b653996aae
Add big_map case in the uncompiler which takes the original big_map and apply the returned diff Add input_to_value option which compiles input expressions to mini_c.values
169 lines
5.7 KiB
OCaml
169 lines
5.7 KiB
OCaml
open! Trace
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type test_case = unit Alcotest.test_case
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type test =
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| Test_suite of (string * test list)
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| Test of test_case
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let wrap_test name f =
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let result =
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trace (error (thunk "running test") (thunk name)) @@
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f () in
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match result with
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| Ok ((), annotations) -> ignore annotations; ()
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| Error err ->
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Format.printf "%a\n%!" Ligo.Display.error_pp (err ()) ;
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raise Alcotest.Test_error
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let wrap_test_raw f =
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match f () with
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| Trace.Ok ((), annotations) -> ignore annotations; ()
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| Error err ->
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Format.printf "%a\n%!" Ligo.Display.error_pp (err ())
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let test name f =
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Test (
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Alcotest.test_case name `Quick @@ fun () ->
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wrap_test name f
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)
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let test_suite name lst = Test_suite (name , lst)
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open Ast_simplified.Combinators
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let expect ?input_to_value ?options program entry_point input expecter =
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let%bind result =
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let run_error =
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let title () = "expect run" in
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let content () = Format.asprintf "Entry_point: %s" entry_point in
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error title content in
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trace run_error @@
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Ligo.Run.run_simplityped ?input_to_value ~debug_michelson:true ?options program entry_point input in
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expecter result
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let expect_fail ?options program entry_point input =
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let run_error =
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let title () = "expect run" in
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let content () = Format.asprintf "Entry_point: %s" entry_point in
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error title content
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in
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trace run_error @@
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Assert.assert_fail
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@@ Ligo.Run.run_simplityped ~debug_michelson:true ?options program entry_point input
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let expect_eq ?input_to_value ?options program entry_point input expected =
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let expecter = fun result ->
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let expect_error =
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let title () = "expect result" in
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let content () = Format.asprintf "Expected %a, got %a"
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Ast_simplified.PP.expression expected
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Ast_simplified.PP.expression result in
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error title content in
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trace expect_error @@
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Ast_simplified.Misc.assert_value_eq (expected , result) in
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expect ?input_to_value ?options program entry_point input expecter
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let expect_evaluate program entry_point expecter =
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let error =
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let title () = "expect evaluate" in
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let content () = Format.asprintf "Entry_point: %s" entry_point in
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error title content in
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trace error @@
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let%bind result = Ligo.Run.evaluate_simplityped ~debug_mini_c:true ~debug_michelson:true program entry_point in
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expecter result
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let expect_eq_evaluate program entry_point expected =
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let expecter = fun result ->
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Ast_simplified.Misc.assert_value_eq (expected , result) in
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expect_evaluate program entry_point expecter
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let expect_n_aux ?options lst program entry_point make_input make_expecter =
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let aux n =
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let input = make_input n in
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let expecter = make_expecter n in
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trace (simple_error ("expect_n " ^ (string_of_int n))) @@
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let result = expect ?options program entry_point input expecter in
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result
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in
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let%bind _ = bind_map_list aux lst in
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ok ()
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let expect_eq_n_aux ?input_to_value ?options lst program entry_point make_input make_expected =
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let aux n =
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let input = make_input n in
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let expected = make_expected n in
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trace (simple_error ("expect_eq_n " ^ (string_of_int n))) @@
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let result = expect_eq ?input_to_value ?options program entry_point input expected in
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result
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in
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let%bind _ = bind_map_list_seq aux lst in
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ok ()
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let expect_eq_n ?input_to_value ?options = expect_eq_n_aux ?input_to_value ?options [0 ; 1 ; 2 ; 42 ; 163 ; -1]
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let expect_eq_n_pos ?input_to_value ?options = expect_eq_n_aux ?input_to_value ?options [0 ; 1 ; 2 ; 42 ; 163]
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let expect_eq_n_strict_pos ?input_to_value ?options = expect_eq_n_aux ?input_to_value ?options [2 ; 42 ; 163]
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let expect_eq_n_pos_small ?input_to_value ?options = expect_eq_n_aux ?input_to_value ?options [0 ; 1 ; 2 ; 10]
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let expect_eq_n_strict_pos_small ?input_to_value ?options = expect_eq_n_aux ?input_to_value ?options [1 ; 2 ; 10]
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let expect_eq_n_pos_mid ?input_to_value = expect_eq_n_aux ?input_to_value [0 ; 1 ; 2 ; 10 ; 33]
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let expect_n_pos_small ?options = expect_n_aux ?options [0 ; 2 ; 10]
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let expect_n_strict_pos_small ?options = expect_n_aux ?options [2 ; 10]
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let expect_eq_b program entry_point make_expected =
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let aux b =
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let input = e_bool b in
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let expected = make_expected b in
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expect_eq program entry_point input expected
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in
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let%bind _ = bind_map_list_seq aux [false ; true] in
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ok ()
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let expect_eq_n_int a b c =
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expect_eq_n a b e_int (fun n -> e_int (c n))
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let expect_eq_b_bool a b c =
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let open Ast_simplified.Combinators in
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expect_eq_b a b (fun bool -> e_bool (c bool))
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let rec test_height : test -> int = fun t ->
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match t with
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| Test _ -> 1
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| Test_suite (_ , lst) -> (List.fold_left max 1 @@ List.map test_height lst) + 1
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let extract_test : test -> test_case = fun t ->
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match t with
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| Test tc -> tc
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| _ -> assert false
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let extract_param : test -> (string * (string * test_case list) list) =
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let extract_element = extract_test in
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let extract_group : test -> (string * test_case list) = fun t ->
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match t with
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| Test tc -> ("isolated" , [ tc ])
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| Test_suite (name , lst) -> (name , List.map extract_element lst) in
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fun t ->
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match t with
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| Test tc -> ("" , [ ("isolated" , [ tc ] ) ])
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| Test_suite (name , lst) -> (name , List.map extract_group lst)
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let x : _ -> (unit Alcotest.test) = fun x -> x
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(*
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Alcotest.run parameters:
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string * (string * f list) list
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*)
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let rec run_test ?(prefix = "") : test -> unit = fun t ->
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match t with
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| Test case -> Alcotest.run "isolated test" [ ("" , [ case ]) ]
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| Test_suite (name , lst) -> (
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if (test_height t <= 3) then (
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let (name , tests) = extract_param t in
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Alcotest.run (prefix ^ name) tests
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) else (
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List.iter (run_test ~prefix:(prefix ^ name ^ "_")) lst
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)
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)
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