package tiny_languages
sectionYPositions = computeSectionYPositions($el), 10)"
x-init="setTimeout(() => sectionYPositions = computeSectionYPositions($el), 10)"
>
Small languages from scratch: Scheme, Lisp, Smalltalk-80, Pascal, BASIC, JavaScript, HTML, CSS and more
Install
dune-project
Dependency
Authors
Maintainers
Sources
0.3.6.tar.gz
md5=7c636383d146d30ac6f2fa234a6253c8
sha512=c79f3823c5f8f57e5038eb640d487c61168b84aa07c61999d6622ef9fd0c890e2b03b4c6a7cdbbe9352a49e25dda00ac7bb14693cee8e3d7beeed251351a2af0
doc/src/tiny_languages.lang_c/Parse_c.ml.html
Source file Parse_c.ml
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107 108 109 110 111 112 113 114 115 116 117 118 119 120 121 122 123 124 125 126 127 128 129 130 131 132 133 134 135 136 137 138 139 140 141 142 143 144 145 146 147 148 149 150 151 152 153 154 155 156 157 158 159 160 161 162 163 164 165 166 167 168 169 170 171 172 173 174 175 176 177 178 179 180 181 182 183 184 185 186 187 188 189 190 191 192 193 194 195 196 197 198 199 200 201 202 203 204 205 206 207 208 209 210 211 212 213 214 215 216 217 218 219 220 221 222 223 224 225 226 227 228 229 230 231 232 233 234 235 236 237 238 239 240 241 242 243 244 245 246 247 248 249 250 251 252 253 254 255 256 257 258 259 260 261 262 263 264 265 266 267 268 269 270 271 272 273 274 275 276 277 278 279 280 281 282 283 284 285 286 287 288 289 290 291 292 293 294 295 296 297 298 299 300 301 302 303 304 305 306 307 308 309 310 311 312 313 314 315 316 317 318 319 320 321 322 323 324 325 326 327 328 329 330 331 332 333 334 335 336 337 338 339 340 341 342 343 344 345 346 347 348 349 350 351 352 353 354 355 356 357 358 359 360 361 362 363 364 365 366 367 368 369 370 371 372 373 374 375 376 377 378 379 380 381 382 383 384 385 386 387 388 389 390 391 392 393 394 395 396 397 398 399 400 401 402 403 404 405 406 407 408 409 410 411 412 413 414 415 416 417 418 419 420 421 422 423 424 425 426 427 428 429 430 431 432 433 434 435 436 437 438 439 440 441 442 443 444 445 446 447 448 449 450 451 452 453 454 455 456 457 458 459 460 461 462 463 464 465 466 467 468 469 470 471 472 473 474 475 476 477 478 479 480 481 482 483 484 485 486 487 488 489 490 491 492 493 494 495 496 497 498 499 500 501 502 503 504 505 506 507 508 509 510 511 512 513 514 515 516 517 518 519 520 521 522 523 524 525 526 527 528 529 530 531 532 533 534 535 536 537 538 539 540 541 542 543 544 545 546 547 548 549 550 551 552 553 554 555 556 557 558 559 560 561 562 563 564 565 566 567 568 569 570 571 572 573 574 575 576 577 578 579 580 581 582 583 584 585 586 587 588 589 590 591 592 593 594 595 596 597 598 599 600 601 602 603 604 605 606 607 608 609 610 611 612 613 614 615 616 617 618 619 620 621 622 623 624 625 626 627 628 629 630 631 632 633 634 635 636 637 638 639 640 641 642 643 644 645 646 647 648 649 650 651 652 653 654 655 656 657 658 659 660 661 662 663 664 665 666 667 668 669 670 671 672 673 674 675 676 677 678 679 680 681 682 683 684 685 686 687 688 689 690 691 692 693 694 695 696 697 698 699 700 701 702 703 704 705 706 707 708 709 710 711 712 713 714 715 716 717 718 719 720 721 722 723 724 725 726 727 728 729 730 731 732 733 734 735 736 737 738 739 740 741 742 743 744 745 746 747 748 749 750 751 752 753 754 755 756 757 758 759 760 761 762 763 764 765 766 767 768 769 770 771 772 773 774 775 776 777 778 779 780 781 782 783 784 785 786 787 788 789 790 791 792 793 794 795 796 797 798 799 800 801 802 803 804 805 806 807 808 809 810 811 812 813 814 815 816 817 818 819 820 821 822 823 824 825 826 827 828 829 830 831 832 833 834 835 836 837 838 839 840 841 842 843 844 845 846 847 848 849 850 851 852 853 854 855 856 857 858 859 860 861 862 863 864 865 866 867 868 869 870 871 872 873 874 875 876 877 878 879 880 881 882 883 884 885 886 887 888 889 890 891 892 893 894 895 896 897 898(* Claude Code * * Copyright (C) 2026 Yoann Padioleau * * This library is free software; you can redistribute it and/or * modify it under the terms of the GNU Library General Public License * (LGPL) as published by the Free Software Foundation; either