Merge branch 'dev' into frontend/refactor
This commit is contained in:
commit
a7ce9ed2a4
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@ -6,7 +6,6 @@ All the functions starting with `try` resume their inner monadic state.
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import Pantograph.Tactic
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import Lean
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namespace Pantograph
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open Lean
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@ -141,8 +140,7 @@ protected def GoalState.withRootContext { n } [MonadControlT MetaM n] [Monad n]
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private def restoreCoreMExtra (state : Core.SavedState) : CoreM Unit :=
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let { nextMacroScope, ngen, .. } := state
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modifyGetThe Core.State (fun st => ((),
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{ st with nextMacroScope, ngen }))
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modifyThe Core.State ({ · with nextMacroScope, ngen })
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-- Restore the name generator and macro scopes of the core state
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protected def GoalState.restoreCoreMExtra (state: GoalState): CoreM Unit :=
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restoreCoreMExtra state.coreState
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@ -152,9 +150,6 @@ protected def GoalState.restoreMetaM (state: GoalState): MetaM Unit := do
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protected def GoalState.restoreElabM (state: GoalState): Elab.TermElabM Unit := do
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state.restoreCoreMExtra
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state.savedState.term.restore
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private def GoalState.restoreTacticM (state: GoalState) (goal: MVarId): Elab.Tactic.TacticM Unit := do
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state.restoreElabM
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Elab.Tactic.setGoals [goal]
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/--
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Brings into scope a list of goals. User must ensure `goals` are distinct.
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@ -469,7 +464,7 @@ protected def GoalState.step (state : GoalState) (site : Site) (tacticM : Elab.T
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: Elab.TermElabM GoalState :=
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Prod.snd <$> GoalState.step' state site tacticM guardMVarErrors
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/-- Response for executing a tactic -/
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/-- Result for executing a tactic, capturing errors in the process -/
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inductive TacticResult where
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-- Goes to next state
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| success (state : GoalState) (messages : Array Message)
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@ -480,40 +475,35 @@ inductive TacticResult where
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-- The given action cannot be executed in the state
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| invalidAction (message : String)
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private def dumpMessageLog (prevMessageLength : Nat := 0) : CoreM (Bool × List Message) := do
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private def dumpMessageLog (prevMessageLength : Nat := 0) : CoreM (List Message) := do
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let newMessages := (← Core.getMessageLog).toList.drop prevMessageLength
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let hasErrors := newMessages.any (·.severity == .error)
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Core.resetMessageLog
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return (hasErrors, newMessages)
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return newMessages
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/-- Execute a `TermElabM` producing a goal state, capturing the error and turn it into a `TacticResult` -/
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def withCapturingError (elabM : Elab.Term.TermElabM GoalState) : Elab.TermElabM TacticResult := do
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let messageLog ← Core.getMessageLog
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unless messageLog.toList.isEmpty do
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IO.eprintln s!"{← messageLog.toList.mapM (·.toString)}"
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assert! messageLog.toList.isEmpty
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throwError "Message log must be empty at the beginning."
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try
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let state ← elabM
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-- Check if error messages have been generated in the core.
