Add compressed json print option; Rearrange commands into hierarchy
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@ -8,15 +8,20 @@ import Pantograph
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open Pantograph
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unsafe def loop : MainM Unit := do
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let state ← get
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let command ← (← IO.getStdin).getLine
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if command.trim.length = 0 then return ()
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match parse_command command with
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| .error error =>
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let error := Lean.toJson ({ error := "json", desc := error }: Commands.InteractionError)
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IO.println (toString error)
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-- Using `Lean.Json.compress` here to prevent newline
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IO.println error.compress
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| .ok command =>
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let ret ← execute command
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IO.println <| toString <| ret
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let str := match state.options.printJsonPretty with
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| true => ret.pretty
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| false => ret.compress
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IO.println str
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loop
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namespace Lean
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@ -44,12 +44,12 @@ def execute (command: Commands.Command): MainM Lean.Json := do
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| .error ierror => return Lean.toJson ierror
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| .error error => pure $ error
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match command.cmd with
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| "reset" => run reset
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| "expr.echo" => run expr_echo
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| "lib.catalog" => run lib_catalog
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| "lib.inspect" => run lib_inspect
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| "options.set" => run options_set
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| "options.print" => run options_print
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| "catalog" => run catalog
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| "inspect" => run inspect
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| "clear" => run clear
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| "expr.echo" => run expr_echo
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| "proof.start" => run proof_start
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| "proof.tactic" => run proof_tactic
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| "proof.printTree" => run proof_print_tree
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@ -61,30 +61,19 @@ def execute (command: Commands.Command): MainM Lean.Json := do
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errorI (type desc: String): Commands.InteractionError := { error := type, desc := desc }
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errorIndex := errorI "index"
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-- Command Functions
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options_set (args: Commands.OptionsSet): MainM (CR Commands.OptionsSetResult) := do
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reset (_: Commands.Reset): MainM (CR Commands.ResetResult) := do
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let state ← get
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let options := state.options
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set { state with
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options := {
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-- FIXME: This should be replaced with something more elegant
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printExprPretty := args.printExprPretty?.getD options.printExprPretty,
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printExprAST := args.printExprAST?.getD options.printExprAST,
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proofVariableDelta := args.proofVariableDelta?.getD options.proofVariableDelta,
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printAuxDecls := args.printAuxDecls?.getD options.printAuxDecls,
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printImplementationDetailHyps := args.printImplementationDetailHyps?.getD options.printImplementationDetailHyps
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}
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}
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return .ok { }
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options_print (_: Commands.OptionsPrint): MainM (CR Commands.OptionsPrintResult) := do
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return .ok (← get).options
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catalog (_: Commands.Catalog): MainM (CR Commands.CatalogResult) := do
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let nTrees := state.proofTrees.size
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set { state with proofTrees := #[] }
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return .ok { nTrees := nTrees }
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lib_catalog (_: Commands.LibCatalog): MainM (CR Commands.LibCatalogResult) := 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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| .some x => acc.push x
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| .none => acc)
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return .ok { symbols := names }
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inspect (args: Commands.Inspect): MainM (CR Commands.InspectResult) := do
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lib_inspect (args: Commands.LibInspect): MainM (CR Commands.LibInspectResult) := do
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let state ← get
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let env ← Lean.MonadEnv.getEnv
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let name := str_to_name args.name
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@ -104,11 +93,6 @@ def execute (command: Commands.Command): MainM Lean.Json := do
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value? := ← value?.mapM (λ v => serialize_expression state.options v),
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module? := module?
