Five permanent ratchets, all free today — the point is that they cannot regress
tomorrow. Each crate was re-measured at the commit, not taken from a survey.
`forbid(unsafe_code)`:
punktfunk-encode-worker the binary that carries cap_sys_nice. Its header
claims "no Wayland, no D-Bus, no network, no
plugins"; this makes the memory-safety half of that
claim mechanical. `forbid`, not `deny`, so it cannot
be re-opened by an #[allow] further down.
pf-update-check parses a signed, network-fetched manifest and its own
header says it "owns the part where being wrong is a
security bug". Signature checking is worthless if the
parser around it can be walked out of bounds.
pf-vaadec its header states the design constraint outright — it
links no libva and compiles on macOS, "which is the
point". The crate is full of hand-declared libva
repr(C) mirrors; one raw deref and it stops being the
CPU-testable half.
tools/cursor-probe free, and a probe is where "just deref it to see" is
most tempting.
`deny(unsafe_code)` + one localized allow:
pf-update root runs this. Its single unsafe operation, a bare
geteuid, moves into a named `effective_uid()` helper
carrying the crate's one #[allow(unsafe_code)].
Deliberately NOT rewritten to rustix, contrary to the programme document's first
draft: pf-update's Cargo.toml states that its zero-dependency posture IS a
security invariant of a root helper ("no HTTP client, no TLS, no argument
parsing"), and the extern block says the same. Pulling a general-purpose syscall
crate into a root helper to delete one `unsafe` would trade a real property for
a cosmetic one. The localized allow keeps the ratchet: any NEW unsafe anywhere
in the crate is a build error.
Verified: `cargo check -p pf-vaadec -p pf-update-check` and
`cargo check -p pf-update -p cursor-probe` clean on macOS, plus
`cargo check -p pf-update --target x86_64-unknown-linux-gnu` — pf-update's whole
body is behind `cfg(target_os = "linux")`, so the macOS check does not reach the
line that changed. punktfunk-encode-worker is not built here (pf-encode's C
dependencies do not cross-compile from macOS) and needs the Linux CI leg.