dalek-ed25519-verified/TRUSTED-BASE.md

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# Trusted base
What you must believe for the theorems in this repository to transfer to the
running Rust code. Everything else is machine-checked.
1. **Lean 4 kernel** (v4.30.0-rc2) and its three foundational axioms
`[propext, Classical.choice, Quot.sound]`. Every certificate is
`#print axioms`-audited against exactly this list.
2. **mathlib** (prebuilt oleans fetched by `lake exe cache get`).
3. **Charon + Aeneas** (pinned `9dd7f23c` / `bf13c42e`): the translation
from Rust MIR to the Lean model is assumed faithful. The generated
`gen/` files are never edited (comments only); proofs are stated ABOUT them.
4. **External-function models** (`gen/*/FunsExternal.lean`): Rust items that
Aeneas cannot translate (constant-time `subtle` primitives, iterator
plumbing, formatting) are axiomatized as opaque symbols. The axiom audit
proves none of these axioms enters the dependency cone of any certificate,
except where a model is explicitly listed below.
5. **The signature-apex boundary (signature layer only)**: FOUR apex-tier
certificates — `CurveFieldProofs.verify_accepts_iff` (byte apex:
accepted iff compress([s]·B [k]·A) = R byte-for-byte),
`verify_accepts_iff_point` (half-lift: R is the canonical encoding of
the recomputed point), `verify_accepts_iff_point_eq` (point equation:
canonically-encoded Q accepted iff Q equals the recomputed point), and
`verify_accepts_iff_decompress` (full lift: R decompresses to a valid
on-curve point that equals the recomputed point) — are each
`#print axioms`-audited by check.sh Phase 3b against EXACTLY the
standard three plus this documented set, and the build fails on any
deviation:
`ed25519.Signature` (wire-format type), the three SHA-512 wrapper
oracles `verifying.sha512_new/update/finalize_bytes` (+ the opaque
`sha2.Sha512` state type), `ed25519.Signature.to_bytes`, and
`signature.error.Error`/`Error.new` (opaque error type). The hash is an
oracle with no algebraic properties assumed — the theorems hold for
whatever bytes it produces; the SHA-512 implementation itself is NOT
verified. Zero curve, scalar, or backend axioms are in any of the four
cones. The constructive decompress theorem underneath the full lift
(`decompress_of_canonical`) carries the standard three axioms ONLY.
6. **Compilation of Rust to machine code** (rustc backend) is out of scope,
as is side-channel behaviour (timing, speculation). The proofs are about
functional correctness at the MIR/LLBC level.
7. **What the axiom gate binds, and what it does not.** `check.sh` Phase 2b
reads every compiled `Proofs/*.olean` and fails the build if any
declaration there is an axiom. It asks the kernel rather than parsing
source text, because the source-text check in Phase 1 is evadable four
ways — an indented `axiom`, `@[simp] axiom`, `unsafe axiom`, and `axiom`
with the name on the following line all compile and all miss its pattern.
Membership self-derives from the filesystem, so `Scalar*` and `AxiomCheck`
are covered as well, and the count of compiled modules must equal the
count of shipped sources, so a deleted `.olean` cannot make the scan pass
vacuously. `selftest-axgate.sh` attacks the shipping gate rather than a
copy of it, and was itself negative-tested by removing the gate's error.
**The residue you must still supply yourself:** this binds *declarations*,
not *statements*. Nothing in the button establishes that a certificate's
theorem says what its name — or this document — suggests it says. A
theorem gutted to a tautology with the same axiom cone would pass every
phase. Reading the statements remains a human act.