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}
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clear (_: Commands.Clear): MainM (CR Commands.ClearResult) := do
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let state ← get
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let nTrees := state.proofTrees.size
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set { state with proofTrees := #[] }
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return .ok { nTrees := nTrees }
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expr_echo (args: Commands.ExprEcho): MainM (CR Commands.ExprEchoResult) := do
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let state ← get
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let env ← Lean.MonadEnv.getEnv
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@ -126,6 +110,23 @@ def execute (command: Commands.Command): MainM Lean.Json := do
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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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options_set (args: Commands.OptionsSet): MainM (CR Commands.OptionsSetResult) := do
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let state ← get
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let options := state.options
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set { state with
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options := {
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-- FIXME: This should be replaced with something more elegant
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printJsonPretty := args.printJsonPretty?.getD options.printJsonPretty,
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printExprPretty := args.printExprPretty?.getD options.printExprPretty,
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printExprAST := args.printExprAST?.getD options.printExprAST,
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proofVariableDelta := args.proofVariableDelta?.getD options.proofVariableDelta,
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printAuxDecls := args.printAuxDecls?.getD options.printAuxDecls,
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printImplementationDetailHyps := args.printImplementationDetailHyps?.getD options.printImplementationDetailHyps
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}
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}
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return .ok { }
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options_print (_: Commands.OptionsPrint): MainM (CR Commands.OptionsPrintResult) := do
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return .ok (← get).options
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proof_start (args: Commands.ProofStart): MainM (CR Commands.ProofStartResult) := do
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let state ← get
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let env ← Lean.MonadEnv.getEnv
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@ -11,6 +11,9 @@ namespace Pantograph.Commands
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/-- Main Option structure, placed here to avoid name collision -/
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structure Options where
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-- When false, suppress newlines in Json objects. Useful for machine-to-machine interaction.
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-- This should be false` by default to avoid any surprises with parsing.
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printJsonPretty: Bool := false
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-- When enabled, pretty print every expression
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printExprPretty: Bool := true
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-- When enabled, print the raw AST of expressions
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@ -74,45 +77,10 @@ structure InteractionError where
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--- Individual command and return types ---
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/-- Set options; See `Options` struct above for meanings -/
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structure OptionsSet where
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printExprPretty?: Option Bool
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printExprAST?: Option Bool
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proofVariableDelta?: Option Bool
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printAuxDecls?: Option Bool
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printImplementationDetailHyps?: Option Bool
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deriving Lean.FromJson
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structure OptionsSetResult where
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deriving Lean.ToJson
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structure OptionsPrint where
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structure Reset where
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deriving Lean.FromJson
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abbrev OptionsPrintResult := Options
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-- Print all symbols in environment
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structure Catalog where
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deriving Lean.FromJson
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structure CatalogResult where
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symbols: Array String
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deriving Lean.ToJson
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-- Print the type of a symbol
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structure Inspect where
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name: String
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-- If true/false, show/hide the value expressions; By default definitions
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-- values are shown and theorem values are hidden.
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value?: Option Bool := .some false
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deriving Lean.FromJson
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structure InspectResult where
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type: Expression
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value?: Option Expression := .none
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module?: Option String
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deriving Lean.ToJson
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structure Clear where
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deriving Lean.FromJson
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structure ClearResult where
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structure ResetResult where
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nTrees: Nat
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deriving Lean.ToJson
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@ -125,6 +93,40 @@ structure ExprEchoResult where
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type: Expression
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deriving Lean.ToJson
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-- Print all symbols in environment
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structure LibCatalog where
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deriving Lean.FromJson
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structure LibCatalogResult where
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symbols: Array String
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deriving Lean.ToJson
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-- Print the type of a symbol
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structure LibInspect where
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name: String
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-- If true/false, show/hide the value expressions; By default definitions
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-- values are shown and theorem values are hidden.
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value?: Option Bool := .some false
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deriving Lean.FromJson
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structure LibInspectResult where
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type: Expression
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value?: Option Expression := .none
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module?: Option String
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deriving Lean.ToJson
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/-- Set options; See `Options` struct above for meanings -/
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structure OptionsSet where
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printJsonPretty?: Option Bool
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printExprPretty?: Option Bool
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printExprAST?: Option Bool
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proofVariableDelta?: Option Bool
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printAuxDecls?: Option Bool
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printImplementationDetailHyps?: Option Bool
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deriving Lean.FromJson
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structure OptionsSetResult where
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deriving Lean.ToJson
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structure OptionsPrint where
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deriving Lean.FromJson
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abbrev OptionsPrintResult := Options
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structure ProofStart where
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name: Option String -- Identifier of the proof
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-- Only one of the fields below may be populated.
