537 lines
24 KiB
OCaml
537 lines
24 KiB
OCaml
(* Reader tests. Plain assertions, no test framework — another dependency that
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would have to be reimplemented if the compiler is ever self-hosted. *)
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open Flan
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let failures = ref 0
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let check name cond =
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if not cond then begin
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incr failures;
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Printf.printf "FAIL %s\n" name
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end
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let reads name src expected =
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match Reader.read_all ~file:"<test>" src with
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| forms ->
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let got = String.concat " " (List.map Form.to_string forms) in
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if got <> expected then begin
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incr failures;
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Printf.printf "FAIL %s\n src: %s\n got: %s\n wanted: %s\n"
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name src got expected
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end
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| exception Loc.Error (loc, msg) ->
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incr failures;
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Printf.printf "FAIL %s\n src: %s\n error: %s: %s\n"
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name src (Loc.to_string loc) msg
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let rejects name src =
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match Reader.read_all ~file:"<test>" src with
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| _ -> incr failures; Printf.printf "FAIL %s: expected a read error\n" name
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| exception Loc.Error _ -> ()
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let () =
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(* ── Atoms ─────────────────────────────────────────────────────── *)
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reads "integer" "42" "42";
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reads "negative" "-1" "-1";
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reads "float" "0.05" "0.05";
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reads "hex" "0xE6B800FF" "3870818559";
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reads "string" "\"SAND\"" "\"SAND\"";
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reads "symbol" "empty-at?" "empty-at?";
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reads "qualified" "rl/draw-fps" "rl/draw-fps";
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reads "field access" ".pos" ".pos";
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reads "operator" "->>" "->>";
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reads "bare minus" "-" "-";
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reads "keyword" ":space" ":space";
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reads "else keyword" ":else" ":else";
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(* Byte literals, as used by calc-me's tokenizer. *)
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reads "byte named" "\\space" "\\space";
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reads "byte digit" "\\0" "\\0";
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reads "byte paren" "\\(" "\\(";
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reads "byte dot" "\\." "\\.";
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(* ── Sequences ─────────────────────────────────────────────────── *)
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reads "list" "(+ 1 2)" "(+ 1 2)";
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reads "vector" "[1 2 3]" "[1 2 3]";
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reads "map literal" "{:src src :pos 0}" "{:src src :pos 0}";
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reads "type notation" "[4 f32]" "[4 f32]";
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reads "nested type" "[rows [cols u32]]" "[rows [cols u32]]";
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reads "commas as space" "[1, 2, 3]" "[1 2 3]";
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reads "nested" "(a (b [c {:d e}]))" "(a (b [c {:d e}]))";
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(* ── Trivia ────────────────────────────────────────────────────── *)
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reads "line comment" "; nope\n42" "42";
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reads "trailing comment" "42 ; nope" "42";
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reads "banner comment" ";;;; header\n(f)" "(f)";
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reads "multiple forms" "(a) (b)" "(a) (b)";
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reads "empty source" "" "";
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reads "only comments" "; nothing here" "";
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(* ── Quote ─────────────────────────────────────────────────────── *)
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(* Restart names are quoted symbols. Before this existed, 'skip-form read as
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a symbol *named* "'skip-form", which is silently a different symbol from
