166 lines
6.5 KiB
Plaintext
166 lines
6.5 KiB
Plaintext
import Pantograph.Protocol
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import Pantograph.Serial
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import Lean
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open Lean
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open Pantograph
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namespace Pantograph.Environment
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@[export pantograph_is_name_internal]
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def isNameInternal (n: 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 ∨ n.hasMacroScopes
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where
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isLeanSymbol (name: Name): Bool := match name.getRoot with
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| .str _ name => name == "Lean"
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| _ => true
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/-- Catalog all the non-internal and safe names -/
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@[export pantograph_environment_catalog]
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def env_catalog (env: Environment): Array Name := env.constants.fold (init := #[]) (λ acc name info =>
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match isNameInternal name || info.isUnsafe with
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| false => acc.push name
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| true => acc)
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@[export pantograph_environment_module_of_name]
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def module_of_name (env: Environment) (name: Name): Option Name := do
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let moduleId ← env.getModuleIdxFor? name
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return env.allImportedModuleNames.get! moduleId.toNat
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@[export pantograph_constant_info_is_unsafe_or_partial]
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def constantInfoIsUnsafeOrPartial (info: ConstantInfo): Bool := info.isUnsafe || info.isPartial
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@[export pantograph_constant_info_type]
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def constantInfoType (info: ConstantInfo): CoreM Expr := unfoldAuxLemmas info.type
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@[export pantograph_constant_info_value]
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def constantInfoValue (info: ConstantInfo): CoreM (Option Expr) := info.value?.mapM unfoldAuxLemmas
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def toCompactSymbolName (n: Name) (info: 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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| .thmInfo _ => "t"
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| .opaqueInfo _ => "o"
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| .quotInfo _ => "q"
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| .inductInfo _ => "i"
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| .ctorInfo _ => "c"
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| .recInfo _ => "r"
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s!"{pref}{toString n}"
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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 <| 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 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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def inspect (args: Protocol.EnvInspect) (options: @&Protocol.Options): CoreM (Protocol.CR Protocol.EnvInspectResult) := do
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let env ← Lean.MonadEnv.getEnv
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let name := args.name.toName
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let info? := env.find? name
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let info ← match info? with
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| none => return .error $ Protocol.errorIndex s!"Symbol not found {args.name}"
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| some info => pure info
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let module? := env.getModuleIdxFor? name >>=
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(λ idx => env.allImportedModuleNames.get? idx.toNat) |>.map toString
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let value? := match args.value?, info with
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| .some true, _ => info.value?
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| .some false, _ => .none
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| .none, .defnInfo _ => info.value?
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| .none, _ => .none
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let type ← unfoldAuxLemmas info.type
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let value? ← value?.mapM (λ v => unfoldAuxLemmas v)
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-- Information common to all symbols
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let core := {
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type := ← (serializeExpression options type).run',
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isUnsafe := info.isUnsafe,
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value? := ← value?.mapM (λ v => serializeExpression 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
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then .some <| type.getUsedConstants.map (λ n => serializeName n)
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else .none,
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valueDependency? := if args.dependency?.getD false
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then value?.map (λ e =>
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e.getUsedConstants.filter (!isNameInternal ·) |>.map (λ n => serializeName n) )
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else .none,
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module? := module?
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}
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let result ← match info with
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| .inductInfo induct => pure { core with inductInfo? := .some {
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numParams := induct.numParams,
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numIndices := induct.numIndices,
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all := induct.all.toArray.map (·.toString),
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ctors := induct.ctors.toArray.map (·.toString),
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isRec := induct.isRec,
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isReflexive := induct.isReflexive,
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isNested := induct.isNested,
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} }
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| .ctorInfo ctor => pure { core with constructorInfo? := .some {
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induct := ctor.induct.toString,
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cidx := ctor.cidx,
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numParams := ctor.numParams,
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numFields := ctor.numFields,
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} }
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| .recInfo r => pure { core with recursorInfo? := .some {
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all := r.all.toArray.map (·.toString),
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numParams := r.numParams,
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numIndices := r.numIndices,
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numMotives := r.numMotives,
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numMinors := r.numMinors,
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rules := ← r.rules.toArray.mapM (λ rule => do
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pure {
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ctor := rule.ctor.toString,
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nFields := rule.nfields,
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rhs := ← (serializeExpression options rule.rhs).run',
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})
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k := r.k,
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} }
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| _ => pure core
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return .ok result
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def addDecl (args: Protocol.EnvAdd): CoreM (Protocol.CR Protocol.EnvAddResult) := do
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let env ← Lean.MonadEnv.getEnv
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let tvM: Elab.TermElabM (Except String (Expr × Expr)) := do
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let type ← match parseTerm env args.type with
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| .ok syn => do
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match ← elabTerm syn with
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| .error e => return .error e
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| .ok expr => pure expr
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| .error e => return .error e
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let value ← match parseTerm env args.value with
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| .ok syn => do
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try
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let expr ← Elab.Term.elabTerm (stx := syn) (expectedType? := .some type)
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Lean.Elab.Term.synthesizeSyntheticMVarsNoPostponing
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let expr ← instantiateMVars expr
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pure $ expr
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catch ex => return .error (← ex.toMessageData.toString)
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| .error e => return .error e
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pure $ .ok (type, value)
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let (type, value) ← match ← tvM.run' (ctx := {}) |>.run' with
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| .ok t => pure t
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| .error e => return .error $ Protocol.errorExpr e
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let constant := Lean.Declaration.defnDecl <| Lean.mkDefinitionValEx
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(name := args.name.toName)
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(levelParams := [])
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(type := type)
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(value := value)
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(hints := Lean.mkReducibilityHintsRegularEx 1)
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(safety := Lean.DefinitionSafety.safe)
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(all := [])
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let env' ← match env.addDecl (← getOptions) constant with
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| .error e => do
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let options ← Lean.MonadOptions.getOptions
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let desc ← (e.toMessageData options).toString
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return .error $ { error := "kernel", desc }
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| .ok env' => pure env'
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Lean.MonadEnv.modifyEnv (λ _ => env')
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return .ok {}
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end Pantograph.Environment
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