113 lines
4.2 KiB
Plaintext
113 lines
4.2 KiB
Plaintext
/- Integration test for the REPL
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-/
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import LSpec
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import Pantograph
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namespace Pantograph.Test.Integration
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open Pantograph
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def subroutine_named_step (name cmd: String) (payload: List (String × Lean.Json))
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(expected: Lean.Json): MainM LSpec.TestSeq := do
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let result ← execute { cmd := cmd, payload := Lean.Json.mkObj payload }
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return LSpec.test name (toString result = toString expected)
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def subroutine_step (cmd: String) (payload: List (String × Lean.Json))
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(expected: Lean.Json): MainM LSpec.TestSeq := subroutine_named_step cmd cmd payload expected
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def subroutine_runner (steps: List (MainM LSpec.TestSeq)): IO LSpec.TestSeq := do
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-- Setup the environment for execution
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let env ← Lean.importModules
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(imports := #[{module := Lean.Name.str .anonymous "Init", runtimeOnly := false }])
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(opts := {})
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(trustLevel := 1)
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let context: Context := {
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imports := ["Init"]
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}
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let coreContext: Lean.Core.Context := {
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currNamespace := Lean.Name.str .anonymous "Aniva"
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openDecls := [],
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fileName := "<Test>",
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fileMap := { source := "", positions := #[0], lines := #[1] },
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options := Lean.Options.empty
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}
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let commands: MainM LSpec.TestSeq :=
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steps.foldlM (λ suite step => do
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let result ← step
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return suite ++ result) LSpec.TestSeq.done
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try
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let termElabM := commands.run context |>.run' {}
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let metaM := termElabM.run' (ctx := {
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declName? := some "_pantograph",
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errToSorry := false
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})
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let coreM := metaM.run'
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return Prod.fst $ (← coreM.toIO coreContext { env := env })
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catch ex =>
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return LSpec.check s!"Uncaught IO exception: {ex.toString}" false
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def test_option_modify : IO LSpec.TestSeq :=
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let pp? := Option.some "∀ (n : Nat), n + 1 = Nat.succ n"
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let sexp? := Option.some "(:forall n (:c Nat) ((((:c Eq) (:c Nat)) (((((((:c HAdd.hAdd) (:c Nat)) (:c Nat)) (:c Nat)) (((:c instHAdd) (:c Nat)) (:c instAddNat))) 0) ((((:c OfNat.ofNat) (:c Nat)) (:lit 1)) ((:c instOfNatNat) (:lit 1))))) ((:c Nat.succ) 0)))"
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let module? := Option.some "Init.Data.Nat.Basic"
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let options: Protocol.Options := {}
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subroutine_runner [
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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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Protocol.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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Protocol.OptionsSetResult)),
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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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Protocol.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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Protocol.OptionsPrintResult))
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]
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def test_malformed_command : IO LSpec.TestSeq :=
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let invalid := "invalid"
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subroutine_runner [
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subroutine_named_step "Invalid command" invalid
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[("name", .str "Nat.add_one")]
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(Lean.toJson ({
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error := "command", desc := s!"Unknown command {invalid}"}:
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Protocol.InteractionError)),
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subroutine_named_step "JSON Deserialization" "expr.echo"
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[(invalid, .str "Random garbage data")]
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(Lean.toJson ({
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error := "command", desc := s!"Unable to parse json: Pantograph.Protocol.ExprEcho.expr: String expected"}:
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Protocol.InteractionError))
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]
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def test_tactic : IO LSpec.TestSeq :=
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let goal: Protocol.Goal := {
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target := { pp? := .some "∀ (q : Prop), x ∨ q → q ∨ x" },
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vars := #[{ name := "_uniq.9", userName := "x", isInaccessible? := .some false, type? := .some { pp? := .some "Prop" }}],
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}
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subroutine_runner [
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subroutine_step "goal.start"
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[("expr", .str "∀ (p q: Prop), p ∨ q → q ∨ p")]
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(Lean.toJson ({stateId := 0}:
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Protocol.GoalStartResult)),
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subroutine_step "goal.tactic"
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[("stateId", .num 0), ("goalId", .num 0), ("tactic", .str "intro x")]
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(Lean.toJson ({
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nextStateId? := .some 1,
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goals? := #[goal],
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}:
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Protocol.GoalTacticResult))
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]
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def suite: IO LSpec.TestSeq := do
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return LSpec.group "Integration" $
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(LSpec.group "Option modify" (← test_option_modify)) ++
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(LSpec.group "Malformed command" (← test_malformed_command)) ++
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(LSpec.group "Tactic" (← test_tactic))
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end Pantograph.Test.Integration
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