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skip-form and nothing would ever have reported it. *)
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reads "quote symbol" "'skip-form" "(quote skip-form)";
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reads "quote in call" "(invoke-restart 'use-placeholder)"
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"(invoke-restart (quote use-placeholder))";
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reads "quote list" "'(a b)" "(quote (a b))";
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(* The whole class: no reader-significant character may end up inside a name. *)
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let rec bad_names f =
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let open Form in
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match f.v with
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| Sym s | Kw s ->
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if String.exists (fun c -> c = '\'' || c = '^') s then [ s ] else []
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| List l | Vec l | Map l -> List.concat_map bad_names l
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| _ -> []
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in
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let corpus = "(invoke-restart 'skip-form) (a 'b [c 'd] {:e 'f}) '(g 'h)" in
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check "no sigils leak into names"
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(bad_names (Form.make (Form.List (Reader.read_all ~file:"<test>" corpus))
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Loc.unknown) = []);
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(* ── Errors ────────────────────────────────────────────────────── *)
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rejects "unclosed list" "(f x";
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rejects "unbalanced close" ")";
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rejects "mismatched" "(f x]";
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rejects "unterminated str" "\"abc";
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rejects "empty keyword" ":";
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rejects "unknown char" "\\bogus";
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rejects "metadata" "^:async";
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rejects "dangling quote" "'";
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(* ── Locations ─────────────────────────────────────────────────── *)
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(match Reader.read_all ~file:"f.flan" "(a)\n (b)" with
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| [ a; b ] ->
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check "loc line 1" (a.loc.line = 1 && a.loc.col = 1);
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check "loc line 2" (b.loc.line = 2 && b.loc.col = 3);
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check "loc file" (a.loc.file = "f.flan")
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| _ -> check "loc: two forms" false);
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(match Reader.read_all ~file:"f.flan" "(f\n bad" with
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| _ -> check "unclosed reports opening loc" false
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| exception Loc.Error (loc, _) ->
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check "unclosed reports opening loc" (loc.line = 1 && loc.col = 1));
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if !failures = 0 then print_endline "reader: all tests passed"
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else begin
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Printf.printf "\n%d failure(s)\n" !failures;
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exit 1
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end
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(* ═══ Parse: forms → AST ═══════════════════════════════════════════ *)
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let parse1 src =
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match Reader.read_all ~file:"<test>" src with
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| [ f ] -> Parse.expr f
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| _ -> failwith "test source must be exactly one form"
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let parse_decl src =
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match Reader.read_all ~file:"<test>" src with
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| [ f ] -> Parse.decl f
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| _ -> failwith "test source must be exactly one form"
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let parse_rejects name src =
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match Reader.read_all ~file:"<test>" src |> Parse.program with
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| _ -> incr failures; Printf.printf "FAIL %s: expected a parse error\n" name
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| exception Loc.Error _ -> ()
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let () =
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let open Ast in
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(* ── Sugar is desugared, not preserved ─────────────────────────── *)
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(match (parse1 "(when c a b)").e with
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| If (_, { e = Do [ _; _ ]; _ }, None) -> ()