version * 2 of the License, or (at your option) any later version. *) (* See Parse_c.mli *) open Ast_c (*****************************************************************************) (* The tokens the grammar reads *) (*****************************************************************************) (* the file's tokens but the comments and the directives' lines; [idx]: * each one's index in the file's tokens, a name's [tok]; [types]: the * names known to be types *) type st = { toks : Token_c.t array; idx : int array; mutable pos : int; mutable skipped : (int * int) list; types : (string, unit) Hashtbl.t; } exception Parse_error (* the types every file knows without its headers: Plan 9's (u.h), C's * and POSIX's commonest, OCaml's runtime's; and any name ending in _t *) let known_types = [ "uchar"; "ushort"; "uint"; "ulong"; "vlong"; "uvlong"; "schar"; "u8int"; "u16int"; "u32int"; "u64int"; "s8int"; "s16int"; "s32int"; "s64int"; "uintptr"; "intptr"; "usize"; "Rune"; "va_list"; "jmp_buf"; "FILE"; "bool"; "value"; "intnat"; "uintnat"; "mlsize_t"; "tag_t"; "header_t"; "asize_t" ] let is_known (st : st) (s : string) : bool = Hashtbl.mem st.types s || (String.length s > 2 && String.sub s (String.length s - 2) 2 = "_t") (* a directive's word: define in "# define" *) let word (t : Token_c.t) : string = String.trim (String.sub t.text 1 (String.length t.text - 1)) (* claude: the directives read apart; what is kept is the code of the * first branch of each #if (the second of an #if 0) *) let reading (all : Token_c.t array) : st * define list = let n = Array.length all in let keep = ref [] and defines = ref [] in (* the end of the directive at [j]: its last token, excluded *) let directive_end j = let k = ref (j + 1) in while !k < n && all.(!k).pp && all.(!k).kind <> Directive do incr k done; !k in (* its tokens after its word, but the comments, with their indexes *) let args j = List.filter (fun k -> all.(k).kind <> Comment) (List.init (directive_end j - j - 1) (fun k -> j + 1 + k)) in (* from [j], to the directive that ends the branch we are in: its #else * or #elif (unless [to_endif]) or #endif, nested #ifs counted *) let branch_end j ~to_endif = let depth = ref 0 and k = ref j and found = ref None in while !found = None && !k < n do let t = all.(!k) in (if t.kind = Directive then match word t with | "if" | "ifdef" | "ifndef" -> incr depth | "endif" -> if !depth = 0 then found := Some !k else decr depth | "else" | "elif" when !depth = 0 && not to_endif -> found := Some !k | _ -> ()); incr k done; match !found with Some k -> k | None -> n in let name_at k = { text = all.(k).text; tok = k } in let i = ref 0 in while !i < n do let t = all.(!i) in match t.kind with | Comment -> incr i | Directive -> ( let e = directive_end !i in let a = args !i in match word t with | "define" -> (match a with | m :: rest when all.(m).kind = Ident || all.(m).kind = Keyword -> (* NAME(x, y), the parenthesis touching the name: parameters *) let params, body = match rest with | p :: rest when all.(p).text = "(" && all.(p).offset = all.(m).offset + String.length all.(m).text -> let rec split ps = function | k :: rest when all.(k).text = ")" -> (List.rev ps, rest) | k :: rest -> split (if all.(k).kind = Ident then name_at k :: ps else ps) rest | [] -> (List.rev ps, []) in let ps, body = split [] rest in (Some ps, body) | _ -> (None, rest) in let body = List.filter_map (fun k -> if all.(k).kind = Ident then Some (name_at k) else None) body in defines := { mname = name_at m; mparams = params; mbody = body } :: !defines | _ -> ()); i := e | ("if" | "ifdef") as w when (w = "if" && List.map (fun k -> all.(k).text) a = [ "0" ]) || List.exists (fun k -> all.