src/Pure/ML/ml_lex.ML
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(*  Title:      Pure/ML/ml_lex.ML
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    Author:     Makarius
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Lexical syntax for Isabelle/ML and Standard ML.
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*)
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signature ML_LEX =
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sig
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  val keywords: string list
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  datatype token_kind =
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    Keyword | Ident | Long_Ident | Type_Var | Word | Int | Real | Char | String |
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    Space | Comment of Comment.kind option | Error of string | EOF
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  eqtype token
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  val stopper: token Scan.stopper
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  val is_regular: token -> bool
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  val is_improper: token -> bool
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  val is_comment: token -> bool
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  val set_range: Position.range -> token -> token
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  val range_of: token -> Position.range
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  val pos_of: token -> Position.T
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  val end_pos_of: token -> Position.T
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  val kind_of: token -> token_kind
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  val content_of: token -> string
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  val check_content_of: token -> string
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  val flatten: token list -> string
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  val source: (Symbol.symbol, 'a) Source.source ->
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    (token, (Symbol_Pos.T, Position.T * (Symbol.symbol, 'a) Source.source)
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      Source.source) Source.source
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  val tokenize: string -> token list
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  val tokenize_range: Position.range -> string -> token list
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  val tokenize_no_range: string -> token list
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  val read_text: Symbol_Pos.text * Position.T -> token Antiquote.antiquote list
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  val read: Symbol_Pos.text -> token Antiquote.antiquote list
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  val read_range: Position.range -> Symbol_Pos.text -> token Antiquote.antiquote list
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  val read_source': {language: bool -> Markup.T, opaque_warning: bool, symbols: bool} ->
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    token Antiquote.antiquote Symbol_Pos.scanner -> Input.source -> token Antiquote.antiquote list
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  val read_source: Input.source -> token Antiquote.antiquote list
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  val read_source_sml: Input.source -> token Antiquote.antiquote list
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  val read_symbols: Symbol_Pos.T list -> token Antiquote.antiquote list
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  val read_symbols_sml: Symbol_Pos.T list -> token Antiquote.antiquote list
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end;
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structure ML_Lex: ML_LEX =
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struct
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(** keywords **)
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val keywords =
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 ["#", "(", ")", ",", "->", "...", ":", ":>", ";", "=", "=>", "[",
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  "]", "_", "{", "|", "}", "abstype", "and", "andalso", "as", "case",
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  "datatype", "do", "else", "end", "eqtype", "exception", "fn", "fun",
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  "functor", "handle", "if", "in", "include", "infix", "infixr",
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  "let", "local", "nonfix", "of", "op", "open", "orelse", "raise",
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  "rec", "sharing", "sig", "signature", "struct", "structure", "then",
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  "type", "val", "where", "while", "with", "withtype"];
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val keywords2 =
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 ["and", "case", "do", "else", "end", "if", "in", "let", "local", "of",
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  "sig", "struct", "then", "while", "with"];
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val keywords3 =
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 ["handle", "open", "raise"];
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val lexicon = Scan.make_lexicon (map raw_explode keywords);
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(** tokens **)
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(* datatype token *)
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datatype token_kind =
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  Keyword | Ident | Long_Ident | Type_Var | Word | Int | Real | Char | String |
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  Space | Comment of Comment.kind option | Error of string | EOF;
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datatype token = Token of Position.range * (token_kind * string);
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(* position *)
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fun set_range range (Token (_, x)) = Token (range, x);
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fun range_of (Token (range, _)) = range;
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val pos_of = #1 o range_of;
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val end_pos_of = #2 o range_of;
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(* stopper *)
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fun mk_eof pos = Token ((pos, Position.none), (EOF, ""));
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val eof = mk_eof Position.none;