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| _ -> check "when -> if+do" false);
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(match (parse1 "(unless c a)").e with
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| If ({ e = Call ({ e = Var "not"; _ }, [ _ ]); _ }, _, None) -> ()
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| _ -> check "unless -> if(not)" false);
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(match (parse1 "(until c a)").e with
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| While ({ e = Call ({ e = Var "not"; _ }, [ _ ]); _ }, [ _ ]) -> ()
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| _ -> check "until -> while(not)" false);
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(match (parse1 "(cond a 1 b 2 :else 3)").e with
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| If (_, _, Some { e = If (_, _, Some { e = Int 3L; _ }); _ }) -> ()
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| _ -> check "cond -> nested if with :else last" false);
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(* and/or short-circuit, so they must not become calls *)
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(match (parse1 "(and a b)").e with
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| If (_, _, Some { e = Var "false"; _ }) -> ()
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| _ -> check "and short-circuits" false);
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(match (parse1 "(or a b)").e with
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| If (_, { e = Var "true"; _ }, Some _) -> ()
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| _ -> check "or short-circuits" false);
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(* ── Forms that bind or alter control are never calls ──────────── *)
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(* This is the class that silently misparses: it reads fine as a call and
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means something entirely different. *)
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(match (parse1 "(dotimes [i 10] (f i))").e with
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| Dotimes ("i", { e = Int 10L; _ }, [ _ ]) -> ()
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| _ -> check "dotimes binds" false);
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(match (parse1 "(fn [x y] x)").e with
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| Fn ([ "x"; "y" ], [ _ ]) -> ()
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| _ -> check "fn binds" false);
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(match (parse1 "(defer (close f))").e with
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| Defer [ _ ] -> ()
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| _ -> check "defer is not a call" false);
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(match (parse1 "(some (find x))").e with
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| Unwrap (Usome, _) -> ()
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| _ -> check "some is not a call" false);
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(match (parse1 "(try (read x))").e with
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| Unwrap (Utry, _) -> ()
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| _ -> check "try is not a call" false);
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(* ── Places: the fixed assignable list, not setf ───────────────── *)
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(match (parse1 "(set x 1)").e with
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| Set (Pvar "x", _) -> () | _ -> check "set local" false);
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(match (parse1 "(set (.hp e) 1)").e with
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| Set (Pfield (_, "hp"), _) -> () | _ -> check "set field" false);
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(match (parse1 "(set (at g r c) 1)").e with
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| Set (Pindex (_, [ _; _ ]), _) -> () | _ -> check "set index" false);
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(match (parse1 "(set (deref p) 1)").e with
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| Set (Pderef _, _) -> () | _ -> check "set deref" false);
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parse_rejects "set on a call" "(set (foo x) 1)";
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(* ── Field access and struct literals ──────────────────────────── *)
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(match (parse1 "(.pos c)").e with
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| Field ({ e = Var "c"; _ }, "pos") -> ()
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| _ -> check "field access" false);
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(match (parse1 "(Cursor {:src s :pos 0})").e with
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| Struct ("Cursor", [ ("src", _); ("pos", _) ]) -> ()
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| _ -> check "struct literal" false);
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(match (parse1 "[1 2 3]").e with
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| Arr [ _; _; _ ] -> () | _ -> check "array literal" false);
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(* ── Types: brackets mean different things by position ─────────── *)
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let ty src =
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match parse_decl (Printf.sprintf "(defn f [x %s])" src) with
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| { d = Defn { params = [ { fty; _ } ]; _ }; _ } -> fty.t
