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coollang/lib/parser.ml
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coolguyandClaude Opus 5 2307bafda2 naming: panic을 crash로 — 그리고 이름을 고르는 원칙을 철학에 넣는다
철학 6번을 추가했다:

  이름은 관례가 아니라 뜻에서 고른다 — 낯섦은 한 번 치르고 끝나지만
  부정확함은 읽는 사람마다 매번 치른다.

판정 방법도 같이 적었다. 그 단어로 평범한 문장을 써 보고, 단어가 문장을
도우면 맞는 이름이고 싸우면 틀린 이름이다.
  "크래시는 복구하는 것이 아니라 조사하는 것이다" — 돕는다
  "패닉은 복구할 수 없다" — 다른 언어에서는 할 수 있어 싸운다

panic의 자연어 뜻은 "갑작스러운 공포"다. 반응하는 쪽의 감정이지 결함에
대한 말이 아니다. 그리고 Go/Rust에서는 붙잡을 수 있어 이름이 거짓말을 한다.
crash는 "계획 없이 갑자기 완전히 망가져 끝남"이고 복구의 함의가 없다 —
크래시는 복구하는 게 아니라 조사하는 것이다.

어휘의 출신도 이유가 됐다. panic+recover는 Go 전통이고 거기엔 감독이 없다.
crash+supervision은 얼랭 전통이며, 우리가 만드는 것이 그쪽이다.

한국어 용어도 세 층으로 정리했다: 실패(Result) / 결함(crash) / 감독.
세 층이 세 가지 다른 기제로 규율된다 — 타입, 없음(발산), capability.
"상황이 나쁨"은 결함이 아니라 실패다. 이 선을 안 그으면 crash가 게으름의
배출구가 된다. "오류"는 컴파일러 진단에만 쓴다.

얼랭 질문에 대한 답도 기록했다: 감독은 가져오고 비구조적 spawn은 안
가져온다. sc.spawn과 sup.spawn(sc, f)로 갈리며 문법 변경이 없다 — 실패를
삼키려면 Supervisor를 받았어야 하고 그것이 시그니처에 보인다.

개명은 문법을 먼저 고치고 대조 장치로 확인했다. 문장 500개, 파일 26개
모두 갈림 0건.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_019ZVDeU6KLuUVL3gs18Hm3E
2026-08-30 18:21:05 +09:00

874 lines
25 KiB
OCaml

(* 재귀 하강 파서. grammar.ebnf의 프로덕션 하나에 함수 하나로 대응한다.
LL(1)이므로 선읽기는 항상 한 토큰이고 backtracking은 없다.
문법과 얽히는 두 자리:
- NEWLINE 흡수는 문법에 { NEWLINE }으로 적힌 자리에서만 한다.
파서가 임의로 건너뛰지 않는다.
