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(**************************************************************************)
(*                                                                        *)
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(*  Copyright (C) 2010-                                                   *)
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(*    François Bobot                                                     *)
(*    Jean-Christophe Filliâtre                                          *)
(*    Claude Marché                                                      *)
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(*    Andrei Paskevich                                                    *)
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(*                                                                        *)
(*  This software is free software; you can redistribute it and/or        *)
(*  modify it under the terms of the GNU Library General Public           *)
(*  License version 2.1, with the special exception on linking            *)
(*  described in file LICENSE.                                            *)
(*                                                                        *)
(*  This software is distributed in the hope that it will be useful,      *)
(*  but WITHOUT ANY WARRANTY; without even the implied warranty of        *)
(*  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.                  *)
(*                                                                        *)
(**************************************************************************)
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{
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  open Format
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  open Lexing
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  open Term
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  open Ptree
  open Parser

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  (* lexical errors *)

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  exception IllegalCharacter of char
  exception UnterminatedComment
  exception UnterminatedString
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  exception AmbiguousPath of string * string
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  let () = Exn_printer.register (fun fmt e -> match e with
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    | IllegalCharacter c -> fprintf fmt "illegal character %c" c
    | UnterminatedComment -> fprintf fmt "unterminated comment"
    | UnterminatedString -> fprintf fmt "unterminated string"
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    | AmbiguousPath (f1, f2) ->
        fprintf fmt "ambiguous path:@ both `%s'@ and `%s'@ match" f1 f2
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    | _ -> raise e)
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  let keywords = Hashtbl.create 97
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  let () =
    List.iter
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      (fun (x,y) -> Hashtbl.add keywords x y)
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      [
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	"and", AND;
	"as", AS;
	"axiom", AXIOM;
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	"clone", CLONE;
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	"else", ELSE;
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	"end", END;
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	"epsilon", EPSILON;
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	"exists", EXISTS;
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	"export", EXPORT;
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        "false", FALSE;
	"forall", FORALL;
	"goal", GOAL;
	"if", IF;
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	"import", IMPORT;
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	"in", IN;
	"inductive", INDUCTIVE;
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	"lemma", LEMMA;
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	"let", LET;
	"logic", LOGIC;
	"match", MATCH;
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	"meta", META;
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	"namespace", NAMESPACE;
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	"not", NOT;
	"or", OR;
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        "prop", PROP;
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	"then", THEN;
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	"theory", THEORY;
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	"true", TRUE;
	"type", TYPE;
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	"use", USE;
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	"with", WITH;
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	(* programs *)
	"absurd", ABSURD;
	"any", ANY;
	"assert", ASSERT;
	"assume", ASSUME;
	"begin", BEGIN;
        "check", CHECK;
	"do", DO;
	"done", DONE;
 	"downto", DOWNTO;
	"exception", EXCEPTION;
	"for", FOR;
	"fun", FUN;
	"ghost", GHOST;
	"invariant", INVARIANT;
	"label", LABEL;
	"model", MODEL;
	"module", MODULE;
	"mutable", MUTABLE;
	"parameter", PARAMETER;
	"raise", RAISE;
	"raises", RAISES;
	"reads", READS;
	"rec", REC;
	"to", TO;
	"try", TRY;
	"variant", VARIANT;
	"while", WHILE;
        "writes", WRITES;
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      ]
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  let newline lexbuf =
    let pos = lexbuf.lex_curr_p in
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    lexbuf.lex_curr_p <-
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      { pos with pos_lnum = pos.pos_lnum + 1; pos_bol = pos.pos_cnum }

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  let string_start_loc = ref Loc.dummy_position
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  let string_buf = Buffer.create 1024

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  let comment_start_loc = ref Loc.dummy_position

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  let char_for_backslash = function
    | 'n' -> '\n'
    | 't' -> '\t'
    | c -> c

  let update_loc lexbuf file line chars =
    let pos = lexbuf.lex_curr_p in
    let new_file = match file with None -> pos.pos_fname | Some s -> s in
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    lexbuf.lex_curr_p <-
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      { pos with
	  pos_fname = new_file;
	  pos_lnum = int_of_string line;
	  pos_bol = pos.pos_cnum - int_of_string chars;
      }

  let remove_leading_plus s =
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    let n = String.length s in
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    if n > 0 && s.[0] = '+' then String.sub s 1 (n-1) else s

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  let loc lb = (lexeme_start_p lb, lexeme_end_p lb)

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}

let newline = '\n'
let space = [' ' '\t' '\r']
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let lalpha = ['a'-'z' '_']
let ualpha = ['A'-'Z']
let alpha = lalpha | ualpha
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let digit = ['0'-'9']
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let lident = lalpha (alpha | digit | '\'')*
let uident = ualpha (alpha | digit | '\'')*
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let decimal_literal =
  ['0'-'9'] ['0'-'9' '_']*
let hex_literal =
  '0' ['x' 'X'] ['0'-'9' 'A'-'F' 'a'-'f']['0'-'9' 'A'-'F' 'a'-'f' '_']*
let oct_literal =
  '0' ['o' 'O'] ['0'-'7'] ['0'-'7' '_']*
let bin_literal =
  '0' ['b' 'B'] ['0'-'1'] ['0'-'1' '_']*
let int_literal =
  decimal_literal | hex_literal | oct_literal | bin_literal
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let hexadigit = ['0'-'9' 'a'-'f' 'A'-'F']

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let op_char_1 = ['=' '<' '>' '~']
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let op_char_2 = ['+' '-']
let op_char_3 = ['*' '/' '%']
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let op_char_4 = ['!' '$' '&' '?' '@' '^' '.' ':' '|' '#']
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let op_char_34 = op_char_3 | op_char_4
let op_char_234 = op_char_2 | op_char_34
let op_char_1234 = op_char_1 | op_char_234

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let op_char_pref = ['!' '?']