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let (hasError, newMessages) ← dumpMessageLog
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if hasError then
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let newMessages ← dumpMessageLog
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let hasErrors := newMessages.any (·.severity == .error)
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if hasErrors then
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return .failure newMessages.toArray
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else
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return .success state newMessages.toArray
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catch exception =>
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match exception with
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| .internal _ =>
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let (_, messages) ← dumpMessageLog
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return .failure messages.toArray
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| _ =>
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let (_, messages) ← dumpMessageLog
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let message := {
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fileName := ← getFileName,
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pos := ← getRefPosition,
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data := exception.toMessageData,
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}
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return .failure (message :: messages).toArray
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let messages ← dumpMessageLog
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let message := {
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fileName := ← getFileName,
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pos := ← getRefPosition,
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data := exception.toMessageData,
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}
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return .failure (message :: messages).toArray
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/-- Executes a `TacticM` monad on this `GoalState`, collecting the errors as necessary -/
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protected def GoalState.tryTacticM
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@ -257,13 +257,16 @@ structure GoalTactic where
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autoResume?: Option Bool := .none
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-- One of the fields here must be filled
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tactic?: Option String := .none
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mode?: Option String := .none -- Changes the current category to {"tactic", "calc", "conv"}
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-- Changes the current category to {"tactic", "calc", "conv"}
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mode?: Option String := .none
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-- Assigns an expression to the current goal
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expr?: Option String := .none
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have?: Option String := .none
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let?: Option String := .none
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draft?: Option String := .none
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-- In case of the `have` tactic, the new free variable name is provided here
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-- In case of the `have` and `let` tactics, the new free variable name is
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-- provided here
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binderName?: Option String := .none
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deriving Lean.FromJson
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@ -352,8 +352,8 @@ def test_tactic_failure_synthesize_placeholder : TestM Unit := do
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-- buildGoal [("p", "Prop"), ("q", "Prop"), ("r", "Prop"), ("h", "p → q")] "p ∧ r"
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--]
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let .failure #[message] ← state1.tacticOn 0 tactic
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| addTest $ assertUnreachable s!"{tactic} should fail"
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let .failure #[_head, message] ← state1.tacticOn 0 tactic
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| addTest $ assertUnreachable s!"{tactic} should fail with 2 messages"
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checkEq s!"{tactic} fails" (← message.toString)
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s!"{← getFileName}:0:31: error: don't know how to synthesize placeholder\ncontext:\np q r : Prop\nh : p → q\n⊢ p ∧ r\n"
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@ -14,14 +14,14 @@ def dissect (args : List String) : IO UInt32 := do
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let fileName :: _args := args | fail s!"Must supply a file name"
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let file ← IO.FS.readFile fileName
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let (context, state) ← do Frontend.createContextStateFromFile file fileName (env? := .none) {}
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let frontendM: Elab.Frontend.FrontendM _ :=
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let frontendM: Frontend.FrontendM _ :=
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Frontend.mapCompilationSteps λ step => do
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IO.println s!"🐈 {step.stx.getKind.toString}"
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for (tree, i) in step.trees.zipIdx do
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IO.println s!"🌲[{i}] {← tree.toString}"
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for (msg, i) in step.msgs.zipIdx do
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IO.println s!"🔈[{i}] {← msg.toString}"
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let (_, _) ← frontendM.run context |>.run state
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let (_, _) ← frontendM.run {} |>.run context |>.run state
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return 0
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end Pantograph
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26
flake.lock
26
flake.lock
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@ -5,11 +5,11 @@
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"nixpkgs-lib": "nixpkgs-lib"
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},
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"locked": {
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"lastModified": 1749398372,
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"narHash": "sha256-tYBdgS56eXYaWVW3fsnPQ/nFlgWi/Z2Ymhyu21zVM98=",
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"lastModified": 1751413152,
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"narHash": "sha256-Tyw1RjYEsp5scoigs1384gIg6e0GoBVjms4aXFfRssQ=",
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"owner": "hercules-ci",
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"repo": "flake-parts",
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"rev": "9305fe4e5c2a6fcf5ba6a3ff155720fbe4076569",
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"rev": "77826244401ea9de6e3bac47c2db46005e1f30b5",
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"type": "github"
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},
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"original": {
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@ -42,11 +42,11 @@
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"nixpkgs": "nixpkgs"
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},
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"locked": {
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"lastModified": 1750369222,
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"narHash": "sha256-KFFTVbciXUaHgeGN1yiaUtY88OLGU0gElXx5SfICDKg=",
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"lastModified": 1751390929,
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"narHash": "sha256-Wl2miy8PhNF6ue3R1ssQbsVK3foJ37tYtznNq/i14YM=",