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fun is_eof (Token (_, (EOF, _))) = true
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  | is_eof _ = false;
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val stopper =
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  Scan.stopper (fn [] => eof | toks => mk_eof (end_pos_of (List.last toks))) is_eof;
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(* token content *)
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fun kind_of (Token (_, (k, _))) = k;
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fun content_of (Token (_, (_, x))) = x;
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fun token_leq (tok, tok') = content_of tok <= content_of tok';
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fun is_keyword (Token (_, (Keyword, _))) = true
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  | is_keyword _ = false;
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fun is_delimiter (Token (_, (Keyword, x))) = not (Symbol.is_ascii_identifier x)
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  | is_delimiter _ = false;
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fun is_regular (Token (_, (Error _, _))) = false
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  | is_regular (Token (_, (EOF, _))) = false
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  | is_regular _ = true;
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fun is_improper (Token (_, (Space, _))) = true
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  | is_improper (Token (_, (Comment _, _))) = true
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  | is_improper _ = false;
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fun is_comment (Token (_, (Comment _, _))) = true
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  | is_comment _ = false;
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fun warning_opaque tok =
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  (case tok of
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    Token (_, (Keyword, ":>")) =>
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      warning ("Opaque signature matching (:>) fails to work with ML pretty printing --\n\
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        \prefer non-opaque matching (:) possibly with abstype" ^
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        Position.here (pos_of tok))
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  | _ => ());
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fun check_content_of tok =
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  (case kind_of tok of
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    Error msg => error msg
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  | _ => content_of tok);
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(* flatten *)
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fun flatten_content (tok :: (toks as tok' :: _)) =
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      Symbol.escape (check_content_of tok) ::
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        (if is_improper tok orelse is_improper tok' then flatten_content toks
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         else Symbol.space :: flatten_content toks)
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  | flatten_content toks = map (Symbol.escape o check_content_of) toks;
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val flatten = implode o flatten_content;
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(* markup *)
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local
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val token_kind_markup =
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 fn Type_Var => (Markup.ML_tvar, "")
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  | Word => (Markup.ML_numeral, "")
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  | Int => (Markup.ML_numeral, "")
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  | Real => (Markup.ML_numeral, "")
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  | Char => (Markup.ML_char, "")
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  | String => (Markup.ML_string, "")
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  | Comment _ => (Markup.ML_comment, "")
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  | Error msg => (Markup.bad (), msg)
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  | _ => (Markup.empty, "");
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in
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fun token_report (tok as Token ((pos, _), (kind, x))) =
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  let
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    val (markup, txt) =
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      if not (is_keyword tok) then token_kind_markup kind
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      else if is_delimiter tok then (Markup.ML_delimiter, "")
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      else if member (op =) keywords2 x then (Markup.ML_keyword2 |> Markup.keyword_properties, "")
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      else if member (op =) keywords3 x then (Markup.ML_keyword3 |> Markup.keyword_properties, "")
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      else (Markup.ML_keyword1 |> Markup.keyword_properties, "");
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  in ((pos, markup), txt) end;
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end;
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(** scanners **)
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open Basic_Symbol_Pos;
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val err_prefix = "SML lexical error: ";
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fun !!! msg = Symbol_Pos.!!! (fn () => err_prefix ^ msg);
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(* identifiers *)
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local
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val scan_letdigs =
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  Scan.many (Symbol.is_ascii_letdig o Symbol_Pos.symbol);
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val scan_alphanumeric =
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  Scan.one (Symbol.is_ascii_letter o Symbol_Pos.symbol) ::: scan_letdigs;
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val scan_symbolic =
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  Scan.many1 (member (op =) (raw_explode "!#$%&*+-/:<=>?@\\^`|~") o Symbol_Pos.symbol);
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in
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val scan_ident = scan_alphanumeric || scan_symbolic;