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rule token = parse
  | "#" space* ("\"" ([^ '\010' '\013' '"' ]* as file) "\"")?
    space* (digit+ as line) space* (digit+ as char) space* "#"
      { update_loc lexbuf file line char; token lexbuf }
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  | newline
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      { newline lexbuf; token lexbuf }
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  | space+
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      { token lexbuf }
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  | '_'
      { UNDERSCORE }
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  | lident as id
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      { try Hashtbl.find keywords id with Not_found -> LIDENT id }
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  | uident as id
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      { UIDENT id }
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  | int_literal as s
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      { INTEGER s }
  | (digit+ as i) ("" as f) ['e' 'E'] (['-' '+']? digit+ as e)
  | (digit+ as i) '.' (digit* as f) (['e' 'E'] (['-' '+']? digit+ as e))?
  | (digit* as i) '.' (digit+ as f) (['e' 'E'] (['-' '+']? digit+ as e))?
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      { FLOAT (RConstDecimal (i, f, Util.option_map remove_leading_plus e)) }
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  | '0' ['x' 'X'] ((hexadigit* as i) '.' (hexadigit+ as f)
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                  |(hexadigit+ as i) '.' (hexadigit* as f)
		  |(hexadigit+ as i) ("" as f))
    ['p' 'P'] (['-' '+']? digit+ as e)
      { FLOAT (RConstHexa (i, f, remove_leading_plus e)) }
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  | "(*)"
      { LEFTPAR_STAR_RIGHTPAR }
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  | "(*"
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      { comment_start_loc := loc lexbuf; comment lexbuf; token lexbuf }
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  | "'"
      { QUOTE }
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  | "`"
      { BACKQUOTE }
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  | ","
      { COMMA }
  | "("
      { LEFTPAR }
  | ")"
      { RIGHTPAR }
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  | "{"
      { LEFTBRC }
  | "}"
      { RIGHTBRC }
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  | ":"
      { COLON }
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  | ";"
      { SEMICOLON }
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  | "->"
      { ARROW }
  | "<->"
      { LRARROW }
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  | "/\\"
      { ASYM_AND }
  | "\\/"
      { ASYM_OR }
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  | "\\"
      { LAMBDA }
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  | "\\?"
      { PRED }
  | "\\!"
      { FUNC }
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  | "."
      { DOT }
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  | "|"
      { BAR }
  | "="
      { EQUAL }
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  | "<>"
      { LTGT }
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  | "["
      { LEFTSQ }
  | "]"
      { RIGHTSQ }
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  | op_char_pref op_char_4* as s
      { OPPREF s }
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  | op_char_1234* op_char_1 op_char_1234* as s
      { OP1 s }
  | op_char_234*  op_char_2 op_char_234*  as s
      { OP2 s }
  | op_char_34*   op_char_3 op_char_34*  as s
      { OP3 s }
  | op_char_4+ as s
      { OP4 s }
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  | "\""
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      { string_start_loc := loc lexbuf; STRING (string lexbuf) }
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  | eof
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      { EOF }
  | _ as c
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      { raise (IllegalCharacter c) }
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and comment = parse
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  | "(*)"
      { comment lexbuf }
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  | "*)"
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      { () }
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  | "(*"
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      { comment lexbuf; comment lexbuf }
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  | newline
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      { newline lexbuf; comment lexbuf }
  | eof
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      { raise (Loc.Located (!comment_start_loc, UnterminatedComment)) }
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  | _
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      { comment lexbuf }

and string = parse
  | "\""
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      { let s = Buffer.contents string_buf in
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	Buffer.clear string_buf;
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	s }
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  | "\\" (_ as c)
      { Buffer.add_char string_buf (char_for_backslash c); string lexbuf }
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  | newline
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      { newline lexbuf; Buffer.add_char string_buf '\n'; string lexbuf }
  | eof
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      { raise (Loc.Located (!string_start_loc, UnterminatedString)) }
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  | _ as c
      { Buffer.add_char string_buf c; string lexbuf }

{
  let with_location f lb =
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    if Debug.test_flag Debug.stack_trace then f lb else
    try f lb with
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      | Loc.Located _ as e -> raise e
      | e -> raise (Loc.Located (loc lb, e))
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  let parse_logic_file env = with_location (logic_file_eof env token)

  let parse_list0_decl env lenv uc =
    with_location (list0_decl_eof env lenv uc token)

  let parse_lexpr = with_location (lexpr_eof token)

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  let parse_program_file = with_location (program_file token)

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  let read_channel env file c =
    let lb = Lexing.from_channel c in
    Loc.set_file file lb;
    parse_logic_file env lb
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  (* searches file [f] in loadpath [lp] *)
  let locate_file lp f =
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    let fl = List.map (fun dir -> Filename.concat dir f) lp in
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    match List.filter Sys.file_exists fl with
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      | [] -> raise Not_found
      | [file] -> file
      | file1 :: file2 :: _ -> raise (AmbiguousPath (file1, file2))
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  let create_env lp =
    let ret_chan sl = 
      let f = List.fold_left Filename.concat "" sl in
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      let file = locate_file lp f in
      file, open_in file
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    in
    let retrieve env sl =
      let f = List.fold_left Filename.concat "" sl ^ ".why" in
      let file = locate_file lp f in
      let c = open_in file in
      try
	let tl = read_channel env file c in
	close_in c;
	tl
      with
	| e -> close_in c; raise e
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    in
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    Env.create_env ret_chan retrieve
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  let () = Env.register_format "why" ["why"] read_channel
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}

(*
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Local Variables:
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compile-command: "unset LANG; make -C ../.. test"
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End:
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*)