- struct 리터럴은 if/match/scope 머리에서 금지된다 (no_struct). *)
open Ast
type error = { pos : Token.pos; msg : string }
exception Error of error
type state = { toks : Token.t array; mutable i : int; mutable no_struct : bool }
let cur st = st.toks.(st.i)
let kind st = (cur st).Token.kind
let pos st = (cur st).Token.pos
let adv st = if st.i < Array.length st.toks - 1 then st.i <- st.i + 1
let err st msg = raise (Error { pos = pos st; msg })
let err_expect st what =
err st
(Printf.sprintf "%s이(가) 필요합니다 — %s 발견" what (Token.show_kind (kind st)))
let accept st k =
if kind st = k then (
adv st;
true)
else false
let expect st k what = if not (accept st k) then err_expect st what
let skip_nl st =
while kind st = Token.Newline do
adv st
done
(* 목록을 닫을 때 줄바꿈이 보이면 후행 콤마 누락이다. 일반 메시지보다
원인을 직접 말해준다. *)
let expect_close st k what =
if kind st = Token.Newline then err st "다중 줄 목록에는 후행 콤마가 필요합니다"
else expect st k what
let ident st what =
match kind st with
| Token.Ident n ->
adv st;
n
| _ -> err_expect st what
let with_struct_ok st f =
let saved = st.no_struct in
st.no_struct <- false;
let r = f () in
st.no_struct <- saved;
r
(* ------------------------------------------------------------------ *)
(* effect 절 *)
(* ------------------------------------------------------------------ *)
let parse_eff_name st =
let cap = ident st "capability 이름" in
expect st Token.Dot ".";
let meth = ident st "메서드 이름" in
{ cap; meth }
let parse_eff_set st =
expect st Token.LBrace "{";
skip_nl st;
let rec loop acc =
if kind st = Token.RBrace then List.rev acc
else
let n = parse_eff_name st in
skip_nl st;
if accept st Token.Comma then (
skip_nl st;
loop (n :: acc))
else (
skip_nl st;
List.rev (n :: acc))
in
let names = loop [] in
expect st Token.RBrace "}";
Eff_set names
let parse_eff_atom st =
match kind st with
| Token.LBrace -> parse_eff_set st
| Token.Ident n ->
adv st;
Eff_var n
| _ -> err_expect st "effect 변수 또는 { ... } 집합"
(* 결과 위치: 합집합 허용 *)
let parse_eff_result st =
expect st Token.Kw_effects "effects";
let rec loop acc =
let a = parse_eff_atom st in
if accept st Token.Pipe then loop (a :: acc) else List.rev (a :: acc)
in
loop []
(* 파라미터 위치: 합집합이 문법에 없다 *)
let parse_eff_param st =
expect st Token.Kw_effects "effects";
let a = parse_eff_atom st in
if kind st = Token.Pipe then
err st "파라미터 위치의 effects 절에는 합집합을 쓸 수 없습니다 (변수 단독 또는 리터럴 집합만 가능)";
a
(* ------------------------------------------------------------------ *)
(* 타입 *)
(* ------------------------------------------------------------------ *)
let rec parse_ty st =
match kind st with
| Token.Kw_affine ->
let p = pos st in
adv st;
expect st Token.Kw_fn "fn";
parse_fn_ty st true p
| Token.Kw_fn ->
let p = pos st in
adv st;
parse_fn_ty st false p
| Token.Ident n ->
let p = pos st in
adv st;
let modl, n =
if kind st = Token.Dot then (
adv st;
(Some n, ident st "타입 이름"))
else (None, n)
in
let args = if kind st = Token.LBracket then parse_targs st else [] in
T_named { modl; name = n; args; pos = p }
| _ -> err_expect st "타입"
and parse_fn_ty st affine p =
expect st Token.LParen "(";
let params =
if kind st = Token.RParen then []
else
let rec loop acc =
let t = parse_ty st in
if accept st Token.Comma then
if kind st = Token.RParen then List.rev (t :: acc) else loop (t :: acc)
else List.rev (t :: acc)
in
loop []