(k).text = "__cplusplus") a -> (* read the other branch: past this one's #else or #elif line, or its #endif *) let k = branch_end e ~to_endif:false in i := if k < n then directive_end k else n | "else" | "elif" -> (* the branch before was read: this one is not *) let k = branch_end e ~to_endif:true in i := if k < n then directive_end k else n | _ -> i := e) | _ -> if not t.pp then keep := (!i, t) :: !keep; incr i done; let kept = Array.of_list (List.rev !keep) in let types = Hashtbl.create 64 in List.iter (fun s -> Hashtbl.replace types s ()) known_types; ({ toks = Array.map snd kept; idx = Array.map fst kept; pos = 0; skipped = []; types }, List.rev !defines) let at (st : st) (k : int) : Token_c.t option = if st.pos + k < Array.length st.toks then Some st.toks.(st.pos + k) else None let text_at st k = match at st k with Some t -> t.text | None -> "" let eof st = st.pos >= Array.length st.toks let advance st = st.pos <- st.pos + 1 (* a keyword, an operator or a punctuation, not a name spelled so *) let is_at st k s = match at st k with Some t -> t.text = s && t.kind <> Ident | None -> false let is st s = is_at st 0 s let accept st s = if is st s then (advance st; true) else false let expect st s = if not (accept st s) then raise Parse_error let kind_at st k (kind : Token_c.kind) = match at st k with Some t -> t.kind = kind | None -> false let kind_is st kind = kind_at st 0 kind let name st : name = match at st 0 with | Some ({ kind = Ident; _ } as t) -> let n = { text = t.text; tok = st.idx.(st.pos) } in advance st; n | _ -> raise Parse_error (* the line of the token before: a macro without its semicolon ends one *) let prev_line st = if st.pos > 0 then st.toks.(st.pos - 1).line else 0 let new_line st = match at st 0 with Some t -> t.line > prev_line st | None -> true (* past a (...), its nested ones counted *) let skip_parens st = expect st "("; let depth = ref 1 in while !depth > 0 && not (eof st) do if is st "(" then incr depth else if is st ")" then decr depth; advance st done (* gcc's: __attribute__((...)), __asm__("name") after a declarator *) let skip_attributes st = while match at st 0 with | Some { kind = Keyword; text = "__attribute__" | "__asm__" | "__asm" | "asm" | "__declspec"; _ } -> true | _ -> false do advance st; ignore (accept st "volatile" || accept st "__volatile__"); if is st "(" then skip_parens st done (* ... and a macro standing for one: void fatal(char* ) Noreturn;, * register value *sp SP_REG; *) let after_declarator st = skip_attributes st; if kind_is st Ident && List.exists (is_at st 1) [ ";"; ","; "=" ] then advance st (*****************************************************************************) (* Which names are types *) (*****************************************************************************) let base_types = [ "void"; "char"; "short"; "int"; "long"; "float"; "double"; "signed"; "unsigned"; "_Bool"; "__signed__" ] let qualifiers = [ "const"; "volatile"; "restrict"; "__restrict"; "__const"; "__volatile__" ] let storage = [ "static"; "extern"; "auto"; "register"; "inline"; "__inline"; "__inline__"; "__extension__"; "typedef" ] (* a keyword that starts a type (in a cast, sizeof's parentheses) *) let type_keyword (s : string) : bool = List.mem s base_types || List.mem s qualifiers || List.mem s [ "struct"; "union"; "enum"; "typeof"; "__typeof__" ] (* ... or a declaration *) let spec_keyword (s : string) : bool = type_keyword s || List.mem s storage || List.mem s [ "__attribute__"; "__declspec" ] (* from [k], past stars and qualifiers: where they end *) let past_stars st k = let k = ref k in while is_at st !k "*" || List.mem (text_at st !k) qualifiers do incr k done; !k (* claude: whether the name at [k] is a type in the specifiers being * read ([base]: a type already read in them). Known, it is one unless * what follows makes it a value (x = , x.f, x[i]); not known, only when * nothing else could follow: a name (Proc p, CAMLprim value f), stars * then a declared name or nothing (Proc *p;, Proc** ), a function * pointer's declarator (Proc ( *f)(int)) *) let names_type st (k : int) ~(has_base : bool) : bool = let next = at st (k + 1) in let next_is s = is_at st (k + 1) s in let next_kind kind = kind_at st (k + 1) kind in let fn_pointer () = next_is "(" && is_at st (k + 2) "*" && (kind_at st (k + 3) Ident && is_at st (k + 4) ")") && (is_at st (k + 5) "(" || is_at st (k + 5) "[") in