fix: variable
and universe
commands in environment capture #183
|
@ -180,7 +180,7 @@ def addDecl (name: String) (levels: Array String := #[]) (type?: Option String)
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Lean.Declaration.thmDecl <| Lean.mkTheoremValEx
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(name := name.toName)
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(levelParams := levelParams)
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(type := type )
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(type := type)
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(value := value)
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(all := [])
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else
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@ -116,17 +116,9 @@ def exprEcho (expr: String) (expectedType?: Option String := .none) (levels: Arr
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liftExcept e
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@[export pantograph_goal_start_expr_m]
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def goalStartExpr (expr: String) (levels: Array String): Protocol.FallibleT CoreM GoalState := do
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let e : Except Protocol.InteractionError _ ← runTermElabM $ Elab.Term.withLevelNames (levels.toList.map (·.toName)) do
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let expr ← match ← parseElabType expr |>.run with
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| .error e => return .error e
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| .ok expr => pure $ expr
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return .ok $ .ok $ ← GoalState.create expr
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liftExcept e
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@[export pantograph_goal_resume]
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def goalResume (target: GoalState) (goals: Array String): Except String GoalState :=
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target.resume (goals.map (λ n => { name := n.toName }) |>.toList)
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def goalStartExpr (expr: String) : Protocol.FallibleT Elab.TermElabM GoalState := do
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let t ← parseElabType expr
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GoalState.create t
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@[export pantograph_goal_serialize_m]
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def goalSerialize (state: GoalState) (options: @&Protocol.Options): CoreM (Array Protocol.Goal) :=
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@ -164,48 +156,27 @@ def goalPrint (state: GoalState) (rootExpr: Bool) (parentExpr: Bool) (goals: Boo
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extraMVars,
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}
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@[export pantograph_goal_tactic_m]
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def goalTactic (state: GoalState) (goal: MVarId) (tactic: String): CoreM TacticResult :=
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runTermElabM <| state.tryTactic goal tactic
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@[export pantograph_goal_assign_m]
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def goalAssign (state: GoalState) (goal: MVarId) (expr: String): CoreM TacticResult :=
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runTermElabM <| state.tryAssign goal expr
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@[export pantograph_goal_have_m]
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protected def GoalState.tryHave (state: GoalState) (goal: MVarId) (binderName: String) (type: String): CoreM TacticResult := do
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protected def GoalState.tryHave (state: GoalState) (goal: MVarId) (binderName: String) (type: String): Elab.TermElabM TacticResult := do
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let type ← match (← parseTermM type) with
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| .ok syn => pure syn
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| .error error => return .parseError error
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runTermElabM do
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state.restoreElabM
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state.tryTacticM goal $ Tactic.evalHave binderName.toName type
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state.restoreElabM
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state.tryTacticM goal $ Tactic.evalHave binderName.toName type
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@[export pantograph_goal_try_define_m]
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protected def GoalState.tryDefine (state: GoalState) (goal: MVarId) (binderName: String) (expr: String): CoreM TacticResult := do
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protected def GoalState.tryDefine (state: GoalState) (goal: MVarId) (binderName: String) (expr: String): Elab.TermElabM TacticResult := do
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let expr ← match (← parseTermM expr) with
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| .ok syn => pure syn
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| .error error => return .parseError error
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runTermElabM do
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state.restoreElabM
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state.tryTacticM goal (Tactic.evalDefine binderName.toName expr)
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state.restoreElabM
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state.tryTacticM goal (Tactic.evalDefine binderName.toName expr)
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@[export pantograph_goal_try_draft_m]
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protected def GoalState.tryDraft (state: GoalState) (goal: MVarId) (expr: String): CoreM TacticResult := do
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protected def GoalState.tryDraft (state: GoalState) (goal: MVarId) (expr: String): Elab.TermElabM TacticResult := do
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let expr ← match (← parseTermM expr) with
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| .ok syn => pure syn
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| .error error => return .parseError error
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runTermElabM do
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state.restoreElabM
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state.tryTacticM goal (Tactic.evalDraft expr)
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@[export pantograph_goal_let_m]
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def goalLet (state: GoalState) (goal: MVarId) (binderName: String) (type: String): CoreM TacticResult :=
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runTermElabM <| state.tryLet goal binderName type
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@[export pantograph_goal_conv_m]
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def goalConv (state: GoalState) (goal: MVarId): CoreM TacticResult :=
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runTermElabM <| state.conv goal
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@[export pantograph_goal_conv_exit_m]
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def goalConvExit (state: GoalState): CoreM TacticResult :=
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runTermElabM <| state.convExit
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@[export pantograph_goal_calc_m]
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def goalCalc (state: GoalState) (goal: MVarId) (pred: String): CoreM TacticResult :=
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runTermElabM <| state.tryCalc goal pred
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state.restoreElabM
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state.tryTacticM goal (Tactic.evalDraft expr)
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-- Cancel the token after a timeout.
