feat: Remove display of implementation details #50
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@ -7,14 +7,15 @@ open Pantograph
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namespace Pantograph.Environment
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def is_symbol_unsafe_or_internal (n: Lean.Name) (info: Lean.ConstantInfo): Bool :=
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isLeanSymbol n ∨ (Lean.privateToUserName? n |>.map isLeanSymbol |>.getD false) ∨ info.isUnsafe
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def isNameInternal (n: Lean.Name): Bool :=
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-- Returns true if the name is an implementation detail which should not be shown to the user.
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isLeanSymbol n ∨ (Lean.privateToUserName? n |>.map isLeanSymbol |>.getD false) ∨ n.isAuxLemma
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where
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isLeanSymbol (name: Lean.Name): Bool := match name.getRoot with
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| .str _ name => name == "Lean"
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| _ => true
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def to_compact_symbol_name (n: Lean.Name) (info: Lean.ConstantInfo): String :=
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def toCompactSymbolName (n: Lean.Name) (info: Lean.ConstantInfo): String :=
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let pref := match info with
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| .axiomInfo _ => "a"
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| .defnInfo _ => "d"
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@ -26,14 +27,14 @@ def to_compact_symbol_name (n: Lean.Name) (info: Lean.ConstantInfo): String :=
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| .recInfo _ => "r"
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s!"{pref}{toString n}"
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def to_filtered_symbol (n: Lean.Name) (info: Lean.ConstantInfo): Option String :=
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if is_symbol_unsafe_or_internal n info
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def toFilteredSymbol (n: Lean.Name) (info: Lean.ConstantInfo): Option String :=
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if isNameInternal n || info.isUnsafe
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then Option.none
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else Option.some <| to_compact_symbol_name n info
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else Option.some <| toCompactSymbolName n info
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def catalog (_: Protocol.EnvCatalog): CoreM Protocol.EnvCatalogResult := do
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let env ← Lean.MonadEnv.getEnv
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let names := env.constants.fold (init := #[]) (λ acc name info =>
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match to_filtered_symbol name info with
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match toFilteredSymbol name info with
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| .some x => acc.push x
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| .none => acc)
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return { symbols := names }
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@ -58,8 +59,14 @@ def inspect (args: Protocol.EnvInspect) (options: @&Protocol.Options): CoreM (Pr
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value? := ← value?.mapM (λ v => serialize_expression options v |>.run'),
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publicName? := Lean.privateToUserName? name |>.map (·.toString),
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-- BUG: Warning: getUsedConstants here will not include projections. This is a known bug.
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typeDependency? := if args.dependency?.getD false then .some <| info.type.getUsedConstants.map (λ n => name_to_ast n) else .none,
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valueDependency? := if args.dependency?.getD false then info.value?.map (·.getUsedConstants.map (λ n => name_to_ast n)) else .none,
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typeDependency? := if args.dependency?.getD false
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then .some <| info.type.getUsedConstants.map (λ n => name_to_ast n)
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else .none,
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valueDependency? := ← if args.dependency?.getD false
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then info.value?.mapM (λ e => do
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let e ← (unfoldAuxLemmas e).run'
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pure $ e.getUsedConstants.filter (!isNameInternal ·) |>.map (λ n => name_to_ast n) )
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else pure (.none),
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module? := module?
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}
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let result := match info with
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@ -165,12 +165,6 @@ def goalResume (target: GoalState) (goals: Array String): Except String GoalStat
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def goalSerialize (state: GoalState) (options: @&Protocol.Options): Lean.CoreM (Array Protocol.Goal) :=
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runMetaM <| state.serializeGoals (parent := .none) options
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def Lean.Name.isAuxLemma (n : Lean.Name) : Bool := n matches .num (.str _ "_auxLemma") _
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/-- Unfold all lemmas created by `Lean.Meta.mkAuxLemma`. These end in `_auxLemma.nn` where `nn` is a number. -/
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def unfoldAuxLemmas (e : Lean.Expr) : Lean.MetaM Lean.Expr := do
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Lean.Meta.deltaExpand e Lean.Name.isAuxLemma
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@[export pantograph_goal_print_m]
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def goalPrint (state: GoalState) (options: @&Protocol.Options): Lean.CoreM Protocol.GoalPrintResult := do
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let metaM := do
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@ -6,17 +6,20 @@ import Lean
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import Pantograph.Protocol
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import Pantograph.Goal
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namespace Pantograph
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open Lean
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-- Symbol processing functions --
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def Lean.Name.isAuxLemma (n : Lean.Name) : Bool := n matches .num (.str _ "_auxLemma") _
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namespace Pantograph
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/-- Unfold all lemmas created by `Lean.Meta.mkAuxLemma`. These end in `_auxLemma.nn` where `nn` is a number. -/
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def unfoldAuxLemmas (e : Lean.Expr) : Lean.MetaM Lean.Expr := do
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Lean.Meta.deltaExpand e Lean.Name.isAuxLemma
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--- Input Functions ---
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/-- Read a theorem from the environment -/
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def expr_from_const (env: Environment) (name: Name): Except String Lean.Expr :=
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match env.find? name with
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| none => throw s!"Symbol not found: {name}"
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| some cInfo => return cInfo.type
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/-- Read syntax object from string -/
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def syntax_from_str (env: Environment) (s: String): Except String Syntax :=
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Parser.runParserCategory
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@ -14,14 +14,14 @@ deriving instance DecidableEq, Repr for Protocol.ConstructorInfo
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deriving instance DecidableEq, Repr for Protocol.RecursorInfo
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deriving instance DecidableEq, Repr for Protocol.EnvInspectResult
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def test_symbol_visibility (env: Environment): IO LSpec.TestSeq := do
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def test_symbol_visibility: 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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("Lean.Name".toName, true),
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("Init.Data.Nat.Basic._auxLemma.4".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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let test := LSpec.check symbol.toString ((Environment.is_symbol_unsafe_or_internal symbol constant) == target)
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let test := LSpec.check symbol.toString ((Environment.isNameInternal symbol) == target)
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LSpec.TestSeq.append suites test) LSpec.TestSeq.done
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return suite
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@ -78,12 +78,11 @@ def test_inspect (env: Environment): IO LSpec.TestSeq := do
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def suite: IO LSpec.TestSeq := do
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let env: Environment ← importModules
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(imports := #[`Init])
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--(imports := #["Prelude"].map (λ str => { module := str.toName, runtimeOnly := false }))
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(opts := {})
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(trustLevel := 1)
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return LSpec.group "Environment" $
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(LSpec.group "Symbol visibility" (← test_symbol_visibility env)) ++
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(LSpec.group "Symbol visibility" (← test_symbol_visibility)) ++
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(LSpec.group "Inspect" (← test_inspect env))
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end Pantograph.Test.Environment
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