ELF>(.@@X   O     lexbuf.Lexing.lex_last_pos <- _last; lexbuf.Lexing.lex_curr_pos <- _curr; let _curr = _last in  %i (* = last_action *) A  (* = last_action *) _last_action |%d L= | %d |  %s%a <- _curr;   (*  <- _curr;  %s%a <- %a ;     ;  <-   *)  [%d] <- p ;  ;; and  let rec O let rec __ocaml_lex_refill_buf lexbuf _buf _len _curr _last = if lexbuf.Lexing.lex_eof_reached then 256, _buf, _len, _curr, _last else begin lexbuf.Lexing.lex_curr_pos <- _curr; lexbuf.Lexing.lex_last_pos <- _last; lexbuf.Lexing.refill_buff lexbuf; let _curr = lexbuf.Lexing.lex_curr_pos in let _last = lexbuf.Lexing.lex_last_pos in let _len = lexbuf.Lexing.lex_buffer_len in let _buf = lexbuf.Lexing.lex_buffer in if _curr < _len then Char.code (Bytes.unsafe_get _buf _curr), _buf, _len, (_curr + 1), _last else __ocaml_lex_refill_buf lexbuf _buf _len _curr _last end  k #%s__ocaml_lex_state%d lexbuf %s _buf _len _curr _last%s       _buf _len _curr _last  lexbuf __ocaml_lex_state  let __ocaml_lex_result =   in   ] <- p ;   let k lexbuf __ocaml_lex_result =  %s %alexbuf =   A  lexbuf =  %s| _ -> raise (Failure "lexing: empty token")   | _ -> raise (Failure "lexing: empty token")    %s| %d ->   [%d] <- [%d] ; %sbegin %s let _curr_p = lexbuf.Lexing.lex_curr_p in %s if _curr_p != Lexing.dummy_pos then begin %s lexbuf.Lexing.lex_start_p <- _curr_p; %s lexbuf.Lexing.lex_curr_p <- %s {_curr_p with Lexing.pos_cnum = %s lexbuf.Lexing.lex_abs_pos+lexbuf.Lexing.lex_curr_pos} %s end %send; %smatch __ocaml_lex_result with                      match __ocaml_lex_result with end;  end # lexbuf.Lexing.lex_abs_pos+lexbuf.Lexing.lex_curr_pos}  {_curr_p with Lexing.pos_cnum =  lexbuf.Lexing.lex_curr_p <-  lexbuf.Lexing.lex_start_p <- _curr_p;  if _curr_p != Lexing.dummy_pos then begin  let _curr_p = lexbuf.Lexing.lex_curr_p in begin  s %slet _curr = lexbuf.Lexing.lex_curr_pos in %slet _last = _curr in %slet _len = lexbuf.Lexing.lex_buffer_len in %slet _buf = lexbuf.Lexing.lex_buffer in %slet _last_action = -1 in %slexbuf.Lexing.lex_start_pos <- _curr;              lexbuf.Lexing.lex_start_pos <- _curr; let _last_action = -1 in let _buf = lexbuf.Lexing.lex_buffer in let _len = lexbuf.Lexing.lex_buffer_len in ] ; let _curr = lexbuf.Lexing.lex_curr_pos in  %slexbuf.Lexing.lex_mem <- Array.make %d (-1);     (-1); lexbuf.Lexing.lex_mem <- Array.make  ] <- [  k  andlet rec '%s __ocaml_lex_state%d lexbuf _last_action _buf _len _curr _last %s=      =  lexbuf _last_action _buf _len _curr _last  __ocaml_lex_state %send   end  %slet next_char, _buf, _len, _curr, _last = %s if _curr >= _len then %s __ocaml_lex_refill_buf lexbuf _buf _len _curr _last %s else %s Char.code (Bytes.unsafe_get _buf _curr), %s _buf, _len, (_curr + 1), _last %sin %sbegin match next_char with                  begin match next_char with  _buf, _len, (_curr + 1), _last  Char.code (Bytes.unsafe_get _buf _curr),  else # __ocaml_lex_refill_buf lexbuf _buf _len _curr _last  if _curr >= _len then let next_char, _buf, _len, _curr, _last =  %sin %sif _curr >= _len then %s __ocaml_lex_refill_buf lexbuf _buf _len _curr _last _last_action state k %selse %s state lexbuf _last_action _buf _len (_curr + 1) _last k %s (Char.code (Bytes.unsafe_get _buf _curr))               (Char.code (Bytes.unsafe_get _buf _curr)) # state lexbuf _last_action _buf _len (_curr + 1) _last k else C __ocaml_lex_refill_buf lexbuf _buf _len _curr _last _last_action state k if _curr >= _len then in  '%slet state lexbuf _last_action _buf _len _curr _last k = function   'let state lexbuf _last_action _buf _len _curr _last k = function  %slet _last_action = %d in     in let _last_action =  %s(* let _last_action = %d in*)     in*) (* let _last_action =  %slet _last = _curr in   let _last = _curr in  / %slexbuf.Lexing.lex_curr_pos <- _curr; 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