in
expect_close st Token.RParen ")";
let eff =
if kind st = Token.Kw_effects then Some (parse_eff_param st) else None
in
let ret = if accept st Token.Arrow then Some (parse_ty st) else None in
T_fn { affine; params; eff; ret; pos = p }
and parse_targs st =
expect st Token.LBracket "[";
let rec loop acc =
let a =
if kind st = Token.LBrace then TA_eff (parse_eff_set st)
else TA_ty (parse_ty st)
in
if accept st Token.Comma then
if kind st = Token.RBracket then List.rev (a :: acc) else loop (a :: acc)
else List.rev (a :: acc)
in
let args = loop [] in
expect_close st Token.RBracket "]";
args
(* ------------------------------------------------------------------ *)
(* 패턴 *)
(* ------------------------------------------------------------------ *)
let rec parse_pattern st =
let p = pos st in
match kind st with
| Token.Underscore ->
adv st;
P_wild p
| Token.Int s ->
adv st;
P_lit (L_int s, p)
| Token.Str s ->
adv st;
P_lit (L_str s, p)
| Token.Kw_true ->
adv st;
P_lit (L_bool true, p)
| Token.Kw_false ->
adv st;
P_lit (L_bool false, p)
| Token.Ident n -> (
adv st;
let modl, n =
if kind st = Token.Dot then (
adv st;
(Some n, ident st "생성자 이름"))
else (None, n)
in
if kind st = Token.LParen then (
adv st;
let rec loop acc =
let x = parse_pattern st in
if accept st Token.Comma then
if kind st = Token.RParen then List.rev (x :: acc)
else loop (x :: acc)
else List.rev (x :: acc)
in
let args = if kind st = Token.RParen then [] else loop [] in
expect_close st Token.RParen ")";
P_ctor { modl; name = n; args; pos = p })
else
match modl with
| Some _ -> P_ctor { modl; name = n; args = []; pos = p }
| None -> P_bind (n, p))
| _ -> err_expect st "패턴"
(* ------------------------------------------------------------------ *)
(* 식 *)
(* ------------------------------------------------------------------ *)
let rec parse_expr st = parse_or st
and parse_or st =
let lhs = ref (parse_and st) in
while kind st = Token.PipePipe do
let p = pos st in
adv st;
lhs := E_binary { op = B_or; lhs = !lhs; rhs = parse_and st; pos = p }
done;
!lhs
and parse_and st =
let lhs = ref (parse_cmp st) in
while kind st = Token.AmpAmp do
let p = pos st in
adv st;
lhs := E_binary { op = B_and; lhs = !lhs; rhs = parse_cmp st; pos = p }
done;
!lhs
and parse_cmp st =
let lhs = parse_add st in
let op =
match kind st with
| Token.EqEq -> Some B_eq
| Token.BangEq -> Some B_ne
| Token.Lt -> Some B_lt
| Token.Le -> Some B_le
| Token.Gt -> Some B_gt
| Token.Ge -> Some B_ge
| _ -> None
in
match op with
| None -> lhs
| Some op ->
let p = pos st in
adv st;
E_binary { op; lhs; rhs = parse_add st; pos = p }
and parse_add st =
let lhs = ref (parse_mul st) in
let rec go () =
let op =
match kind st with
| Token.Plus -> Some B_add
| Token.Minus -> Some B_sub
| _ -> None
in
match op with
| None -> ()
| Some op ->
let p = pos st in
adv st;
lhs := E_binary { op; lhs = !lhs; rhs = parse_mul st; pos = p };
go ()
in
go ();
!lhs
and parse_mul st =
let lhs = ref (parse_unary st) in
let rec go () =
let op =
match kind st with
| Token.Star -> Some B_mul
| Token.Slash -> Some B_div
| Token.Percent -> Some B_rem
| _ -> None
in
match op with
| None -> ()
| Some op ->
let p = pos st in
adv st;
lhs := E_binary { op; lhs = !lhs; rhs = parse_unary st; pos = p };
go ()
in
go ();
!lhs
and parse_unary st =