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| _ -> failwith "bad type test"
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in
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(match ty "[u8]" with Tslice _ -> () | _ -> check "[T] is a slice" false);
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(match ty "[4 f32]" with
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| Tarray (Lint 4L, _) -> () | _ -> check "[n T] is an array" false);
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(match ty "[rows [cols u32]]" with
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| Tarray (Lname "rows", { t = Tarray (Lname "cols", _); _ }) -> ()
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| _ -> check "nested array with named lengths" false);
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(match ty "(Ptr Cursor)" with
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| Tapp ("Ptr", [ _ ]) -> () | _ -> check "(Ptr T)" false);
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(match ty "{string i32}" with
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| Tmap (_, _) -> () | _ -> check "{K V} is a map type" false);
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(match ty "(Fn [a a] bool)" with
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| Tfn ([ _; _ ], _) -> () | _ -> check "(Fn [T] R)" false);
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(* ── Declarations ──────────────────────────────────────────────── *)
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(match (parse_decl "(defn f [x i32] bool x)").d with
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| Defn { ret = Some _; params = [ _ ]; fbody = [ _ ]; _ } -> ()
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| _ -> check "defn with return type" false);
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(* An omitted return type means Unit — the body must not be eaten as a type *)
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(match (parse_decl "(defn f [x i32] (g x))").d with
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| Defn { ret = None; fbody = [ _ ]; _ } -> ()
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| _ -> check "defn without return type" false);
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(match (parse_decl "(defvar grid [4 u32])").d with
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| Defvar ("grid", Some _, Zeroed) -> ()
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| _ -> check "defvar is ZII" false);
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(match (parse_decl "(defvar buf [4 u8] uninit)").d with
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| Defvar (_, _, Uninit) -> () | _ -> check "defvar uninit opts out" false);
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(match (parse_decl "(import rl \"vendor:raylib\")").d with
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| Import ("rl", "vendor:raylib") -> () | _ -> check "import" false);
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(* ── Unimplemented forms are rejected, not silently called ─────── *)
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parse_rejects "handler-bind" "(handler-bind [E h] body)";
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parse_rejects "restart-case" "(restart-case body (r [] 1))";
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parse_rejects "loop/recur" "(loop [x 1] (recur x))";
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parse_rejects "defmacro" "(defmacro m [] 1)";
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(* ── Malformed syntax is caught with a location ────────────────── *)
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parse_rejects "odd let bindings" "(let [a])";
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parse_rejects "odd field pairs" "(defstruct S [a])";
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parse_rejects "cond without body" "(cond a)";
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parse_rejects "unknown top form" "(nope x)";
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(* ── The corpus parses ─────────────────────────────────────────── *)
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List.iter
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(fun path ->
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match Reader.read_file path |> Parse.program with
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| _ -> ()
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| exception Loc.Error (loc, msg) ->
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incr failures;
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Printf.printf "FAIL %s does not parse: %s: %s\n"
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path (Loc.to_string loc) msg)
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(* dune runs tests in _build/default/test/; the corpus is declared as a
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dep in test/dune and lands at the build root. *)
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[ "../calc-me.flan"; "../sand.flan" ];
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if !failures = 0 then print_endline "parse: all tests passed"
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else begin
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Printf.printf "\n%d failure(s)\n" !failures;
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exit 1
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end
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(* ═══ The return type / body ambiguity ═════════════════════════════ *)
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(* (Option f64) and (Some 1) are the same s-expression shape. Which one is a