if has_base then next_kind Ident else if is_known st (text_at st k) then next_kind Ident || (match next with Some { kind = Keyword; text; _ } -> spec_keyword text | _ -> false) || next_is "*" || next_is ")" || next_is "," || next_is ";" || fn_pointer () else next_kind Ident || (match next with Some { kind = Keyword; text; _ } -> spec_keyword text | _ -> false) || (next_is "*" && let j = past_stars st (k + 1) in is_at st j ")" || is_at st j "," || (kind_at st j Ident && List.exists (is_at st (j + 1)) [ ";"; ","; "="; "["; ")"; "("; ":" ]) || (is_at st j "(" && is_at st (j + 1) "*")) || fn_pointer () (* a declaration starts here, in a block *) let decl_start st : bool = match at st 0 with | Some { kind = Keyword; text; _ } -> spec_keyword text | Some { kind = Ident; _ } -> (not (is_at st 1 ":")) && names_type st 0 ~has_base:false && not (is_at st 1 ")" || is_at st 1 ",") | _ -> false (* a type in parentheses here, at "(": a cast, sizeof(T) *) let type_in_parens st : bool = match at st 1 with | Some { kind = Keyword; text; _ } -> type_keyword text | Some { kind = Ident; text; _ } -> ( let j = past_stars st 2 in (j > 2 && is_at st j ")") || (match at st 2 with Some { kind = Keyword; text; _ } -> type_keyword text | _ -> false) || (is_known st text && (is_at st 2 ")" || (is_at st 2 "(" && is_at st 3 "*"))) || (* (T) before an operand that cannot follow a parenthesized value *) is_at st 2 ")" && match at st 3 with | Some { kind = Ident | Int | Float | Char | String; _ } -> true | Some { kind = Keyword; text = "sizeof"; _ } -> true | Some { kind = Operator; text = "!" | "~"; _ } -> true (* (Qid){ ... }: a compound literal *) | Some { kind = Punctuation; text = "{"; _ } -> true | _ -> false) | _ -> false (*****************************************************************************) (* Declarations *) (*****************************************************************************) let rec specifiers st : spec * bool = let typedef = ref false and base = ref None and any = ref false in let continue = ref true in while !continue do match at st 0 with | Some { kind = Keyword; text; _ } when spec_keyword text -> any := true; (match text with | "typedef" -> advance st; typedef := true | "struct" | "union" -> advance st; base := Some (struct_body st) | "enum" -> advance st; base := Some (enum_body st) | "typeof" | "__typeof__" -> advance st; let is_type = type_in_parens st in expect st "("; let e = if is_type then Etype (type_name st) else expr st in expect st ")"; base := Some (Ttypeof e) | "__attribute__" | "__declspec" -> skip_attributes st | _ -> advance st; if List.mem text base_types && !base = None then base := Some Tbase) | Some { kind = Ident; _ } when names_type st 0 ~has_base:(!base <> None) -> any := true; base := Some (Tname (name st)) | _ -> continue := false done; ({ typedef = !typedef; base = Option.value !base ~default:Tbase }, !any) (* struct or union, after the keyword: its tag, its fields *) and struct_body st : ty = skip_attributes st; let tag = if kind_is st Ident then Some (name st) else None in if accept st "{" then begin let fields = ref [] in while not (is st "}" || eof st) do if accept st ";" then () else if kind_is st Ident && is_at st 1 ";" then begin (* Plan 9's anonymous member: Lock; *) fields := { dname = None; dty = Tname (name st); dinit = None } :: !fields; advance st end else begin let sp, _ = specifiers st in if accept st ";" then fields := { dname = None; dty = sp.base; dinit = None } :: !fields else begin let one () = let d = if is st ":" then { dname = None; dty = sp.base; dinit = None } else let n, f = declarator st ~abstract:false in { dname = n; dty = f sp.base; dinit = None } in (* a bit field's width *) let d = if accept st ":" then { d with dinit = Some (Iexpr (cond st)) } else d in skip_attributes st; fields := d :: !fields in one (); while accept st "," do one () done; expect st ";" end end done; expect st "}"; skip_attributes st; Tstruct (tag, Some (List.rev !fields)) end else if tag = None then raise Parse_error else Tstruct (tag, None) and