let p = pos st in
match kind st with
| Token.Bang ->
adv st;
E_unary { op = U_not; operand = parse_unary st; pos = p }
| Token.Minus ->
adv st;
E_unary { op = U_neg; operand = parse_unary st; pos = p }
| _ -> parse_postfix st
and parse_postfix st =
let e = ref (parse_primary st) in
let rec go () =
let p = pos st in
match kind st with
| Token.LParen ->
adv st;
let args =
if kind st = Token.RParen then []
else
with_struct_ok st (fun () ->
let rec loop acc =
let a = parse_expr st in
if accept st Token.Comma then
if kind st = Token.RParen then List.rev (a :: acc)
else loop (a :: acc)
else List.rev (a :: acc)
in
loop [])
in
expect_close st Token.RParen ")";
e := E_call { callee = !e; args; pos = p };
go ()
| Token.Dot ->
adv st;
let n = ident st "필드 또는 메서드 이름" in
e := E_field { obj = !e; name = n; pos = p };
go ()
| Token.LBracket ->
let args = with_struct_ok st (fun () -> parse_targs st) in
e := E_inst { callee = !e; args; pos = p };
go ()
| Token.Question ->
adv st;
e := E_try { inner = !e; pos = p };
go ()
| _ -> ()
in
go ();
!e
and parse_primary st =
let p = pos st in
match kind st with
| Token.Int s ->
adv st;
E_lit (L_int s, p)
| Token.Str s ->
adv st;
E_lit (L_str s, p)
| Token.Kw_true ->
adv st;
E_lit (L_bool true, p)
| Token.Kw_false ->
adv st;
E_lit (L_bool false, p)
| Token.LParen ->
adv st;
let e = with_struct_ok st (fun () -> parse_expr st) in
expect_close st Token.RParen ")";
e
| Token.LBracket ->
adv st;
let xs =
if kind st = Token.RBracket then []
else
with_struct_ok st (fun () ->
let rec loop acc =
let x = parse_expr st in
if accept st Token.Comma then
if kind st = Token.RBracket then List.rev (x :: acc)
else loop (x :: acc)
else List.rev (x :: acc)
in
loop [])
in
expect_close st Token.RBracket "]";
E_list (xs, p)
| Token.Kw_fn -> parse_closure st
| Token.Kw_if -> parse_if st
| Token.Kw_match -> parse_match st
| Token.Kw_crash ->
adv st;
expect st Token.LParen "(";
let msg = with_struct_ok st (fun () -> parse_expr st) in
expect_close st Token.RParen ")";
E_crash { msg; pos = p }
| Token.Kw_scope ->
adv st;
let name = ident st "새 scope 이름" in
expect st Token.Eq "= (자식 scope의 부모를 명시해야 합니다)";
let parent = ident st "부모 scope 이름" in
let body = parse_block st in
E_scope { name; parent; body; pos = p }
| Token.Ident n ->
adv st;
if (not st.no_struct) && kind st = Token.LBrace then
let fields = parse_struct_lit_fields st in
E_struct { name = n; fields; pos = p }
else E_ident (n, p)
| _ -> err_expect st "식"
and parse_struct_lit_fields st =
expect st Token.LBrace "{";
skip_nl st;
let rec loop acc =
if kind st = Token.RBrace then List.rev acc
else begin
let n = ident st "필드 이름" in
expect st Token.Colon ":";
let v = with_struct_ok st (fun () -> parse_expr st) in
skip_nl st;
if accept st Token.Comma then (
skip_nl st;
loop ((n, v) :: acc))
else (
skip_nl st;
List.rev ((n, v) :: acc))
end
in
let fields = loop [] in
expect st Token.RBrace "}";
fields
and parse_closure st =
let p = pos st in
expect st Token.Kw_fn "fn";
expect st Token.LParen "(";
let params =
if kind st = Token.RParen then []
else
let rec loop acc =
let n = ident st "파라미터 이름" in
let t = if accept st Token.Colon then Some (parse_ty st) else None in
if accept st Token.Comma then
if kind st = Token.RParen then List.rev ((n, t) :: acc)
else loop ((n, t) :: acc)