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return type is decided by the set of names that are actually types, not by
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capitalisation — otherwise a body starting with a constructor call gets
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silently eaten as a return type. *)
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let program src = Reader.read_all ~file:"<test>" src |> Parse.program
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let () =
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let open Ast in
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(* Pick the defn out; some sources also declare a struct. *)
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let ret_and_body name src =
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match
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List.find_map
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(fun (d : decl) ->
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match d.d with Defn fn -> Some fn | _ -> None)
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(program src)
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with
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| Some { ret; fbody; _ } -> (ret <> None, List.length fbody)
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| None -> check (name ^ ": has a defn") false; (false, 0)
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in
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check "known type ctor is a return type"
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(ret_and_body "option" "(defn f [] (Option f64) (g))" = (true, 1));
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check "value ctor is NOT a return type"
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(ret_and_body "some" "(defn f [] (Some 1) (bar))" = (false, 2));
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check "user struct is a return type"
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(ret_and_body "user"
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"(defstruct Cursor [pos i32]) (defn f [] Cursor (g))" = (true, 1));
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(* Order-independent: the type is declared after the function that returns it *)
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check "type declared later is still known"
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(ret_and_body "later"
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"(defn f [] Cursor (g)) (defstruct Cursor [pos i32])" = (true, 1));
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check "unknown capitalised head is a body form"
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(ret_and_body "unknown" "(defn f [] (Nope 1) (bar))" = (false, 2));
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()
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(* ── Checker: AST → typed IR ───────────────────────────────────────── *)
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let checked src = program src |> Check.program
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(* The type a defconst's value infers to, as the checker prints it. Enough to
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pin down literal defaulting and every primitive's result. *)
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let infers name src expected =
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match checked (Printf.sprintf "(defconst probe %s)" src) with
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| p ->
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(match List.find_opt (fun (g : Tast.global) -> g.gname = "probe") p.globals with
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| Some g ->
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let got = Types.to_string g.gty in
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if got <> expected then begin
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incr failures;
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Printf.printf "FAIL %s\n src: %s\n got: %s\n wanted: %s\n"
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name src got expected
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end
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| None -> incr failures; Printf.printf "FAIL %s: no probe\n" name)
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| exception Loc.Error (loc, msg) ->
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incr failures;
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Printf.printf "FAIL %s\n src: %s\n error: %s: %s\n"
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name src (Loc.to_string loc) msg
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let accepts name src =
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match checked src with
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| _ -> ()
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| exception Loc.Error (loc, msg) ->
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incr failures;
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Printf.printf "FAIL %s\n src: %s\n error: %s: %s\n"
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name src (Loc.to_string loc) msg
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(* [needle] pins the *reason* down: a rejection for the wrong reason is not a
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passing test, and the unimplemented-feature errors are the whole point. *)
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let rejects_check name ?needle src =
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match checked src with
