chore: Version 0.3 #136
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@ -42,6 +42,14 @@ structure CompilationStep where
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msgs : List Message
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trees : List Elab.InfoTree
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namespace CompilationStep
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@[export pantograph_frontend_compilation_step_message_strings_m]
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def messageStrings (step: CompilationStep) : IO (Array String) := do
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List.toArray <$> step.msgs.mapM (·.toString)
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end CompilationStep
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/--
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Process one command, returning a `CompilationStep` and
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@ -298,11 +298,18 @@ structure InvokedTactic where
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goalAfter: String
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tactic: String
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deriving Lean.ToJson
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structure FrontendProcessResult where
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structure CompilationUnit where
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-- String boundaries of compilation units
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units: List (Nat × Nat)
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boundary: (Nat × Nat)
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-- Tactic invocations
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invocations?: Option (List InvokedTactic) := .none
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goalStates?: Option (List (Nat × Array Goal)) := .none
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goalStateId?: Option Nat := .none
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goals: Array Goal := #[]
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messages: Array String := #[]
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deriving Lean.ToJson
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structure FrontendProcessResult where
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units: List CompilationUnit
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deriving Lean.ToJson
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abbrev CR α := Except InteractionError α
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43
Repl.lean
43
Repl.lean
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@ -216,35 +216,36 @@ def execute (command: Protocol.Command): MainM Lean.Json := do
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let env ← Lean.MonadEnv.getEnv
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pure <| .some env
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let (context, state) ← do Frontend.createContextStateFromFile file fileName env? {}
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let m := Frontend.mapCompilationSteps λ step => do
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let unitBoundary := (step.src.startPos.byteIdx, step.src.stopPos.byteIdx)
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let tacticInvocations ← if args.invocations then
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Frontend.collectTacticsFromCompilationStep step
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let frontendM := Frontend.mapCompilationSteps λ step => do
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let boundary := (step.src.startPos.byteIdx, step.src.stopPos.byteIdx)
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let invocations?: Option (List Protocol.InvokedTactic) ← if args.invocations then
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let invocations ← Frontend.collectTacticsFromCompilationStep step
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pure $ .some invocations
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else
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pure []
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pure .none
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let sorrys := if args.sorrys then
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Frontend.collectSorrys step
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else
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[]
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return (unitBoundary, tacticInvocations, sorrys)
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let li ← m.run context |>.run' state
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let units := li.map λ (unit, _, _) => unit
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let invocations? := if args.invocations then
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.some $ li.bind λ (_, invocations, _) => invocations
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else
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.none
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let goalStates? ← if args.sorrys then do
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let stateIds ← li.filterMapM λ (_, _, sorrys) => do
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if sorrys.isEmpty then
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return .none
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let messages ← step.messageStrings
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return (boundary, invocations?, sorrys, messages)
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let li ← frontendM.run context |>.run' state
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let units ← li.mapM λ (boundary, invocations?, sorrys, messages) => do
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let (goalStateId?, goals) ← if sorrys.isEmpty then do
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pure (.none, #[])
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else do
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let goalState ← runMetaInMainM $ Frontend.sorrysToGoalState sorrys
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let stateId ← newGoalState goalState
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let goals ← goalSerialize goalState options
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return .some (stateId, goals)
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pure $ .some stateIds
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else
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pure .none
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return .ok { units, invocations?, goalStates? }
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pure (.some stateId, goals)
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return {
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boundary,
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invocations?,
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goalStateId?,
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goals,
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messages,
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}
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return .ok { units }
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catch e =>
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return .error $ errorI "frontend" (← e.toMessageData.toString)
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@ -176,19 +176,21 @@ def test_frontend_process : Test :=
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("sorrys", .bool false),
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]
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({
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units := [(0, file.utf8ByteSize)],
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invocations? := .some [
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{
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goalBefore := "⊢ ∀ (p : Prop), p → p",
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goalAfter := goal1,
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tactic := "intro p h",
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},
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{
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goalBefore := goal1 ,
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goalAfter := "",
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tactic := "exact h",
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},
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]
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units := [{
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boundary := (0, file.utf8ByteSize),
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invocations? := .some [
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{
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goalBefore := "⊢ ∀ (p : Prop), p → p",
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goalAfter := goal1,
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tactic := "intro p h",
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},
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{
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goalBefore := goal1 ,
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goalAfter := "",
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tactic := "exact h",
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},
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]
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}],
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}: Protocol.FrontendProcessResult),
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]
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@ -212,13 +214,14 @@ def test_frontend_process_sorry : Test :=
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("sorrys", .bool true),
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]
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({
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units := [
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(0, solved.utf8ByteSize),
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(solved.utf8ByteSize, solved.utf8ByteSize + withSorry.utf8ByteSize),
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],
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goalStates? := [
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(0, #[goal1]),
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]
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units := [{
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boundary := (0, solved.utf8ByteSize),
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}, {
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boundary := (solved.utf8ByteSize, solved.utf8ByteSize + withSorry.utf8ByteSize),
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goalStateId? := .some 0,
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goals := #[goal1],
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messages := #["<anonymous>:2:0: warning: declaration uses 'sorry'\n"],
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}],
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}: Protocol.FrontendProcessResult),
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]
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