else List.rev ((n, t) :: acc)
in
loop []
in
expect_close st Token.RParen ")";
let eff =
if kind st = Token.Kw_effects then Some (parse_eff_param st) else None
in
let ret = if accept st Token.Arrow then Some (parse_ty st) else None in
let body = parse_block st in
E_closure
{
cl_params = params;
cl_eff = eff;
cl_ret = ret;
cl_body = body;
cl_pos = p;
}
and parse_if st =
let p = pos st in
expect st Token.Kw_if "if";
let saved = st.no_struct in
st.no_struct <- true;
let cond = parse_expr st in
st.no_struct <- saved;
let then_ = parse_block st in
let else_ =
if accept st Token.Kw_else then
if kind st = Token.Kw_if then Some (parse_if st)
else Some (E_block (parse_block st))
else None
in
E_if { cond; then_; else_; pos = p }
and parse_match st =
let p = pos st in
expect st Token.Kw_match "match";
let saved = st.no_struct in
st.no_struct <- true;
let scrutinee = parse_expr st in
st.no_struct <- saved;
expect st Token.LBrace "{";
skip_nl st;
let rec loop acc =
if kind st = Token.RBrace then List.rev acc
else begin
let ap = pos st in
let pat = parse_pattern st in
if kind st = Token.Kw_if then
err st "match 가드는 v0에 없습니다 (분기 본문에서 if를 쓰십시오)";
expect st Token.FatArrow "=>";
let body =
with_struct_ok st (fun () ->
if kind st = Token.LBrace then E_block (parse_block st)
else parse_expr st)
in
skip_nl st;
if accept st Token.Comma then (
skip_nl st;
loop ({ arm_pat = pat; arm_body = body; arm_pos = ap } :: acc))
else (
skip_nl st;
List.rev ({ arm_pat = pat; arm_body = body; arm_pos = ap } :: acc))
end
in
let arms = loop [] in
expect st Token.RBrace "}";
E_match { scrutinee; arms; pos = p }
(* ------------------------------------------------------------------ *)
(* 문과 블록 *)
(* ------------------------------------------------------------------ *)
and parse_block st =
let p = pos st in
expect st Token.LBrace "{";
let saved = st.no_struct in
st.no_struct <- false;
skip_nl st;
let rec loop acc =
if kind st = Token.RBrace then List.rev acc
else begin
let s = parse_stmt st in
if kind st = Token.Newline then (
skip_nl st;
loop (s :: acc))
else if kind st = Token.RBrace then List.rev (s :: acc)
else err st "문 끝에 줄바꿈이 필요합니다"
end
in
let stmts = loop [] in
expect st Token.RBrace "}";
st.no_struct <- saved;
{ stmts; block_pos = p }
and parse_stmt st =
let p = pos st in
match kind st with
| Token.Kw_let ->
adv st;
let mut_ = accept st Token.Kw_mut in
let pat = parse_pattern st in
let ty = if accept st Token.Colon then Some (parse_ty st) else None in
expect st Token.Eq "=";
let value = parse_expr st in
S_let { mut_; pat; ty; value; pos = p }
| Token.Kw_return ->
adv st;
let value =
if kind st = Token.Newline || kind st = Token.RBrace then None
else Some (parse_expr st)
in
S_return { value; pos = p }
| _ ->
let e = parse_expr st in
if accept st Token.Eq then
(* 대입 왼쪽에 무엇이 올 수 있는지는 구문이 아니라 이름 해소가
판정한다. 구문으로 가르면 ident 하나로 대입과 식이 갈리지 않아
문법이 LL(1)이 아니게 된다 (grammar.ebnf의 expr_stmt). *)
S_assign { place = e; value = parse_expr st; pos = p }
else S_expr e
(* ------------------------------------------------------------------ *)
(* 선언 *)
(* ------------------------------------------------------------------ *)
let parse_gen_params st =
expect st Token.LBracket "[";
let rec loop acc =
let p = pos st in
let n = ident st "타입 또는 effect 파라미터 이름" in