enum_body st : ty = skip_attributes st; let tag = if kind_is st Ident then Some (name st) else None in if accept st "{" then begin let cs = ref [] in while not (is st "}" || eof st) do let n = name st in let v = if accept st "=" then Some (cond st) else None in cs := (n, v) :: !cs; if not (is st "}") then expect st "," done; expect st "}"; Tenum (tag, Some (List.rev !cs)) end else if tag = None then raise Parse_error else Tenum (tag, None) (* claude: a declarator, the name inside its type -- *p, a[10], ( *f)(int) * -- as the name and the function that builds its type from the * specifiers': the stars first, then the suffixes ([], (params)), then * what the parentheses hold, outermost: * * int ( *f)(int) f: the star, on (int) on int = pointer to function * int *f(int) f: (int) on the star on int = function returning a pointer * * [abstract]: the name may be missing (a parameter's type alone, a cast) *) and declarator st ~(abstract : bool) : name option * (ty -> ty) = let stars = ref 0 in while is st "*" || is st "^" || List.mem (text_at st 0) qualifiers || is st "__attribute__" do if is st "*" || is st "^" then (advance st; incr stars) else if is st "__attribute__" then skip_attributes st else advance st done; let n, inner = if kind_is st Ident then (Some (name st), Fun.id) else if is st "(" && ((not abstract) || is_at st 1 "*" || is_at st 1 "^" || is_at st 1 "(" || is_at st 1 "[") then begin advance st; let n, f = declarator st ~abstract in expect st ")"; (n, f) end else if abstract then (None, Fun.id) else raise Parse_error in let suffixes = ref [] in let continue = ref true in while !continue do if accept st "[" then begin let e = if is st "]" then None else Some (expr st) in expect st "]"; suffixes := `Array e :: !suffixes end else if accept st "(" then begin let ps = params st in expect st ")"; suffixes := `Func ps :: !suffixes end else if kind_is st Ident && is_at st 1 "(" && is_at st 2 "(" then begin (* GNU's f PARAMS ((int a)), the parameters for ANSI compilers only *) advance st; advance st; advance st; let ps = params st in expect st ")"; expect st ")"; suffixes := `Func ps :: !suffixes end else continue := false done; let suffixes = List.rev !suffixes in let build base = let t = ref base in for _ = 1 to !stars do t := Tptr !t done; inner (List.fold_right (fun s t -> match s with `Array e -> Tarray (t, e) | `Func ps -> Tfunc (t, ps)) suffixes !t) in (n, build) (* a function's parameters, inside its parentheses: types and names, or * K&R's names alone, or (void), or (fmt, ...) *) and params st : decl list = let out = ref [] in if not (is st ")") then begin let one () = if not (accept st "...") then begin let sp, _ = specifiers st in let n, f = declarator st ~abstract:true in skip_attributes st; out := { dname = n; dty = f sp.base; dinit = None } :: !out end in one (); while accept st "," do one () done end; List.rev !out (* a type alone: in a cast, sizeof's parentheses, a macro's argument *) and type_name st : ty = let sp, any = specifiers st in let base = if any then sp.base else Tname (name st) in let _, f = declarator st ~abstract:true in f base (* after the specifiers: the declarators, their initializers; a * typedef's names become types *) and declarators st (sp : spec) : decl list = let out = ref [] in let one () = let n, f = declarator st ~abstract:false in after_declarator st; let d = { dname = n; dty = f sp.base; dinit = (if accept st "=" then Some (init st) else None) } in (match n with Some n when sp.typedef -> Hashtbl.replace st.types n.text () | _ -> ()); out := d :: !out in one (); while accept st "," do one () done; List.rev !out and init st : init = if is st "{" then braces st else Iexpr (assign st) (* { .x = 1, [2] = 3, 4, } *) and braces st : init = expect st "{"; let out = ref [] in while not (is st "}" || eof st) do let ds = ref [] in let continue = ref true in while !continue do if is st "." && kind_at st 1 Ident then (advance st; ds := Dfield (name st) :: !ds) else if accept st "[" then begin let e = cond st in if accept st "..." then