chore: Version 0.3 #136
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@ -253,21 +253,15 @@ protected def GoalState.tryConv (state: GoalState) (goalId: Nat):
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| .none => return .indexError goalId
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let tacticM : Elab.Tactic.TacticM Elab.Tactic.SavedState:= do
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state.restoreTacticM goal
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--let mm ← Meta.matchEq? (← goal.getType)
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--if let .some (_, _, rhs) := mm then
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-- if rhs.getAppFn.isMVar then
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-- IO.println "isMVar ok"
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-- else
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-- IO.println "isMVar failed"
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--else
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-- IO.println "matchEq? failed"
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IO.println s!"Old goals: {(← Elab.Tactic.getGoals).map (λ x => x.name.toString)}"
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--Elab.Tactic.Conv.remarkAsConvGoal
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let goalNew ← Elab.Tactic.Conv.markAsConvGoal goal
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-- TODO: Error if `goal == goalNew`
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Elab.Tactic.setGoals [goalNew]
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--Elab.Tactic.Conv.remarkAsConvGoal
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IO.println s!"New goals: {(← Elab.Tactic.getGoals).map (λ x => x.name.toString)}"
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-- TODO: Fail if this is already in conv
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-- See Lean.Elab.Tactic.Conv.convTarget
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Elab.Tactic.withMainContext do
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-- TODO: Memorize this `rhs` as a conv resultant goal
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let (rhs, newGoal) ← Elab.Tactic.Conv.mkConvGoalFor (← Elab.Tactic.getMainTarget)
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Elab.Tactic.setGoals [newGoal.mvarId!]
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--Elab.Tactic.liftMetaTactic1 fun mvarId => mvarId.replaceTargetEq rhs proof
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MonadBacktrack.saveState
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let nextSavedState ← tacticM { elaborator := .anonymous } |>.run' state.savedState.tactic
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let prevMCtx := state.savedState.term.meta.meta.mctx
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@ -293,7 +287,7 @@ protected def GoalState.tryConvTactic (state: GoalState) (goalId: Nat) (convTact
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| .error error => return .parseError error
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let tacticM : Elab.Tactic.TacticM Elab.Tactic.SavedState:= do
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state.restoreTacticM goal
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Elab.Tactic.Conv.evalConvTactic convTactic
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Elab.Tactic.evalTactic convTactic
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MonadBacktrack.saveState
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let nextSavedState ← tacticM { elaborator := .anonymous } |>.run' state.savedState.tactic
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let nextMCtx := nextSavedState.term.meta.meta.mctx
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@ -401,7 +401,7 @@ def test_conv: TestM Unit := do
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addTest $ assertUnreachable $ other.toString
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return ()
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addTest $ LSpec.check "conv => ..." ((← state2.serializeGoals (options := ← read)).map (·.devolatilize) =
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#[{ buildGoal [("a", "Nat"), ("b", "Nat"), ("c", "Nat")] "a + b + c" with isConversion := true }])
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#[{ buildGoal [("a", "Nat"), ("b", "Nat"), ("c", "Nat")] "a + b + c = b + a + c" with isConversion := true }])
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let convTactic := "lhs"
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let state3L ← match ← state2.tryConvTactic (goalId := 0) (convTactic := convTactic) with
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