feat: Elementarized tactics with motives, congruence, and absurdity #72
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@ -521,5 +521,21 @@ protected def GoalState.tryMotivatedApply (state: GoalState) (goalId: Nat) (recu
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| .ok syn => pure syn
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| .ok syn => pure syn
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| .error error => return .parseError error
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| .error error => return .parseError error
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state.execute goalId (tacticM := Tactic.motivatedApply recursor)
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state.execute goalId (tacticM := Tactic.motivatedApply recursor)
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protected def GoalState.tryNoConfusion (state: GoalState) (goalId: Nat) (eq: String):
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Elab.TermElabM TacticResult := do
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state.restoreElabM
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let goal ← match state.savedState.tactic.goals.get? goalId with
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| .some goal => pure goal
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| .none => return .indexError goalId
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goal.checkNotAssigned `GoalState.tryMotivatedApply
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let recursor ← match Parser.runParserCategory
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(env := state.env)
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(catName := `term)
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(input := eq)
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(fileName := filename) with
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| .ok syn => pure syn
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| .error error => return .parseError error
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state.execute goalId (tacticM := Tactic.noConfuse recursor)
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end Pantograph
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end Pantograph
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@ -1,2 +1,3 @@
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import Pantograph.Tactic.MotivatedApply
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import Pantograph.Tactic.MotivatedApply
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import Pantograph.Tactic.NoConfuse
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@ -0,0 +1,18 @@
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import Lean
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open Lean
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namespace Pantograph.Tactic
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def noConfuse: Elab.Tactic.Tactic := λ stx => do
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let goal ← Elab.Tactic.getMainGoal
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goal.withContext do
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let absurd ← Elab.Term.elabTerm (stx := stx) .none
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let noConfusion ← Meta.mkNoConfusion (target := ← goal.getType) (h := absurd)
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unless ← Meta.isDefEq (← Meta.inferType noConfusion) (← goal.getType) do
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throwError "invalid noConfuse call: The resultant type {← Meta.ppExpr $ ← Meta.inferType noConfusion} cannot be unified with {← Meta.ppExpr $ ← goal.getType}"
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goal.assign noConfusion
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Elab.Tactic.setGoals []
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end Pantograph.Tactic
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@ -50,6 +50,7 @@ def main (args: List String) := do
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("Proofs", Proofs.suite env_default),
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("Proofs", Proofs.suite env_default),
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("Serial", Serial.suite env_default),
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("Serial", Serial.suite env_default),
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("Tactic/Motivated Apply", Tactic.MotivatedApply.suite env_default),
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("Tactic/Motivated Apply", Tactic.MotivatedApply.suite env_default),
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("Tactic/No Confuse", Tactic.NoConfuse.suite env_default),
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]
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]
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let tests: List (String × IO LSpec.TestSeq) := suites.foldl (λ acc (name, suite) => acc ++ (addPrefix name suite)) []
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let tests: List (String × IO LSpec.TestSeq) := suites.foldl (λ acc (name, suite) => acc ++ (addPrefix name suite)) []
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LSpec.lspecIO (← runTestGroup name_filter tests)
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LSpec.lspecIO (← runTestGroup name_filter tests)
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@ -1 +1,2 @@
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import Test.Tactic.MotivatedApply
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import Test.Tactic.MotivatedApply
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import Test.Tactic.NoConfuse
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@ -0,0 +1,100 @@
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import LSpec
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import Lean
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import Test.Common
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open Lean
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open Pantograph
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namespace Pantograph.Test.Tactic.NoConfuse
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def valueAndType (recursor: String): MetaM (Expr × Expr) := 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 := recursor)
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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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runTermElabMInMeta do
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let recursor ← Elab.Term.elabTerm (stx := recursor) .none
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let recursorType ← Meta.inferType recursor
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return (recursor, recursorType)
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def test_nat (env: Environment): IO LSpec.TestSeq :=
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let expr := "λ (n: Nat) (h: 0 = n + 1) => False"
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runMetaMSeq env do
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let (expr, exprType) ← valueAndType 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 := "h")
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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.noConfuse 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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tests := tests ++ test
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return tests
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def test_nat_fail (env: Environment): IO LSpec.TestSeq :=
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let expr := "λ (n: Nat) (h: n = n) => False"
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runMetaMSeq env do
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let (expr, _) ← valueAndType 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 := "h")
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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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try
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let tactic := Tactic.noConfuse recursor
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let _ ← runTermElabMInMeta $ runTacticOnMVar tactic target.mvarId!
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tests := tests ++ assertUnreachable "Tactic should fail"
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catch _ =>
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tests := tests ++ LSpec.check "Tactic should fail" true
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return tests
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return tests
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def test_list (env: Environment): IO LSpec.TestSeq :=
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let expr := "λ (l: List Nat) (h: [] = 1 :: l) => False"
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runMetaMSeq env do
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let (expr, exprType) ← valueAndType 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 := "h")
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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.noConfuse 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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tests := tests ++ test
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return tests
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def suite (env: Environment): List (String × IO LSpec.TestSeq) :=
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[
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("nat", test_nat env),
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("nat_fail", test_nat_fail env),
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("list", test_list env),
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]
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end Pantograph.Test.Tactic.NoConfuse
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