
- Audit a third-party unsafe API through to admissible premises or record its exact implementation and contract as an additional TCB assumption.
When no admissible direct or derived proof can be completed because authoritative documentation is ambiguous or insufficient, identify the smallest missing proposition. Do not repair it with intuition. Report a documentation gap and suggest an upstream improvement when appropriate.
Compose Proofs Locally and Literally
- Identify the controlling contract independently of the existing safety comment. Distinguish normative contract text from examples, rationale, implementation comments, and inferred design intent.
- Read the controlling contract according to its actual text. Decompose every applicable conjunction, implication, quantifier, temporal clause, precondition, and postcondition into separately reviewable obligations. Do not replace a literal requirement with an operationally similar property. Give every normative clause a disposition even when no known consumer uses it.
- Reify every fact used nonlocally as a named contract or invariant carried by a type, field, function boundary, guard, typestate, lock, token, or other locally checkable mechanism. A function contract about global state is an acceptable degenerate case.
- Prove that each state transition establishes, preserves, transfers, deliberately suspends under an explicit obligation, or discharges every applicable invariant. At each consumer, prove that the current invariant entails the exact needed precondition.
- Trace dataflow across calls and time rather than limiting review to lexical unsafe blocks. Account for every producer, transition, and consumer.
- Do not promote a producer's preconditions into a universal invariant of its output type. Any type- or abstraction-wide conclusion needs a complete derivation independent of that invalid reversal—for example, applicable authoritative premises, construction-and-preservation closure under an enforced boundary, or an admissible explicit TCB premise. Local checks and other applicable derivations may instead prove the proposition for the particular consumed values or quantified subset.
- For new code, place invariant-bearing representation in the smallest practical leaf module, keep safely accessible representation fields private to it, and treat safe code outside that module—including the rest of the same crate—as untrusted.
Follow the Proof Workflow
- Frame the claim. Record the artifact identity, exact scope, valid uses or executions, mandatory postconditions, TCB, exclusions, and whether design alternatives are requested.
- Frame the full case domain. Identify every relevant dimension and
preserve the controlling expressions, sources, candidate relationships, and
unresolved conflicts. State the proposed
Requireddomain and how proof cases will retain every dimension. - Inventory surfaces and transformations. Enumerate every in-scope safe and unsafe API surface, obligation site, invariant producer/transition/consumer, and each material stage and alternative exit by which build or generation inputs can affect the theorem domain, a consumed premise, shipped artifacts or selected source, reachability, or an in-scope postcondition.
- State atomic obligations and premises. Obtain each controlling contract, decompose it literally, and state the exact proposition and applicability to prove. Classify every material premise and identify its exact source.
- Construct the derivation. Derive
Required, every asserted domain relationship, and every claim conjunct from checked local facts, named invariants, applicable authoritative axioms, tool-derived theorems, or explicit TCB entries. Unfold definitions and composite transformations; preserve material operation order and alternative exits; seek indirect multi-premise derivations; and justify every intermediate inference. - Close, lint, and challenge. Give every literal contract clause and safe surface a disposition and establish domain closure. Reverse-trace each conclusion used by a verdict or regional result through every material inference to explicit, applicable premises; reconcile every Rust premise with its checked quotation and link; and ensure no later-stage fact is consumed on a path that exited earlier. Then try to falsify the domain recovery, contract reading, derivations, and coverage with boundary and adversarial cases derived from the actual clauses.
- Certify and report. Apply the quantifier-sensitive certificates below. Keep every unresolved obligation visible and state the smallest missing implication. Record proofs, TCB, coverage, findings, postcondition failures, documentation gaps, and residual scope without optimism.
Write and Review Proof-Grade Documentation
Read proof-obligations.md before authoring or
reviewing an unsafe contract, invariant, SAFETY comment, or local proof.
Keep each proof adjacent to the smallest cohesive unsafe operation or assertion. State the exact operation and its preconditions, cite checked facts and named invariants, show the derivation, and prove resulting postconditions and invariant state on every applicable exit.
When existing code can be validated only by reconstructing a material derivation absent from its safety comment, do not accept it silently. Include the reconstructed derivation—or the smallest missing portion—in the review, with its citations and applicability. Classify implementation correctness separately from proof-documentation quality. If changes are authorized, improve the adjacent proof; otherwise provide proposed wording. Do not use a reconstructed implementation proof to invent or strengthen a caller-facing contract retroactively.