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@[export pantograph_run_cancel_token_with_timeout_m]
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@ -107,7 +107,7 @@ structure ExprEcho where
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expr: String
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type?: Option String := .none
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-- universe levels
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levels: Option (Array String) := .none
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levels?: Option (Array String) := .none
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deriving Lean.FromJson
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structure ExprEchoResult where
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expr: Expression
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@ -204,7 +204,7 @@ structure EnvInspectResult where
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structure EnvAdd where
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name: String
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levels: Array String := #[]
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levels?: Option (Array String) := .none
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type?: Option String := .none
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value: String
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isTheorem: Bool := false
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@ -239,7 +239,7 @@ structure GoalStart where
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-- Only one of the fields below may be populated.
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expr: Option String -- Directly parse in an expression
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-- universe levels
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levels: Option (Array String) := .none
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levels?: Option (Array String) := .none
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copyFrom: Option String := .none -- Copy the type from a theorem in the environment
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deriving Lean.FromJson
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structure GoalStartResult where
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34
Repl.lean
34
Repl.lean
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@ -45,9 +45,10 @@ def runCoreM { α } (coreM : CoreM α) : EMainM α := do
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| _ => .some <$> IO.CancelToken.new
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let coreCtx : Core.Context := {
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(← read).coreContext with
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currNamespace := scope.currNamespace
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openDecls := scope.openDecls
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options := scope.opts
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currNamespace := scope.currNamespace,
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openDecls := scope.openDecls,
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options := scope.opts,
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initHeartbeats := ← IO.getNumHeartbeats,
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cancelTk?,
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}
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let coreState : Core.State := {
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@ -76,8 +77,16 @@ def runCoreM' { α } (coreM : Protocol.FallibleT CoreM α) : EMainM α := do
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def liftMetaM { α } (metaM : MetaM α): EMainM α :=
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runCoreM metaM.run'
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def liftTermElabM { α } (termElabM: Elab.TermElabM α) : EMainM α :=
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runCoreM $ termElabM.run' (ctx := defaultElabContext) |>.run'
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def liftTermElabM { α } (termElabM: Elab.TermElabM α) (levelNames : List Name := [])
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: EMainM α := do
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let scope := (← get).scope
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let context := {
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isNoncomputableSection := scope.isNoncomputable,
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}
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let state := {
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levelNames := scope.levelNames ++ levelNames,
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}
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runCoreM $ termElabM.run' context state |>.run'
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section Frontend
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@ -227,7 +236,7 @@ def execute (command: Protocol.Command): MainM Json := do
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let state ← getMainState
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runCoreM' $ Environment.inspect args state.options
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env_add (args: Protocol.EnvAdd): EMainM Protocol.EnvAddResult := do
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runCoreM' $ Environment.addDecl args.name args.levels args.type? args.value args.isTheorem
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runCoreM' $ Environment.addDecl args.name (args.levels?.getD #[]) args.type? args.value args.isTheorem
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env_save (args: Protocol.EnvSaveLoad): EMainM Protocol.EnvSaveLoadResult := do
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let env ← MonadEnv.getEnv
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environmentPickle env args.path
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@ -238,7 +247,7 @@ def execute (command: Protocol.Command): MainM Json := do
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return {}
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expr_echo (args: Protocol.ExprEcho): EMainM Protocol.ExprEchoResult := do
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let state ← getMainState
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runCoreM' $ exprEcho args.expr (expectedType? := args.type?) (levels := args.levels.getD #[]) (options := state.options)
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runCoreM' $ exprEcho args.expr (expectedType? := args.type?) (levels := args.levels?.getD #[]) (options := state.options)
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options_set (args: Protocol.OptionsSet): EMainM Protocol.OptionsSetResult := do
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let state ← getMainState
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let options := state.options
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@ -260,14 +269,16 @@ def execute (command: Protocol.Command): MainM Json := do
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options_print (_: Protocol.OptionsPrint): EMainM Protocol.Options := do
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return (← getMainState).options
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goal_start (args: Protocol.GoalStart): EMainM Protocol.GoalStartResult := do
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let expr?: Except _ GoalState ← liftTermElabM (match args.expr, args.copyFrom with
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| .some expr, .none => goalStartExpr expr (args.levels.getD #[]) |>.run