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val scan_long_ident =
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  Scan.repeats1 (scan_alphanumeric @@@ $$$ ".") @@@ (scan_ident || $$$ "=");
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val scan_type_var = $$$ "'" @@@ scan_letdigs;
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end;
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(* numerals *)
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local
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val scan_dec = Scan.many1 (Symbol.is_ascii_digit o Symbol_Pos.symbol);
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val scan_hex = Scan.many1 (Symbol.is_ascii_hex o Symbol_Pos.symbol);
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val scan_sign = Scan.optional ($$$ "~") [];
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val scan_decint = scan_sign @@@ scan_dec;
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val scan_exp = ($$$ "E" || $$$ "e") @@@ scan_decint;
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in
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val scan_word =
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  $$$ "0" @@@ $$$ "w" @@@ $$$ "x" @@@ scan_hex ||
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  $$$ "0" @@@ $$$ "w" @@@ scan_dec;
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val scan_int = scan_sign @@@ ($$$ "0" @@@ $$$ "x" @@@ scan_hex || scan_dec);
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val scan_rat = scan_decint @@@ Scan.optional ($$$ "/" @@@ scan_dec) [];
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val scan_real =
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  scan_decint @@@ $$$ "." @@@ scan_dec @@@ Scan.optional scan_exp [] ||
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  scan_decint @@@ scan_exp;
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end;
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(* chars and strings *)
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val scan_blanks1 = Scan.many1 (Symbol.is_ascii_blank o Symbol_Pos.symbol);
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local
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val scan_escape =
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  Scan.one (member (op =) (raw_explode "\"\\abtnvfr") o Symbol_Pos.symbol) >> single ||
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  $$$ "^" @@@
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    (Scan.one (fn (s, _) => Char.ord #"@" <= ord s andalso ord s <= Char.ord #"_") >> single) ||
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  Scan.one (Symbol.is_ascii_digit o Symbol_Pos.symbol) --
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    Scan.one (Symbol.is_ascii_digit o Symbol_Pos.symbol) --
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    Scan.one (Symbol.is_ascii_digit o Symbol_Pos.symbol) >> (fn ((a, b), c) => [a, b, c]);
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val scan_str =
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  Scan.one (fn (s, _) => Symbol.not_eof s andalso s <> "\"" andalso s <> "\\" andalso
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    (not (Symbol.is_char s) orelse Symbol.is_printable s)) >> single ||
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  $$$ "\\" @@@ !!! "bad escape character in string" scan_escape;
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val scan_gap = $$$ "\\" @@@ scan_blanks1 @@@ $$$ "\\";
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val scan_gaps = Scan.repeats scan_gap;
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in
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val scan_char =
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  $$$ "#" @@@ $$$ "\"" @@@ scan_gaps @@@ scan_str @@@ scan_gaps @@@ $$$ "\"";
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val recover_char =
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  $$$ "#" @@@ $$$ "\"" @@@ scan_gaps @@@ Scan.optional (Scan.permissive scan_str @@@ scan_gaps) [];
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val scan_string =
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  Scan.ahead ($$ "\"") |--
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    !!! "unclosed string literal"
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      ($$$ "\"" @@@ Scan.repeats (scan_gap || scan_str) @@@ $$$ "\"");
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val recover_string =
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  $$$ "\"" @@@ Scan.repeats (scan_gap || Scan.permissive scan_str);
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end;
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(* rat antiquotation *)
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val rat_name = Symbol_Pos.explode ("Pure.rat ", Position.none);
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val scan_rat_antiq =
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  Symbol_Pos.scan_pos -- ($$ "@" |-- Symbol_Pos.scan_pos -- scan_rat) -- Symbol_Pos.scan_pos
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    >> (fn ((pos1, (pos2, body)), pos3) =>
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      {start = Position.range_position (pos1, pos2),
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       stop = Position.none,
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       range = Position.range (pos1, pos3),
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       body = rat_name @ body});
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(* scan tokens *)
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local
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fun token k ss = Token (Symbol_Pos.range ss, (k, Symbol_Pos.content ss));
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val scan_sml =
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  scan_char >> token Char ||
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  scan_string >> token String ||
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  scan_blanks1 >> token Space ||
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  Symbol_Pos.scan_comment err_prefix >> token (Comment NONE) ||
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  Scan.max token_leq
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   (Scan.literal lexicon >> token Keyword)
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   (scan_word >> token Word ||
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    scan_real >> token Real ||
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    scan_int >> token Int ||
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    scan_long_ident >> token Long_Ident ||