Close API and Configuration Boundaries
Read api-boundaries-and-evolution.md for fields, constructors, methods, traits, sealing, macros, public or hidden APIs, robustness, or contract evolution.
Apply this mandatory safe-surface checklist: public fields, constructors, safe
methods, safe trait methods, and macro-generated APIs all count as safe API
surfaces. Include language-reachable #[doc(hidden)] safe items for soundness
even when excluded from documentation or compatibility promises.
Treat caller-provided safe code as adversarial within the behaviors permitted by safe Rust and its types. Seal a trait or make it unsafe when soundness requires an unenforced implementer behavior.
Read configurations-and-generated-code.md for every full audit and whenever supported-toolchain policy, conditional compilation, targets, generated code, FFI, assembly, SIMD, allocators, linking, or build tooling is relevant. Every supported combination of compilation options that can ship downstream must be sound. Use parametric proofs or exhaustive partitions when literal enumeration would explode; do not substitute a tested sample.
Evaluate Trust and Evidence
Read tcb-and-evidence.md for every full audit and whenever a proof uses dependencies, external specifications, tools, testing, formal verification, environmental restrictions, or cryptographic or probabilistic assumptions.
Judge evidence by the exact proposition it establishes, its artifact and model, its quantified domain and bounds, its premises, and its residual trust—not by a label such as testing, static analysis, model checking, or formal verification.
Design for Provability When Requested
Read abstraction-design.md when the user asks to design, refactor, or reconsider an unsafe abstraction, or when authoring a new unsafe abstraction.
Judge existing code under its current source and controlling contract. Inferred intent or a preferable model may guide a separate proposal but may not narrow, reinterpret, or discharge a current obligation. Treat implemented changes as a new artifact and audit them anew.
Use Exact Verdicts
Read audit-reporting.md before delivering a persistent or full audit.
| Verdict | Required certificate |
|---|---|
| PROVED | Every obligation for the exact named claim has a checked derivation over its complete applicability, Required ⊆ Covered, and every premise is proved from admissible sources or appears as an accepted entry in the stated TCB. |
| UNPROVED | A required derivation, premise, applicability or domain-closure argument, postcondition proof, or citation remains missing, ambiguous, circular, or unverifiable, and no applicable existential refutation below is complete. |
| UNSOUND | There exists a proved valid in-scope use or execution which reaches an executed operation or semantic event, its exact required safety proposition is false there, and applicable authoritative semantics—possibly together with an explicit TCB premise about the implementation—entails undefined behavior. |
| CONTRACT-BROKEN | There exists a proved valid in-scope execution which, considered as a whole, contains no undefined behavior and falsifies a documented postcondition. |
Failure to prove a universal obligation is enough for UNPROVED; do not invent
a counterexample. Conversely, once all parts of an existential UB certificate
are proved, report the scoped soundness claim UNSOUND; do not continue to
demand a universal positive lemma and dilute the result to UNPROVED. A
violation of user-authored safety prose is not by itself a runtime UB event:
trace the certificate through applicable contracts to the exact authoritative
or explicitly trusted UB consequence.
An existential certificate closes the universal verdict but does not excuse omitting another in-scope surface, operation, contract clause, or mandatory postcondition. Continue the inventory and give each independent obligation a disposition. Do not claim that a proved or affected region is exact or maximal unless its full case-domain equality is established; maximal positive remainder characterization is required only when the audit scope requests it.
Classify a witness using the execution as a whole, not observations from a
prefix of an execution that later reaches undefined behavior. An
undefined-behavior-containing execution can witness UNSOUND but cannot
establish the existential claim required for CONTRACT-BROKEN. If it is the
only behavioral evidence, report soundness as UNSOUND and the postcondition
as UNPROVED. An independent UB-free witness or equivalent existence proof
may establish CONTRACT-BROKEN; separate proofs may therefore establish both
verdicts.
Apply verdicts separately to soundness, documented postconditions, and conditional application claims. State exact scope, applicability, and TCB beside every verdict. For every affirmative claim spanning multiple Rust releases, identify a parametric proof, an exhaustive applicable partition, or an exact proposition-preserving compatibility premise whose covered domain contains the claimed release set. Never substitute endpoints, sparse samples, an audit cutoff, “looks sound,” “probably sound,” or test success.
For a persistent audit, complete:
For an inline review, provide the equivalent material compactly. Reuse an existing canonical project log rather than creating a competing trust model.