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| _ ->
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incr failures;
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Printf.printf "FAIL %s: expected a type error\n src: %s\n" name src
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| exception Loc.Error (_, msg) ->
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(match needle with
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| Some n
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when not
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(List.exists
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(fun i -> String.length msg - i >= String.length n
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&& String.sub msg i (String.length n) = n)
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(List.init (max 1 (String.length msg)) Fun.id)) ->
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incr failures;
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Printf.printf "FAIL %s: wrong reason\n wanted: %s\n got: %s\n"
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name n msg
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| _ -> ())
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let () =
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(* ── Literal defaulting and inference ──────────────────────────── *)
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infers "int defaults to i32" "42" "i32";
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infers "float defaults to f64" "0.5" "f64";
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infers "byte is u8" "\\space" "u8";
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infers "string" "\"hi\"" "string";
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infers "bool" "true" "bool";
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infers "arithmetic keeps kind" "(+ 1 2)" "i32";
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infers "comparison is bool" "(< 1 2)" "bool";
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infers "cast" "(f64 3)" "f64";
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infers "array literal" "[1 2 3]" "[3 i32]";
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infers "nested array" "[[1 2] [3 4]]" "[2 [2 i32]]";
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infers "bytes of a string" "(bytes \"hi\")" "[u8]";
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infers "len is i32" "(len (bytes \"hi\"))" "i32";
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infers "slice of a slice" "(slice (bytes \"hi\") 0 1)" "[u8]";
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infers "parse text to f64" "(bytes->f64 (bytes \"1.5\"))" "f64";
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(* An untyped integer constant is usable where a float is wanted, as in
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Odin; the reverse is not. *)
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infers "int literal into a float" "(+ 1 0.5)" "f64";
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rejects_check "float literal into an int"
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"(defn f [] i32 (+ 1 0.5))" ~needle:"expected i32";
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(* ── Bidirectional flow ────────────────────────────────────────── *)
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accepts "return type types the literal" "(defn f [] u8 0)";
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accepts "return type types None" "(defn f [] (Option f64) None)";
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rejects_check "bare None has no type" "(defconst x None)"
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~needle:"what None is an Option of";
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accepts "param types the literal"
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"(defn g [x u8]) (defn f [] (g 3))";
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rejects_check "wrong argument type"
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"(defn g [x u8]) (defn f [] (g 0.5))" ~needle:"expected u8";
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rejects_check "wrong arity"
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"(defn g [x u8]) (defn f [] (g 1 2))" ~needle:"takes 1 argument";
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rejects_check "wrong return type"
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"(defn f [] bool 1)" ~needle:"expected bool";
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rejects_check "if branches disagree"
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"(defn f [] i32 (if true 1 true))" ~needle:"expected i32";
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(* ── Structs, fields and auto-deref ────────────────────────────── *)
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let cursor = "(defstruct Cursor [src [u8] pos i32]) " in
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accepts "struct literal, omitted field zeroed"
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(cursor ^ "(defn f [s [u8]] Cursor (Cursor {:src s}))");
|
|
rejects_check "unknown field"
|
|
(cursor ^ "(defn f [s [u8]] Cursor (Cursor {:nope s}))")
|
|
~needle:"has no field nope";
|
|
rejects_check "field given twice"
|
|
(cursor ^ "(defn f [s [u8]] Cursor (Cursor {:pos 0 :pos 1}))")
|
|
~needle:"given twice";
|
|
accepts "field through a pointer auto-derefs"
|
|
(cursor ^ "(defn f [c (Ptr Cursor)] i32 (.pos c))");
|
|
accepts "set through a pointer"
|
|
(cursor ^ "(defn f [c (Ptr Cursor)] (set (.pos c) 1))");
|
|
rejects_check "field of a non-struct"
|
|