verification: bind the statements, the specifications, and the model (P1-a) Phases 3/3b establish what each certificate RESTS ON. Neither says what it SAYS, nor what it is ABOUT. A certificate gutted to a tautology of the same axiom cone passes both; so does one whose reference definition has been redefined to BE the extracted code, at which point the theorem reads `loop = loop` and every cone is byte-identical. Phase 3c closes that. Proofs/Audit.lean emits a canonical block holding the policy constants, every certificate's fully-elaborated statement (pp.all, so implicit arguments, instances and universe levels are visible), and the body of every specification constant transitively reachable from those statements. Its SHA-256 is pinned in check.sh and the block itself is committed as AUDIT-MANIFEST.txt, so a mismatch is DIFFED, not merely reported. 31 certificates, 68 specification constants per repository. Two tiers, not one. These forks have an arithmetic tier that must stay oracle-free and an apex tier carrying this fork's hash and wire-format axioms, and the apex boundary genuinely differs per fork (dalek 8 extra names, anza 4, risc0 and betrusted 5). One shared constant would have widened the arithmetic tier to accept hash oracles, which is the most valuable property these repos have. Each auditor is generated from its own repository's policy. Phase 0b pins the extracted model. This was not a precaution: risc0 and betrusted were observed emitting BYTE-IDENTICAL audit-manifest digests (6c821b8e…) while shipping demonstrably different extracted models, their point-doubling routines differing in operation order. A statement names an extracted function; it does not contain that function's body. Binding statements is not binding the subject. Membership derives from the filesystem, so a new model file fails closed. selftest-statements.sh attacks both phases with ten cases, each asserting a specific diagnostic: an edited model body, an unlisted model file, a widened policy, a hand-edited committed block, a certificate dropped from the auditor WITH the digest refreshed to match, and a gutted statement whose cone is unchanged. It lifts the phases out of check.sh at run time, so it attacks the shipping gate rather than a copy. Two bugs found and fixed during that testing, both mine: Phase 3c read `$0` after `cd "$AENEAS_LEAN"`, and $0 is the caller's relative path; and the axgate self-test compared the tree against a pristine checkout rather than against how it found it. A third expectation was wrong rather than the code — widening the apex boundary is caught by the exact-cone requirement before the digest ever runs, which is a stronger rejection, and the test now says so. All sixteen runs green at these commits: four main buttons, four axgate self-tests, four binding self-tests, four scalar buttons. TRUSTED-BASE.md records what this binds and, at equal length, what it does not: a digest binds identity, not meaning; an author can rotate the pins in one commit and is caught by review, not by the script; and pinning the model says nothing about whether Charon and Aeneas translated the Rust faithfully. Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
2026-07-28 22:38:17 +00:00
8. **What the statement binding covers.** `check.sh` Phase 3c compiles
`Proofs/Audit.lean`, which emits a canonical block containing the policy
constants, every certificate's fully-elaborated statement (`pp.all`, so
implicit arguments, instances and universe levels are all visible), and the
fully-elaborated body of every specification constant transitively
reachable from those statements. The SHA-256 of that block is pinned in
`check.sh` and the block itself is committed as `AUDIT-MANIFEST.txt`, so a
mismatch is diffed rather than merely reported. This is what makes a
certificate gutted to a tautology of the same axiom cone fail, and what
makes a reference definition redefined to BE the extracted code fail — two
attacks that move no cone at all. Phase 0b separately pins the bytes of
every extracted-model file under `gen/`, with membership derived from the
filesystem so a new model file fails closed.
**The residue you must still supply yourself.** Three things, stated
plainly because a reader would otherwise assume them:
· *A digest binds identity, not meaning.* The audit proves the statements
are the ones that were reviewed. Whether those statements say something
worth believing about ed25519 is a question only a human reading them
answers. `AUDIT-MANIFEST.txt` is committed precisely so that reading is
possible without re-running anything.
· *An author can rotate the pins.* Editing a statement and refreshing the
digest in the same commit passes every phase. The defence is that both
changes are visible in the diff, reviewed at the pinned commit — not that
the script prevents it. No harness audits its own author.