ignore (cond st); expect st "]"; ds := Dindex e :: !ds end else if !ds = [] && kind_is st Ident && is_at st 1 ":" then begin (* gcc's old x: 1 *) ds := [ Dfield (name st) ]; advance st; continue := false end else continue := false done; if !ds <> [] then ignore (accept st "="); out := (List.rev !ds, init st) :: !out; if not (is st "}") then expect st "," done; expect st "}"; Ilist (List.rev !out) (*****************************************************************************) (* Expressions *) (*****************************************************************************) (* C's binary operators, from the loosest: || && | ^ & == < << + * *) and precedence (t : Token_c.t) : int option = if t.kind <> Operator then None else match t.text with | "||" -> Some 1 | "&&" -> Some 2 | "|" -> Some 3 | "^" -> Some 4 | "&" -> Some 5 | "==" | "!=" -> Some 6 | "<" | ">" | "<=" | ">=" -> Some 7 | "<<" | ">>" -> Some 8 | "+" | "-" -> Some 9 | "*" | "/" | "%" -> Some 10 | _ -> None and expr st : expr = let e = assign st in if is st "," then begin let es = ref [ e ] in while accept st "," do es := assign st :: !es done; Emisc (List.rev !es) end else e and assign st : expr = let l = cond st in match at st 0 with | Some { kind = Operator; text = "=" | "+=" | "-=" | "*=" | "/=" | "%=" | "&=" | "|=" | "^=" | "<<=" | ">>="; _ } -> advance st; Emisc [ l; assign st ] | _ -> l and cond st : expr = let c = binary st 1 in if accept st "?" then begin (* gcc's a ?: b *) let a = if is st ":" then Econst else expr st in expect st ":"; Emisc [ c; a; assign st ] end else c (* precedence climbing: a loop along a chain, a recursion only for a * tighter operator's right side *) and binary st (min : int) : expr = let l = ref (unary st) in let continue = ref true in while !continue do match Option.bind (at st 0) precedence with | Some p when p >= min -> advance st; l := Emisc [ !l; binary st (p + 1) ] | _ -> continue := false done; !l and unary st : expr = match at st 0 with | Some { kind = Operator; text = "-" | "+" | "!" | "~" | "*" | "&" | "++" | "--" | "&&"; _ } -> advance st; unary st | Some { kind = Keyword; text = "sizeof" | "signof" | "__alignof__"; _ } -> advance st; if is st "(" && type_in_parens st then begin advance st; let t = type_name st in expect st ")"; Etype t end else unary st | Some { kind = Keyword; text = "__extension__"; _ } -> advance st; unary st | Some { kind = Punctuation; text = "("; _ } when type_in_parens st -> advance st; let t = type_name st in expect st ")"; if is st "{" then Ecompound (t, braces st) else Ecast (t, unary st) | _ -> postfix st (primary st) and postfix st (e : expr) : expr = let e = ref e in let continue = ref true in while !continue do if accept st "[" then begin let i = expr st in expect st "]"; e := Emisc [ !e; i ] end else if accept st "(" then begin let args = ref [] in if not (is st ")") then begin args := [ arg st ]; while accept st "," do args := arg st :: !args done end; expect st ")"; e := Ecall (!e, List.rev !args) end else if (is st "." || is st "->") && kind_at st 1 Ident then begin advance st; e := Efield (!e, name st) end else if is st "++" || is st "--" then advance st else continue := false done; !e (* a call's argument, or a macro's that is a type: va_arg(l, int), * va_arg(l, Foo* ) *) and arg st : expr = let type_arg = match at st 0 with | Some { kind = Keyword; text; _ } -> type_keyword text | Some { kind = Ident; text; _ } -> let j = past_stars st 1 in (is_known st text && (is_at st 1 ")" || is_at st 1 "," || j > 1)) || (j > 1 && (is_at st j ")" || is_at st j ",")) | _ -> false in if type_arg then Etype (type_name st) else assign st and primary st : expr = match at st 0 with | Some { kind = Ident; text; _ } when not (Token_c.is_constant text && kind_at st 1 String) -> Eident (name st) | Some { kind = Int | Float | Char; _ } -> advance st; Econst | Some { kind = String | Ident; _ } -> advance st; (* "a" "b", and "a" PRId64 "b", PREFIX "x" SUFFIX: a macro * standing for a string *) while kind_is st String || kind_is st Ident && (kind_at st 1 