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    scan_ident >> token Ident ||
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    scan_type_var >> token Type_Var);
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val scan_sml_antiq = scan_sml >> Antiquote.Text;
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val scan_ml_antiq =
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  Comment.scan_inner >> (fn (kind, ss) => Antiquote.Text (token (Comment (SOME kind)) ss)) ||
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  Antiquote.scan_control Antiquote.err_prefix >> Antiquote.Control ||
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  Antiquote.scan_antiq >> Antiquote.Antiq ||
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  scan_rat_antiq >> Antiquote.Antiq ||
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  scan_sml_antiq;
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fun recover msg =
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 (recover_char ||
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  recover_string ||
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  Symbol_Pos.recover_cartouche ||
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  Symbol_Pos.recover_comment ||
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  Scan.one (Symbol.not_eof o Symbol_Pos.symbol) >> single)
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  >> (single o token (Error msg));
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fun reader {opaque_warning} scan syms =
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  let
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    val termination =
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      if null syms then []
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      else
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        let
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          val pos1 = List.last syms |-> Position.symbol;
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          val pos2 = Position.symbol Symbol.space pos1;
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        in [Antiquote.Text (Token (Position.range (pos1, pos2), (Space, Symbol.space)))] end;
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    fun check (Antiquote.Text tok) =
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          (check_content_of tok; if opaque_warning then warning_opaque tok else ())
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      | check _ = ();
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    val input =
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      Source.of_list syms
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      |> Source.source Symbol_Pos.stopper
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        (Scan.recover (Scan.bulk (!!! "bad input" scan))
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          (fn msg => recover msg >> map Antiquote.Text))
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      |> Source.exhaust;
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    val _ = Position.reports (Antiquote.antiq_reports input);
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    val _ = Position.reports_text (maps (fn Antiquote.Text t => [token_report t] | _ => []) input);
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    val _ = List.app check input;
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  in input @ termination end;
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in
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fun source src =
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  Symbol_Pos.source (Position.line 1) src
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  |> Source.source Symbol_Pos.stopper (Scan.recover (Scan.bulk (!!! "bad input" scan_sml)) recover);
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val tokenize = Symbol.explode #> Source.of_list #> source #> Source.exhaust;
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fun tokenize_range range = tokenize #> map (set_range range);
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val tokenize_no_range = tokenize_range Position.no_range;
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val read_text = reader {opaque_warning = true} scan_ml_antiq o Symbol_Pos.explode;
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fun read text = read_text (text, Position.none);
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fun read_range range =
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  read #> map (fn Antiquote.Text tok => Antiquote.Text (set_range range tok) | antiq => antiq);
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fun read_source' {language, symbols, opaque_warning} scan source =
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  let
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    val pos = Input.pos_of source;
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    val _ =
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      if Position.is_reported_range pos
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      then Position.report pos (language (Input.is_delimited source))
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      else ();
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  in
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    Input.source_explode source
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    |> not symbols ? maps (fn (s, p) => raw_explode s |> map (rpair p))
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    |> reader {opaque_warning = opaque_warning} scan
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  end;
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val read_source =
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  read_source' {language = Markup.language_ML, symbols = true, opaque_warning = true}
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    scan_ml_antiq;
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val read_source_sml =
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  read_source' {language = Markup.language_SML, symbols = false, opaque_warning = false}
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    scan_sml_antiq;
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   392
74373
6e4093927dbb outer syntax: support for control-cartouche tokens;
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   393
val read_symbols = reader {opaque_warning = true} scan_ml_antiq;
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val read_symbols_sml = reader {opaque_warning = false} scan_sml_antiq;
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end;
852fc50927b1 Lexical syntax for SML.
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   398
end;