chore: Version 0.3 #136
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@ -22,14 +22,6 @@ abbrev MainM := ReaderT Context (StateT State Lean.CoreM)
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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 runMetaM { α } (metaM: Lean.MetaM α): Lean.CoreM α :=
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metaM.run'
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def runTermElabM { α } (termElabM: Lean.Elab.TermElabM α): Lean.CoreM α :=
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termElabM.run' (ctx := {
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declName? := .none,
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errToSorry := false,
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}) |>.run'
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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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@ -57,9 +49,6 @@ def execute (command: Protocol.Command): MainM Lean.Json := do
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errorCommand s!"Unknown command {cmd}"
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return Lean.toJson error
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where
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errorI (type desc: String): Protocol.InteractionError := { error := type, desc := desc }
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errorCommand := errorI "command"
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errorIndex := errorI "index"
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-- Command Functions
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reset (_: Protocol.Reset): MainM (CR Protocol.StatResult) := do
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let state ← get
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@ -80,22 +69,7 @@ def execute (command: Protocol.Command): MainM Lean.Json := do
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Environment.addDecl args
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expr_echo (args: Protocol.ExprEcho): MainM (CR Protocol.ExprEchoResult) := do
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let state ← get
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let env ← Lean.MonadEnv.getEnv
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let syn ← 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 => pure syn
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runTermElabM (do
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match ← 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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let type ← Lean.Meta.inferType expr
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return .ok {
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type := (← serialize_expression (options := state.options) type),
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expr := (← serialize_expression (options := state.options) expr)
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}
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catch exception =>
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return .error $ errorI "typing" (← exception.toMessageData.toString))
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exprEcho args state.options
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options_set (args: Protocol.OptionsSet): MainM (CR Protocol.OptionsSetResult) := do
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let state ← get
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let options := state.options
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@ -3,7 +3,6 @@ import Pantograph.Environment
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import Pantograph.Protocol
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import Lean
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namespace Lean
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/-- This is better than the default version since it handles `.` and doesn't
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@ -35,6 +34,18 @@ end Lean
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namespace Pantograph
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def runMetaM { α } (metaM: Lean.MetaM α): Lean.CoreM α :=
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metaM.run'
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def runTermElabM { α } (termElabM: Lean.Elab.TermElabM α): Lean.CoreM α :=
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termElabM.run' (ctx := {
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declName? := .none,
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errToSorry := false,
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}) |>.run'
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def errorI (type desc: String): Protocol.InteractionError := { error := type, desc := desc }
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def errorCommand := errorI "command"
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def errorIndex := errorI "index"
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@[export pantograph_version]
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def pantographVersion: String := version
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@ -67,10 +78,50 @@ def createCoreState (imports: Array String): IO Lean.Core.State := do
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(trustLevel := 1)
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return { env := env }
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@[export pantograph_catalog]
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def catalog (cc: Lean.Core.Context) (cs: Lean.Core.State): IO Protocol.EnvCatalogResult := do
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@[export pantograph_env_catalog]
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def envCatalog (cc: Lean.Core.Context) (cs: Lean.Core.State): IO Protocol.EnvCatalogResult := do
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let coreM: Lean.CoreM _ := Environment.catalog ({}: Protocol.EnvCatalog)
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let (result, _) ← coreM.toIO cc cs
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return result
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@[export pantograph_env_inspect]
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def envInspect (cc: Lean.Core.Context) (cs: Lean.Core.State)
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(name: String) (value: Bool) (dependency: Bool) (options: Protocol.Options): IO (Protocol.CR Protocol.EnvInspectResult) := do
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let coreM: Lean.CoreM _ := Environment.inspect ({
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name, value? := .some value, dependency?:= .some dependency
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}: Protocol.EnvInspect) options
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let (result, _) ← coreM.toIO cc cs
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return result
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@[export pantograph_env_add]
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def envAdd (cc: Lean.Core.Context) (cs: Lean.Core.State)
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(name: String) (type: String) (value: String) (isTheorem: Bool): IO (Protocol.CR Protocol.EnvAddResult) := do
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let coreM: Lean.CoreM _ := Environment.addDecl { name, type, value, isTheorem }
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let (result, _) ← coreM.toIO cc cs
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return result
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def exprEcho (args: Protocol.ExprEcho) (options: @&Protocol.Options): Lean.CoreM (Protocol.CR Protocol.ExprEchoResult) := do
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let env ← Lean.MonadEnv.getEnv
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let syn ← 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 => pure syn
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runTermElabM (do
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match ← 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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let type ← Lean.Meta.inferType expr
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return .ok {
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type := (← serialize_expression options type),
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expr := (← serialize_expression options expr)
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}
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catch exception =>
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return .error $ errorI "typing" (← exception.toMessageData.toString))
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@[export pantograph_expr_echo]
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def exprEchoExport (cc: Lean.Core.Context) (cs: Lean.Core.State) (expr: String) (options: @&Protocol.Options): IO (Protocol.CR Protocol.ExprEchoResult) := do
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let coreM: Lean.CoreM _ := exprEcho { expr } options
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let (result, _) ← coreM.toIO cc cs
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return result
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end Pantograph
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@ -163,7 +163,7 @@ structure EnvAdd where
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name: String
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type: String
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value: String
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isTheorem?: Bool
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isTheorem: Bool
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deriving Lean.FromJson
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structure EnvAddResult where
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deriving Lean.ToJson
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@ -157,7 +157,7 @@ partial def serialize_expression_ast (expr: Expr) (sanitize: Bool := true): Meta
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| .instImplicit => " :instImplicit"
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of_name (name: Name) := name_to_ast name sanitize
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def serialize_expression (options: Protocol.Options) (e: Expr): MetaM Protocol.Expression := do
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def serialize_expression (options: @&Protocol.Options) (e: Expr): MetaM Protocol.Expression := do
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let pp := toString (← Meta.ppExpr e)
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let pp?: Option String := match options.printExprPretty with
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| true => .some pp
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