String || (Token_c.is_constant (text_at st 0) && List.exists (is_at st 1) [ ";"; ","; ")" ])) do advance st done; Econst | Some { kind = Punctuation; text = "("; _ } -> advance st; if is st "{" then begin (* gcc's ({ ... }) *) let ss = block st in expect st ")"; Estmt ss end else begin let e = expr st in expect st ")"; e end | _ -> raise Parse_error (*****************************************************************************) (* Statements *) (*****************************************************************************) and paren_expr st : expr = expect st "("; let e = expr st in expect st ")"; e and declaration st : stmt = let sp, _ = specifiers st in if accept st ";" then Sdecl (sp, []) else begin let ds = declarators st sp in expect st ";"; Sdecl (sp, ds) end and stmt st : stmt = match at st 0 with | Some { kind = Punctuation; text = "{"; _ } -> Sblock (block st) | Some { kind = Punctuation; text = ";"; _ } -> advance st; Snest ([], []) | Some { kind = Keyword; text; _ } when not (spec_keyword text) -> ( advance st; match text with | "if" -> let c = paren_expr st in let a = stmt st in Snest ([ c ], if accept st "else" then [ a; stmt st ] else [ a ]) | "while" | "switch" -> let c = paren_expr st in Snest ([ c ], [ stmt st ]) | "do" -> let body = stmt st in expect st "while"; let c = paren_expr st in expect st ";"; Snest ([ c ], [ body ]) | "for" -> expect st "("; let first = if accept st ";" then None else if decl_start st then Some (declaration st) else begin let e = expr st in expect st ";"; Some (Sexpr e) end in let c = if is st ";" then [] else [ expr st ] in expect st ";"; let step = if is st ")" then [] else [ expr st ] in expect st ")"; Sfor (first, c @ step, stmt st) | "return" -> if accept st ";" then Snest ([], []) else begin let e = expr st in expect st ";"; Snest ([ e ], []) end | "break" | "continue" -> expect st ";"; Snest ([], []) | "goto" -> let n = name st in expect st ";"; Sgoto n | "case" -> let e = cond st in (* gcc's case 1 ... 3: *) let e = if accept st "..." then Emisc [ e; cond st ] else e in expect st ":"; Snest ([ e ], []) | "default" -> expect st ":"; Snest ([], []) | "asm" | "__asm__" | "__asm" -> ignore (accept st "volatile" || accept st "__volatile__"); skip_parens st; expect st ";"; Snest ([], []) | _ -> (* sizeof x; and the like: an expression after all *) st.pos <- st.pos - 1; expr_stmt st) | Some { kind = Ident; _ } when is_at st 1 ":" -> let n = name st in advance st; Slabel (n, Snest ([], [])) | _ when decl_start st -> ( let start = st.pos in try declaration st with Parse_error when st.toks.(start).kind = Ident -> (* DBG print(...);: not a declaration but a macro before a * statement, #define DBG if(debug) *) st.pos <- start; let e = Eident (name st) in Snest ([ e ], [ stmt st ])) | _ -> expr_stmt st (* claude: an expression and its semicolon, or a macro used as a * statement: ARGBEGIN{ ... }, FOO(x) { ... }, FOO(x) stmt; on the same * line, or FOO(x) and ARGEND alone at a line's end, no semicolon *) and expr_stmt st : stmt = if kind_is st Ident && is_at st 1 "{" then begin let e = Eident (name st) in Snest ([ e ], [ stmt st ]) end else begin let e = expr st in if accept st ";" then Sexpr e else match e with | (Ecall _ | Eident _) when is st "{" -> Snest ([ e ], [ stmt st ]) (* a macro's label: Instruct(STOP): *) | Ecall _ when accept st ":" -> Snest ([ e ], []) | (Ecall _ | Eident _) when eof st || is st "}" || new_line st -> Sexpr e | Ecall _ -> Snest ([ e ], [ stmt st ]) | _ -> raise Parse_error end (* claude: a statement that does not parse is skipped to its semicolon * (or its block's end), not the function: the scopes stay right around * it *) and block st : stmt list = expect st "{"; let out = ref [] in while not (is st "}" || eof st) do let start = st.pos in match stmt st with | s -> out := s :: !out | exception Parse_error -> st.pos <- start; skip_stmt st; st.skipped <- (st.idx.(start), if eof st then max_int else st.idx.