2024-04-20 13:09:41 -07:00
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import LSpec
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import Lean
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2024-04-22 00:11:41 -07:00
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import Test.Common
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2024-04-20 13:09:41 -07:00
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open Lean
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2024-04-22 00:11:41 -07:00
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open Pantograph
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2024-04-20 13:09:41 -07:00
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namespace Pantograph.Test.Tactic.MotivatedApply
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2024-04-22 00:11:41 -07:00
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def test_type_extract (env: Environment): IO LSpec.TestSeq :=
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runMetaMSeq env do
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let mut tests := LSpec.TestSeq.done
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2024-05-20 11:55:38 -07:00
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let recursor ← parseSentence "@Nat.brecOn"
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let recursorType ← Meta.inferType recursor
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2024-04-22 00:11:41 -07:00
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tests := tests ++ LSpec.check "recursorType" ("{motive : Nat → Sort ?u.1} → (t : Nat) → ((t : Nat) → Nat.below t → motive t) → motive t" =
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(← exprToStr recursorType))
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let info ← match Tactic.getRecursorInformation recursorType with
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| .some info => pure info
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| .none => throwError "Failed to extract recursor info"
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tests := tests ++ LSpec.check "iMotive" (info.iMotive = 2)
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let motiveType := info.getMotiveType
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tests := tests ++ LSpec.check "motiveType" ("Nat → Sort ?u.1" =
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(← exprToStr motiveType))
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return tests
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2024-05-05 10:36:43 -07:00
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def test_nat_brec_on (env: Environment): IO LSpec.TestSeq :=
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let expr := "λ (n t: Nat) => n + 0 = n"
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runMetaMSeq env do
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let expr ← parseSentence expr
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Meta.lambdaTelescope expr $ λ _ body => do
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let recursor ← match Parser.runParserCategory
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(env := ← MonadEnv.getEnv)
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(catName := `term)
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(input := "@Nat.brecOn")
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(fileName := filename) with
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| .ok syn => pure syn
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| .error error => throwError "Failed to parse: {error}"
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let mut tests := LSpec.TestSeq.done
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-- Apply the tactic
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let target ← Meta.mkFreshExprSyntheticOpaqueMVar body
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let tactic := Tactic.motivatedApply recursor
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let test ← runTermElabMInMeta do
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let newGoals ← runTacticOnMVar tactic target.mvarId!
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pure $ LSpec.check "goals" ((← newGoals.mapM (λ g => do exprToStr (← g.getType))) =
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[
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"Nat → Prop",
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"Nat",
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"∀ (t : Nat), Nat.below t → ?motive t",
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"?motive ?m.67 = (n + 0 = n)",
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])
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tests := tests ++ test
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return tests
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2024-05-05 10:36:43 -07:00
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def test_list_brec_on (env: Environment): IO LSpec.TestSeq :=
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let expr := "λ {α : Type} (l: List α) => l ++ [] = [] ++ l"
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runMetaMSeq env do
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let expr ← parseSentence expr
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Meta.lambdaTelescope expr $ λ _ body => do
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let recursor ← match Parser.runParserCategory
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(env := ← MonadEnv.getEnv)
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(catName := `term)
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(input := "@List.brecOn")
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(fileName := filename) with
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| .ok syn => pure syn
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| .error error => throwError "Failed to parse: {error}"
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let mut tests := LSpec.TestSeq.done
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-- Apply the tactic
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let target ← Meta.mkFreshExprSyntheticOpaqueMVar body
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let tactic := Tactic.motivatedApply recursor
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let test ← runTermElabMInMeta do
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let newGoals ← runTacticOnMVar tactic target.mvarId!
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pure $ LSpec.check "goals" ((← newGoals.mapM (λ g => do exprToStr (← g.getType))) =
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[
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"Type ?u.90",
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"List ?m.92 → Prop",
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"List ?m.92",
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"∀ (t : List ?m.92), List.below t → ?motive t",
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"?motive ?m.94 = (l ++ [] = [] ++ l)",
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])
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tests := tests ++ test
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return tests
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2024-05-11 20:01:02 -07:00
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def test_partial_motive_instantiation (env: Environment): IO LSpec.TestSeq := do
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let expr := "λ (n t: Nat) => n + 0 = n"
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runMetaMSeq env $ runTermElabMInMeta do
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let recursor ← match Parser.runParserCategory
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(env := ← MonadEnv.getEnv)
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(catName := `term)
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(input := "@Nat.brecOn")
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(fileName := filename) with
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| .ok syn => pure syn
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| .error error => throwError "Failed to parse: {error}"
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let expr ← parseSentence expr
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Meta.lambdaTelescope expr $ λ _ body => do
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let mut tests := LSpec.TestSeq.done
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-- Apply the tactic
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let target ← Meta.mkFreshExprSyntheticOpaqueMVar body
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let tactic := Tactic.motivatedApply recursor
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let newGoals ← runTacticOnMVar tactic target.mvarId!
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let majorId := 67
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tests := tests ++ (LSpec.check "goals" ((← newGoals.mapM (λ g => do exprToStr (← g.getType))) =
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[
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"Nat → Prop",
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"Nat",
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"∀ (t : Nat), Nat.below t → ?motive t",
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s!"?motive ?m.{majorId} = (n + 0 = n)",
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]))
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let [motive, major, step, conduit] := newGoals | panic! "Incorrect goal number"
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tests := tests ++ (LSpec.check "goal name" (major.name.toString = s!"_uniq.{majorId}"))
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2024-05-11 20:01:02 -07:00
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-- Assign motive to `λ x => x + _`
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let motive_assign ← parseSentence "λ (x: Nat) => @Nat.add x + 0 = _"
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motive.assign motive_assign
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let test ← conduit.withContext do
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let t := toString (← Meta.ppExpr $ ← conduit.getType)
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return LSpec.check "conduit" (t = s!"(?m.{majorId}.add + 0 = ?m.138 ?m.{majorId}) = (n + 0 = n)")
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tests := tests ++ test
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return tests
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2024-05-05 10:36:43 -07:00
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2024-04-20 13:09:41 -07:00
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def suite (env: Environment): List (String × IO LSpec.TestSeq) :=
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[
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("type_extract", test_type_extract env),
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("Nat.brecOn", test_nat_brec_on env),
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("List.brecOn", test_list_brec_on env),
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("Nat.brecOn partial motive instantiation", test_partial_motive_instantiation env),
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]
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2024-04-20 13:09:41 -07:00
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end Pantograph.Test.Tactic.MotivatedApply
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