let is_eff =
if accept st Token.Colon then (
expect st Token.Kw_effects "effects";
true)
else false
in
let g = { gp_name = n; gp_effect = is_eff; gp_pos = p } in
if accept st Token.Comma then
if kind st = Token.RBracket then List.rev (g :: acc) else loop (g :: acc)
else List.rev (g :: acc)
in
let gs = loop [] in
expect_close st Token.RBracket "]";
gs
let parse_params st =
if kind st = Token.RParen then []
else
let rec loop acc =
let p = pos st in
let own = accept st Token.Kw_own in
let mut_ = accept st Token.Kw_mut in
let name = ident st "파라미터 이름" in
expect st Token.Colon ":";
let ty = parse_ty st in
let prm =
{ p_own = own; p_mut = mut_; p_name = name; p_ty = ty; p_pos = p }
in
if accept st Token.Comma then
if kind st = Token.RParen then List.rev (prm :: acc)
else loop (prm :: acc)
else List.rev (prm :: acc)
in
loop []
(* fn_decl = "fn" ident [gen] "(" [params] ")" {NL}
[eff_result {NL}] ["->" type {NL}] [block]
{ NEWLINE } 흡수 위치는 문법에 적힌 그대로다. *)
let parse_fn_decl st ~allow_body =
let p = pos st in
expect st Token.Kw_fn "fn";
let name = ident st "함수 이름" in
let gen = if kind st = Token.LBracket then parse_gen_params st else [] in
expect st Token.LParen "(";
let params = parse_params st in
expect_close st Token.RParen ")";
skip_nl st;
let eff =
if kind st = Token.Kw_effects then (
let e = parse_eff_result st in
skip_nl st;
Some e)
else None
in
let ret =
if accept st Token.Arrow then (
let t = parse_ty st in
skip_nl st;
Some t)
else None
in
let body =
if allow_body && kind st = Token.LBrace then Some (parse_block st) else None
in
{
fn_name = name;
fn_gen = gen;
fn_params = params;
fn_eff = eff;
fn_ret = ret;
fn_body = body;
fn_pos = p;
}
let parse_struct st ~pub ~copyable =
let p = pos st in
expect st Token.Kw_struct "struct";
let name = ident st "타입 이름" in
let gen = if kind st = Token.LBracket then parse_gen_params st else [] in
expect st Token.LBrace "{";
skip_nl st;
let rec loop acc =
if kind st = Token.RBrace then List.rev acc
else begin
let fp = pos st in
let n = ident st "필드 이름" in
expect st Token.Colon ":";
let t = parse_ty st in
let f = { f_name = n; f_ty = t; f_pos = fp } in
skip_nl st;
if accept st Token.Comma then (
skip_nl st;
loop (f :: acc))
else (
skip_nl st;
List.rev (f :: acc))
end
in
let fields = loop [] in
expect st Token.RBrace "}";
I_struct { pub; copyable; name; gen; fields; pos = p }
let parse_enum st ~pub =
let p = pos st in
expect st Token.Kw_enum "enum";
let name = ident st "타입 이름" in
let gen = if kind st = Token.LBracket then parse_gen_params st else [] in
expect st Token.LBrace "{";
skip_nl st;
let rec loop acc =
if kind st = Token.RBrace then List.rev acc
else begin
let vp = pos st in
let n = ident st "variant 이름" in
let args =
if accept st Token.LParen then begin
let rec go acc =
let t = parse_ty st in
if accept st Token.Comma then
if kind st = Token.RParen then List.rev (t :: acc)
else go (t :: acc)
else List.rev (t :: acc)
in
let ts = if kind st = Token.RParen then [] else go [] in
expect_close st Token.RParen ")";
ts
end
else []
in
let v = { v_name = n; v_args = args; v_pos = vp } in
skip_nl st;
if accept st Token.Comma then (
skip_nl st;
loop (v :: acc))
else (
skip_nl st;
List.rev (v :: acc))
end
in
let variants = loop [] in
expect st Token.RBrace "}";
I_enum { pub; name; gen; variants; pos = p }