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@ -134,7 +136,6 @@ structure ProofStart where
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structure ProofStartResult where
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treeId: Nat := 0 -- Proof tree id
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deriving Lean.ToJson
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structure ProofTactic where
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-- Identifiers for tree, state, and goal
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treeId: Nat
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-- Existence of this field shows failure
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tacticErrors?: Option (Array String) := .none
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deriving Lean.ToJson
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structure ProofPrintTree where
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treeId: Nat
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deriving Lean.FromJson
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@ -1,5 +1,5 @@
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namespace Pantograph
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def version := "0.2.1"
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def version := "0.2.2"
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end Pantograph
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20
README.md
20
README.md
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@ -42,13 +42,13 @@ also accept lean options of the form `--key=value` e.g. `--pp.raw=true`.
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Example: (~5k symbols)
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```
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$ build/bin/Pantograph Init
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catalog
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inspect {"name": "Nat.le_add_left"}
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lib.catalog
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lib.inspect {"name": "Nat.le_add_left"}
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```
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Example with `mathlib4` (~90k symbols, may stack overflow, see troubleshooting)
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```
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$ lake env build/bin/Pantograph Mathlib.Analysis.Seminorm
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catalog
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lib.catalog
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```
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Example proving a theorem: (alternatively use `proof.start {"copyFrom": "Nat.add_comm"}`) to prime the proof
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```
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@ -65,15 +65,15 @@ where the application of `assumption` should lead to a failure.
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## Commands
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See `Pantograph/Commands.lean` for a description of the parameters and return values in Json.
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- `options.set { key: value, ... }`: Set one or more options (not Lean options; those
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have to be set via command line arguments.)
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- `options.print`: Display the current set of options
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- `catalog`: Display a list of all safe Lean symbols in the current context
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- `inspect {"name": <name>, "value": <bool>}`: Show the type and package of a
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- `reset`: Delete all cached expressions and proof trees
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- `expr.echo {"expr": <expr>}`: Determine the type of an expression and round-trip it
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- `lib.catalog`: Display a list of all safe Lean symbols in the current context
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- `lib.inspect {"name": <name>, "value": <bool>}`: Show the type and package of a
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given symbol; If value flag is set, the value is printed or hidden. By default
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only the values of definitions are printed.
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- `clear`: Delete all cached expressions and proof trees
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- `expr.echo {"expr": <expr>}`: Determine the type of an expression and round-trip it
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- `options.set { key: value, ... }`: Set one or more options (not Lean options; those
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have to be set via command line arguments.), for options, see `Pantograph/Commands.lean`
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- `options.print`: Display the current set of options
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- `proof.start {["name": <name>], ["expr": <expr>], ["copyFrom": <symbol>]}`: Start a new proof state from a given expression or symbol
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- `proof.tactic {"treeId": <id>, "stateId": <id>, "goalId": <id>, "tactic": string}`: Execute a tactic on a given proof state
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- `proof.printTree {"treeId": <id>}`: Print the topological structure of a proof tree
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@ -47,20 +47,20 @@ def test_option_print : IO LSpec.TestSeq :=
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let module? := Option.some "Init.Data.Nat.Basic"
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let options: Commands.Options := {}
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subroutine_runner [
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subroutine_step "inspect"
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subroutine_step "lib.inspect"
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[("name", .str "Nat.add_one")]
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(Lean.toJson ({
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type := { pp? }, module? }:
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Commands.InspectResult)),
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Commands.LibInspectResult)),
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subroutine_step "options.set"
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[("printExprAST", .bool true)]
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(Lean.toJson ({ }:
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Commands.OptionsSetResult)),
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subroutine_step "inspect"
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subroutine_step "lib.inspect"
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[("name", .str "Nat.add_one")]
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(Lean.toJson ({
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type := { pp?, sexp? }, module? }:
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Commands.InspectResult)),
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Commands.LibInspectResult)),
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subroutine_step "options.print"
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[]
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(Lean.toJson ({ options with printExprAST := true }:
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