chore: Version 0.3 #136
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@ -102,11 +102,7 @@ unsafe def main (args: List String): IO Unit := do
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options := options
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}
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try
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let termElabM := loop.run context |>.run' {}
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let metaM := termElabM.run' (ctx := {
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declName? := some "_pantograph",
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errToSorry := false
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})
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let metaM := loop.run context |>.run' {}
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let coreM := metaM.run'
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IO.println "ready."
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discard <| coreM.toIO coreContext { env := env }
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@ -16,11 +16,17 @@ structure State where
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goalStates: Lean.HashMap Nat GoalState := Lean.HashMap.empty
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/-- Main state monad for executing commands -/
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abbrev MainM := ReaderT Context (StateT State Lean.Elab.TermElabM)
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abbrev MainM := ReaderT Context (StateT State Lean.MetaM)
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-- HACK: For some reason writing `CommandM α := MainM (Except ... α)` disables
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-- certain monadic features in `MainM`
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abbrev CR α := Except Protocol.InteractionError α
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def runTermElabM { α } (termElabM: Lean.Elab.TermElabM α): Lean.MetaM α :=
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termElabM.run' (ctx := {
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declName? := .none,
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errToSorry := false,
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})
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def execute (command: Protocol.Command): MainM Lean.Json := do
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let run { α β: Type } [Lean.FromJson α] [Lean.ToJson β] (comm: α → MainM (CR β)): MainM Lean.Json :=
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match Lean.fromJson? command.payload with
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@ -97,7 +103,7 @@ def execute (command: Protocol.Command): MainM Lean.Json := do
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match syntax_from_str env args.expr with
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| .error str => return .error $ errorI "parsing" str
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| .ok syn => do
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match (← syntax_to_expr syn) with
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match ← runTermElabM <| syntax_to_expr syn with
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| .error str => return .error $ errorI "elab" str
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| .ok expr => do
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try
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@ -133,7 +139,7 @@ def execute (command: Protocol.Command): MainM Lean.Json := do
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(match syntax_from_str env expr with
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| .error str => return .error <| errorI "parsing" str
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| .ok syn => do
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(match (← syntax_to_expr syn) with
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(match ← runTermElabM <| syntax_to_expr syn with
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| .error str => return .error <| errorI "elab" str
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| .ok expr => return .ok expr))
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| .none, .some copyFrom =>
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@ -145,7 +151,7 @@ def execute (command: Protocol.Command): MainM Lean.Json := do
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match expr? with
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| .error error => return .error error
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| .ok expr =>
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let goalState ← GoalState.create expr
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let goalState ← runTermElabM <| GoalState.create expr
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let stateId := state.nextId
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set { state with
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goalStates := state.goalStates.insert stateId goalState,
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@ -159,9 +165,9 @@ def execute (command: Protocol.Command): MainM Lean.Json := do
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| .some goalState => do
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let nextGoalState?: Except _ GoalState ← match args.tactic?, args.expr? with
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| .some tactic, .none => do
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pure ( Except.ok (← GoalState.execute goalState args.goalId tactic))
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pure ( Except.ok (← runTermElabM <| GoalState.execute goalState args.goalId tactic))
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| .none, .some expr => do
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pure ( Except.ok (← GoalState.tryAssign goalState args.goalId expr))
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pure ( Except.ok (← runTermElabM <| GoalState.tryAssign goalState args.goalId expr))
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| _, _ => pure (Except.error <| errorI "arguments" "Exactly one of {tactic, expr} must be supplied")
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match nextGoalState? with
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| .error error => return .error error
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@ -10,8 +10,7 @@ open Lean
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def test_symbol_visibility (env: Environment): IO LSpec.TestSeq := do
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let entries: List (Name × Bool) := [
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("Nat.add_comm".toName, false),
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("Lean.Name".toName, true),
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("_private.Init.0.Lean.Name".toName, true)
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("Lean.Name".toName, true)
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]
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let suite := entries.foldl (λ suites (symbol, target) =>
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let constant := env.constants.find! symbol
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@ -19,8 +18,6 @@ def test_symbol_visibility (env: Environment): IO LSpec.TestSeq := do
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LSpec.TestSeq.append suites test) LSpec.TestSeq.done
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return suite
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def suite: IO LSpec.TestSeq := do
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let env: Environment ← importModules
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(imports := #["Init"].map (λ str => { module := str.toName, runtimeOnly := false }))
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@ -33,11 +33,7 @@ def subroutine_runner (steps: List (MainM LSpec.TestSeq)): IO LSpec.TestSeq := d
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let result ← step
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return suite ++ result) LSpec.TestSeq.done
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try
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let termElabM := commands.run context |>.run' {}
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let metaM := termElabM.run' (ctx := {
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declName? := some "_pantograph",
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errToSorry := false
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})
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let metaM := commands.run context |>.run' {}
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let coreM := metaM.run'
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return Prod.fst $ (← coreM.toIO coreContext { env := env })
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catch ex =>
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