module List = ListLabels
module String = StringLabels
+module Err = Tiger_error
module Opt = Tiger_opt
(* TODO: ~expect:Output of 'a | Exception of (exn -> bool) *)
lb
let pass_lexing ~fake_filename ~code
-: (Tiger_parser.token list, string) result
+: Tiger_parser.token list
=
let lexbuf = lexbuf_create ~filename:fake_filename ~code in
let rec tokens () =
(* Avoiding fragile pattern-matching *)
if token = Tiger_parser.EOF then [] else token :: tokens ()
in
- match tokens () with
- | exception e -> Error (Printexc.to_string e)
- | tokens -> Ok tokens
+ tokens ()
let pass_parsing ~fake_filename ~code
-: (Tiger_absyn.t, string) result
+: Tiger_absyn.t
=
- let lb = lexbuf_create ~filename:fake_filename ~code in
- match Tiger_parser.program Tiger_lexer.token lb with
- | exception Parsing.Parse_error ->
- let module L = Lexing in
- let L.({lex_curr_p = {pos_lnum=l; pos_bol=b; pos_cnum=c; _}; _}) = lb in
- let msg = sprintf "Syntax error around line: %d, column: %d" l (c - b) in
- Error msg
- | ast ->
- Ok ast
+ Tiger_parser.program
+ Tiger_lexer.token
+ (lexbuf_create ~filename:fake_filename ~code)
let pass_semant (absyn : Tiger_absyn.t)
-: (unit, string) result
+: unit
=
- Ok (Tiger_semant.transProg absyn)
+ Tiger_semant.transProg absyn
let str_exact str exact =
let len = String.length str in
let pad = String.make pad ' ' in
str ^ pad
+let exn_to_string = function
+ | Tiger_error.T e -> Tiger_error.to_string e
+ | e -> Printexc.to_string e
+
let s = sprintf
let p = printf
let p_ln = print_newline
let run tests =
Printexc.record_backtrace true;
- let count_fail_all = ref 0 in
+ let fail, fail_count =
+ let count_fail_all = ref 0 in
+ ( (fun () -> incr count_fail_all; Fail)
+ , (fun () -> !count_fail_all)
+ )
+ in
let run_pass ~f ~expect_output ~is_error_expected =
- let is_error_expected =
- match is_error_expected with
- | None -> (fun _ -> false)
- | Some f -> f
- in
- match f () with
- | exception e ->
- let backtrace = Printexc.get_backtrace () in
- let (exe_stat, exe_msg) =
- (match e with
- | Tiger_error.T e when is_error_expected e ->
- (Pass, (Tiger_error.to_string e))
- | Tiger_error.T e ->
- incr count_fail_all;
- (Fail, (Tiger_error.to_string e))
- | e ->
- incr count_fail_all;
- (Fail, (Printexc.to_string e))
- )
- in
- { exe_stat
- ; exe_msg = s "\n\tException: %s.\n\tBacktrace: %s" exe_msg backtrace
+ let execution = match f () with exception e -> `Exn e | o -> `Out o in
+ (match execution, is_error_expected with
+ | `Exn (Err.T e), Some is_error_expected when is_error_expected e ->
+ { exe_stat = Pass
+ ; exe_msg = ""
; out_stat = Skip
; out_val = None
- ; out_msg = "" (* old "info" goes here *)
+ ; out_msg = ""
}
- | Error info ->
- incr count_fail_all;
- { exe_stat = Fail
- ; exe_msg = info
+ | `Exn e, Some _
+ | `Exn e, None ->
+ let b = Printexc.get_backtrace () in
+ let e = exn_to_string e in
+ { exe_stat = fail ()
+ ; exe_msg = s "\n\tException: %s.\n\tBacktrace: %s" e b
; out_stat = Skip
; out_val = None
- ; out_msg = "" (* old "info" goes here *)
+ ; out_msg = ""
+ }
+ | `Out output, Some _ ->
+ { exe_stat = fail ()
+ ; exe_msg = "Expected exception, but got output."
+ ; out_stat = fail ()
+ ; out_val = Some output (* TODO: Do we really want to keep going? *)
+ ; out_msg = "Expected exception, but got output."
}
- | Ok produced ->
+ | `Out output, None ->
let (out_stat, out_msg) =
match
- Opt.map expect_output (fun expected -> expected = produced)
+ Opt.map expect_output (fun expected -> expected = output)
with
| None ->
(Skip, "expected output not provided")
| Some true ->
(Pass, "")
| Some false ->
- incr count_fail_all;
- (* TODO pretty print expected and produced *)
- (Fail, "unexpected output")
+ (* TODO pretty print expected and output *)
+ (fail (), "unexpected output")
in
{ exe_stat = Pass
; exe_msg = "" (* old "info" goes here *)
; out_stat
- ; out_val = Some produced
+ ; out_val = Some output
; out_msg
}
+ )
in
let test_case_count = ref 0 in
let col_1_width = 30 in
);
p "%s" bar_horiz_major; p_ln ();
p "%s %d failures in %d test cases"
- (match !count_fail_all with
+ (match fail_count () with
| 0 -> color_opt (status_to_str Pass) (status_to_color Pass)
| _ -> color_opt (status_to_str Fail) (status_to_color Fail)
)
- !count_fail_all
+ (fail_count ())
!test_case_count;
p_ln ();
p "%s" bar_horiz_major; p_ln ();
- exit !count_fail_all
+ exit (fail_count ())