"(defn f [x i32] i32 (.pos x))" ~needle:"is not a struct";
|
|
|
|
(* ── Places ────────────────────────────────────────────────────── *)
|
|
accepts "a local is assignable"
|
|
"(defn f [] i32 (let [x 1] (set x 2) x))";
|
|
rejects_check "a parameter is not assignable"
|
|
"(defn f [x i32] (set x 2))" ~needle:"parameters are not assignable";
|
|
rejects_check "a constant is not assignable"
|
|
"(defconst k 1) (defn f [] (set k 2))" ~needle:"is a constant";
|
|
accepts "addr of a local gives a pointer"
|
|
(cursor ^ "(defn g [c (Ptr Cursor)] i32 (.pos c)) \
|
|
(defn f [s [u8]] i32 (let [c (Cursor {:src s})] (g (addr c))))");
|
|
rejects_check "addr of a non-place"
|
|
"(defn f [] (addr (+ 1 2)))" ~needle:"addr takes the address of a place";
|
|
|
|
(* ── Option, some, match ───────────────────────────────────────── *)
|
|
accepts "some unwraps in an Option-returning function"
|
|
"(defn g [] (Option i32) None) (defn f [] (Option i32) (Some (some (g))))";
|
|
rejects_check "some outside an Option-returning function"
|
|
"(defn g [] (Option i32) None) (defn f [] i32 (some (g)))"
|
|
~needle:"must return an Option";
|
|
accepts "match on Option"
|
|
"(defn g [] (Option i32) None) \
|
|
(defn f [] i32 (match (g) (Some v) v None 0))";
|
|
rejects_check "match must be exhaustive"
|
|
"(defn g [] (Option i32) None) (defn f [] i32 (match (g) (Some v) v))"
|
|
~needle:"not exhaustive";
|
|
accepts "a wildcard arm is exhaustive"
|
|
"(defn g [] (Option i32) None) (defn f [] i32 (match (g) (Some v) v _ 0))";
|
|
rejects_check "match on a non-Option"
|
|
"(defn f [x i32] i32 (match x _ 0))" ~needle:"match works on an Option";
|
|
|
|
(* ── Names, order-independence, entry point ────────────────────── *)
|
|
accepts "mutually recursive, no forward declaration"
|
|
"(defn even? [n i32] bool (if (= n 0) true (odd? (- n 1)))) \
|
|
(defn odd? [n i32] bool (if (= n 0) false (even? (- n 1))))";
|
|
rejects_check "unknown name" "(defn f [] i32 nope)" ~needle:"unknown name";
|
|
rejects_check "unknown function" "(defn f [] i32 (nope 1))"
|
|
~needle:"unknown function";
|
|
rejects_check "defined twice" "(defn f []) (defn f [])"
|
|
~needle:"defined twice";
|
|
accepts "main with no parameters and no return" "(defn main [])";
|
|
accepts "main with argv and a status" "(defn main [args [string]] i32 0)";
|
|
rejects_check "main with a wrong parameter" "(defn main [n i32])"
|
|
~needle:"main takes no parameters";
|
|
rejects_check "main returning the wrong type" "(defn main [] bool true)"
|
|
~needle:"main returns i32";
|
|
|
|
(* ── Unconstrained operators, and everything past milestone 2 ──── *)
|
|
rejects_check "no built-in = on strings"
|
|
"(defn f [] bool (= \"a\" \"b\"))" ~needle:"no built-in comparison";
|
|
rejects_check "Vec is milestone 6" "(defn f [x (Vec i32)])"
|
|
~needle:"milestone 6";
|
|
rejects_check "Map is milestone 6" "(defn f [x {string i32}])"
|
|
~needle:"milestone 6";
|
|
rejects_check "Result is milestone 6" "(defn f [] (Result i32 i32) None)"
|
|
~needle:"milestone 6";
|
|
rejects_check "try is milestone 6" "(defn f [] i32 (try 1))"
|
|
~needle:"milestone 6";
|
|
rejects_check "dotimes is milestone 4"
|
|
"(defn f [] (dotimes [i 3] (g)))" ~needle:"milestone 4";
|
|
rejects_check "defer is milestone 4" "(defn f [] (defer (g)))"
|
|
~needle:"milestone 4";
|
|
rejects_check "imports are milestone 4" "(import rl \"vendor:raylib\")"
|
|
~needle:"milestone 4";
|
|
rejects_check "keywords are milestone 4"
|
|
"(defn g [x i32]) (defn f [] (g :space))"
|
|
~needle:"milestone 4";
|
|
rejects_check "fn values are milestone 5" "(defn f [] (fn [x] x))"
|
|
~needle:"milestone 5";
|
|
rejects_check "type variables are milestone 5" "(defn f [x a])"
|
|
~needle:"milestone 5";
|
|
rejects_check "a function name as a value is milestone 5"
|
|
"(defn g []) (defn f [] i32 g)" ~needle:"milestone 5";
|
|
|
|
rejects_check "a struct cannot contain itself by value"
|
|
"(defstruct Node [next Node])" ~needle:"contains itself by value";
|
|
rejects_check "nor through a fixed array"
|
|
"(defstruct Node [kids [2 Node]])" ~needle:"contains itself by value";
|
|
accepts "a pointer breaks the cycle"
|
|
"(defstruct Node [next (Ptr Node)])";
|
|
rejects_check "an integer literal must fit its type"
|
|
"(defn f [] u8 300)" ~needle:"does not fit in u8";
|
|
accepts "sequential let bindings"
|
|
"(defn f [] i32 (let [a 1 b (+ a 1)] b))";
|
|
|
|
(* An array literal is [n T] and does not satisfy a slice expectation:
|
|
the two are distinct in type and in ownership (spec-memory.md). *)
|
|
rejects_check "array literal is not a slice"
|
|
"(defn f [] [u8] [1 2 3])" ~needle:"expected [u8]";
|
|
rejects_check "array literal is not a struct"
|
|
"(defstruct C [pos i32]) (defn f [] C [1 2])" ~needle:"expected C";
|
|
rejects_check "wrong element count"
|
|
"(defvar xs [2 i32] [1 2 3])" ~needle:"expected 2 elements";
|
|
|
|
(* Top-level names are order-independent (plan.org, Modules) — including
|
|
constants used as array lengths and constants defined in terms of each
|
|
other. *)
|
|
accepts "a constant declared after its use as a length"
|
|
"(defvar grid [rows i32]) (defconst rows 8)";
|
|
accepts "constants defined out of order"
|
|
"(defconst a (+ b 1)) (defconst b 1)";
|
|
accepts "an untyped constant from a later function"
|
|
"(defconst k (g)) (defn g [] u8 1)";
|
|
rejects_check "a genuinely unknown constant still reports itself"
|
|
"(defconst a (+ nope 1))" ~needle:"unknown name nope";
|
|
|
|
(* ── The acceptance program checks end to end ──────────────────── *)
|
|
accepts "calc-me.flan type checks"
|
|
(In_channel.with_open_bin "../calc-me.flan" In_channel.input_all);
|
|
|
|
if !failures = 0 then print_endline "all tests passed"
|
|
else begin
|
|
Printf.printf "\n%d failure(s)\n" !failures;
|
|
exit 1
|
|
end
|