(st.pos)) :: st.skipped done; expect st "}"; List.rev !out (* past the statement at point: to its ; or past its block, at its depth, * or to the } of the block around it *) and skip_stmt st = let depth = ref 0 and continue = ref true and first = ref true in while !continue && not (eof st) do if is st "{" then (incr depth; advance st) else if is st "}" then if !depth = 0 then (if !first then advance st; continue := false) else begin decr depth; advance st; if !depth = 0 then continue := false end else if is st ";" && !depth = 0 then (advance st; continue := false) else advance st; first := false done (*****************************************************************************) (* The file *) (*****************************************************************************) (* claude: FOO(...) at the top, not followed by a body ({, or K&R's * parameters' declarations): a macro used, FOO(x); or FOO(x) alone on * its line -- not a function declared with no type, which C89 allowed * and no one writes *) let macro_use st : bool = kind_is st Ident && is_at st 1 "(" && let depth = ref 0 and j = ref 1 and continue = ref true in while !continue && st.pos + !j < Array.length st.toks do if is_at st !j "(" then incr depth else if is_at st !j ")" then (decr depth; if !depth = 0 then continue := false); if !continue then incr j done; (not !continue) && match at st (!j + 1) with | None -> true | Some { text = "{"; kind = Punctuation; _ } -> false | Some { kind = Keyword; text; _ } -> not (spec_keyword text) | Some { kind = Ident; text; _ } -> not (is_known st text || names_type st (!j + 1) ~has_base:false) | Some _ -> true let macro st : item = let e = expr st in ignore (accept st ";"); Imacro e (* a macro used, or a declaration; or a macro after all, when what looked * like a K&R function's head is not one: STUB(tanh) then a line * starting with a type *) let rec item st : item = let start = st.pos in if macro_use st then macro st else try declaration_item st with Parse_error when start + 1 < Array.length st.toks && st.toks.(start).kind = Ident && st.toks.(start + 1).text = "(" -> st.pos <- start; macro st and declaration_item st : item = let start = st.pos in let sp, any = specifiers st in if accept st ";" then Idecl (sp, []) else begin let n, f = declarator st ~abstract:false in after_declarator st; let d = { dname = n; dty = f sp.base; dinit = None } in match d.dty with | Tfunc _ when is st "{" -> Ifunc (sp, d, [], block st) | Tfunc _ when decl_start st -> (* K&R: f(a, b) int a; char *b; { ... } *) let kr = ref [] in while not (is st "{" || eof st) do match declaration st with Sdecl (_, ds) -> kr := List.rev_append ds !kr | _ -> () done; Ifunc (sp, d, List.rev !kr, block st) | _ -> let d = if accept st "=" then { d with dinit = Some (init st) } else d in (match n with Some n when sp.typedef -> Hashtbl.replace st.types n.text () | _ -> ()); let rest = if accept st "," then declarators st sp else [] in if (not any) && rest = [] && (is st ";" || new_line st) then begin (* no type: a macro used at the top, FOO(x); or FOO(x) *) st.pos <- start; let e = expr st in ignore (accept st ";"); Imacro e end else begin expect st ";"; Idecl (sp, d :: rest) end end (* the tokens of an item that did not parse: to the next one, a token at * column 0 after a ; or a } *) let skip_item st = advance st; while (not (eof st)) && match (at st 0, st.toks.(st.pos - 1)) with | Some t, prev -> not (t.col = 0 && t.text <> "{" && t.text <> "}" && (prev.text = ";" || prev.text = "}")) | None, _ -> false do advance st done let parse (tokens : Token_c.t list) : file = let st, defines = reading (Array.of_list tokens) in let out = ref [] in while not (eof st) do if not (accept st ";") then begin let start = st.pos in match item st with | it -> out := it :: !out | exception Parse_error -> st.pos <- start; skip_item st; st.skipped <- (st.idx.(start), if eof st then max_int else st.idx.(st.pos)) :: st.skipped end done; { items = List.rev !out; defines; skipped = List.rev st.skipped }
sectionYPositions = computeSectionYPositions($el), 10)"
x-init="setTimeout(() => sectionYPositions = computeSectionYPositions($el), 10)"
>