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"owner": "lenianiva",
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"repo": "lean4-nix",
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"rev": "015ecd25206734d582a1b15dd11eb10be35ca555",
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"rev": "68a07e4af5e2e56276056b172e046a2276d21aee",
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"type": "github"
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},
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"original": {
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@ -73,11 +73,11 @@
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},
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"nixpkgs-lib": {
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"locked": {
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"lastModified": 1748740939,
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"narHash": "sha256-rQaysilft1aVMwF14xIdGS3sj1yHlI6oKQNBRTF40cc=",
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"lastModified": 1751159883,
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"narHash": "sha256-urW/Ylk9FIfvXfliA1ywh75yszAbiTEVgpPeinFyVZo=",
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"owner": "nix-community",
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"repo": "nixpkgs.lib",
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"rev": "656a64127e9d791a334452c6b6606d17539476e2",
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"rev": "14a40a1d7fb9afa4739275ac642ed7301a9ba1ab",
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"type": "github"
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},
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"original": {
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@ -100,16 +100,16 @@
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},
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"nixpkgs_2": {
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"locked": {
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"lastModified": 1751048012,
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"narHash": "sha256-MYbotu4UjWpTsq01wglhN5xDRfZYLFtNk7SBY0BcjkU=",
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"lastModified": 1751943650,
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"narHash": "sha256-7orTnNqkGGru8Je6Un6mq1T8YVVU/O5kyW4+f9C1mZQ=",
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"owner": "nixos",
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"repo": "nixpkgs",
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"rev": "a684c58d46ebbede49f280b653b9e56100aa3877",
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"rev": "88983d4b665fb491861005137ce2b11a9f89f203",
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"type": "github"
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},
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"original": {
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"owner": "nixos",
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"ref": "nixos-24.11",
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"ref": "nixos-25.05",
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"repo": "nixpkgs",
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"type": "github"
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}
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25
flake.nix
25
flake.nix
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@ -2,7 +2,7 @@
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description = "Pantograph";
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inputs = {
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nixpkgs.url = "github:nixos/nixpkgs/nixos-24.11";
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nixpkgs.url = "github:nixos/nixpkgs/nixos-25.05";
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flake-parts.url = "github:hercules-ci/flake-parts";
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lean4-nix.url = "github:lenianiva/lean4-nix";
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};
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@ -45,10 +45,6 @@
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./Pantograph.lean
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(fileFilter (file: file.hasExt "lean") ./Pantograph)
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];
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set-repl = unions [
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./Main.lean
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./Repl.lean
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];
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set-test = unions [
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(fileFilter (file: file.hasExt "lean") ./Test)
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];
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@ -62,14 +58,22 @@
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root = src;
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fileset = unions [
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set-project
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set-repl
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./Main.lean
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./Repl.lean
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];
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};
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src-tomograph = toSource {
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root = src;
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fileset = unions [
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set-project
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./Tomograph.lean
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];
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};
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src-test = toSource {
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root = src;
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fileset = unions [
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set-project
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set-repl
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./Repl.lean
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set-test
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];
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};
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deps = [project];
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src = src-repl;
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};
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tomograph = pkgs.lean.buildLeanPackage {
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name = "tomograph";
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roots = ["Tomograph"];
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deps = [project];
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src = src-tomograph;
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};
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test = pkgs.lean.buildLeanPackage {
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name = "Test";
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# NOTE: The src directory must be ./. since that is where the import
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@ -98,6 +108,7 @@
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inherit (pkgs.lean) lean lean-all;
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inherit (project) sharedLib iTree;
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inherit (repl) executable;
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tomograph = tomograph.executable;
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default = repl.executable;
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};
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legacyPackages = {
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@ -18,7 +18,6 @@ lean_exe repl {
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supportInterpreter := true
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}
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@[default_target]
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lean_exe tomograph {
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root := `Tomograph
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-- Solves the native symbol not found problem
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