This PR sets up the new integrated test/bench suite. It then migrates all benchmarks and some related tests to the new suite. There's also some documentation and some linting. For now, a lot of the old tests are left alone so this PR doesn't become even larger than it already is. Eventually, all tests should be migrated to the new suite though so there isn't a confusing mix of two systems.
58 lines
1.6 KiB
Text
58 lines
1.6 KiB
Text
/-!
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Test for `grind` pattern validation. It covers the case where
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an instance is not tagged with the implicit instance binder.
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This happens in declarations such as
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```lean
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ZeroMemClass.zero_mem {S : Type} {M : outParam Type} {inst1 : Zero M} {inst2 : SetLike S M}
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[self : @ZeroMemClass S M inst1 inst2] (s : S) : 0 ∈ s
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```
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-/
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def Set (α : Type u) := α → Prop
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/-- Membership in a set -/
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protected def Set.Mem (s : Set α) (a : α) : Prop :=
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s a
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instance : Membership α (Set α) :=
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⟨Set.Mem⟩
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class SetLike (A : Type) (B : outParam Type) where
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protected coe : A → Set B
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protected coe_injective : Function.Injective coe
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instance [SetLike A B]: CoeTC A (Set B) where coe := SetLike.coe
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instance [SetLike A B] : Membership B A :=
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⟨fun p x => x ∈ (p : Set B)⟩
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class ZeroMemClass (S : Type) (M : outParam Type) [Zero M] [SetLike S M] : Prop where
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zero_mem : ∀ s : S, (0 : M) ∈ s
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class Ring (R : Type) extends Zero R
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@[ext]
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structure Subring (M : Type) [Ring M] where
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carrier : Set M
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zero_mem' : 0 ∈ carrier
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instance {M} [Ring M] : SetLike (Subring M) M where
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coe := Subring.carrier
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coe_injective a b h := by ext; assumption
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theorem Subring.zero_mem {M} [Ring M] (s : Subring M) : 0 ∈ s :=
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s.zero_mem'
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grind_pattern ZeroMemClass.zero_mem => 0 ∈ s
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instance {M} [Ring M] : ZeroMemClass (Subring M) M where
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zero_mem := Subring.zero_mem
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example {R : Type} [Ring R] (S : Subring R) : 0 ∈ S := by
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grind
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example {R : Type} [Ring R] (S : Subring R) : 0 ∈ S := by
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grind only [ZeroMemClass.zero_mem]
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example {R : Type} [Ring R] (S : Subring R) : 0 ∈ S := by
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grind only [Subring.zero_mem]
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