Identifier
F:ml430-nat-eq-zero-of-gcd-eq-zero-right-24054a86
Proof route
kernel-lean
External status
proved
Axiom footprint
Empty

Recorded description

The proposition declared as `Nat.eq_zero_of_gcd_eq_zero_right` in the pinned Mathlib v4.30 source.

Formal statement
∀ {m n : ℕ}, m.gcd n = 0 → n = 0

Dependencies

The graph shows direct ledger edges. Follow a node to open its artifact page.

Direct dependencies appear to the left. The current fact is in the center. Facts that depend directly on it appear to the right. The natural gcd divides its sec Zero is a left absorbing elemen Current fact
2 direct dependencies 0 direct dependents

Evidence

kernel-Nat.eq_zero_of_gcd_eq_zero_right

Kind
kernel-term
Status
checked

Supports: ∀ {m n : ℕ}, m.gcd n = 0 → n = 0

Checker command
test "$(cargo run -q -p axeyum-lean-kernel --example nat_theorem_inventory -- eq_zero_of_gcd_eq_zero_right 2>/dev/null | grep -Ec '^Nat\.eq_zero_of_gcd_eq_zero_right[[:space:]]')" -ge 1
Evidence notes

`build_nat_prelude` admits `Nat.eq_zero_of_gcd_eq_zero_right` through the trusted `Kernel::add_declaration` gate, which re-checks the proof term against the stated type, so producing this row at all is a machine-checked proof. Built in this session's `nat_prelude/gcd_dvd_mirrors.rs` (lane nat-gcd-dvd-mirrors), wired in via one `declare_gcd_dvd_mirrors` call. Mirror of `eq_zero_of_gcd_eq_zero_left` via `gcd_dvd_right`. `nat_theorem_inventory`'s rendered type is `(x0:AxNat)->(x1:AxNat)->(x2:Eq (gcd x0 x1) zero)->Eq x1 zero`, matching this fact's `formal.statement`. `nat_theorem_inventory` exits non-zero for a name that does not exist, and the `grep -c` count (tested `-ge 1`, not piped into `grep -q`) requires the admitted declaration to actually be printed. Verified both ways: the real name greps to a count `-ge 1` (confirmed by direct run); grepping a made-up name (`Nat.eq_zero_of_gcd_eq_zero_right_bogus`) exits non-zero (`nat_theorem_inventory` fails closed on an absent name -- measured: `error: no Nat theorem matches ... -- an absent theorem is a failed check, not an empty report`, exit 1).

footprint-Nat.eq_zero_of_gcd_eq_zero_right

Kind
exhaustive-enumeration
Status
checked

Supports: axiom_footprint: [] -- the Nat prelude's trusted surface is empty

Checker command
cargo run -q -p axeyum-lean-kernel --example nat_axiom_inventory -- --require-axiom-free nat
Evidence notes

`nat_axiom_inventory --require-axiom-free nat` enumerates the built Nat environment and exits non-zero unless it admits no Axiom, Opaque or Quotient declaration (measured: axiom=0 opaque=0 quotient=0). A theorem cannot depend on a trusted declaration the environment does not contain, so an empty trusted surface bounds every individual theorem's footprint by []. `nat_prelude_tests::every_nat_declaration_is_checked_and_axiom_free` additionally checks this theorem's own `Kernel::axiom_footprint` directly via `theorem_names`, and `the_build_is_deterministic`/`every_promised_name_is_admitted_with_the_expected_kind` (both re-run on every `nat_prelude::` sweep) confirm the declaration is admitted at the exact rendered type checked below.

Provenance

{
  "date": "2026-08-29",
  "established_by": "not established in this ledger",
  "source": "statement-only extraction of `Nat.eq_zero_of_gcd_eq_zero_right` from Mathlib v4.30.0; no proof value was exposed",
  "prior_art": [
    {
      "who": "the Mathlib contributors",
      "what": "the theorem declaration `Nat.eq_zero_of_gcd_eq_zero_right`",
      "where": "mathlib4 commit c5ea00351c28e24afc9f0f84379aa41082b1188f (v4.30.0)",
      "year": 2026,
      "attribution": "the proposition was read from the pinned statement-only inventory; the proof term and tactic trace were not consulted"
    }
  ]
}