let parse_capability st ~pub =
let p = pos st in
expect st Token.Kw_capability "capability";
let name = ident st "capability 이름" in
expect st Token.LBrace "{";
skip_nl st;
let rec loop acc =
if kind st = Token.RBrace then List.rev acc
else
let m = parse_fn_decl st ~allow_body:false in
skip_nl st;
loop (m :: acc)
in
let methods = loop [] in
expect st Token.RBrace "}";
I_capability { pub; name; methods; pos = p }
let parse_item st =
let p = pos st in
match kind st with
| Token.Kw_import ->
adv st;
let path =
match kind st with
| Token.Str s ->
adv st;
s
| _ -> err_expect st "모듈 경로 문자열"
in
expect st Token.Kw_as "as";
let alias = ident st "별칭" in
I_import { path; alias; pos = p }
| Token.Kw_reexport ->
adv st;
let name = ident st "재수출할 이름" in
I_reexport { name; pos = p }
| Token.Kw_test ->
adv st;
let name =
match kind st with
| Token.Str s ->
adv st;
s
| _ -> err_expect st "테스트 이름 (문자열)"
in
I_test { name; body = parse_block st; pos = p }
| _ -> (
let pub = accept st Token.Kw_pub in
match kind st with
| Token.Kw_fn -> I_fn { pub; decl = parse_fn_decl st ~allow_body:true }
| Token.Kw_copyable ->
adv st;
parse_struct st ~pub ~copyable:true
| Token.Kw_struct -> parse_struct st ~pub ~copyable:false
| Token.Kw_enum -> parse_enum st ~pub
| Token.Kw_capability -> parse_capability st ~pub
| Token.Kw_const ->
adv st;
let name = ident st "상수 이름" in
expect st Token.Colon ":";
let ty = parse_ty st in
expect st Token.Eq "=";
let value = parse_expr st in
I_const { pub; name; ty; value; pos = p }
| _ -> err_expect st "선언 (fn, struct, enum, capability, const)")
(* ------------------------------------------------------------------ *)
(* 오류 복구 *)
(* *)
(* 항목 단위로만 회복한다. 오류가 난 선언은 통째로 버리고 다음 선언에서 *)
(* 다시 시작한다 — 문 단위로 더 잘게 회복하려 하면 파서가 추측을 하게 되고, *)
(* 틀린 추측은 없는 오류를 지어낸다. 한 항목에 오류 하나가 상한이라는 것은 *)
(* 정직한 한계이지 숨길 것이 아니다. *)
(* *)
(* 동기화 지점: 중괄호 깊이 0이고, 줄 첫머리이며, 선언을 시작할 수 있는 토큰. *)
(* 세 조건이 다 필요하다. 본문 안의 fn을 새 항목으로 오인하면 그 뒤가 전부 *)
(* 어긋난다. *)
let item_starts =
[
Token.Kw_import;
Token.Kw_reexport;
Token.Kw_pub;
Token.Kw_fn;
Token.Kw_struct;
Token.Kw_enum;
Token.Kw_capability;
Token.Kw_const;
Token.Kw_copyable;
]
let at_line_start st = st.i > 0 && st.toks.(st.i - 1).Token.kind = Token.Newline
let sync st =
let depth = ref 0 in
let fin = ref false in
while not !fin do
match kind st with
| Token.Eof -> fin := true
| Token.LBrace ->
incr depth;
adv st
| Token.RBrace ->
decr depth;
adv st
| k ->
if !depth <= 0 && at_line_start st && List.mem k item_starts then
fin := true
else adv st
done
let parse_module st =
skip_nl st;
let errors = ref [] in
let rec loop acc =
if kind st = Token.Eof then List.rev acc
else
match parse_item st with
| it ->
skip_nl st;
loop (it :: acc)
| exception Error e ->
errors := e :: !errors;
let before = st.i in
sync st;
(* 진행 보장. 같은 자리에서 다시 실패하면 무한 루프다. *)
if st.i = before then adv st;
skip_nl st;
loop acc
in
let items = loop [] in
({ items }, List.rev !errors)
let parse_all (tokens : Token.t list) : modul * error list =
let st = { toks = Array.of_list tokens; i = 0; no_struct = false } in
parse_module st
let parse (tokens : Token.t list) : modul =
match parse_all tokens with m, [] -> m | _, e :: _ -> raise (Error e)
let parse_result tokens =
match parse_all tokens with m, [] -> Ok m | _, e :: _ -> Error e