fix: Prevent incorrect inheritance of calc rhs
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f20ee8dc87
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036fab0ad6
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@ -325,6 +325,11 @@ protected def GoalState.convExit (state: GoalState):
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catch exception =>
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return .failure #[← exception.toMessageData.toString]
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protected def GoalState.calcPrevRhsOf? (state: GoalState) (goalId: Nat) :=
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if goalId == 1 then
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state.calcPrevRhs?
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else
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.none
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protected def GoalState.tryCalc (state: GoalState) (goalId: Nat) (pred: String):
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Elab.TermElabM TacticResult := do
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state.restoreElabM
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@ -340,20 +345,21 @@ protected def GoalState.tryCalc (state: GoalState) (goalId: Nat) (pred: String):
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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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let calcPrevRhs? := state.calcPrevRhsOf? goalId
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try
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goal.withContext do
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let target ← instantiateMVars (← goal.getDecl).type
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let tag := (← goal.getDecl).userName
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let mut step ← Elab.Term.elabType <| ← do
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if let some prevRhs := state.calcPrevRhs? then
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if let some prevRhs := calcPrevRhs? then
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Elab.Term.annotateFirstHoleWithType pred (← Meta.inferType prevRhs)
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else
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pure pred
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let some (_, lhs, rhs) ← Elab.Term.getCalcRelation? step |
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throwErrorAt pred "invalid 'calc' step, relation expected{indentExpr step}"
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if let some prevRhs := state.calcPrevRhs? then
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if let some prevRhs := calcPrevRhs? then
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unless (← Meta.isDefEqGuarded lhs prevRhs) do
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throwErrorAt pred "invalid 'calc' step, left-hand-side is{indentD m!"{lhs} : {← Meta.inferType lhs}"}\nprevious right-hand-side is{indentD m!"{prevRhs} : {← Meta.inferType prevRhs}"}" -- "
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@ -510,6 +510,8 @@ def test_calc: TestM Unit := do
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interiorGoal [] "a + b = b + c" (.some "calc"),
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interiorGoal [] "b + c = c + d"
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])
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addTest $ LSpec.test "(2.0 prev rhs)" (state2.calcPrevRhsOf? 0 |>.isNone)
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addTest $ LSpec.test "(2.1 prev rhs)" (state2.calcPrevRhsOf? 1 |>.isSome)
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let tactic := "apply h1"
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let state2m ← match ← state2.tryTactic (goalId := 0) (tactic := tactic) with
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@ -532,6 +534,7 @@ def test_calc: TestM Unit := do
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#[
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interiorGoal [] "b + c = c + d" (.some "calc")
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])
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addTest $ LSpec.test "(4.0 prev rhs)" (state4.calcPrevRhsOf? 0 |>.isNone)
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let tactic := "apply h2"
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let state4m ← match ← state4.tryTactic (goalId := 0) (tactic := tactic) with
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| .success state => pure state
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