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let levelNames := (args.levels?.getD #[]).toList.map (·.toName)
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let expr?: Except _ GoalState ← liftTermElabM (levelNames := levelNames) do
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match args.expr, args.copyFrom with
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| .some expr, .none => goalStartExpr expr |>.run
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| .none, .some copyFrom => do
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(match (← getEnv).find? <| copyFrom.toName with
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| .none => return .error <| errorIndex s!"Symbol not found: {copyFrom}"
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| .some cInfo => return .ok (← GoalState.create cInfo.type))
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| _, _ =>
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return .error <| errorI "arguments" "Exactly one of {expr, copyFrom} must be supplied")
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return .error <| errorI "arguments" "Exactly one of {expr, copyFrom} must be supplied"
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match expr? with
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| .error error => Protocol.throw error
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| .ok goalState =>
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@ -341,7 +352,8 @@ def execute (command: Protocol.Command): MainM Json := do
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| .none => Protocol.throw $ errorIndex s!"Invalid state index {branchId}"
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| .some branch => pure $ target.continue branch
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| .none, .some goals =>
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pure $ goalResume target goals
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let goals := goals.toList.map (λ n => { name := n.toName })
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pure $ target.resume goals
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| _, _ => Protocol.throw $ errorI "arguments" "Exactly one of {branch, goals} must be supplied"
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match nextGoalState? with
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| .error error => Protocol.throw $ errorI "structure" error
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|
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@ -114,12 +114,20 @@ def test_symbol_location : TestT IO Unit := do
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checkEq "imports" imports #["Init.SimpLemmas", "Init.Data.NeZero"]
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checkTrue "constNames" $ constNames.contains "Nat.succ_add"
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def test_matcher : TestT IO Unit := do
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let env: Environment ← importModules
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(imports := #[`Init])
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(opts := {})
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(trustLevel := 1)
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checkTrue "not matcher" $ ¬ Meta.isMatcherCore env `Nat.strongRecOn
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def suite: List (String × IO LSpec.TestSeq) :=
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[
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("Catalog", test_catalog),
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("Symbol Visibility", test_symbol_visibility),
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("Inspect", test_inspect),
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("Symbol Location", runTest test_symbol_location),
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("Matcher", runTest test_matcher),
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]
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end Pantograph.Test.Environment
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|
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@ -30,7 +30,7 @@ abbrev Test := List (MainM LSpec.TestSeq)
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def test_expr_echo : Test :=
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[
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step "expr.echo"
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({ expr := "λ {α : Sort (u + 1)} => List α", levels := .some #["u"]}: Protocol.ExprEcho)
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({ expr := "λ {α : Sort (u + 1)} => List α", levels? := .some #["u"]}: Protocol.ExprEcho)
|
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({
|
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type := { pp? := .some "{α : Type u} → Type u" },
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expr := { pp? := .some "fun {α} => List α" }
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|
@ -194,7 +194,7 @@ def test_env_add_inspect : Test :=
|
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step "env.add"
|
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({
|
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name := name3,
|
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levels := #["u"]
|
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levels? := .some #["u"]
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type? := "(α : Type u) → α → (α × α)",
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value := "λ (α : Type u) (x : α) => (x, x)",
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isTheorem := false
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|
@ -273,7 +273,7 @@ def test_frontend_process_sorry : Test :=
|
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]
|
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|
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def test_import_open : Test :=
|
||||
let header := "import Init\nopen Nat"
|
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let header := "import Init\nopen Nat\nuniverse u"
|
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let goal1: Protocol.Goal := {
|
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name := "_uniq.67",
|
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target := { pp? := .some "n + 1 = n.succ" },
|
||||
|
@ -287,9 +287,10 @@ def test_import_open : Test :=
|
|||
inheritEnv := true,
|
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}: Protocol.FrontendProcess)
|
||||
({
|
||||
units := [{
|
||||
boundary := (12, header.utf8ByteSize),
|
||||
}],
|
||||
units := [
|
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{ boundary := (12, 21) },
|
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{ boundary := (21, header.utf8ByteSize) },
|
||||
],
|
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}: Protocol.FrontendProcessResult),
|
||||
step "goal.start" ({ expr := "∀ (n : Nat), n + 1 = Nat.succ n"} : Protocol.GoalStart)
|
||||
({ stateId := 0, root := "_uniq.65" }: Protocol.GoalStartResult),
|
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|
@ -297,6 +298,8 @@ def test_import_open : Test :=
|
|||
({ nextStateId? := .some 1, goals? := #[goal1], }: Protocol.GoalTacticResult),
|
||||
step "goal.tactic" ({ stateId := 1, tactic? := .some "apply add_one" }: Protocol.GoalTactic)
|
||||
({ nextStateId? := .some 2, goals? := .some #[], }: Protocol.GoalTacticResult),
|
||||
step "goal.start" ({ expr := "∀ (x : Sort u), Sort (u + 1)"} : Protocol.GoalStart)
|
||||
({ stateId := 3, root := "_uniq.5" }: Protocol.GoalStartResult),
|
||||
]
|
||||
|
||||
def runTest (env: Lean.Environment) (steps: Test): IO LSpec.TestSeq := do
|
||||
|
|
Loading…
Reference in New Issue