· *Phase 0b pins the model; it does not verify the translation.* That the
bytes under `gen/` are the reviewed bytes says nothing about whether
Charon and Aeneas translated the Rust faithfully. That assumption is
item 3 above and is unchanged.
verification: pin the harness, the audit drivers and the policy files (P1-c) Every gate this repository has was executed by scripts that nothing pinned. Round-5 review of the companion SLH-DSA repository stubbed the compiler wrapper alone and its button printed ALL GREEN in 3.6 seconds over deliberately destroyed proofs; flipping two guards in the audit driver disabled every check with the digest byte-identical. Depth of checking is worth nothing if the thing doing the checking is unbound — and every gate added this week made that gap more valuable to an attacker, not less. Phase 0c requires every harness file to match HARNESS.sha256. Two design points carry the weight: - WHICH files must be pinned is POLICY and lives in check.sh, never in the map being consulted. If the required set were read from the pin file, deleting an entry would silently un-pin that file. It is instead derived from the filesystem, so a deleted entry is a set mismatch and a build failure. That is the exact defect SLH-DSA round-6 found, closed here by construction. - Membership self-derives from the executable bit: anything this script can shell out to must be pinned, so a NEW script fails closed until someone pins it deliberately. Load-bearing files that are not executable — the audit driver, the committed manifests, the policy tables — cannot be discovered that way and are listed explicitly. lean-guard is inside the set, which finally makes the standing "lean-guard stays hash-pinned" rule a property of the repository rather than a convention. selftest-harness.sh replays five cases, each asserting a specific diagnostic: an edited lean-guard, a new unpinned executable, a deleted pin entry, a missing pin file, and a positive control. It was itself negative-tested — with the hash comparison removed it goes red on exactly that case while cheerfully reporting "10 harness files match their pins". TRUSTED-BASE.md states the limit at equal length to the claim: pinning a harness from inside that harness is circular, and an author who edits a script and refreshes its pin in the same commit passes every phase. What the pin changes is that the edit can no longer be SILENT — it must appear in the diff at the commit being reviewed. A green button says "this is the apparatus that was reviewed", never "this apparatus is trustworthy". Also fixed, found by this sweep: both self-tests compared the working tree against its starting state with `diff <(echo "$VAR") <(command)`, which is asymmetric — for a clean tree the variable is empty and `echo` emits a blank line the command does not. It reported a difference precisely when nothing was wrong, and only surfaced once P1-a was committed and Proofs/ became clean. Both now compare as strings. Verified green: 20 runs across the four ed25519 repositories (four buttons, four harness self-tests, four axiom-gate self-tests, four binding self-tests, four scalar buttons), zero red. Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
2026-07-29 18:12:57 +00:00
9. **The harness is pinned, and what that is worth.** `check.sh` Phase 0c
requires every executable file under `verification/` — plus the audit
driver, the committed manifests and the policy tables, which are not
executable and are therefore listed explicitly in the script — to match
`HARNESS.sha256`. Membership is derived from the executable bit, so a new
script fails the build until someone pins it deliberately, and the required
set is computed from the filesystem rather than read out of the pin file,
so deleting an entry is a failure rather than a silent un-pinning.
`lean-guard` is inside that set: stubbing the memory-capped compiler
wrapper is the cheapest known route to a false green, demonstrated
elsewhere in this estate as ALL GREEN in 3.6 seconds over deliberately
destroyed proofs. `selftest-harness.sh` replays that attack and four
others.
**What it does NOT buy, stated plainly.** Pinning a harness from inside
that harness is circular, and no amount of engineering removes the
circularity. An author who edits `check.sh` — or `lean-guard`, or the
audit driver — and refreshes its pin in the SAME commit passes every
phase. What the pin changes is that the edit can no longer be silent: it
must appear in the diff, at the commit you are reviewing. That is why the
consumer's protection is, and has always been, *review at the pinned
commit* rather than the button's own verdict. A green button says "this is
the apparatus that was reviewed", never "this apparatus is trustworthy".